惯性聚合 高效追踪和阅读你感兴趣的博客、新闻、科技资讯
阅读原文 在惯性聚合中打开

推荐订阅源

Jina AI
Jina AI
V
Visual Studio Blog
博客园 - 司徒正美
TaoSecurity Blog
TaoSecurity Blog
博客园 - 聂微东
IT之家
IT之家
博客园_首页
Threat Intelligence Blog | Flashpoint
Threat Intelligence Blog | Flashpoint
C
Cyber Attacks, Cyber Crime and Cyber Security
博客园 - Franky
雷峰网
雷峰网
罗磊的独立博客
S
Schneier on Security
C
Cybersecurity and Infrastructure Security Agency CISA
The Cloudflare Blog
T
Tailwind CSS Blog
B
Blog RSS Feed
H
Help Net Security
T
The Blog of Author Tim Ferriss
C
CXSECURITY Database RSS Feed - CXSecurity.com
T
Threatpost
C
CERT Recently Published Vulnerability Notes
博客园 - 三生石上(FineUI控件)
P
Palo Alto Networks Blog
I
Intezer
G
GRAHAM CLULEY
Engineering at Meta
Engineering at Meta
S
Securelist
J
Java Code Geeks
V
V2EX
Y
Y Combinator Blog
Simon Willison's Weblog
Simon Willison's Weblog
L
LINUX DO - 热门话题
云风的 BLOG
云风的 BLOG
Spread Privacy
Spread Privacy
MongoDB | Blog
MongoDB | Blog
P
Privacy International News Feed
cs.CL updates on arXiv.org
cs.CL updates on arXiv.org
B
Blog
Forbes - Security
Forbes - Security
Google Online Security Blog
Google Online Security Blog
Help Net Security
Help Net Security
S
SegmentFault 最新的问题
N
Netflix TechBlog - Medium
Webroot Blog
Webroot Blog
Microsoft Security Blog
Microsoft Security Blog
SecWiki News
SecWiki News
Scott Helme
Scott Helme
aimingoo的专栏
aimingoo的专栏
N
News and Events Feed by Topic

