Making a big, life‑changing decision? Seven steps to consider
Source: Phys.org
@EverythingScience
Should you marry that person? Quit a steady career to retrain? Move across the country, away from aging parents? Sit with any of these and watch your mind spin. You weigh what you'd gain against what you'd lose. You run the numbers. And still no answer arrives.
Big decisions do this to us. They are rare, life-shaping and hard to undo, and they refuse to be solved like a sum.
Researchers recently used AI to analyze more than 100,000 real dilemmas posted online. They found choices pulled in dozens of directions at once, far from the tidy two or three variables we imagine. Big decisions are messier than they look.
I study how people make life's biggest decisions. In research, I asked more than 600 people to describe their 10 biggest decisions. Thousands more have since mapped their own choices in an ongoing study. Marriage, children, career changes, house purchases and relocations come up again and again.
My study didn't hand me a checklist you can use when faced with a big decision. But it did show what separates the decisions people are later glad of from those they regretted. Read alongside the wider research, those factors fall into a rough order worth trying.
Source: Phys.org
@EverythingScience
Phys.org
Making a big, life‑changing decision? Seven steps to consider
Should you marry that person? Quit a steady career to retrain? Move across the country, away from aging parents? Sit with any of these and watch your mind spin. You weigh what you'd gain against what ...
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What early modern literature can teach us about neurodivergence
Source: Phys.org
@EverythingScience
Does it seem as though more people are coming out as neurodivergent these days? Perhaps you've heard complaints that social media—particularly TikTok—is driving a trend. Or maybe you've encountered the suggestion that neurodivergence has somehow become fashionable, a label people adopt for attention, status or belonging.
For neurodivergent people, these claims can be deeply dismissive. They reduce complex experiences and real struggles to a passing cultural craze.
My research suggests something quite different. Far from being a modern phenomenon, neurodivergence has a long history. In other words, people whose ways of thinking, sensing or behaving differed from social expectations have always existed. Members of my research project have described discovering these historical figures as like finding neurodivergent ancestors.
Of course, this is not about diagnosing people who lived centuries ago with autism, ADHD or other conditions. Diagnostic categories have their own history. They change over time and can be shaped by specific cultural and geographical contexts. Moreover, I am not a doctor or a psychologist, and I am not interested in retrospectively diagnosing historical people.
What interests me is something broader: the many people in the past who were understood—by others or by themselves—as different.
One example is Hannah Allen. She was an English widow who published an account of her experiences in 1683. She wrote about periods of profound melancholy and hearing voices, drawing on journal entries she kept during those difficult years. Stories like Allen's remind us that people have long searched for language to describe minds and experiences that did not fit comfortably within accepted norms.
People have always adapted and reshaped the language available to them. Today, clinical terms regularly spill into everyday conversation. People talk about being "anxious" about an exam or "depressed" by bad weather, without necessarily claiming a diagnosis. Literature has always transformed and enriched our understanding of medical and psychological concepts.
In my work, I define neurodivergence as ways of thinking, sensing or behaving that diverge from social expectations. What's also important is that those expectations vary across time and place. Behavior regarded as unusual in one context may be entirely acceptable in another.
Source: Phys.org
@EverythingScience
Phys.org
What early modern literature can teach us about neurodivergence
Does it seem as though more people are coming out as neurodivergent these days?
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Think you'd never eat bugs? Research says you might—and you may even like it
Source: Phys.org
@EverythingScience
People who are hesitant to try insect-based foods may enjoy the experience more than they expect—and can become more open to expanding their diets in the future, according to research published by the American Psychological Association.
The study, published in the Journal of Neuroscience, Psychology, and Economics, examined how consumers respond emotionally and physically to insect-based foods, which are increasingly being explored as a sustainable alternative to traditional animal protein sources. For example, the European Union officially recognized insects as a novel food source in 2018 and has approved several insect food sources since then. The lineup includes yellow mealworms, migratory locusts, house crickets and lesser mealworms sold frozen, dried or even powdered.
Lead author Andreia C. B. Ferreira, a Ph.D. candidate at the University of Beira Interior in Portugal, and her colleagues wanted to find out more about how consumers might respond to these new options. To do so, they combined traditional surveys with neuroscience tools that measured participants' brain activity and heart rate while they sampled insect food products.
