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#scienceinnovation

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Hacker News<p>Theory of Everything: Solved</p><p><a href="https://github.com/Cosmolalia/TOE" rel="nofollow noopener" translate="no" target="_blank"><span class="invisible">https://</span><span class="">github.com/Cosmolalia/TOE</span><span class="invisible"></span></a></p><p><a href="https://mastodon.social/tags/HackerNews" class="mention hashtag" rel="nofollow noopener" target="_blank">#<span>HackerNews</span></a> <a href="https://mastodon.social/tags/TheoryOfEverything" class="mention hashtag" rel="nofollow noopener" target="_blank">#<span>TheoryOfEverything</span></a> <a href="https://mastodon.social/tags/Solved" class="mention hashtag" rel="nofollow noopener" target="_blank">#<span>Solved</span></a> <a href="https://mastodon.social/tags/ScienceInnovation" class="mention hashtag" rel="nofollow noopener" target="_blank">#<span>ScienceInnovation</span></a> <a href="https://mastodon.social/tags/Cosmology" class="mention hashtag" rel="nofollow noopener" target="_blank">#<span>Cosmology</span></a> <a href="https://mastodon.social/tags/HackerNews" class="mention hashtag" rel="nofollow noopener" target="_blank">#<span>HackerNews</span></a> <a href="https://mastodon.social/tags/GitHub" class="mention hashtag" rel="nofollow noopener" target="_blank">#<span>GitHub</span></a></p>
Hari Tulsidas<p>New research reveals RNA might play a far greater role in regulating our genome than previously thought. Beyond being a messenger, RNA appears to control gene expression and influence complex traits, revolutionizing our understanding of genetics. Could RNA hold the key to breakthroughs in gene therapy and personalized medicine? <a href="https://masto.ai/tags/Genetics" class="mention hashtag" rel="nofollow noopener" target="_blank">#<span>Genetics</span></a> <a href="https://masto.ai/tags/RNA" class="mention hashtag" rel="nofollow noopener" target="_blank">#<span>RNA</span></a> <a href="https://masto.ai/tags/ScienceInnovation" class="mention hashtag" rel="nofollow noopener" target="_blank">#<span>ScienceInnovation</span></a></p><p><a href="https://www.scientificamerican.com/article/revolutionary-genetics-research-shows-rna-may-rule-our-genome/" rel="nofollow noopener" translate="no" target="_blank"><span class="invisible">https://www.</span><span class="ellipsis">scientificamerican.com/article</span><span class="invisible">/revolutionary-genetics-research-shows-rna-may-rule-our-genome/</span></a></p>
Hari Tulsidas<p>Even a single bacterial cell can detect seasonal changes, adjusting its behaviour to environmental shifts. This discovery highlights the incredible sensitivity of life at its smallest scale and raises questions about how such simple organisms evolved such complex abilities. Could this help us understand microbial roles in ecosystems and beyond? <a href="https://masto.ai/tags/Microbiology" class="mention hashtag" rel="nofollow noopener" target="_blank">#<span>Microbiology</span></a> <a href="https://masto.ai/tags/SeasonalAdaptation" class="mention hashtag" rel="nofollow noopener" target="_blank">#<span>SeasonalAdaptation</span></a> <a href="https://masto.ai/tags/ScienceInnovation" class="mention hashtag" rel="nofollow noopener" target="_blank">#<span>ScienceInnovation</span></a><br><a href="https://www.quantamagazine.org/even-a-single-bacterial-cell-can-sense-the-seasons-changing-20241011/" rel="nofollow noopener" translate="no" target="_blank"><span class="invisible">https://www.</span><span class="ellipsis">quantamagazine.org/even-a-sing</span><span class="invisible">le-bacterial-cell-can-sense-the-seasons-changing-20241011/</span></a></p>
Hari Tulsidas<p>The physics of cold water may have jump-started complex life. Cold environments could have concentrated key molecules, enabling the chemical processes needed for early life forms to evolve. This challenges assumptions that warmth was essential for life’s origins, showing how physical conditions can shape biology unexpectedly. <a href="https://masto.ai/tags/OriginsOfLife" class="mention hashtag" rel="nofollow noopener" target="_blank">#<span>OriginsOfLife</span></a> <a href="https://masto.ai/tags/Biophysics" class="mention hashtag" rel="nofollow noopener" target="_blank">#<span>Biophysics</span></a> <a href="https://masto.ai/tags/ScienceInnovation" class="mention hashtag" rel="nofollow noopener" target="_blank">#<span>ScienceInnovation</span></a><br><a href="https://www.quantamagazine.org/the-physics-of-cold-water-may-have-jump-started-complex-life-20240724/" rel="nofollow noopener" translate="no" target="_blank"><span class="invisible">https://www.</span><span class="ellipsis">quantamagazine.org/the-physics</span><span class="invisible">-of-cold-water-may-have-jump-started-complex-life-20240724/</span></a></p>
Caspar Addyman<p>At <a href="https://mastodon.cloud/tags/ICIS" class="mention hashtag" rel="nofollow noopener" target="_blank">#<span>ICIS</span></a> today legendary brain scientist Patricia Kuhl was raving about sensors based on Nitrogen vacancy (NV) centers in diamonds. they could revolutionize Magnetoencephalography (MEG) by offering high sensitivity at room temperature, reducing costs and complexity. The future of brain activity mapping looks bright! <a href="https://mastodon.cloud/tags/Neuroimaging" class="mention hashtag" rel="nofollow noopener" target="_blank">#<span>Neuroimaging</span></a> <a href="https://mastodon.cloud/tags/QuantumSensors" class="mention hashtag" rel="nofollow noopener" target="_blank">#<span>QuantumSensors</span></a> <a href="https://mastodon.cloud/tags/MEG" class="mention hashtag" rel="nofollow noopener" target="_blank">#<span>MEG</span></a> <a href="https://mastodon.cloud/tags/ScienceInnovation" class="mention hashtag" rel="nofollow noopener" target="_blank">#<span>ScienceInnovation</span></a><br><a href="https://www.sciencedaily.com/releases/2024/06/240606152218.htm#:~:text=Magnetometers%20using%20diamond%20quantum%20sensors,than%20conventional%20centimeter%2Dscale%20MEGs" rel="nofollow noopener" target="_blank"><span class="invisible">https://www.</span><span class="ellipsis">sciencedaily.com/releases/2024</span><span class="invisible">/06/240606152218.htm#:~:text=Magnetometers%20using%20diamond%20quantum%20sensors,than%20conventional%20centimeter%2Dscale%20MEGs</span></a>.</p>