The Strange Behavior of Plasma Crystals - Physics Explained | Biolumination
https://www.youtube.com/watch?v=Brxow57AhVs
"Plasma is often considered a chaotic and high-energy state of matter, but when the right conditions are met, it can form something extraordinary: plasma crystals. These self-organizing structures emerge in dusty plasmas and have the potential to unlock crucial insights into fields such as astrophysics, fusion energy, and nanotechnology.
Plasma crystals are formed when micron-sized dust particles suspended in ionized gas interact electrostatically, resulting in highly ordered lattice-like structures. Unlike solid-state crystals that rely on chemical bonds, plasma crystals are governed by electromagnetic forces.
This video takes you on a journey through the science behind plasma crystals, from their formation to their behavior under various conditions. We explore the delicate balance of forces that keep these structures intact, including Coulomb repulsion and weak attractive forces. We also dive into the history of plasma crystal discovery, including their first observation aboard the Mir space station in 1994, and the ongoing research that continues to expand our understanding of these fascinating formations.
We examine how plasma crystals exhibit wave propagation, phase transitions, and emergent order, challenging traditional physics models. Through experiments in microgravity, we gain insights into how these crystals behave in space environments, where they help us study strongly coupled plasmas, cosmic dust, and self-organizing systems. Furthermore, plasma crystals have important applications in fusion energy, nanotechnology, and even the potential for alternative computing methods.
By the end of the video, we raise the intriguing possibility that plasma crystals could be key to understanding whether plasma itself could be conscious or intelligent.
Join us as we uncover the mysteries of these unusual states of matter and explore their potential far beyond what meets the eye."
https://www.youtube.com/watch?v=Brxow57AhVs
"Plasma is often considered a chaotic and high-energy state of matter, but when the right conditions are met, it can form something extraordinary: plasma crystals. These self-organizing structures emerge in dusty plasmas and have the potential to unlock crucial insights into fields such as astrophysics, fusion energy, and nanotechnology.
Plasma crystals are formed when micron-sized dust particles suspended in ionized gas interact electrostatically, resulting in highly ordered lattice-like structures. Unlike solid-state crystals that rely on chemical bonds, plasma crystals are governed by electromagnetic forces.
This video takes you on a journey through the science behind plasma crystals, from their formation to their behavior under various conditions. We explore the delicate balance of forces that keep these structures intact, including Coulomb repulsion and weak attractive forces. We also dive into the history of plasma crystal discovery, including their first observation aboard the Mir space station in 1994, and the ongoing research that continues to expand our understanding of these fascinating formations.
We examine how plasma crystals exhibit wave propagation, phase transitions, and emergent order, challenging traditional physics models. Through experiments in microgravity, we gain insights into how these crystals behave in space environments, where they help us study strongly coupled plasmas, cosmic dust, and self-organizing systems. Furthermore, plasma crystals have important applications in fusion energy, nanotechnology, and even the potential for alternative computing methods.
By the end of the video, we raise the intriguing possibility that plasma crystals could be key to understanding whether plasma itself could be conscious or intelligent.
Join us as we uncover the mysteries of these unusual states of matter and explore their potential far beyond what meets the eye."
YouTube
The Strange Behavior of Plasma Crystals - Physics Explained
Plasma is often considered a chaotic and high-energy state of matter, but when the right conditions are met, it can form something extraordinary: plasma crystals. These self-organizing structures emerge in dusty plasmas and have the potential to unlock crucial…
👍3❤1🔥1
Move Over Silicon: Alternative Computational Architectures
Researchers are building computers from materials and processes that silicon could never replicate. Photonic systems use light instead of electrons, dramatically reducing energy consumption while increasing bandwidth. Organic materials bring chemical tunability through electro-optic compounds operating at terahertz speeds. Plasma-based systems manipulate ionized matter for computation in extreme environments. Fungal mycelium networks conduct electrical spikes for distributed processing. DNA molecules store and compute with information at molecular densities. Liquid systems implement logic through fluid dynamics and chemical reactions. Spintronic devices encode data in electron spin states. Even biophotons, the weak light emissions from living cells, are being explored for biological information processing. Underlying many of these approaches are mathematical structures like the golden ratio and Fibonacci sequences, which appear naturally in quantum systems and offer advantages in network architectures.
The most mature intersection of these technologies exists in plasmonic-organic hybrid technology, where metallic nanostructures confine light to nanoscale dimensions and organic electro-optic materials control it with precision. Modulators just 20 micrometers across operate at speeds beyond 110 gigahertz while using only a few femtojoules per bit. That's more than ten times the efficiency of conventional silicon photonics. These hybrids fit into existing manufacturing workflows, requiring only additional deposition steps after standard fabrication. The plasmonic structures squeeze electromagnetic fields into spaces where organic materials interact with them most effectively. This technology now powers high-speed data transmission systems and forms the basis for organic photonic synapses that mimic biological neural processing. Researchers have demonstrated exponential gain enhancement equal to the golden ratio in coherently coupled parametric processes using two-dimensional nonlinear photonic crystals. Fibonacci quasicrystals in photonics exhibit topological edge and corner states, creating compact high-brightness coherent sources.
DNA nanotechnology intersects with photonics in multiple ways. DNA assemblies serve as programmable templates to arrange photoactive species like chromophores and quantum dots, enabling cascaded energy transfer through Förster Resonance Energy Transfer mechanisms. Photonic microspheres encapsulate DNA for high-capacity data storage, with reflection wavelength and sphere size providing two-dimensional indexing for different DNA files. Researchers encoded 357 kilobytes across 32 photonic microspheres, each containing thousands of DNA strands, demonstrating random access through optical identification. Photonic DNA computing combines optical processing with molecular storage, while DNA-directed photonic complexes function as excitonic switches and biosensors. Neuromorphic photonic circuits take this further, with monolithically integrated systems featuring on-chip capacitive analog memory achieving over 26 times power savings compared to conventional architectures. Photonic neural networks predict quantum mechanical properties of molecules for drug discovery, exploiting natural capabilities for complex-valued computation at no additional hardware cost.
Researchers are building computers from materials and processes that silicon could never replicate. Photonic systems use light instead of electrons, dramatically reducing energy consumption while increasing bandwidth. Organic materials bring chemical tunability through electro-optic compounds operating at terahertz speeds. Plasma-based systems manipulate ionized matter for computation in extreme environments. Fungal mycelium networks conduct electrical spikes for distributed processing. DNA molecules store and compute with information at molecular densities. Liquid systems implement logic through fluid dynamics and chemical reactions. Spintronic devices encode data in electron spin states. Even biophotons, the weak light emissions from living cells, are being explored for biological information processing. Underlying many of these approaches are mathematical structures like the golden ratio and Fibonacci sequences, which appear naturally in quantum systems and offer advantages in network architectures.
The most mature intersection of these technologies exists in plasmonic-organic hybrid technology, where metallic nanostructures confine light to nanoscale dimensions and organic electro-optic materials control it with precision. Modulators just 20 micrometers across operate at speeds beyond 110 gigahertz while using only a few femtojoules per bit. That's more than ten times the efficiency of conventional silicon photonics. These hybrids fit into existing manufacturing workflows, requiring only additional deposition steps after standard fabrication. The plasmonic structures squeeze electromagnetic fields into spaces where organic materials interact with them most effectively. This technology now powers high-speed data transmission systems and forms the basis for organic photonic synapses that mimic biological neural processing. Researchers have demonstrated exponential gain enhancement equal to the golden ratio in coherently coupled parametric processes using two-dimensional nonlinear photonic crystals. Fibonacci quasicrystals in photonics exhibit topological edge and corner states, creating compact high-brightness coherent sources.
DNA nanotechnology intersects with photonics in multiple ways. DNA assemblies serve as programmable templates to arrange photoactive species like chromophores and quantum dots, enabling cascaded energy transfer through Förster Resonance Energy Transfer mechanisms. Photonic microspheres encapsulate DNA for high-capacity data storage, with reflection wavelength and sphere size providing two-dimensional indexing for different DNA files. Researchers encoded 357 kilobytes across 32 photonic microspheres, each containing thousands of DNA strands, demonstrating random access through optical identification. Photonic DNA computing combines optical processing with molecular storage, while DNA-directed photonic complexes function as excitonic switches and biosensors. Neuromorphic photonic circuits take this further, with monolithically integrated systems featuring on-chip capacitive analog memory achieving over 26 times power savings compared to conventional architectures. Photonic neural networks predict quantum mechanical properties of molecules for drug discovery, exploiting natural capabilities for complex-valued computation at no additional hardware cost.
🔥3
Biophotonic integration combines silicon nitride-organic hybrid platforms for on-chip laser sources and medical diagnostics. Organic photonic synaptic devices emulate retinal visual perception across ultraviolet to near-infrared wavelengths, demonstrating learning, forgetting, and image recognition. Liquid crystals provide another bridge, with platforms that manipulate hundreds of optical modes simultaneously in photonic circuits while minimizing losses. These liquid-crystal metasurfaces simulate quantum processes and can be reprogrammed for different computational tasks. Plasma photonics labs demonstrate working devices that perform matrix-vector multiplications at light speed, manipulating polarization and velocity through engineered ionized gas structures. Spintronic-photonic integration merges electron spin states with optical processing, creating neuromorphic systems where spintronic devices provide non-volatile synaptic memory while photonic interconnects handle high-speed data transfer between processing nodes. Some proposals suggest plasma systems capable of computing in vacuum or under radiation that would destroy silicon chips.
Biological and chemical computing systems offer radically different approaches. Fungal mycelium networks function as distributed computing devices where information travels as electrical spikes between fruit bodies. The complexity of fungal electrical signaling may exceed human language, with oyster mushroom mycelia solving computational geometry problems by reprogramming their network structure based on environmental conditions. Liquid analog computers like the hydraulic MONIAC modeled entire economies using water flow, while modern liquid digital computers implement logic gates through fluid jets, droplets, and chemical reactions like the Belousov-Zhabotinsky oscillating system. These reaction-diffusion computers have produced working prototypes of adders, counters, and logically reversible gates. Reversible computing concepts aim to eliminate information deletion heat losses through transistors that can revert to previous states, with photonic implementation offering particularly promising pathways since photons are nearly frictionless. Memristors, the fourth fundamental circuit element, enable analog in-memory computing with memristor crossbar arrays achieving over 100 trillion operations per second per watt for neural network inference. The golden ratio appears in multiple computational domains: quantum magnetic resonances show frequency ratios of exactly 1.618, Fibonacci anyons serve as candidates for topological quantum computers, golden ratio phases minimize decoherence by avoiding rational resonances, and some neural networks use golden ratio proportions for optimal layer distributions.
Manufacturing challenges persist across all these platforms. Plasma states need stabilization for reliable computation. Organic materials degrade under thermal stress. Fungal systems operate slowly compared to electronic speeds. Liquid computers face miniaturization limits. DNA systems require complex encoding and decoding processes. Spintronic-photonic integration demands precise material interfaces. But progress accelerates as researchers develop more robust compounds, refine control mechanisms, and discover new intersections between these domains. A 2024 IEEE systematic review found golden ratio applications across 51% of computing use cases, from cryptography to machine learning to photonics. Single-photon switches now operate at gigahertz speeds with potential for hundreds of gigahertz. Quantum memristors demonstrate memristive feedback loops that enhance nonlinearity in neuromorphic architectures.
