Toggle light / dark theme

And could entire civilizations seek to leave this reality behind?

Watch my exclusive video Exploring The Multiverse: https://nebula.tv/videos/isaacarthur–
Get Nebula using my link for 40% off an annual subscription: https://go.nebula.tv/isaacarthur.
Get a Lifetime Membership to Nebula for only $300: https://go.nebula.tv/lifetime?ref=isa
Use the link gift.nebula.tv/isaacarthur to give a year of Nebula to a friend for just $30.

Check out https://www.johnmsmart.com to learn more about Transcension Hypothesis.

Visit our Website: http://www.isaacarthur.net.

A research team led by Prof. Ye Hong from the University of Science and Technology of China has developed an alumina ceramic bionic wick with finger-like pores inspired by the stomatal array of natural leaves. Their research is published in Langmuir.

As the performance of electronic chips continues to improve, their also increases, posing new challenges for cooling strategies. Loop heat pipes (LHPs) are a compelling cooling solution due to their high heat transfer capability, antigravity heat transfer, and absence of moving parts.

However, the differing requirements for flow resistance and capillary force make designing the structure of the capillary wick within an LHP challenging. Specifically, larger pores are needed for gaseous working fluids to reduce flow resistance, while smaller pores are necessary to provide sufficient capillary force for liquid suction.

A Sept. 17 Georgetown University Medical Center (GUMC) seminar highlighted research on a revolutionary approach to cancer treatment: utilizing the body’s natural immune system to combat tumor growth rather than directly targeting cancer cells.

Alejandro Villagra, an associate professor in the department of oncology at the Georgetown University School of Medicine (GUSOM), shared his research in a talk hosted by the department of microbiology and immunology. The lecture focused on Villagra’s research on the manipulation of macrophages, a type of white blood cell active in the immune system, to combat the growth of cancerous tumors.

“Some people assume cancer research is about killing cancer directly,” Villagra told The Hoya. “We are focusing on the mechanisms we already have in order to kill cancer. So, these treatments, rather than the normal conception of killing the tumor, helps galvanize the immune system to indirectly kill cancer.”

Year 2022 Solar powered mitochondria could enable humans to use light to recharge their mitochondria and extend life also their bodies would be recharged by fuel from the sun.


Using light to optogenetically power mitochondria, this study shows that opposing the age-related decline in mitochondrial membrane potential leads to increased healthspan and lifespan in Caenorhabditis elegans. This result points to mitochondrial charge as a fundamental regulator of biological aging.