The study involved 38 adults in Portugal between the ages of 18 and 55 who had never tried insect-based foods before. Participants first completed a survey about their awareness and opinions of insect-based products. They then sampled both an insect protein bar and a cereal bar while researchers recorded their physiological responses using electroencephalography (EEG) and electrocardiography (ECG).
The researchers expected participants to have low awareness of insect-based foods, prefer the cereal bar and show stronger physiological reactions to the insect-based product. Instead, the findings revealed that people were often more curious and receptive than expected.
Source: Phys.org
@EverythingScience
Phys.org
Think you'd never eat bugs? Research says you might—and you may even like it
People who are hesitant to try insect-based foods may enjoy the experience more than they expect—and can become more open to expanding their diets in the future, according to research published by the ...
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'High-res' is the secret to finding alien life with the next great space telescope
Source: Phys.org
@EverythingScience
In addition to molecules, it can also help scientists track the weather on these exoplanets. By measuring precise Doppler shifts in these spectral lines, researchers can determine orbital velocities—in other words, how weather is moving on a planet light-years away. Doing so will require a coronagraph to block out the light coming directly from the exoplanet's star, but no coronagraph is perfect and will always let some starlight through. Higher-resolution spectrographs will make it much easier to separate that "noise" from the signal of the light from an actual planet.
This all sounds great in theory, so why haven't we done it already? Simply put, the technology was too big, too heavy and too overcome with noise to be useful. Weight is a critical factor in any telescope, as it directly ties to the cost of the mission. And sensitivity to "dark current" (i.e., electric current caused even when there is no light hitting a sensor) made much of the data older generations of higher-resolution sensors collected useless anyway.
According to Jaffe and his team, though, those problems have largely been solved—at least on the ground. The first is by a new technology called silicon immersion gratings and grisms. These force light to diffract from inside a high-refractive material like silicon, compared with traditional gratings that bounce light off a mirrored surface. This allows engineers to drastically reduce the size (and therefore weight) of the spectrograph and has the added bonus of not requiring any moving parts to adjust mirrors.
The second technological breakthrough is in the area of avalanche photodiode arrays (APAs). These new detectors have near-zero "dark current," and the noise introduced by the sensor itself is less than the signal introduced by a single photon. These baselines make it much more feasible to capture the right kind of light from an exoplanet and ensure it can be differentiated from the starlight of its host star.
Source: Phys.org
@EverythingScience
Phys.org
'High-res' is the secret to finding alien life with the next great space telescope
We're still in the definition phase of the Habitable Worlds Observatory (HWO), but it seems like every week a new research group comes out with a paper helping to shape what is becoming one of the most ...
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Looking Inside Your Brain to See How Memories Work
Source: Kurzgesagt
@EverythingScience
Memory is one of the strangest abilities you possess. Your brain uses an incredibly complex biological system to preserve moments from your past that no longer exist, allowing you to revisit experiences from years ago. But memories are not always recordings of reality. In fact, every time a memory comes under the spotlight of your attention, it can melt and change a tiny bit.
What exactly is a memory, how is a moment in time stored inside your brain, and why does remembering something slowly rewrite the story of your life?
Sources & references
Source: Kurzgesagt
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Scientists Let People Play Video Games Using Only Their Thoughts
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Researchers at Yale University have developed a new brain-computer interface (BCI) that allows people to play video games using only their brain activity. By using real-time fMRI (functional MRI), the team demonstrated that users can control a computer efficiently through their thoughts alone.Source: SciTechDaily
The study revealed that brain activity follows established neural pathways. Researchers found that learning to use a BCI becomes much easier when the system is designed to work with those existing pathways rather than against them. When a BCI aligns with the brain’s natural organization, users gain control quickly, and their brain activity adapts to support learning. Systems that do not match this structure produce little or no improvement.
Why Natural Brain Pathways Matter for BCI Learning
“The implications are broad, from helping people with motor or communication disorders to developing treatments for depression or anxiety to building the next generation of consumer games and technologies: interventions designed around the brain’s natural geometry are likely to be faster, more effective, and more accessible,” said Erica Busch, the first author of the study, who recently completed her Ph.D. at Yale.