Related Telegram Posts
Plasmonics:
- https://t.me/aetherforceposts/6094
- https://t.me/aetherforceposts/6038
- https://t.me/aetherforceposts/5231
- https://t.me/aetherforceposts/5069
- https://t.me/aetherforceposts/3407
Plasma Computing:
- https://t.me/aetherforceposts/5623
- https://t.me/aetherforceposts/5122
Biological and chemical computing systems offer radically different approaches. Fungal mycelium networks function as distributed computing devices where information travels as electrical spikes between fruit bodies. The complexity of fungal electrical signaling may exceed human language, with oyster mushroom mycelia solving computational geometry problems by reprogramming their network structure based on environmental conditions. Liquid analog computers like the hydraulic MONIAC modeled entire economies using water flow, while modern liquid digital computers implement logic gates through fluid jets, droplets, and chemical reactions like the Belousov-Zhabotinsky oscillating system. These reaction-diffusion computers have produced working prototypes of adders, counters, and logically reversible gates. Reversible computing concepts aim to eliminate information deletion heat losses through transistors that can revert to previous states, with photonic implementation offering particularly promising pathways since photons are nearly frictionless. Memristors, the fourth fundamental circuit element, enable analog in-memory computing with memristor crossbar arrays achieving over 100 trillion operations per second per watt for neural network inference. The golden ratio appears in multiple computational domains: quantum magnetic resonances show frequency ratios of exactly 1.618, Fibonacci anyons serve as candidates for topological quantum computers, golden ratio phases minimize decoherence by avoiding rational resonances, and some neural networks use golden ratio proportions for optimal layer distributions.
Manufacturing challenges persist across all these platforms. Plasma states need stabilization for reliable computation. Organic materials degrade under thermal stress. Fungal systems operate slowly compared to electronic speeds. Liquid computers face miniaturization limits. DNA systems require complex encoding and decoding processes. Spintronic-photonic integration demands precise material interfaces. But progress accelerates as researchers develop more robust compounds, refine control mechanisms, and discover new intersections between these domains. A 2024 IEEE systematic review found golden ratio applications across 51% of computing use cases, from cryptography to machine learning to photonics. Single-photon switches now operate at gigahertz speeds with potential for hundreds of gigahertz. Quantum memristors demonstrate memristive feedback loops that enhance nonlinearity in neuromorphic architectures.
Related Telegram Posts
Plasmonics:
- https://t.me/aetherforceposts/6094
- https://t.me/aetherforceposts/6038
- https://t.me/aetherforceposts/5231
- https://t.me/aetherforceposts/5069
- https://t.me/aetherforceposts/3407
Plasma Computing:
- https://t.me/aetherforceposts/5623
- https://t.me/aetherforceposts/5122
🤯3
Organic Computing:
- https://t.me/aetherforceposts/5533
- https://t.me/aetherforceposts/4969
Supporting Videos
"Why Light Will Change Computers Forever" (2025) - https://www.youtube.com/watch?v=b_PS8o8pi9A
"Is Photonic Computing The Future Of AI Chip Technology?" Forbes (2025) -
https://www.youtube.com/watch?v=Qe_k0XpGVOU
"Photonics Explained: The Future of Light Technology for Everyday Life" (2024) - https://www.youtube.com/watch?v=oMllLmoul48
"Optica Online Industry Meeting: Photonic-Enabled AI" (2025) - https://www.youtube.com/watch?v=GNe6RUNatVk
"OPTICAL COMPUTING with PLASMA: Stanford PhD Defense" by Projections (2023) - https://www.youtube.com/watch?v=Mdh2pLwsK8Y
"Progress Toward a Plasma-Based Optical Computer" (2023) - https://www.youtube.com/watch?v=KN55Opscdv8
"Organic Computing" by ExplainingComputers (2017) - https://www.youtube.com/watch?v=F7REp0Y9edA
"Computational acceleration of novel organic electronic materials development" (2022) - https://www.youtube.com/watch?v=hVC59_8RINQ
"Hybrid plasmonics and switchable conducting polymer nanoantennas" (2021) - https://www.youtube.com/watch?v=KSSvSc4L4NE
"Future of Tech: DNA Computing" (2020) - https://www.youtube.com/watch?v=vefBhhjodpE
"Adleman: Inventing DNA Computing" Turing Award Winner (2020) - https://www.youtube.com/watch?v=Bhqf8M5yYIw
"RIT Research Minute: DNA Computing" (2024) - https://www.youtube.com/watch?v=6e9ho2DwaFs
"Demonstration of a Scalable DNA Computing Platform" (2025) - https://www.youtube.com/watch?v=qDRcYu5_LIE
"Future Computing: DNA Hard Drives | Nick Goldman" World Economic Forum (2015) - https://www.youtube.com/watch?v=tBvd7OSDGgQ
"Brain-Mimicking Biochip Using Fungal Networks" Broad Science (2025) - https://www.youtube.com/watch?v=UQvVpitC-nk
"Mycelium Actuators: Bio-Electric Signal Processing in Fungi" (2026) - https://www.youtube.com/watch?v=nTlX4NtNZ8w
"Liquid Circuits: The Future of Fluidic Computing in Motion" (2024) - https://www.youtube.com/watch?v=xl6Aj8KcFYo
"Computing with fluids | Manu Prakash" TED Archive (2017) -
https://www.youtube.com/watch?v=OhroLzvW-JI
"Topological Quantum Computation with Fibonacci anyons" (2024) - https://www.youtube.com/watch?v=91qEkN0AL94
"What is spintronics and how is it useful?" SciToons (2019) -
https://www.youtube.com/watch?v=q3-S5hM-3QY
"Stuart Parkin on the Spintronic Revolution in Computing" WebsEdge Science (2024) - https://www.youtube.com/watch?v=Q-pQK_6omFs
"Brain-Inspired AI Chips & Future of Computing" Professor Rahul Jain (2025) -
https://www.youtube.com/watch?v=5s0Gh7Y8v_4
"Neuromorphic computing - with Johan Mentink" (2025) - https://www.youtube.com/watch?v=VTKcsNrqdqA
"What Is A Memristor?" (2015) - https://www.youtube.com/watch?v=sQjFrWvq9Cg
"Memristors!" (2021) - https://www.youtube.com/watch?v=4dfGm7zkTiM
"Memristor-Based Analog Computation and Neural Networks" Advanced Portfolio News (2018) - https://www.youtube.com/watch?v=sIAeftb0Yq0
"Analog In-memory computing with multilevel memristive devices" (2024) -
https://www.youtube.com/watch?v=KPZzzsaIX4Y
"Memristors: The Future of Computer Memory and Neuromorphic Computing" (2016) - https://www.youtube.com/watch?v=Lt_cnLhLmes
"Biophotonics poised to make major breakthroughs in medicine" NSF Science Nation (2015) - https://www.youtube.com/watch?v=7OR1tiDIK_g
"This New Chip is Defying the Laws of Physics" Science University of Copenhagen (2025) -https://www.youtube.com/watch?v=2CijJaNEh_Q
"Ed Fredkin - Reversible Computing (Keynote)" Computing Community Consortium (2020) - https://www.youtube.com/watch?v=ROv1HX-gdas
"Biocomputers made from human brain cells could run the AI systems" RAZOR (2024) - https://www.youtube.com/watch?v=k-0GE4jJW7U
- https://t.me/aetherforceposts/5533
- https://t.me/aetherforceposts/4969
Supporting Videos
"Why Light Will Change Computers Forever" (2025) - https://www.youtube.com/watch?v=b_PS8o8pi9A
"Is Photonic Computing The Future Of AI Chip Technology?" Forbes (2025) -
https://www.youtube.com/watch?v=Qe_k0XpGVOU
"Photonics Explained: The Future of Light Technology for Everyday Life" (2024) - https://www.youtube.com/watch?v=oMllLmoul48
"Optica Online Industry Meeting: Photonic-Enabled AI" (2025) - https://www.youtube.com/watch?v=GNe6RUNatVk
"OPTICAL COMPUTING with PLASMA: Stanford PhD Defense" by Projections (2023) - https://www.youtube.com/watch?v=Mdh2pLwsK8Y
"Progress Toward a Plasma-Based Optical Computer" (2023) - https://www.youtube.com/watch?v=KN55Opscdv8
"Organic Computing" by ExplainingComputers (2017) - https://www.youtube.com/watch?v=F7REp0Y9edA
"Computational acceleration of novel organic electronic materials development" (2022) - https://www.youtube.com/watch?v=hVC59_8RINQ
"Hybrid plasmonics and switchable conducting polymer nanoantennas" (2021) - https://www.youtube.com/watch?v=KSSvSc4L4NE
"Future of Tech: DNA Computing" (2020) - https://www.youtube.com/watch?v=vefBhhjodpE
"Adleman: Inventing DNA Computing" Turing Award Winner (2020) - https://www.youtube.com/watch?v=Bhqf8M5yYIw
"RIT Research Minute: DNA Computing" (2024) - https://www.youtube.com/watch?v=6e9ho2DwaFs
"Demonstration of a Scalable DNA Computing Platform" (2025) - https://www.youtube.com/watch?v=qDRcYu5_LIE
"Future Computing: DNA Hard Drives | Nick Goldman" World Economic Forum (2015) - https://www.youtube.com/watch?v=tBvd7OSDGgQ
"Brain-Mimicking Biochip Using Fungal Networks" Broad Science (2025) - https://www.youtube.com/watch?v=UQvVpitC-nk
"Mycelium Actuators: Bio-Electric Signal Processing in Fungi" (2026) - https://www.youtube.com/watch?v=nTlX4NtNZ8w
"Liquid Circuits: The Future of Fluidic Computing in Motion" (2024) - https://www.youtube.com/watch?v=xl6Aj8KcFYo
"Computing with fluids | Manu Prakash" TED Archive (2017) -
https://www.youtube.com/watch?v=OhroLzvW-JI
"Topological Quantum Computation with Fibonacci anyons" (2024) - https://www.youtube.com/watch?v=91qEkN0AL94
"What is spintronics and how is it useful?" SciToons (2019) -
https://www.youtube.com/watch?v=q3-S5hM-3QY
"Stuart Parkin on the Spintronic Revolution in Computing" WebsEdge Science (2024) - https://www.youtube.com/watch?v=Q-pQK_6omFs
"Brain-Inspired AI Chips & Future of Computing" Professor Rahul Jain (2025) -
https://www.youtube.com/watch?v=5s0Gh7Y8v_4
"Neuromorphic computing - with Johan Mentink" (2025) - https://www.youtube.com/watch?v=VTKcsNrqdqA
"What Is A Memristor?" (2015) - https://www.youtube.com/watch?v=sQjFrWvq9Cg
"Memristors!" (2021) - https://www.youtube.com/watch?v=4dfGm7zkTiM
"Memristor-Based Analog Computation and Neural Networks" Advanced Portfolio News (2018) - https://www.youtube.com/watch?v=sIAeftb0Yq0
"Analog In-memory computing with multilevel memristive devices" (2024) -
https://www.youtube.com/watch?v=KPZzzsaIX4Y
"Memristors: The Future of Computer Memory and Neuromorphic Computing" (2016) - https://www.youtube.com/watch?v=Lt_cnLhLmes
"Biophotonics poised to make major breakthroughs in medicine" NSF Science Nation (2015) - https://www.youtube.com/watch?v=7OR1tiDIK_g
"This New Chip is Defying the Laws of Physics" Science University of Copenhagen (2025) -https://www.youtube.com/watch?v=2CijJaNEh_Q
