πŸŽ“πŸ…ŸπŸ…—πŸ…¨πŸ…’πŸ…˜πŸ…’πŸ…’ πŸ“š (𝐏𝐇𝐃 𝐏𝐫𝐨𝐣𝐞𝐜𝐭𝐬 πŒπ“πžπœπ‘ & 𝐏𝐨𝐬𝐭𝐝𝐨𝐜)
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Vikram Singh Lodha
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Post Doc Opportunity |

Fluid Mechanics |

Amrita

Vishwa Vidyapeetham, Coimbatore

Current openings:

I am inviting applications for Post Doc positions under my supervision at Amrita Vishwa Vidyapeetham, Coimbatore, in cutting-edge areas of Fluid Mechanics.

Research Focus Areas:

a) Rotating Convection [Broad area: Geophysical/Planetary Fluid Dynamics]

b) Transport of passive (e.g. microplastic) / active (e.g. microswimmers) particles with background flow [Broad area: Environmental Fluid dynamics/Collective motion/Biological flows]

c) Self-organization behaviour of active particles [Broad area: Collective motion]

Eligibility: PhD in Fluid mechanics related topics in Sciences (Mathematics / Physics) or in Engineering (Mechanical / Civil/Aerospace Engineering or any allied branches)

How to Apply: Please send your CV

to: ak_banerjee@cb.amrita.edu/ayanbanerjeel@gmail.com will reach out if your profile aligns with my research direction.

Personal website: https://lnkd.in/gy7eGdYv

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Vikram Singh Lodha
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The Royal Swedish Academy of Sciences has decided to award the 2025 Nobel Prize in Physics to John Clarke, Michel H. Devoret and John M. Martinis β€œfor the discovery of macroscopic quantum mechanical tunnelling and energy quantisation in an electric circuit.”

This year’s physics laureates’ experiments on a chip revealed quantum physics in action.

A major question in physics is the maximum size of a system that can demonstrate quantum mechanical effects. The 2025 physics laureates conducted experiments with an electrical circuit in which they demonstrated both quantum mechanical tunnelling and quantised energy levels in a system big enough to be held in the hand.

Quantum mechanics allows a particle to move straight through a barrier, using a process called tunnelling. As soon as large numbers of particles are involved, quantum mechanical effects usually become insignificant. The laureates’ experiments demonstrated that quantum mechanical properties can be made concrete on a macroscopic scale.

In 1984 and 1985, John Clarke, Michel H. Devoret and John M. Martinis conducted a series of experiments with an electronic circuit built of superconductors, components that can conduct a current with no electrical resistance. In the circuit, the superconducting components were separated by a thin layer of non-conductive material, a setup known as a Josephson junction. By refining and measuring all the various properties of their circuit, they were able to control and explore the phenomena that arose when they passed a current through it. Together, the charged particles moving through the superconductor comprised a system that behaved as if they were a single particle that filled the entire circuit.

This macroscopic particle-like system is initially in a state in which current flows without any voltage. The system is trapped in this state, as if behind a barrier that it cannot cross. In the experiment the system shows its quantum character by managing to escape the zero-voltage state through tunnelling. The system’s changed state is detected through the appearance of a voltage.

The laureates could also demonstrate that the system behaves in the manner predicted by quantum mechanics – it is quantised, meaning that it only absorbs or emits specific amounts of energy.

The transistors in computer microchips are one example of the established quantum technology that surrounds us. This year’s Nobel Prize in Physics has provided opportunities for developing the next generation of quantum technology, including quantum cryptography, quantum computers, and quantum sensors.

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NIT Karnataka Admission to M.Tech (Research) and Ph.D. Programmes (2025-26, Winter Session).

M.Tech., M.B.A, M.Sc. and Ph.D admissions 2025-26 | NITK Surathkal https://share.google/Q3i1byhxatHpbX5uN

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Admission to Ph.D. Programme 2025-26 (Winter Session)

NISER, Bhubaneswar invites online applications for admission to the Ph.D. programme beginning in January 2026 in the following schools:

1. School of Biological Sciences (SBS)

2. School of Chemical Sciences (SCS)

3. School of Computer Sciences (SCOS)

4. School of Earth and Planetary Sciences (SEPS)

5. School of Mathematical Sciences (SMS)

6. School of Physical Sciences (SPS)

Application Deadline: 8 November 2025

More details: https://tinyurl.com/2zm9tkub

Online Application Portal: https://ims.niser.ac.in/OnlineApplicationRegistrationAndLogin.action

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The Department of Astronomy, Astrophysics and Space Engineering at IIT Indore is inviting applications for its Ph.D. program for the November 2025 session!

Our research areas include Galaxies & AGN, Cosmology, Compact Objects & Transients, Instrumentation & Space Technology, Solar Physics & Space Weather, and Remote Sensing & Atmospheric Science.

Key Dates:

Application Deadline: November 1, 2025

Written Test: November 10, 2025

Interviews: November 10 & 11, 2025

The selection process will be held in person at the IIT Indore campus.

To learn more about our faculty and their research, visit our website: https://lnkd.in/eu4jpt7Q

For detailed information and to apply, visit:

https://lnkd.in/eB8intD4

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