Although researchers have worked on these systems for years, many human BCIs have had limited success. Earlier fMRI-based systems, which rely on real-time neurofeedback from scans that track changing patterns of brain activity, often required as many as 10 lengthy training sessions. Even then, improvements were relatively small. Roughly one-third of participants never learned to control the system, regardless of how much they practiced.
Busch and her colleagues believed the problem stemmed from how these systems were designed. Often, BCIs required the brain to learn patterns that did not fit its natural organization. The researchers proposed that more advanced tools capable of tailoring neurofeedback to each brain’s underlying structure could significantly improve both learning speed and performance.
“Could we build a system smart enough to discover that geometry in real time, using noninvasive brain imaging?”
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SciTechDaily
Scientists Let People Play Video Games Using Only Their Thoughts
Researchers developed a brain-controlled gaming system that learns from the brain’s natural wiring, enabling fast BCI training and potentially transforming medicine, mental health, and human-computer interaction.
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Breakthrough Fentanyl Vaccine Could Neutralize Designer Drugs and Prevent Overdoses
Source: SciTechDaily
@EverythingScience
Fentanyl has become one of the deadliest drugs in the United States, with fentanyl and related synthetic opioid variants now claiming more lives each year than car crashes and gun violence combined. When taken in excessive amounts, these drugs disrupt critical brain functions and can stop the signals that control breathing. Although existing treatments can reverse an overdose, they must be administered quickly to be effective.
Researchers at Scripps Research are exploring a very different strategy. Instead of treating an overdose after it happens, they have developed an experimental vaccine designed to train the immune system to neutralize fentanyl before the drug can reach the brain. Their findings, published in the Journal of Medicinal Chemistry, suggest the vaccine may protect not only against fentanyl itself but also against many fentanyl-related “designer drugs” that are modified to increase potency or avoid detection.
“What this research shows us is that we don’t have to keep playing catch-up with every new synthetic designer drug that emerges,” says senior author Kim Janda, the Ely R. Callaway, Jr. Professor of Chemistry at Scripps Research. “By training the immune system to recognize the entire fentanyl class—not just individual structures—we can stay ahead of illicit drug traffickers.”
Source: SciTechDaily
@EverythingScience
SciTechDaily
Breakthrough Fentanyl Vaccine Could Neutralize Designer Drugs and Prevent Overdoses
An experimental vaccine could help stop fentanyl and future designer-drug variants before they can trigger a deadly overdose.
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Quantum sensor overcomes major obstacle in search for dark matter and gravitational waves
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A prototype quantum sensor developed by researchers at Imperial has demonstrated for the first time that a key principle behind next-generation quantum detectors can work under realistic conditions.Source: Phys.org
The study shows how comparing two long-baseline atom interferometers, instruments that use lasers to precisely measure the behavior of atoms, allows experimental noise to be effectively canceled.
This enables signals to be recovered even when individual measurements are overwhelmed and opens the door to searches for gravitational waves from the early universe and signatures of exotic forms of dark matter.
Canceling noise in quantum measurements
Understanding what the universe is made of and identifying new sources of gravitational waves remain major challenges in modern physics.
Both problems require measuring extremely small signals that can easily be lost in background noise. Finding reliable ways to detect them is essential for exploring parts of the universe that current experiments cannot access.
@EverythingScience
Phys.org
Quantum sensor overcomes major obstacle in search for dark matter and gravitational waves
A prototype quantum sensor developed by researchers at Imperial has demonstrated for the first time that a key principle behind next-generation quantum detectors can work under realistic conditions.
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Around the World, These Building Solutions Keep Things Local
Source: Wired
@EverythingScience
It is an oft-quoted—and always alarming—statistic that 34 percent of the world’s carbon emissions are caused by the construction industry, with a significant portion borne specifically from the production of concrete required to erect a standard structure today. At the same time, we are facing a global housing crisis, as a large population of people moves from rural towns into cities, outpacing the number of affordable, high-quality units being built to accommodate them.