"Ed Fredkin - Reversible Computing (Keynote)" Computing Community Consortium (2020) - https://www.youtube.com/watch?v=ROv1HX-gdas
"Biocomputers made from human brain cells could run the AI systems" RAZOR (2024) - https://www.youtube.com/watch?v=k-0GE4jJW7U
🤯3
Bibliography
- Photonic (computational) memories: tunable nanophotonics for data storage, National Center for Biotechnology Information, 2022
- Survey of Photonic and Plasmonic Interconnect Technologies for Intra-Datacenter Communications, Deutsche Nationalbibliothek, 2021
- The World's First Plasmonic-Organic Hybrid Devices, NLM Photonics, 2021
- Integrated Photonic Computing beyond the von Neumann Architecture, ACS Photonics, 2023
- Organic integrated photonics: a new approach, Royal Society of Chemistry, 2023
- Beyond silicon: building a photonic foundation for next-gen computing, PIC Magazine, 2025
- Plasmonic Organic Hybrid Modulators, Polariton, 2025
- Plasmonic-organic hybrid electro/optic Mach-Zehnder modulators, PubMed, 2020
- Organic printed photonics: From microring lasers to integrated circuits, Science, 2015
- Plasmonic IQ modulators with attojoule per bit electrical energy consumption, Nature Communications, 2019
- Plasma Photonics: Manipulating Light Using Plasmas, Lawrence Livermore National Laboratory, 2021
- Towards fungal computer, PMC - National Institutes of Health, 2018
- Fungal Future: Exploring the Potential of Mushroom Computing, Fisher Scientific, 2023
- Using the fungal electrical activity for computing, Universitat Oberta de Catalunya, 2024
- A brief history of liquid computers, PMC - National Institutes of Health, 2019
- Liquid Computers, I Programmer, 2018
- The concept of biophotonic signaling in the human body and brain, PMC - National Institutes of Health, 2025
- Biophoton Communication, Envisioning Xenotech, 2025
- Organic Photonic Synapses for Application of Bioinspired Computing, Wiley Advanced Functional Materials, 2025
- Biophotonic sensors with integrated Si3N4-organic hybrid circuits, Nature Communications, 2021
- Liquid-crystal platform overcomes optical losses in photonic circuits, Phys.org, 2025
- Golden Ratio Gain Enhancement in Coherently Coupled Parametric Processes, PubMed, 2018
- The Golden Ratio, Artificial Intelligence and Quantum Mathematics, Smart City Journal, 2025
- Golden Ratio and Prime Resonance in Quantum Transport, Science and Mathematics, 2025
- Golden ratio discovered in a quantum world, Phys.org, 2010
- Application of Phi, the Golden Ratio, in Computing: A Systematic Review, IEEE, 2024
- Interfacing DNA nanotechnology and biomimetic photonic complexes, PMC - National Institutes of Health, 2022
- Photonic microspheres for high-capacity DNA data storage, Science Advances, 2025
- Neuromorphic photonic computing with an electro-optic analog memory, Nature Communications, 2026
- Neuromorphic computing with spintronics, Nature, 2024
- Spintronic-Photonic Neuromorphic Computing, LinkedIn, 2025
- Single-photon switch could enable photonic computing, Phys.org, 2025
- Reversible computing and photonic computing, Bloc Ventures, 2024
- Experimental neuromorphic computing based on quantum memristor, 2025
- Photonic (computational) memories: tunable nanophotonics for data storage, National Center for Biotechnology Information, 2022
- Survey of Photonic and Plasmonic Interconnect Technologies for Intra-Datacenter Communications, Deutsche Nationalbibliothek, 2021
- The World's First Plasmonic-Organic Hybrid Devices, NLM Photonics, 2021
- Integrated Photonic Computing beyond the von Neumann Architecture, ACS Photonics, 2023
- Organic integrated photonics: a new approach, Royal Society of Chemistry, 2023
- Beyond silicon: building a photonic foundation for next-gen computing, PIC Magazine, 2025
- Plasmonic Organic Hybrid Modulators, Polariton, 2025
- Plasmonic-organic hybrid electro/optic Mach-Zehnder modulators, PubMed, 2020
- Organic printed photonics: From microring lasers to integrated circuits, Science, 2015
- Plasmonic IQ modulators with attojoule per bit electrical energy consumption, Nature Communications, 2019
- Plasma Photonics: Manipulating Light Using Plasmas, Lawrence Livermore National Laboratory, 2021
- Towards fungal computer, PMC - National Institutes of Health, 2018
- Fungal Future: Exploring the Potential of Mushroom Computing, Fisher Scientific, 2023
- Using the fungal electrical activity for computing, Universitat Oberta de Catalunya, 2024
- A brief history of liquid computers, PMC - National Institutes of Health, 2019
- Liquid Computers, I Programmer, 2018
- The concept of biophotonic signaling in the human body and brain, PMC - National Institutes of Health, 2025
- Biophoton Communication, Envisioning Xenotech, 2025
- Organic Photonic Synapses for Application of Bioinspired Computing, Wiley Advanced Functional Materials, 2025
- Biophotonic sensors with integrated Si3N4-organic hybrid circuits, Nature Communications, 2021
- Liquid-crystal platform overcomes optical losses in photonic circuits, Phys.org, 2025
- Golden Ratio Gain Enhancement in Coherently Coupled Parametric Processes, PubMed, 2018
- The Golden Ratio, Artificial Intelligence and Quantum Mathematics, Smart City Journal, 2025
- Golden Ratio and Prime Resonance in Quantum Transport, Science and Mathematics, 2025
- Golden ratio discovered in a quantum world, Phys.org, 2010
- Application of Phi, the Golden Ratio, in Computing: A Systematic Review, IEEE, 2024
- Interfacing DNA nanotechnology and biomimetic photonic complexes, PMC - National Institutes of Health, 2022
- Photonic microspheres for high-capacity DNA data storage, Science Advances, 2025
- Neuromorphic photonic computing with an electro-optic analog memory, Nature Communications, 2026
- Neuromorphic computing with spintronics, Nature, 2024
- Spintronic-Photonic Neuromorphic Computing, LinkedIn, 2025
- Single-photon switch could enable photonic computing, Phys.org, 2025
- Reversible computing and photonic computing, Bloc Ventures, 2024
- Experimental neuromorphic computing based on quantum memristor, 2025
Telegram
Aether Force
Plasmonic Nanocavities: Bridging Biophotons, Cellular Communication, and Low-Energy Nuclear Phenomena
Inside every living cell, as demonstrated in many of my other posts, our cells emit ultraweak emissions coined "bio-photons" as they communicate, repair…
Inside every living cell, as demonstrated in many of my other posts, our cells emit ultraweak emissions coined "bio-photons" as they communicate, repair…
⚡3
The Aetheric Foam | David Chaim Smith with Ike Baker
Part 1 of 4
Part 2 of 4
Part 3 of 4
Part 4 of 4
David Chaim Smith is a Kabbalist whose work maps obscure, prior to Lurianic Kabbalistic texts onto practical contemplative and etheric frameworks for occultists, meditators, and esotericists; here, in four parts, he is joined by theurgic Neoplatonist Ike Baker.
The ether is the luminous presentation of space, a universal medium through which mind and reality blend and interact, functioning as the slippage point between the mind's holding of reality and reality's expression as display. It permeates all levels at all times, from the Or Ein Sof down through the solid and substantial. The 13th century Kabbalistic text known as the Fountain of Wisdom opens with Avir Kadmon, the primordial ether, as the ground of all things, its root being Keter obscured by the dark luminosity of Hokhmah and the luminous darkness of Binah, both nondually mixed rather than standing as opposites. From that root the outpouring moves through Tiferet as streams and threads, Gevurah as discrete droplets breaking the flow into intervals, Yesod as the mixing bowl where conglomerates form, until Malkut solidifies the perception of form. From those conglomerates rises a foam floating on the surface of the water, a Genesis image naming the etheric medium of reality, where every bounded perception links through memory in associative chains whose every node is enclosed by its own Klipotic shell. The Tohu is the formless barrage of pure possibility; the Bohu is the mind's structuring activity that packages and designates reality. Both together hold the paradox of infinity presenting itself as finite.
Two trees in 1728 diagrams make visible the two total orientations of the mind in relation to that foam. In the left tree, Da'at occupies the middle pillar and Malkut dangles below subsumed by the Klipot, meaning conceptuality blocks the Ruach from rising to the supernals. In the right tree, the natural array, Da'at is absent, the middle pillar rises one notch, and Malkut integrates fully, so that Tiferet achieves direct communication with Hokhmah and Binah and the display is absorbed into the etheric process. These are the two trees of the Garden of Eden: the tree of knowledge and the tree of life, and confusion between them through conceptual fixation produces the exile barred by the flaming rotating sword. The nine chambers of wisdom, represented geometrically through the Ibrigate, begin with openness as irreducible pure possibility, then indulgence meaning phenomena arise without departing from openness, then resonance as infinite reverberation without fixation, all organized through the magic square of Binah whose rows sum to 15, the divine name Yah. The five organs mapped onto the tree mark the practical path: the kidneys purify Klipotic fixation, the lungs perform etheric breathing, the heart conglomerates at Yesod, and the brain shifts its register as the middle pillar changes position. The three heads of Keter in the Zohar mark the terminal stages: cataphatic realization of the wholeness of the monad, then the apophatic recognition that this wholeness is nothing reducible, and finally the headless head where even that distinction disappears into transparency, the cloud of unknowing, where terror and beneficence lose their boundary and merge.
Part 1 of 4
Part 2 of 4
Part 3 of 4
Part 4 of 4
David Chaim Smith is a Kabbalist whose work maps obscure, prior to Lurianic Kabbalistic texts onto practical contemplative and etheric frameworks for occultists, meditators, and esotericists; here, in four parts, he is joined by theurgic Neoplatonist Ike Baker.