NASA Science

Cosmic Origins at AAS 248, June 2026 - NASA Science Cosmic Structure SIG Seminar, 30 April 2026 - NASA Science CMB SAG Meeting, 24 April 2026 - NASA Science BBX SAG Meeting, 30 April 2026 - NASA Science Early Career Investigator Program – Earth Science (ROSES A.11) - NASA Science XR SIG Seminar, 1 May 2026 - NASA Science Night and (Earth) Day - NASA SWERV: High-Impact Historical Case Study - NASA Science AAS Meeting 248, June 2026 - NASA Science Earth Day 2026: Posters and Virtual Backgrounds - NASA Science Advancing Earth Observation at NASA since Release of Earthrise Photo - NASA Science X-59 Adds Freedom 250 Logo - NASA Belts of Green in the Washington Suburbs - NASA Science Artemis II Mission Milestones: An Image and Video Recap Curiosity Blog, Sols 4867-4872: Sand Fill In Antofagasta Crater and Finding Our Next Drill Target NASA Invites Media to Jordan Artemis Accords Signing Ceremony New NASA Views of Earth, From (S)PACE - NASA Science Crew Studies Biotech on Tuesday to Advance Health and Space Economy NASA Invests in Small Businesses Innovating for Space and Earth NASA at SXSW: Johnson Director Vanessa Wyche on Why Artemis Changes Everything Researchers: How Would You Extract Meaningful Insights from Just Four Astronauts? BBX SAG Meeting, 23 April 2026 - NASA Science Thailand’s Krabi Coast - NASA Science AI/ML STIG Lecture Series, 20 April 2026 - NASA Science SWERV: Training Overview and Agenda - NASA Science SWERV: REAL-TIME CAPABILITIES AND IONOSPHERIC DISRUPTIONS OF COMMUNICATIONS - NASA Science SWERV: Operationally Significant Phenomena and Impacts for Ground Operations - NASA Science SWERV: Space Weather Impacts on Satellites - NASA Science SWERV: Space Weather Chain of Events - NASA Science CSDA Quality Assessment Report Evaluates Satellogic NewSat Data - NASA Science NASA Shuts Off Instrument on Voyager 1 to Keep Spacecraft Operating - NASA Science Webinar 4/29: NASA CSDA Program Vendor Focus- MDA Space - NASA Science Testing Begins for Katalyst-NASA Swift Boost Mission - NASA Science Robert Maiberger - NASA William Vantine - NASA Holly Stevens - NASA Dennis McSweeney - NASA Mark T. Vande Hei - NASA Nicole Stott - NASA William Shepherd - NASA Josef Schmid - NASA NASA, OPM Announce New NASA Force Website, Open Job Applications  - NASA Frank Groen - NASA Ginger Kerrick - NASA Daniel Heimerdinger - NASA Michael Greenfield - NASA Kevin Ford - NASA Charles Daniel - NASA Capt. Frank L. Culbertson, Jr., USN (Ret.) - NASA Spring Rains Saturate Michigan - NASA Science NASA CubeSat Begins Mission to Study Radio Waves in Space - NASA Correction to F.5 FINESST, SMD’s Graduate Student Research Opportunity - NASA Science Restoring NASA's Core Competencies - NASA Small Steps, Giant Leaps: Episode 171: How NASA's Pandora Mission Unboxes Distant Worlds - NASA Physics of the Cosmos PAG Meetings - NASA Science NASA Science Veg-06: How plants and beneficial bacteria work together in microgravity Virtual Engineering & Spacecraft Flight Applications (VESFA) - NASA NASA Heliophysics Spacecraft Witness Comet’s Demise - NASA Science BBX SAG Meeting, 16 April 2026 - NASA Science NASA Invites Media to Latvia Artemis Accords Signing Ceremony - NASA Weak Lensing  - NASA Science At the Edge of Light - NASA NASA’s Mobile Launcher Rolls Ahead of Artemis III Preparation - NASA XR SIG Meeting, 27 April 2026 - NASA Science CRN SIG Meeting, 27 April 2026 - NASA Science GW SIG Seminar, 28 April 2026 - NASA Science Eyeing the Richat Structure - NASA Science I Am Artemis: Rebekah Tolatovicz - NASA NASA Selects Voyager for Seventh Private Mission to Space Station - NASA NASA Launches Six CubeSats to International Space Station Odyssey Celebrates 25 Years - NASA Science Crew Begins New Space Research and Installs New Science Gear - NASA NASA’s X-59 Completes First Wheels-Up Flight 2026 NSTA Hyperwall Schedule - NASA Science Update: Artemis II Crew Comes Home - NASA GW SIG Seminar, 14 April 2026 - NASA Science GR SIG Seminar, 17 April 2026 - NASA Science NASA's Webb Redefines Dividing Line Between Planets, Stars - NASA Science Vianni Ricano Cadenas Super Typhoon Sinlaku - NASA Science DGCE SIG Seminar, 23 April 2026 - NASA Science AI/ML STIG Lecture Series, 13 April 2026 - NASA Science NASA Night-light Imagery Tracks US Energy Transition, Global Volatility - NASA Science Hubble Completion Study 2012 - NASA Science Hubble Spies an Active Spiral - NASA Science Science with the Hubble and James Webb Space Telescopes VIII: Enriching the Universe: From Primordial Megaberg Ends Its Long Odyssey at Sea - NASA Science Artemis II Astronauts Back in Houston, Reunite with Families  - NASA Cygnus XL Cargo Craft Solar Arrays Deploy Powering Flight to Station - NASA Cygnus XL Cargo Craft Launches to Resupply Expedition 74 Crew - NASA La NASA da la bienvenida a la Tierra a los exploradores lunares de Artemis II, quienes batieron récords - NASA NASA Science, Cargo Launch Aboard Northrop Grumman CRS-24 - NASA Artemis II Splashes Down - NASA Artemis II Flight Day 10: Crew Completes Final Burn Before Splashdown  - NASA NASA Welcomes Record-Setting Artemis II Moonfarers Back to Earth  - NASA Human Perception and Performance Laboratory - NASA Artemis II Splashdown and Recovery - NASA Crew Preps for Cygnus XL Cargo Mission Targeted for Saturday Launch - NASA New Perspective of Home - NASA Artemis II Flight Day 10: Crew Sets for Final Burn, Splashdown - NASA
Are there environments beyond Earth that could be habitable? - NASA Science
Anthony Chan · 2026-05-14 · via NASA Science