So how does one put these two crises in alignment? Around the world, innovative architects, scientists, and engineers are exploring building techniques and materials that can create places to live without hastening climate change. The secret? Keeping it local.
The concept of embodied carbon—the emissions released across the lifespan of a material, from extraction, manufacturing, and transportation down to disposal—dictates that the most sustainable architecture is built from its surroundings. Forward-thinking minds are tapping both high- and low-tech building methods and materials in every region of the world. From solar-powered pods that can handle the most extreme weather on Earth to residences built, literally, from the earth that surrounds them, each project presents a solution specific to its site, culture, and vernacular—but that can potentially be adapted for use in farflung places.
The design lessons that can be gleaned from all the examples below are found in their commitment to both planet and people.
Source: Wired
@EverythingScience
WIRED
Around the World, These Building Solutions Keep Things Local
Designers are finding sustainable building solves close to home—in ancient practices and cutting-edge innovations alike.
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Europe swelters as more heat records set to tumble
Source: Phys.org
@EverythingScience
Much of Western Europe was sweltering in a grueling heat wave on Friday, with the mercury expected to continue rising in the coming days, likely shattering yet more temperature records.
France was hit hard, forcing hundreds of schools to tweak their timetables to cope. Forecasters warned of an "intense and long-lasting" heat wave that could see temperatures in Paris soar above 40C (104F) for the first time on a June day.
Across the continent, authorities were ramping up warnings of extreme weather. German forecasters said parts of the country needed to be on alert for thunderstorms, hail and heavy rain over the weekend.
Meteorologists confirmed that England and Wales had already experienced the hottest spring ever recorded, though temperatures in Britain were not expected to be as intense as those in continental Europe.
Scientists say human-driven climate change is amplifying such extremes, with heat waves, droughts and floods becoming more intense and frequent.
The current heat wave is already the second of the year for many, and means summer is kicking off for tens of millions of Western Europeans with another spell of extreme heat.
Source: Phys.org
@EverythingScience
Phys.org
Europe swelters as more heat records set to tumble
Much of Western Europe was sweltering in a grueling heat wave on Friday, with the mercury expected to continue rising in the coming days, likely shattering yet more temperature records.
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TIMELAPSE OF THE UNIVERSE: 13 Billion Years in 10 Minutes • Updated and Remastered
@EverythingScience
Source: melodysheep🌐 Watch in 4K
What happens if you shrink the entire history of the universe into 10 minutes? Watch as millions of years fly by in seconds, and human history is reduced to just a single frame at the end of the experience, showcasing just how old and vast our universe is.
In 2018 I released Timelapse of the Entire Universe, an experimental video that compressed all of time into a 10 minute scale, pieced together from a spectrum of different visual sources. 8 years later and I have finally developed the skills to reimagine this video in my own style and my own words.
It's narrated by my friend Toby, aka EpicSpaceMan. If you don't know his work please check it out!
I'm also excited to say this video is now becoming a planetarium film. The adaptation process is nearly complete, and will be coming to immersive theaters soon.
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The Sun may not engulf Earth after all, scientists say
Source: Phys.org
@EverythingScience
Need some good news on a Friday after a long week? The Earth may not be engulfed by the expanding fireball of the dying sun, which has long been assumed to be our home planet's ultimate fate, according to scientists.
Don't worry: This is not expected to happen for another 5 billion years, long after all life on Earth has been wiped out.
When the sun burns through all of the hydrogen in its core, it will go through two immense expansion phases: first becoming a red giant, then, when its helium is spent, an "AGB" star. This fiery death will bring about some significant changes back here on Earth. As the sun grows, increasing gravitational forces will pull the Earth toward it.
For the Earth and the moon, this force creates the push and pull of the tides in our oceans. The energy from these tides, which dissipates at the bottom of the ocean, slows Earth's rotation and gradually pushes the moon away from us.
As the sun expands and its blistering surface approaches Earth, intense tidal waves will stir within the star. When they dissipate, they will pull Earth into its doomed embrace. However, the growing sun will also lose a lot of its mass due to stellar wind, which pushes our planet farther away.
"Earth's fate depends on a delicate balance between these two effects," explained Mats Esseldeurs, the lead author of a study published in the journal Astronomy & Astrophysics on Friday.