The ether is the luminous presentation of space, a universal medium through which mind and reality blend and interact, functioning as the slippage point between the mind's holding of reality and reality's expression as display. It permeates all levels at all times, from the Or Ein Sof down through the solid and substantial. The 13th century Kabbalistic text known as the Fountain of Wisdom opens with Avir Kadmon, the primordial ether, as the ground of all things, its root being Keter obscured by the dark luminosity of Hokhmah and the luminous darkness of Binah, both nondually mixed rather than standing as opposites. From that root the outpouring moves through Tiferet as streams and threads, Gevurah as discrete droplets breaking the flow into intervals, Yesod as the mixing bowl where conglomerates form, until Malkut solidifies the perception of form. From those conglomerates rises a foam floating on the surface of the water, a Genesis image naming the etheric medium of reality, where every bounded perception links through memory in associative chains whose every node is enclosed by its own Klipotic shell. The Tohu is the formless barrage of pure possibility; the Bohu is the mind's structuring activity that packages and designates reality. Both together hold the paradox of infinity presenting itself as finite.
Two trees in 1728 diagrams make visible the two total orientations of the mind in relation to that foam. In the left tree, Da'at occupies the middle pillar and Malkut dangles below subsumed by the Klipot, meaning conceptuality blocks the Ruach from rising to the supernals. In the right tree, the natural array, Da'at is absent, the middle pillar rises one notch, and Malkut integrates fully, so that Tiferet achieves direct communication with Hokhmah and Binah and the display is absorbed into the etheric process. These are the two trees of the Garden of Eden: the tree of knowledge and the tree of life, and confusion between them through conceptual fixation produces the exile barred by the flaming rotating sword. The nine chambers of wisdom, represented geometrically through the Ibrigate, begin with openness as irreducible pure possibility, then indulgence meaning phenomena arise without departing from openness, then resonance as infinite reverberation without fixation, all organized through the magic square of Binah whose rows sum to 15, the divine name Yah. The five organs mapped onto the tree mark the practical path: the kidneys purify Klipotic fixation, the lungs perform etheric breathing, the heart conglomerates at Yesod, and the brain shifts its register as the middle pillar changes position. The three heads of Keter in the Zohar mark the terminal stages: cataphatic realization of the wholeness of the monad, then the apophatic recognition that this wholeness is nothing reducible, and finally the headless head where even that distinction disappears into transparency, the cloud of unknowing, where terror and beneficence lose their boundary and merge.
YouTube
The Aetheric Foam: Part 1 of 4
THE AETHERIC FOAM is a four-part conversation between Kabbalist David Chaim Smith and theurgic Neoplatonist Ike Baker. Best digested in sequential order, these four parts probe the aethers in great detail with the aid of esoteric cartography (images of Kabbalistic…
👍2❤1
Time Crystals: A Phase of Matter Alive Only Outside Equilibrium | J. Zhang et al. and Morrell, Elliott & Grier
Working across two separate experimental platforms nearly a decade apart, J. Zhang and colleagues at the Joint Quantum Institute proved that a quantum many body system can spontaneously break time translation symmetry, while Mia C. Morrell, Leela Elliott, and David G. Grier at New York University showed that the same physics is accessible in a purely classical setting built from sound and levitated beads.
A time crystal is a phase of matter defined by the spontaneous breaking of time translation symmetry, the temporal counterpart to how a conventional crystal breaks spatial translation symmetry. A conventional crystal replaces the continuous translational symmetry of space with a periodic lattice; a time crystal replaces the continuous translational symmetry of time with persistent periodic behavior at a frequency the system itself selects. Because quantum equilibrium systems have time independent observables by construction, this kind of symmetry breaking is forbidden in thermal equilibrium and can only emerge in nonequilibrium systems.
The first experimental realization of a discrete time crystal used a chain of trapped atomic ions driven by a repeating sequence of three operations: a nearly complete global spin flip, long range Ising spin spin interactions, and strong programmable disorder. The disorder produces many body localization, blocking the system from absorbing drive energy and heating toward infinite temperature, a fate that would destroy any temporal order. Without interactions, disorder causes individual spins to dephase and lose coherence. Without disorder, perturbations to the spin flip propagate freely across the chain. Only when all three elements act together do the spins synchronize and lock to twice the drive period, holding that rhythm even when the spin flip is deliberately made imperfect. When perturbations grow too large, the time crystal melts.
A separate classical realization constructs a continuous time crystal from two acoustically levitated beads of different sizes, with no periodic drive at all. Because the beads scatter sound differently, the wave mediated forces between them are nonreciprocal: Newton's third law breaks down because scattered waves carry momentum away, making the pair an open system. This nonreciprocity allows the pair to continuously extract energy from the standing acoustic wave and sustain a collective oscillation mode that precisely compensates viscous drag. The system spontaneously breaks PT symmetry at an exceptional point where two dynamical eigenmodes coalesce, and that broken symmetry is restored through a linearly stable limit cycle whose oscillation frequency is fully emergent and uncorrelated with any timescale in the governing equations. Unlike previously reported dissipative time crystals, which require either periodic driving or thermal activation to replace lost energy, this system sustains itself through nonreciprocity alone, stabilized by damping.
Bibliography
- Observation of a Discrete Time Crystal, J. Zhang et al., 2016
- Nonreciprocal Wave-Mediated Interactions Power a Classical Time Crystal, Mia C. Morrell, Leela Elliott, David G. Grier, 2025
Working across two separate experimental platforms nearly a decade apart, J. Zhang and colleagues at the Joint Quantum Institute proved that a quantum many body system can spontaneously break time translation symmetry, while Mia C. Morrell, Leela Elliott, and David G. Grier at New York University showed that the same physics is accessible in a purely classical setting built from sound and levitated beads.
A time crystal is a phase of matter defined by the spontaneous breaking of time translation symmetry, the temporal counterpart to how a conventional crystal breaks spatial translation symmetry. A conventional crystal replaces the continuous translational symmetry of space with a periodic lattice; a time crystal replaces the continuous translational symmetry of time with persistent periodic behavior at a frequency the system itself selects. Because quantum equilibrium systems have time independent observables by construction, this kind of symmetry breaking is forbidden in thermal equilibrium and can only emerge in nonequilibrium systems.
The first experimental realization of a discrete time crystal used a chain of trapped atomic ions driven by a repeating sequence of three operations: a nearly complete global spin flip, long range Ising spin spin interactions, and strong programmable disorder. The disorder produces many body localization, blocking the system from absorbing drive energy and heating toward infinite temperature, a fate that would destroy any temporal order. Without interactions, disorder causes individual spins to dephase and lose coherence. Without disorder, perturbations to the spin flip propagate freely across the chain. Only when all three elements act together do the spins synchronize and lock to twice the drive period, holding that rhythm even when the spin flip is deliberately made imperfect. When perturbations grow too large, the time crystal melts.
A separate classical realization constructs a continuous time crystal from two acoustically levitated beads of different sizes, with no periodic drive at all. Because the beads scatter sound differently, the wave mediated forces between them are nonreciprocal: Newton's third law breaks down because scattered waves carry momentum away, making the pair an open system. This nonreciprocity allows the pair to continuously extract energy from the standing acoustic wave and sustain a collective oscillation mode that precisely compensates viscous drag. The system spontaneously breaks PT symmetry at an exceptional point where two dynamical eigenmodes coalesce, and that broken symmetry is restored through a linearly stable limit cycle whose oscillation frequency is fully emergent and uncorrelated with any timescale in the governing equations. Unlike previously reported dissipative time crystals, which require either periodic driving or thermal activation to replace lost energy, this system sustains itself through nonreciprocity alone, stabilized by damping.
Bibliography
- Observation of a Discrete Time Crystal, J. Zhang et al., 2016
- Nonreciprocal Wave-Mediated Interactions Power a Classical Time Crystal, Mia C. Morrell, Leela Elliott, David G. Grier, 2025
arXiv.org
Observation of a Discrete Time Crystal
Spontaneous symmetry breaking is a fundamental concept in many areas of physics, ranging from cosmology and particle physics to condensed matter. A prime example is the breaking of spatial...
🔥2
Goethe's Scientific Method and Paradigm Change: The Example of Projective Geometry
https://www.academia.edu/105137678/Goethes_Scientific_Method_and_Paradigm_Change_The_Example_of_Projective_Geometry
"No phenomenon can explain itself through or out of itself; only many, seen together, systematically ordered, eventually give what could be considered a theory.” - J.W. von Goethe
"By training the scientist “not to reduce phenomena to a scheme but, rather, to remain inwardly mobile”, Goethe’s method provides “the ground from which all our Vorstellungsarten – all scientific ‘paradigms’ – arise”. Goethe focused his scientific activity on botany and chromatics “above all because of their propaedeutic value”. The propaedeutic value of these examples is to lead the scientist to what “moves between the paradigms, the source of the revolutions themselves” and thereby develop the “mobility of one’s thinking and imagination, upon which the ‘metamorphosis of the scientist’ and, with it, the growth of science depend”. "
Goethe's Methods is 3 steps according to Projective Geometric Principles:
"1) In the first stage we collect observations within a particular domain. We transition to the second stage when we see a lawfulness to our observations, in this case a polarity between point and plane.
2) In the second stage we look systematically for instances of this lawfulness. In doing so we also become aware of the paradigm in which we are operating. In particular, at some point we find that the lawfulness we discovered contradicts
elements of the current paradigm, here the parallel postulate. This lawfulness is thus not a higher principle in the current paradigm. We have now reached as far as we can go in the current paradigm.
3) In order to reach the third stage, we need to hold on to the idea of polarity – and shape a new paradigm around this lawfulness, making it into a higher principle in the new paradigm. An aspect of the old paradigm is rejected and the old paradigm is transformed into the new paradigm. In this example Euclidian geometry is transformed into projective geometry by rejecting the parallel postulate, which then leads to the plane at infinity being included as a geometrical element.
The example of the transition from Euclidean to projective geometry considered here illustrates what happens when we progress from the second to the third stage of Goethe’s method: we change the paradigm. This example also shows that this transition is a transformation of the old paradigm, not its rejection. Amrine rightly notes that scientific revolution requires a new way of seeing and thereby the metamorphosis of the scientist. But if there is to be growth in science, this revolution also needs to be a metamorphosis of the paradigm."
https://www.academia.edu/105137678/Goethes_Scientific_Method_and_Paradigm_Change_The_Example_of_Projective_Geometry
"No phenomenon can explain itself through or out of itself; only many, seen together, systematically ordered, eventually give what could be considered a theory.” - J.W. von Goethe
"By training the scientist “not to reduce phenomena to a scheme but, rather, to remain inwardly mobile”, Goethe’s method provides “the ground from which all our Vorstellungsarten – all scientific ‘paradigms’ – arise”. Goethe focused his scientific activity on botany and chromatics “above all because of their propaedeutic value”. The propaedeutic value of these examples is to lead the scientist to what “moves between the paradigms, the source of the revolutions themselves” and thereby develop the “mobility of one’s thinking and imagination, upon which the ‘metamorphosis of the scientist’ and, with it, the growth of science depend”. "
Goethe's Methods is 3 steps according to Projective Geometric Principles:
"1) In the first stage we collect observations within a particular domain. We transition to the second stage when we see a lawfulness to our observations, in this case a polarity between point and plane.
2) In the second stage we look systematically for instances of this lawfulness. In doing so we also become aware of the paradigm in which we are operating. In particular, at some point we find that the lawfulness we discovered contradicts
elements of the current paradigm, here the parallel postulate. This lawfulness is thus not a higher principle in the current paradigm. We have now reached as far as we can go in the current paradigm.
