Scientists have discovered that symbiotic single-celled algae that live inside of and feed corals can reproduce not only by mitosis, but also sexually. Encouraging sex in these algae can accelerate their evolution to produce strains better able to help reefs cope with climate change.
The Moody Foundation has granted Rice $100 million to build a transformative new student center designed by one of the world’s premiere architects and to create endowments supporting student opportunity and success, both as part of the center and in other areas of the university.
Rice University engineers improve simulations that analyze gadolinium-based contrast agents used in clinical magnetic resonance imaging. More efficient simulations could help make better compounds for imaging technologies.
Existing treatments for movement impairments are “off the rack” rather than “custom-tailored,” but B.J. Fregly, a Rice University professor of mechanical engineering and bioengineering, wants to change that situation.
Rice scientists study the dynamics of the immune system’s antimicrobial peptides, which attack and eliminate harmful bacteria. They find peptides that invade bacteria and do their damage from the inside are underrated.
HOUSTON – (Sept. 15, 2021) – The 2021 Annual Energy Summit at Rice University’s Baker Institute for Public Policy will explore the critical issues affecting global energy markets, oil and gas, electricity, renewables and the environment in a virtual conference Sept. 29-30.
HOUSTON – (Sept. 13, 2021) – Cryptocurrency — an estimated $2 trillion market — has created an estimated $1 trillion tax gap and become too big to avoid regulatory oversight, according to a new blog post from an expert at Rice University's Baker Institute for Public Policy.
Climate change in this century will allow one of the world's costliest agricultural pests, the diamondback moth, to both thrive year-round and rapidly evolve resistance to pesticides in large parts of the United States, Europe and China where it previously died each winter, according to a study by U.S. and Chinese researchers.
Researchers have identified a possible “Achilles’ heel” in the frustration of amyloid beta peptides as they dock to the fibrils that form plaques in patients with Alzheimer’s disease.