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University of Oregon


University of Oregon chemists discover new way to fix nitrogen

Researchers have successfully synthesized ammonia from nitrogen using a simple compound of iron and hydrogen in solution, marking a significant step toward achieving one of chemistry's coveted goals. This breakthrough could lead to more efficient and sustainable production of ammonia, a vital fertilizer for global food supply.

SourceUniversity of Oregon·JournalJournal of the American Chemical Society·DateJul 5, 2005

Going to extremes to improve human health

The University of Oregon has developed a new environmental chamber to study the human body's response to everyday stresses. The chamber allows for precise simulation of extreme conditions, including altitude up to 18,000 feet and temperature control between 14 and 122 degrees Fahrenheit.

Geologist comments on Oregon's tsunami hazard

Scientists studying uplift along the Oregon coast reveal similarities with past earthquakes, indicating an accumulation of strain for a potential future earthquake. A tsunami could cause widespread damage from Northern California to Vancouver, B.C., with waves arriving within minutes after shaking ends.

UO's molecular 'claws' trap arsenic atoms

Researchers at the University of Oregon have discovered a way to build a molecular 'claw' that can grab onto arsenic and sequester it, potentially leading to improved treatments for arsenic poisoning. The molecules developed by the team are known as chelators, which enable them to trap and immobilize heavy metal atoms like arsenic.

SourceUniversity of Oregon·JournalAngewandte Chemie·DateNov 15, 2004

Oregon optics center to build new laser lab

The university's new Laboratory for Quantum Control will enable original experiments at an internationally competitive level, focusing on controlling atoms and molecules using ultrashort light pulses. The lab aims to lead to increased computer capability, improved optical-fiber communications, and new forms of electronics.

'Science' showcases research on forgetting

Researchers found that unwanted memories can be suppressed using brain areas similar to those used during physical action control. This process reduces hippocampal activity, leading to forgetfulness. The study provides a novel neurobiological model for motivated forgetting, which may demystify how repression occurs.

SourceUniversity of Oregon·JournalScience·DateJan 8, 2004