3) In order to reach the third stage, we need to hold on to the idea of polarity – and shape a new paradigm around this lawfulness, making it into a higher principle in the new paradigm. An aspect of the old paradigm is rejected and the old paradigm is transformed into the new paradigm. In this example Euclidian geometry is transformed into projective geometry by rejecting the parallel postulate, which then leads to the plane at infinity being included as a geometrical element.
The example of the transition from Euclidean to projective geometry considered here illustrates what happens when we progress from the second to the third stage of Goethe’s method: we change the paradigm. This example also shows that this transition is a transformation of the old paradigm, not its rejection. Amrine rightly notes that scientific revolution requires a new way of seeing and thereby the metamorphosis of the scientist. But if there is to be growth in science, this revolution also needs to be a metamorphosis of the paradigm."
⚡2
The Periodic Table of Tarot: A Goethean Inquiry into the Elements as Archetypes | A. McKee
https://www.academia.edu/145719390/The_Periodic_Table_of_Tarot_A_Goethean_Inquiry_into_the_Elements_as_Archetypes
"Alchemy, tarot, and the periodic table of elements are often understood as distinct systems—one mystical, one divinatory, and one scientific. Yet, each functions as a structured map of fundamental forces that govern transformation. Johann Wolfgang von Goethe’s phenomenological method—an approach that emphasizes direct perception, holistic relationships, and dynamic observation—this paper explores how the periodic table can be reimagined as an esoteric system akin to tarot’s archetypal structure.
Goethe rejected mechanistic scientific methods in favor of immersive, direct engagement with natural phenomena. His method aligns with Indigenous knowledge systems, which, as Tyson Yunkaporta describes in Sand Talk, emphasize relational thinking rather than strict categorization. Similarly, C.G. Jung saw symbols in alchemy, mythology, and modern psychology as living, evolving representations of unconscious forces. In C.G. Jung and the Sioux Traditions, Vine Deloria describes Jung’s approach as one in which “the descent into matter requires the identity of the outside with the inside” (Deloria, p. 78).
This paper incorporates perspectives from Alva Noë’s Strange Tools and W.J.T. Mitchell’s What Do Pictures Want?, arguing that the periodic table and tarot function as living symbolic systems rather than static classifications. I explore how matter, archetypes, and consciousness intersect by shifting from a reductionist view of elements to a dynamic, relational understanding."
https://www.academia.edu/145719390/The_Periodic_Table_of_Tarot_A_Goethean_Inquiry_into_the_Elements_as_Archetypes
"Alchemy, tarot, and the periodic table of elements are often understood as distinct systems—one mystical, one divinatory, and one scientific. Yet, each functions as a structured map of fundamental forces that govern transformation. Johann Wolfgang von Goethe’s phenomenological method—an approach that emphasizes direct perception, holistic relationships, and dynamic observation—this paper explores how the periodic table can be reimagined as an esoteric system akin to tarot’s archetypal structure.
Goethe rejected mechanistic scientific methods in favor of immersive, direct engagement with natural phenomena. His method aligns with Indigenous knowledge systems, which, as Tyson Yunkaporta describes in Sand Talk, emphasize relational thinking rather than strict categorization. Similarly, C.G. Jung saw symbols in alchemy, mythology, and modern psychology as living, evolving representations of unconscious forces. In C.G. Jung and the Sioux Traditions, Vine Deloria describes Jung’s approach as one in which “the descent into matter requires the identity of the outside with the inside” (Deloria, p. 78).
This paper incorporates perspectives from Alva Noë’s Strange Tools and W.J.T. Mitchell’s What Do Pictures Want?, arguing that the periodic table and tarot function as living symbolic systems rather than static classifications. I explore how matter, archetypes, and consciousness intersect by shifting from a reductionist view of elements to a dynamic, relational understanding."
🔥4
Proteus | Benjamin D Schluter
https://www.academia.edu/161281990/Proteus_Proteus_
"In this entry to the Goethe-Lexicon of Philosophical Concepts, I situate Goethe’s “protean” model of metamorphosis vis-à-vis his engagement with maritime environments and literature, specifically Homer’s Odyssey, during the period of the Italian journey. As a symbol, I argue, Proteus played an especially important role in Goethe’s dynamic reconception of natural forms as well as his rebuttal to the “terrestrially biased” imagery of Carl Linnaeus, who construed the formal characteristics of plants through metaphors of geographical enclosure. Additionally, I consider how Goethe’s “protean” botany informed his theory of natural types (Typen) and prepared his theory and practice of science as “zarte Empirie." By reading the mythical figure of Proteus back into the adjective “protean,” which is used to characterize Goethe’s view of nature in his scientific and poetic writings, we can uncover a uniquely Goethean conception of metamorphosis and creativity."
https://www.academia.edu/161281990/Proteus_Proteus_
"In this entry to the Goethe-Lexicon of Philosophical Concepts, I situate Goethe’s “protean” model of metamorphosis vis-à-vis his engagement with maritime environments and literature, specifically Homer’s Odyssey, during the period of the Italian journey. As a symbol, I argue, Proteus played an especially important role in Goethe’s dynamic reconception of natural forms as well as his rebuttal to the “terrestrially biased” imagery of Carl Linnaeus, who construed the formal characteristics of plants through metaphors of geographical enclosure. Additionally, I consider how Goethe’s “protean” botany informed his theory of natural types (Typen) and prepared his theory and practice of science as “zarte Empirie." By reading the mythical figure of Proteus back into the adjective “protean,” which is used to characterize Goethe’s view of nature in his scientific and poetic writings, we can uncover a uniquely Goethean conception of metamorphosis and creativity."
👍2
Goethe's Phenomenology of Nature: A Juvenilization of Science | Trond Skaftnesmo
https://www.academia.edu/1206949/Goethes_Phenomenology_of_Nature_A_Juvenilization_of_Science?rhid=38084254222&swp=rr-rw-wc-105137678&nav_from=3780bfca-559f-4cb0-8ba7-9bd401735e1c
"Empirical science is not a mere collection of facts. It builds theories and frames hypotheses within those theories. Empirical theories are stated as plausible answers to questions we pose to nature. According to the Galilean-Baconian tradition within science, these questions should basically explore the causes of observed phenomena, and further be restricted to the measurable and quantitative realm. Thus, the answers are generally expected to explain the effective causes behind the actual phenomena. By framing falsifiable hypotheses, the theories are tested against the empirical foundation on which they rest. In this way we try to relieve science from false theories. Thus, we have two epistemological levels: First, the theoretical level; the scientific theory explaining the phenomena, and second, the empirical level; the phenomena or facts verifying or falsifying those theories. According to the poet and multi-scientist Johann Wolfgang von Goethe (1749-1832), there is however another way of science, namely an approach where these two levels fuse and become one. Goethe intended this approach to be a complementation of the Galilean-Baconian method, more than an alternative. He considered his "hypothesis-free method" to be a more comprehensive and secure way to understand nature. Whereas the Galilean-Baconian method aimed at explaining the effective causes of natural phenomena, in order to control and exploit nature for technical and industrial purposes, Goethe aimed at an exposition of the inherent meaning of the phenomena.We will explore, exemplify and discuss this approach with reference to the inherently Goethean phenomenology of evolution credited to the Dutch anatomist Louis Bolk (1866-1930), later commented and complemented by Stephen Jay Gould (1941-2002) and Jos Verhulst (1949 ). In the course of this presentation we will outline the Goethean approach as a method representing a juvenilization or in Bolk's terms, a fetalization of science."
https://www.academia.edu/1206949/Goethes_Phenomenology_of_Nature_A_Juvenilization_of_Science?rhid=38084254222&swp=rr-rw-wc-105137678&nav_from=3780bfca-559f-4cb0-8ba7-9bd401735e1c
"Empirical science is not a mere collection of facts. It builds theories and frames hypotheses within those theories. Empirical theories are stated as plausible answers to questions we pose to nature. According to the Galilean-Baconian tradition within science, these questions should basically explore the causes of observed phenomena, and further be restricted to the measurable and quantitative realm. Thus, the answers are generally expected to explain the effective causes behind the actual phenomena. By framing falsifiable hypotheses, the theories are tested against the empirical foundation on which they rest. In this way we try to relieve science from false theories. Thus, we have two epistemological levels: First, the theoretical level; the scientific theory explaining the phenomena, and second, the empirical level; the phenomena or facts verifying or falsifying those theories. According to the poet and multi-scientist Johann Wolfgang von Goethe (1749-1832), there is however another way of science, namely an approach where these two levels fuse and become one. Goethe intended this approach to be a complementation of the Galilean-Baconian method, more than an alternative. He considered his "hypothesis-free method" to be a more comprehensive and secure way to understand nature. Whereas the Galilean-Baconian method aimed at explaining the effective causes of natural phenomena, in order to control and exploit nature for technical and industrial purposes, Goethe aimed at an exposition of the inherent meaning of the phenomena.We will explore, exemplify and discuss this approach with reference to the inherently Goethean phenomenology of evolution credited to the Dutch anatomist Louis Bolk (1866-1930), later commented and complemented by Stephen Jay Gould (1941-2002) and Jos Verhulst (1949 ). In the course of this presentation we will outline the Goethean approach as a method representing a juvenilization or in Bolk's terms, a fetalization of science."
👍4
Newton’s Experimentum Crucis vs. Goethe’s Series of Experiments: Implications for the Underdetermination Thesis
| James Marcum
https://www.academia.edu/110958119/Newton_s_Experimentum_Crucis_vs_Goethe_s_Series_of_Experiments_Implications_for_the_Underdetermination_Thesis
"In the seventeenth century, Isaac Newton conducted experiments to determine the nature of the relationship between sunlight and colored rays. These experiments are reported in a paper presented at the Royal Society of London and published in its Transactions. According to Newton, sunlight is com posed of a “Heterogeneous mixture of differently refrangible Rays.” The theory, he claimed, is established on a single experiment, an experimentum crucis, in which he refracted sunlight with a prism into its color spectrum—each colored ray with a specific angle of refraction. With a second prism, he demonstrated that the refracted rays of color could no longer be dispersed further. Importantly, the crucial experiment permitted Newton to distinguish his theory of light and color from competing theories, such as Descartes’ notion of light as rotating globules.
In a critique of Newton’s experimentum crucis, Johann Wolfgang von Goethe claimed that Newton’s theory of color is an artificial construct of the human intellect and is not derived from nature itself. Goethe argued that Newton constructed experiments based on an artificial order rather than on a natural order. The result of Newton’s artificial method—based on an experimentum crucis—is a distorted view of nature. In contrast, Goethe devised and conducted experiments in which he altered the conditions of the experiments in terms of the prism’s refracting angle, the distance from the subject to the prism, and the object viewed. Whereas Newton concluded that colorless sunlight is primary and colored light secondary or illusory, Goethe concluded that color is not simply secondary but primary.