"If tidal interactions predominate, Earth is engulfed by the sun. If the sun's mass loss predominates, Earth escapes into an orbit larger than the radius of its star," the astrophysicist at Belgium's University of Leuven said in a statement.
Until now, scientists had favored the first hypothesis.
Catching some sun
However, their calculations relied on relatively simple descriptions of tidal dissipation within giant stars. Advances made in modeling these tides over the last 15 years have enabled the study's authors to show that "the dissipation is lower than previously expected," Stephane Mathis, an astrophysicist at the CEA Paris-Saclay center in France, told AFP.
To estimate how much mass the sun could lose, the team focused in particular on a nearby star called L2 Puppis that is like the sun's "old cousin," the study's co-author said. "A better understanding of tidal physics and the most advanced constraints we have on mass loss allow us to say that—in the current state of knowledge—Earth could move away from the sun, contrary to what was predicted before," Mathis said.
According to the new modeling, Mars also escapes a death spiral into the sun. But the two planets closest to the sun, Mercury and Venus, are not so lucky. They will be inexorably swallowed by the expanding fireball. After all this, the sun will eventually become an extremely dense star called a white dwarf. No longer capable of fusion reactions, it will slowly become dimmer and cooler over time.
Source: Phys.org
@EverythingScience
Phys.org
The Sun may not engulf Earth after all, scientists say
Need some good news on a Friday after a long week? The Earth may not be engulfed by the expanding fireball of the dying sun, which has long been assumed to be our home planet's ultimate fate, according ...
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Food Waste Becomes a Powerful Carbon Trap in Climate Breakthrough
Source: SciTechDaily
@EverythingScience
Keeping global warming below 1.5°C over the long term will require more than major cuts in greenhouse gas emissions. According to climate scenarios outlined in the latest Assessment Report from the Intergovernmental Panel on Climate Change (IPCC), the world will also need technologies capable of removing and storing hundreds of billions of tons of carbon dioxide (CO2) already in the atmosphere.
One approach receiving increasing attention is “direct air capture” (DAC), a technology that removes CO2 directly from the air. Researchers and startups have spent years trying to improve DAC systems. One of the earliest commercial companies in the field is Climeworks, an ETH Zurich spin-off founded in 2009. Despite progress, direct air capture remains costly and requires significant amounts of energy.
Food Waste Turned Into Carbon Capture Material
Researchers at ETH Zurich have now developed a new DAC approach that could make the process more efficient and sustainable. In a study published in the journal PNAS, a team led by materials scientist Raffaele Mezzenga used waste products from dairy and tofu manufacturing to capture CO2.
Large amounts of protein-rich liquid are generated during the production of dairy products and tofu. Only a small portion is reused in food manufacturing, while much of the rest is discarded. The researchers extracted proteins from this waste stream and assembled them into long, thread-like structures called amyloid fibrils. These fibrils were then combined with potassium hydroxide and formed into porous beads measuring about half a centimeter to one centimeter in diameter.
“The resulting material is like a sponge that can absorb large quantities of CO2 via the potassium hydroxide,” Mezzenga explains.
When exposed to air, the potassium hydroxide inside the beads reacts with CO2 and converts it into hydrogen carbonate, a salt of carbonic acid. This reaction removes carbon dioxide from the atmosphere.
“In our tests with ambient air, we were able to extract 97 milligrams of CO2 with one gram of material,” explains Zhou Dong, a postdoctoral researcher in Mezzenga’s group and lead author of the study.
According to Dong, this performance is exceptionally strong, exceeding the capacity of conventional DAC technologies by 10 to 50 percent. Based on the team’s calculations, one kilogram of the protein beads could theoretically capture and isolate 100 grams of CO2 during a single operating cycle.
Lower Energy Carbon Removal
Most existing direct air capture systems rely on heat and negative pressure to release the captured carbon dioxide from the absorbent material. The recovered CO2 can then be stored or converted into other products, allowing it to be removed from the atmosphere over the long term. However, generating the necessary heat requires substantial energy, making DAC economically and environmentally viable mainly in places with abundant renewable energy.