Earth seem to be pretty special when it comes to life. Even though we have eight planets and myriad asteroids and comets in our solar system and we now have confirmed the existence of several thousands of exoplanets, Earth is the only place we know that has life so far. Life is everywhere on the surface of our planet. It can even be found deep under the ground and high in the sky. As our exploration has continued around the globe, we are finding life in nearly every possible environment. A lot of these environments are not very suitable for humans and, in some cases, are even dangerous for us. For instance, the organisms known as “extremophiles” are called that because they live in places that are too extreme for us. These can be places like hot springs and hydrothermal vents, deep under the ocean or inside of glaciers, in deserts or even in fluids that are even more acidic than battery acid. Finding life in so many places on Earth tells us that there are a lot of conditions in which life can survive. But what about other worlds? The Earth is currently the only place we know of that has life, but do you think we might find some of those conditions for life in other places?

There is a lot of evidence that early Mars was far more Earth-like than it is today. Long ago Mars had rivers and lakes and maybe even an ocean of water at the surface, it had a much denser atmosphere than it does today, and lots of active volcanoes. Ancient Mars had the chemical ingredients for life, there was energy (solar, geothermal, and possibly chemical), and plenty of water. Many microorganisms on Earth today could have survived and likely even thrived in early Martian conditions. Maybe some things like our extremophiles on Earth were the last survivors of some Martian life that thrived there long ago. Could we find such signs of past life if it’s there? Do you think there could be things living on Mars today? Well, we’re not too sure about that. The surface of Mars is really cold and the pressure is really low, but some people think there could be some limited environments on Mars, especially under the surface, where living things could be thriving today. That’s one reason for sending robots there to study the rocks and the environments around Mars.

A couple of other places that might be good to look at for possible life are the ice-shelled moons of Europa and Enceladus. Europa is a moon of Jupiter and Enceladus is a moon of Saturn, and we now have evidence that both of these moons have oceans of liquid water under their icy crusts. How can these moons have liquid water? Both are way too far from the Sun for it to give enough energy to melt them, and their oceans are below their icy crusts. It turns out that the way that these moons interact with their larger planets, through the action of gravity, causes them to heat up inside. This internal energy not only is enough to cause them to have liquid water oceans, but might also cause them to have hydrothermal vents on their ocean floors. Because of this possibility, many scientists wonder if there could be living biospheres inside of the oceans of those icy moons.

Titan, another moon of Saturn, is also a planetary body in our solar system that astrobiologists are currently researching for potentially having some form of life. Life as we know it requires energy, chemical ingredients, and a liquid medium (for the life that we have here, that liquid is water). Titan has all three requirements, but is a very different place than Earth. It is incredibly cold on the surface of Titan (way colder than where we find any living things on Earth). However, there is a thick atmosphere and lots of organic molecules. Much as we have a hydrologic cycle here on Earth, whereby water moves through the atmosphere and rain and rivers and oceans and ice, there is an active cycle on Titan made up primarily of organic molecules like methane and ethane. There are even lakes of organic goop on Titan’s surface. So even though life as we know it couldn’t survive Titan’s surface, it could be an interesting place to look for some other kind of life. Extremophiles on Earth have led scientists to consider places like Venus and Jupiter and similar exoplanets as possible abodes for life. For instance, there could be biospheres out there that reside entirely within the atmospheres of their worlds and might even live on gas giants. What would those beings be like? Could they be giant gas-filled sacs or maybe have gigantic wings to allow them to stay aloft? Almost every star has planets orbiting it. Now that we know that there are many planets out there, we’re really wondering if we might one day soon find other worlds that are not only about the size of Earth and roughly the same distance from their stars, but that might also have biospheres that may be something like ours. We’re building better and better telescopes so that we can study those worlds when we find them to figure out if we can find signs of life on them. It’s a very interesting time to be alive when it comes to learning about whether or not we are alone in the universe.