In a well known essay Der Versuch als Vermittler von Objekt und Subjekt, Goethe argued that experiments act as mediators between the objective and the subjective. According to Goethe, experiments allow scientists to “re-create natural or artificial
phenomena” in an attempt to bridge the gap between their ideas about a natural object and the object itself. As mediators, experiments are the means scientists often use to navigate between how they think nature functions as articulated in their theories and hypotheses (the subjective) and how nature actually functions (the objective). In other words, experiments in general allow scientists to link or connect their epistemic claims— claims that assert something about nature—with the ontological dimension of nature or “the way nature is,” especially within the confines of a laboratory experience. Based on a holistic approach, Goethe pro posed the notion of “series of experiments” as mediators. According to Goethe, an experimental series is “a series of contiguous experiments derived from one another.” In other words, the empirical outcome of one
series of experiments implies the undertaking of another series. Through sequential empirical implications, series of experiments are derived one from another and thereby act as mediators to link scientific theories and hypotheses about natural phenomena with the experience of those phenomena, especially in the laboratory. The derivation of these experiments through their empirical implications forms a singular experiment and unitary evidence for linking nature and theory. “Studied thoroughly and understood as a whole,” concluded Goethe, “these experiments could even be thought of as representing
a single experiment, a single piece of empirical evidence.”
| James Marcum
https://www.academia.edu/110958119/Newton_s_Experimentum_Crucis_vs_Goethe_s_Series_of_Experiments_Implications_for_the_Underdetermination_Thesis
"In the seventeenth century, Isaac Newton conducted experiments to determine the nature of the relationship between sunlight and colored rays. These experiments are reported in a paper presented at the Royal Society of London and published in its Transactions. According to Newton, sunlight is com posed of a “Heterogeneous mixture of differently refrangible Rays.” The theory, he claimed, is established on a single experiment, an experimentum crucis, in which he refracted sunlight with a prism into its color spectrum—each colored ray with a specific angle of refraction. With a second prism, he demonstrated that the refracted rays of color could no longer be dispersed further. Importantly, the crucial experiment permitted Newton to distinguish his theory of light and color from competing theories, such as Descartes’ notion of light as rotating globules.
In a critique of Newton’s experimentum crucis, Johann Wolfgang von Goethe claimed that Newton’s theory of color is an artificial construct of the human intellect and is not derived from nature itself. Goethe argued that Newton constructed experiments based on an artificial order rather than on a natural order. The result of Newton’s artificial method—based on an experimentum crucis—is a distorted view of nature. In contrast, Goethe devised and conducted experiments in which he altered the conditions of the experiments in terms of the prism’s refracting angle, the distance from the subject to the prism, and the object viewed. Whereas Newton concluded that colorless sunlight is primary and colored light secondary or illusory, Goethe concluded that color is not simply secondary but primary.
In a well known essay Der Versuch als Vermittler von Objekt und Subjekt, Goethe argued that experiments act as mediators between the objective and the subjective. According to Goethe, experiments allow scientists to “re-create natural or artificial
phenomena” in an attempt to bridge the gap between their ideas about a natural object and the object itself. As mediators, experiments are the means scientists often use to navigate between how they think nature functions as articulated in their theories and hypotheses (the subjective) and how nature actually functions (the objective). In other words, experiments in general allow scientists to link or connect their epistemic claims— claims that assert something about nature—with the ontological dimension of nature or “the way nature is,” especially within the confines of a laboratory experience. Based on a holistic approach, Goethe pro posed the notion of “series of experiments” as mediators. According to Goethe, an experimental series is “a series of contiguous experiments derived from one another.” In other words, the empirical outcome of one
series of experiments implies the undertaking of another series. Through sequential empirical implications, series of experiments are derived one from another and thereby act as mediators to link scientific theories and hypotheses about natural phenomena with the experience of those phenomena, especially in the laboratory. The derivation of these experiments through their empirical implications forms a singular experiment and unitary evidence for linking nature and theory. “Studied thoroughly and understood as a whole,” concluded Goethe, “these experiments could even be thought of as representing
a single experiment, a single piece of empirical evidence.”
According to Goethe the series of experiments, as mediator between the subjective and objective, provides “empirical evidence of a higher sort.” This notion of higher evidence bridges the gap between the epistemic claims of a theory and the ontological dimension of nature, through the sequence of empirical implications from one experimental series to the next. Just as in mathematics axioms are connected by their logical implications, so, claimed Goethe, in an analogous but not identical fashion, in experimental science empirical implications connect one experimental series to another: “These pieces of evidence may be expressed in concise axioms and set side by side, and as more of them emerge they may be ordered and related. Like mathematical axioms they will remain unshakable either singly or as a whole.” Thus, the greater the number of outcomes from
a variety of different experimental series that are contiguously connected and ordered through their empirical implications and that support the relevant theory, the better substantiated it is. Of course, the gap between nature and theory cannot be completely bridged no matter how many contiguously connected experiments are performed, as Goethe recognized, because no experimental evidence captures completely the complexity of causal interactions present in nature.
Goethe’s notions of series of experiments as mediator and of higher empirical evidence have important implications for the contemporary philosophical underdetermination thesis. Briefly, the thesis states that experimental evidence is inadequate to choose among competing theories. However, in light of Goethe’s notions, empirical evidence can support, to diverse degrees, competing theories because portions of that evidence support each of the competing theories dissimilarly. Although the evidence is shared by the competing theories, it is not quite the same from one researcher or research team to another. Rather, there is generally significant development of empirical evidence as scientists vary the type and increase the number of experiments performed to substantiate or justify a theory.
In light of Goethe’s notions of series of experiments and of higher evidence, then, the issues raised by the underdetermination thesis, at least a weaker version of it, are resolved in terms of the higher evidence from serial experimentation in choosing a
theory over its competitors. Of course, a stronger thesis of underdetermination remains unresolved since, in principle, an empirically equivalent theory can always be pro posed. Furthermore, analysis of Newton’s experiments reveals that his experiments on the nature of light and color also formed a series of experiments, although a limited series, with the generation of higher empirical evidence. For Goethe, “the greatest accomplishments come from those who never tire in exploring and working out every possible aspect and modification of every bit of empirical evidence, every experiment.” Only then can scientists choose with confidence, although only provisionally, a theory.
a variety of different experimental series that are contiguously connected and ordered through their empirical implications and that support the relevant theory, the better substantiated it is. Of course, the gap between nature and theory cannot be completely bridged no matter how many contiguously connected experiments are performed, as Goethe recognized, because no experimental evidence captures completely the complexity of causal interactions present in nature.
Goethe’s notions of series of experiments as mediator and of higher empirical evidence have important implications for the contemporary philosophical underdetermination thesis. Briefly, the thesis states that experimental evidence is inadequate to choose among competing theories. However, in light of Goethe’s notions, empirical evidence can support, to diverse degrees, competing theories because portions of that evidence support each of the competing theories dissimilarly. Although the evidence is shared by the competing theories, it is not quite the same from one researcher or research team to another. Rather, there is generally significant development of empirical evidence as scientists vary the type and increase the number of experiments performed to substantiate or justify a theory.
In light of Goethe’s notions of series of experiments and of higher evidence, then, the issues raised by the underdetermination thesis, at least a weaker version of it, are resolved in terms of the higher evidence from serial experimentation in choosing a
theory over its competitors. Of course, a stronger thesis of underdetermination remains unresolved since, in principle, an empirically equivalent theory can always be pro posed. Furthermore, analysis of Newton’s experiments reveals that his experiments on the nature of light and color also formed a series of experiments, although a limited series, with the generation of higher empirical evidence. For Goethe, “the greatest accomplishments come from those who never tire in exploring and working out every possible aspect and modification of every bit of empirical evidence, every experiment.” Only then can scientists choose with confidence, although only provisionally, a theory.
🔥2
You know this channel has been around since August 2021?
Since then I have made over 4000 posts.
If you want to start from the beginning you can start here: https://t.me/aetherforceposts/13
Share the Aether Force channel with your friends and similar groups if they may be interested in the material:
t.me/aetherforceposts
Since then I have made over 4000 posts.
If you want to start from the beginning you can start here: https://t.me/aetherforceposts/13
Share the Aether Force channel with your friends and similar groups if they may be interested in the material:
t.me/aetherforceposts
Telegram
Aether Force
Black Waves – Their Meaning & Value by Gerry Vassilatos
BLACK WAVES — THEIR MEANING & VALUE
by Gerry Vassilatos
The messages engraved in the heart of certain discoveries and inventions, many times, may take years of earnest search to unlock. I believe this…
BLACK WAVES — THEIR MEANING & VALUE
by Gerry Vassilatos
The messages engraved in the heart of certain discoveries and inventions, many times, may take years of earnest search to unlock. I believe this…
❤4🔥1
Metamorphic Leaves | Sabri Gokmen
https://www.academia.edu/113350908/Metamorphic_Leaves
"This article introduces an algorithm influenced by Goethe’s concept of metamorphosis capable of generating a wide range of parametric leaf forms. Metamorphosis is defined as alternating stages of expansion and contraction that are observable during the development of flowering plants. This principle is extended toward leaf morphology, where two main developmental trajectories are outlined. By formulating simple two-dimensional geometric rules, the author tests the concept of metamorphosis on parametric leaf forms."
https://www.academia.edu/113350908/Metamorphic_Leaves
"This article introduces an algorithm influenced by Goethe’s concept of metamorphosis capable of generating a wide range of parametric leaf forms. Metamorphosis is defined as alternating stages of expansion and contraction that are observable during the development of flowering plants. This principle is extended toward leaf morphology, where two main developmental trajectories are outlined. By formulating simple two-dimensional geometric rules, the author tests the concept of metamorphosis on parametric leaf forms."
👍2
Rediscovering Goethe’s Concept of Polarity: A New Direction for Architectural Morphogenesis | Sabri Gokmen
https://www.academia.edu/113351469/Rediscovering_Goethe_s_Concept_of_Polarity_A_New_Direction_for_Architectural_Morphogenesis
"This paper will introduce Goethe’s concept of polarity to discuss its theoretical and computational implications on natural and architectural morphogenesis. Polarity, as a dualist principle, is found in most of Goethe’s body of works, particularly in his treatise on colour and botanical writings. This concept is explored from a morphogenetic perspective to reconsider Goethe’s engagement with natural sciences during Enlightenment where he transfers his ideas on form and growth to architecture. In the first part, morphogenesis as a concept for the study of organic growth is discussed that combines modern research in biology and architecture. In the second part, Goethean morphology as a unified science founded on polar principles is presented to discuss a historical perspective to morphogenesis. Here, Goethe’s concept of metamorphosis is highlighted as a principle founded on polarity, formulated with alternating cycles of expansion and contraction. These concepts are explicated using an algorithmic study of leaf development to discuss its morphogenetic application to the study of form and growth in natural morphogenesis. In the last part, Goethe’s morphological views are extended towards architecture within the framework of organicism where his ideas on the polarity are directed towards the aesthetic reception and formal development of the built environment. Comparing the form of two Gothic cathedrals, Laon and Noyon, the paper will offer a developmental model based on the concept of metamorphosis as an alternative trajectory for morphological research in architecture."
...