The ETH Zurich team developed a different solution. To release the captured carbon dioxide, the protein beads are sprayed alternately with a mild acid and a mild base for approximately 10 minutes at room temperature. This process breaks the chemical bonds holding the CO2, allowing it to be collected.
The acid, base, and protein beads can all be reused afterward.
Source: SciTechDaily
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SciTechDaily
Food Waste Becomes a Powerful Carbon Trap in Climate Breakthrough
Food waste may become a powerful climate tool thanks to tiny reusable beads that capture carbon directly from the air.
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The Hidden Physics Complicating Interstellar Lightsails
Source: Universe Today
@EverythingScience
If we’re to reach another star, chemical propulsion will not get us there in any reasonable time frame. We’re going to need a different propulsion technology, and one of the most promising seems to be a solar sail. These giant reflective surfaces form the basis of many interstellar missions. Combined with giant lasers pushing them, they can be accelerated to speeds unreachable by any other current technologies. However, according to a new paper available on arXiv from Chao Shen and Jiaze Li of the Harbin Institute of Technology, once those missions start reaching a significant percentage of the speed of light they’re going to run into a drag force from the light itself.
The paper breaks down the three forces photons hitting a solar sail impart to it. In order of decreasing efficiency they are incident light (that raw momentum of the photons hitting the sail), specular reflection (momentum imparted when photons bounce perfectly off the sail), and diffuse scattering (momentum from photons that are absorbed by the sail then reemitted in random directions).
When the light sail starts to reach relativistic speeds is where the problems start to come in. As it speeds away from its light source it starts to experience a severe Doppler effect. As the frequency of the light drops, the thrust generated by the three components of light rapidly decreases, making it harder and harder to keep accelerating the faster you go.
Many interstellar missions have come and gone - including Breakthrough Starshot
It gets even worse when the light sail hits 75% of the speed of light. At that point, a phenomenon called relativistic light aberration takes over. From the perspective of a stationary observer on Earth, the diffusely scattered light is directed forward towards the sail’s direction of motion. Since every action must have an equal and opposite reaction, that means the diffuse scattering (admittedly the weakest of the three forces) becomes an active drag on the system past 75% of the speed of light.
Admittedly, the net force of the pushing laser remains positive at that point, but the efficiency drop-off is significant. It is worth noting that the paper focuses exclusively on radiative dynamics and does not account for non-radiative factors, such as drag from interstellar gas or dust, nor does it address thermal limitations of sail materials, such as potential melting under high-power lasers. The paper treats the lightsail material as an idealized mirror. In practice, aerospace engineers are exploring advanced metamaterials and photonic crystals tuned to specific laser wavelengths. These materials could potentially leverage the aberration effects discussed in the paper to actively self-correct and stabilize the lightsail’s flight path, ensuring it remains centered in the beam.
Source: Universe Today
@EverythingScience
Universe Today
The Hidden Physics Complicating Interstellar Lightsails
If we’re to reach another star, chemical propulsion will not get us there in any reasonable time frame. We’re going to need a different propulsion technology, and one of the most promising seems to be a solar sail. These giant reflective surfaces form the…
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The two-part Viking 1 spacecraft reached Mars orbit 50 years ago. A few days later, the images it returned of the proposed Viking 1 landing site were met with both elation and shock.Source: @NASAhistory
Mars as viewed by Viking 1's cameras did not look like the planet Mariner 9 saw. The Viking 1 Lander's proposed landing site, chosen after years of debate, lay on the floor of what looked like a deeply incised river bed. America's first Mars landing—scheduled for July 4, 1976, America's Bicentennial—would have to be delayed so a less risky landing spot could be found.
📷 This mosaic of Mars is a compilation of images captured by the Viking Orbiter 1. The center of the scene shows the entire Valles Marineris canyon system.
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Congratulations to the NASA crew of Pegasus, who safely delivered the world’s next great exploration asset, the Nancy Grace Roman Space Telescope, to NASAKennedy. Thank you for your contributions and sacrifice..and thanks John Kraus for delivering the pizza & champagne to the crew-they deserve it!
Source: @NASAAdmin • Jared Isaacman
Illustrations of the telescope
It begins its final processing campaign ahead of launch aboard Falcon Heavy later this year.
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