"As a transdisciplinary and theory-laden concept, polarity is not only limited to natural sciences but is extendable towards an architecture where aspects of growth, symmetry and computation could be investigated in a morphogenetic framework. As a preliminary case study, the comparison of Laon and Noyon cathedrals shows how Goethe’s concept of metamorphosis can be extended towards architectural formal computation. This computational study features the utility of abstraction to simplify geometric and stylistic representation and employs sequential morphing techniques that can gradually transform the complexity of a simple form using repetitive and parametric geometric rules. While the presented developmental models use procedural modelling as a technique to visualize metamorphosis of built forms, future models can employ algorithms to further investigate the computational capacity of polarity on various historical examples to develop comprehensive theoretical views to architectural morphology."
https://www.academia.edu/113351469/Rediscovering_Goethe_s_Concept_of_Polarity_A_New_Direction_for_Architectural_Morphogenesis
"This paper will introduce Goethe’s concept of polarity to discuss its theoretical and computational implications on natural and architectural morphogenesis. Polarity, as a dualist principle, is found in most of Goethe’s body of works, particularly in his treatise on colour and botanical writings. This concept is explored from a morphogenetic perspective to reconsider Goethe’s engagement with natural sciences during Enlightenment where he transfers his ideas on form and growth to architecture. In the first part, morphogenesis as a concept for the study of organic growth is discussed that combines modern research in biology and architecture. In the second part, Goethean morphology as a unified science founded on polar principles is presented to discuss a historical perspective to morphogenesis. Here, Goethe’s concept of metamorphosis is highlighted as a principle founded on polarity, formulated with alternating cycles of expansion and contraction. These concepts are explicated using an algorithmic study of leaf development to discuss its morphogenetic application to the study of form and growth in natural morphogenesis. In the last part, Goethe’s morphological views are extended towards architecture within the framework of organicism where his ideas on the polarity are directed towards the aesthetic reception and formal development of the built environment. Comparing the form of two Gothic cathedrals, Laon and Noyon, the paper will offer a developmental model based on the concept of metamorphosis as an alternative trajectory for morphological research in architecture."
...
"As a transdisciplinary and theory-laden concept, polarity is not only limited to natural sciences but is extendable towards an architecture where aspects of growth, symmetry and computation could be investigated in a morphogenetic framework. As a preliminary case study, the comparison of Laon and Noyon cathedrals shows how Goethe’s concept of metamorphosis can be extended towards architectural formal computation. This computational study features the utility of abstraction to simplify geometric and stylistic representation and employs sequential morphing techniques that can gradually transform the complexity of a simple form using repetitive and parametric geometric rules. While the presented developmental models use procedural modelling as a technique to visualize metamorphosis of built forms, future models can employ algorithms to further investigate the computational capacity of polarity on various historical examples to develop comprehensive theoretical views to architectural morphology."
❤2
The Five Platonic Solids in Radiesthesia Practice | José Melo
https://www.youtube.com/watch?v=Ome5DAAjpbc
Professor José Melo, a radiesthesist and radionic practitioner teaches the practical use of sacred geometry within radionic treatment work.
The five Platonic solids, each assigned to a classical element, are placed directly within radionic treatment setups as energetic tools. Each solid carries a distinct function, and that function does not change based on size. A piece the size of a fingernail moves the same energy as one that fills a palm.
The hexahedron, or cube, holds the Earth element. It speaks to materiality, fixation, and things made concrete. When a practitioner wants to ground a process or move a goal from intention into physical reality, the cube goes alongside the treatment graphic and the written intention. The cube fixes things.
The tetrahedron carries Fire: desire, will, and the drive to act. A stagnant family, a couple at odds, a company that has stopped moving; all of these call for the tetrahedron. It gets things flowing again.
The octahedron governs Air. Creativity, mental clarity, the ability to breathe through a problem. In practice, a pendulum determines the optimal position for placing it over a treatment graphic. An anti-depressor chart is one clear example, where psychological and mental concerns need that kind of oxygenating quality. The practitioner reads the pendulum, finds the position, and places the octahedron there.
The icosahedron, with 20 faces, holds Water: transformation, fluidity, emotional rebalancing. Practitioners reach for it in health treatments, emotional re-equilibration work, Chartres labyrinth sessions, and Tree of Life cleansing processes. Water, as Melo describes it, is usable in nearly everything.
The dodecahedron, with 12 faces, corresponds to Ether, the Self, the perception of cosmos and spiritual development. Practitioners use it with Fiat Lux and Cosmos 2000 graphics for deepening that work. One point made in the video warrants a direct correction: a widespread misconception places the dodecahedron inside the Flower of Life alongside the other four solids. It does not belong there. The remaining four can be geometrically located within the Flower of Life, which serves as the foundational reference for that portion of the system.
On a radionic table, all five solids together maintain a continuous balance of Earth, Fire, Air, Water, and Ether around the operator. When a table is focused on a specific area such as health, relationships, or business, the practitioner selects only the solids relevant to that work. The principle holds across every configuration: size changes nothing. Function stays constant.
https://www.youtube.com/watch?v=Ome5DAAjpbc
Professor José Melo, a radiesthesist and radionic practitioner teaches the practical use of sacred geometry within radionic treatment work.
The five Platonic solids, each assigned to a classical element, are placed directly within radionic treatment setups as energetic tools. Each solid carries a distinct function, and that function does not change based on size. A piece the size of a fingernail moves the same energy as one that fills a palm.
The hexahedron, or cube, holds the Earth element. It speaks to materiality, fixation, and things made concrete. When a practitioner wants to ground a process or move a goal from intention into physical reality, the cube goes alongside the treatment graphic and the written intention. The cube fixes things.
The tetrahedron carries Fire: desire, will, and the drive to act. A stagnant family, a couple at odds, a company that has stopped moving; all of these call for the tetrahedron. It gets things flowing again.
The octahedron governs Air. Creativity, mental clarity, the ability to breathe through a problem. In practice, a pendulum determines the optimal position for placing it over a treatment graphic. An anti-depressor chart is one clear example, where psychological and mental concerns need that kind of oxygenating quality. The practitioner reads the pendulum, finds the position, and places the octahedron there.
The icosahedron, with 20 faces, holds Water: transformation, fluidity, emotional rebalancing. Practitioners reach for it in health treatments, emotional re-equilibration work, Chartres labyrinth sessions, and Tree of Life cleansing processes. Water, as Melo describes it, is usable in nearly everything.
The dodecahedron, with 12 faces, corresponds to Ether, the Self, the perception of cosmos and spiritual development. Practitioners use it with Fiat Lux and Cosmos 2000 graphics for deepening that work. One point made in the video warrants a direct correction: a widespread misconception places the dodecahedron inside the Flower of Life alongside the other four solids. It does not belong there. The remaining four can be geometrically located within the Flower of Life, which serves as the foundational reference for that portion of the system.
On a radionic table, all five solids together maintain a continuous balance of Earth, Fire, Air, Water, and Ether around the operator. When a table is focused on a specific area such as health, relationships, or business, the practitioner selects only the solids relevant to that work. The principle holds across every configuration: size changes nothing. Function stays constant.
YouTube
E agora José? Como usar Sólidos Platônicos em Radiestesia?
Sou José Mello, Radiestesista e Radionicista, falando à partir do Espaço Revivver.
Nosso trabalho está diretamente ligado a área de Harmonização de Seres vivos e seus ambientes, tratando de temas como: Saúde, Espiritualidade, Negócios, Relacionamentos, entre…
Nosso trabalho está diretamente ligado a área de Harmonização de Seres vivos e seus ambientes, tratando de temas como: Saúde, Espiritualidade, Negócios, Relacionamentos, entre…
❤3👍2
Energetic Observations on a Chestahedron | Frank Silvis
Frank Silvis is a Dutch radiesthesist whose work focuses on measuring the qualitative properties of geometric forms, particularly the chestahedron, through pendulum and dowsing rod techniques rooted in the Anthroposophic tradition.
A beechwood chestahedron, held near a person's body, raised that individual's life energy reading sharply. This kind of measurement falls under radiesthesia, from the Latin radius (ray/radiation) and the Greek aesthanomai (to feel, to perceive, to sense), practiced here through pendulum and dowsing rod within a shielded energetic space prepared through a spiritual tuning process. Assessed across life energy content, positivity, the maker's intention, negative information, and electromagnetic load, the form read clean across every category: life energy far above ordinary objects, the maker's intention near the highest possible mark, and both negative information and electromagnetic load close to zero.
In a cleared conservatory, Hartmann and Curry grid lines improved measurably after the chestahedron was placed at the room's west center, then reverted fully within roughly ninety seconds of removal. When held in various orientations, the dowsing rods opened outward well beyond arm's reach, the distance shifting depending on how the form was turned, the rods tracing the shape of what the field was doing.
That controlled setting gave way to something more ordinary: a neighbor's home, a WiFi router inside a meter cupboard, and the chestahedron placed directly on top of it. At the cupboard itself, the Bovis reading shifted from deep negative to strongly positive, and the third chakra, identified as the chakra most burdened by electromagnetic radiation, moved from heavily loaded to calm. Across the living room and the Hartmann grid's west lines, negative polarity dropped to zero, the pathological score fell by more than half, and the dowsing rod angle tuned to electromagnetic load widened considerably, indicating reduced burden throughout the home.
Bibliography
- Energetic Observations on a Chestahedron, Frank Silvis, December 28, 2020
https://www.chestahedron.nl/images/pdf/2020.12.28%20Energetic%20observations%20on%20a%20Chestahedron%20definitive.pdf
- The Energetic Effect of a Chestahedron Part 2, Frank Silvis, January 13, 2021
https://www.chestahedron.nl/images/pdf/2021.01.13%20Energetic%20observations%20on%20a%20Chestahedron%20part%202%20definitive.pdf
Frank Silvis is a Dutch radiesthesist whose work focuses on measuring the qualitative properties of geometric forms, particularly the chestahedron, through pendulum and dowsing rod techniques rooted in the Anthroposophic tradition.
A beechwood chestahedron, held near a person's body, raised that individual's life energy reading sharply. This kind of measurement falls under radiesthesia, from the Latin radius (ray/radiation) and the Greek aesthanomai (to feel, to perceive, to sense), practiced here through pendulum and dowsing rod within a shielded energetic space prepared through a spiritual tuning process. Assessed across life energy content, positivity, the maker's intention, negative information, and electromagnetic load, the form read clean across every category: life energy far above ordinary objects, the maker's intention near the highest possible mark, and both negative information and electromagnetic load close to zero.
In a cleared conservatory, Hartmann and Curry grid lines improved measurably after the chestahedron was placed at the room's west center, then reverted fully within roughly ninety seconds of removal. When held in various orientations, the dowsing rods opened outward well beyond arm's reach, the distance shifting depending on how the form was turned, the rods tracing the shape of what the field was doing.
That controlled setting gave way to something more ordinary: a neighbor's home, a WiFi router inside a meter cupboard, and the chestahedron placed directly on top of it. At the cupboard itself, the Bovis reading shifted from deep negative to strongly positive, and the third chakra, identified as the chakra most burdened by electromagnetic radiation, moved from heavily loaded to calm. Across the living room and the Hartmann grid's west lines, negative polarity dropped to zero, the pathological score fell by more than half, and the dowsing rod angle tuned to electromagnetic load widened considerably, indicating reduced burden throughout the home.
Bibliography
- Energetic Observations on a Chestahedron, Frank Silvis, December 28, 2020
https://www.chestahedron.nl/images/pdf/2020.12.28%20Energetic%20observations%20on%20a%20Chestahedron%20definitive.pdf
- The Energetic Effect of a Chestahedron Part 2, Frank Silvis, January 13, 2021
https://www.chestahedron.nl/images/pdf/2021.01.13%20Energetic%20observations%20on%20a%20Chestahedron%20part%202%20definitive.pdf
⚡3❤2🔥1
Aether Force pinned «You know this channel has been around since August 2021? Since then I have made over 4000 posts. If you want to start from the beginning you can start here: https://t.me/aetherforceposts/13 Share the Aether Force channel with your friends and similar…»
Microbial Transmutation | Vladimir I. Vysotskii & Alla A. Kornilova
https://rexresearch.com/VysotskiiTransmutation/VysotskiiBiolTransmutation.html
For over three decades, Vladimir I. Vysotskii, nuclear physicist and Head of the Theoretical Radiophysics Department at Kiev National Shevchenko University, and microbiologist Alla A. Kornilova of Lomonosov Moscow State University have been accumulating experimental and theoretical evidence that growing microbial cultures drive low-energy nuclear transmutation of both stable and radioactive isotopes. Two centuries of precursor observations by Vauquelin, Von Herzeele, Baranger, and Kervran had already documented anomalous elemental shifts in living organisms, but none of them had access to the isotopic analytical methods that nuclear physics actually requires, and Kervran in particular proposed reversible reactions and enzyme-driven nucleon transfers that are incompatible with energy conservation laws. Vysotskii and Kornilova broke from that tradition by designing experiments around reactions whose rare daughter isotopes are unambiguously identifiable by Mössbauer spectroscopy and mass spectrometry. The underlying logic is biological as much as physical: transmutation only proceeds when the organism needs the product element and cannot find it in the growth medium, making the reaction both metabolically motivated and thermodynamically favorable. The shift from single-strain pure cultures to syntrophic microbiological associations, communities of thousands of organism types that function collectively as a single macroorganism with shared metabolic defense, raised transmutation efficiency by up to 100 times. These associations sustain active growth for weeks under high-radiation, high-acidity conditions where no monoculture survives. The benchmark result is the transmutation of Cs¹³⁷ into stable Ba¹³⁸: a natural half-life of 30 years, compressed first to 310 days with an optimal association and calcium salt additive, and subsequently to complete deactivation within 30 to 50 days through further optimization, with a 70% concentration drop recorded in just 14 days under the best experimental conditions.
What makes these numbers physically possible is the central question, and the answer cuts against the standard assumption that nuclear reactions at low energy are negligibly improbable. In any actively growing biological object, at cell division, DNA replication, ion-channel entry, and inside mitochondria, non-stationary potential nano-wells form continuously and spontaneously. Particles localized in these wells behave as non-stationary oscillators. Under the modified Schrödinger-Robertson uncertainty relations (rather than the standard Heisenberg relations), the correlation coefficients governing energy and momentum fluctuations can approach unity, generating kinetic energy fluctuations in the range of tens to hundreds of keV. These coherent correlated states raise the transparency of the Coulomb barrier (the repulsive nuclear force that ordinarily prevents low-energy particles from reaching each other) from negligibly small values to ranges consistent with the measured transmutation rates. No radioactive daughter isotopes form, and gamma radiation is strongly suppressed, distinguishing these reactions entirely from classical high-energy nuclear products. The growth front of a living biological object is, from this standpoint, a self-renewing system of disposable nanoreactors. Each one is a transient site of nuclear catalysis, operating automatically wherever growth occurs. What has historically been called "biological transmutation" is not a mystical or enzymatic process. It is ordinary nuclear physics, running in a dynamic environment that happens to continuously generate the exact structural conditions required for coherent correlated states to form.
https://rexresearch.com/VysotskiiTransmutation/VysotskiiBiolTransmutation.html
For over three decades, Vladimir I. Vysotskii, nuclear physicist and Head of the Theoretical Radiophysics Department at Kiev National Shevchenko University, and microbiologist Alla A. Kornilova of Lomonosov Moscow State University have been accumulating experimental and theoretical evidence that growing microbial cultures drive low-energy nuclear transmutation of both stable and radioactive isotopes. Two centuries of precursor observations by Vauquelin, Von Herzeele, Baranger, and Kervran had already documented anomalous elemental shifts in living organisms, but none of them had access to the isotopic analytical methods that nuclear physics actually requires, and Kervran in particular proposed reversible reactions and enzyme-driven nucleon transfers that are incompatible with energy conservation laws. Vysotskii and Kornilova broke from that tradition by designing experiments around reactions whose rare daughter isotopes are unambiguously identifiable by Mössbauer spectroscopy and mass spectrometry. The underlying logic is biological as much as physical: transmutation only proceeds when the organism needs the product element and cannot find it in the growth medium, making the reaction both metabolically motivated and thermodynamically favorable. The shift from single-strain pure cultures to syntrophic microbiological associations, communities of thousands of organism types that function collectively as a single macroorganism with shared metabolic defense, raised transmutation efficiency by up to 100 times. These associations sustain active growth for weeks under high-radiation, high-acidity conditions where no monoculture survives. The benchmark result is the transmutation of Cs¹³⁷ into stable Ba¹³⁸: a natural half-life of 30 years, compressed first to 310 days with an optimal association and calcium salt additive, and subsequently to complete deactivation within 30 to 50 days through further optimization, with a 70% concentration drop recorded in just 14 days under the best experimental conditions.
What makes these numbers physically possible is the central question, and the answer cuts against the standard assumption that nuclear reactions at low energy are negligibly improbable. In any actively growing biological object, at cell division, DNA replication, ion-channel entry, and inside mitochondria, non-stationary potential nano-wells form continuously and spontaneously. Particles localized in these wells behave as non-stationary oscillators. Under the modified Schrödinger-Robertson uncertainty relations (rather than the standard Heisenberg relations), the correlation coefficients governing energy and momentum fluctuations can approach unity, generating kinetic energy fluctuations in the range of tens to hundreds of keV. These coherent correlated states raise the transparency of the Coulomb barrier (the repulsive nuclear force that ordinarily prevents low-energy particles from reaching each other) from negligibly small values to ranges consistent with the measured transmutation rates. No radioactive daughter isotopes form, and gamma radiation is strongly suppressed, distinguishing these reactions entirely from classical high-energy nuclear products. The growth front of a living biological object is, from this standpoint, a self-renewing system of disposable nanoreactors. Each one is a transient site of nuclear catalysis, operating automatically wherever growth occurs. What has historically been called "biological transmutation" is not a mystical or enzymatic process. It is ordinary nuclear physics, running in a dynamic environment that happens to continuously generate the exact structural conditions required for coherent correlated states to form.
👍3
Important Information on Magnet Therapy | OmegaZZ
https://www.youtube.com/watch?v=VlMCLBssNDI
Albert Roy Davis and Walter C. Rawls tested each magnetic pole on living systems, plants and animals alike, and found that the two poles produce fundamentally opposite biological effects. The south pole, which Davis and Rawls called "biomagnetic north," heals. The north pole, which they called "biomagnetic south," harms under prolonged or intense exposure. That naming reversal trips up nearly everyone who encounters their work, so for clarity: every reference to the healing pole means scientific south, the negative pole, the one that does not point toward geographic north.
The south pole heals reliably. The north pole stimulates, sometimes usefully, but overexposure to it, particularly near the head, produces the kind of wired sleeplessness you'd expect from three cups of coffee at midnight. It is not a pole to use casually or at high field strength without knowing exactly what you are doing.
When it comes to selecting a magnet for therapeutic use, field strength at the target tissue matters most. A clinician with decades of successful practice puts the minimum effective threshold at 25 gauss measured at the treatment site, not at the magnet surface. A large ferrite magnet reaches that threshold at roughly 15 cm of distance. Large neodymium magnets are stronger at the surface but their field drops off faster, and they are genuinely dangerous around metal objects. For most people, the ferrite magnet is the right starting point.
Hemispherical bowl arrays built from densely packed cube magnets extend the 25-gauss threshold considerably further and feel energetically distinct from flat magnets of equivalent surface strength. The geometry follows the golden ratio half-sphere, which produces a field shaped like the top of an egg, and the field self-balances into a single coherent vortex regardless of minor misalignments between individual magnets. Magnet density inside the bowl matters far more than precise arrangement. The denser the pack, the stronger and deeper the field reaches. For treating inner organs or large surface areas, that depth is the point.
https://www.youtube.com/watch?v=VlMCLBssNDI
Albert Roy Davis and Walter C. Rawls tested each magnetic pole on living systems, plants and animals alike, and found that the two poles produce fundamentally opposite biological effects. The south pole, which Davis and Rawls called "biomagnetic north," heals. The north pole, which they called "biomagnetic south," harms under prolonged or intense exposure. That naming reversal trips up nearly everyone who encounters their work, so for clarity: every reference to the healing pole means scientific south, the negative pole, the one that does not point toward geographic north.
The south pole heals reliably. The north pole stimulates, sometimes usefully, but overexposure to it, particularly near the head, produces the kind of wired sleeplessness you'd expect from three cups of coffee at midnight. It is not a pole to use casually or at high field strength without knowing exactly what you are doing.
When it comes to selecting a magnet for therapeutic use, field strength at the target tissue matters most. A clinician with decades of successful practice puts the minimum effective threshold at 25 gauss measured at the treatment site, not at the magnet surface. A large ferrite magnet reaches that threshold at roughly 15 cm of distance. Large neodymium magnets are stronger at the surface but their field drops off faster, and they are genuinely dangerous around metal objects. For most people, the ferrite magnet is the right starting point.
Hemispherical bowl arrays built from densely packed cube magnets extend the 25-gauss threshold considerably further and feel energetically distinct from flat magnets of equivalent surface strength. The geometry follows the golden ratio half-sphere, which produces a field shaped like the top of an egg, and the field self-balances into a single coherent vortex regardless of minor misalignments between individual magnets. Magnet density inside the bowl matters far more than precise arrangement. The denser the pack, the stronger and deeper the field reaches. For treating inner organs or large surface areas, that depth is the point.
YouTube
Important informations on Magnet Therapy 🧲
In this video I give you important information on what magnets to use for magnet therapy and how to use them correctly.
Link to the 3D printing files for the bowls:
thingiverse.com/thing:6821428
MY SHOP: etsy.com/shop/Omegazz
CONTACT: omegazz111@gmail.com…
Link to the 3D printing files for the bowls:
thingiverse.com/thing:6821428
MY SHOP: etsy.com/shop/Omegazz
CONTACT: omegazz111@gmail.com…
🙏5❤3