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Princeton University, Engineering School


'100-year' floods will happen every 1 to 30 years, according to new flood maps

Researchers at Princeton University have created new maps that predict coastal flooding for every county on the Eastern and Gulf Coasts. The study finds that 100-year floods could become annual occurrences in Northern coastal towns, primarily due to sea level rise. In more southern latitudes, storms are expected to increase in strength...

SourcePrinceton University, Engineering School·JournalNature Communications·DateAug 22, 2019

Hopping bacteria

Bacteria use a hopping motion to move through tight spaces in the human intestine, improving medical and environmental technologies. Researchers at Princeton University developed a new model with improved accuracy, leveraging complex geometry simulations.

SourcePrinceton University, Engineering School·JournalNature Communications·DateMay 6, 2019

New process could slash energy demands of fertilizer, nitrogen-based chemicals

A new method using sunlight to split atmospheric nitrogen molecules could drastically cut the energy needed for fertilizer production. Researchers at Princeton University used computer simulations to model light's behavior in tiny structures made from gold and molybdenum, which concentrates light energy to boost a catalyst's power.

SourcePrinceton University, Engineering School·JournalScience Advances·DateJan 16, 2018

Coffee physics

Princeton researchers studied the formation of layers in cafe lattes, discovering that double-diffusive convection is the primary mechanism behind this phenomenon. The study's findings have implications for industrial flows and mixing procedures, as well as understanding heat- and salinity-dependent flows in oceans.

SourcePrinceton University, Engineering School·JournalNature Communications·DateDec 13, 2017

Breakthrough could launch organic electronics beyond cell phone screens

Researchers at Princeton University have developed a new approach to increase the conductivity of organic semiconductors, which could lead to more widespread use of organic electronics. The breakthrough involves using a ruthenium-containing compound that adds electrons to the semiconductor, increasing its conductivity by about a millio...

SourcePrinceton University, Engineering School·JournalNature Materials·DateNov 17, 2017

Wave of the future: Terahertz chips a new way of seeing through matter

Researchers at Princeton University have developed a new terahertz chip technology that can generate and capture intricate details of terahertz waves. The system uses tiny devices inside the microchip to read patterns created by the waves, enabling potential applications in medical imaging, communications, and drug development.

SourcePrinceton University, Engineering School·JournalIEEE Journal of Solid-State Circuits·DateFeb 9, 2017

Understanding bacteria's slimy fortresses

Researchers tracked a single bacterial cell as it grew into a mature biofilm of 10,000 cells. They found that the bacteria secrete a glue-like substance to keep from getting washed away and protect themselves from competing bacteria. A key gene, RbmA, plays a crucial role in developing a denser, stronger biofilm.

SourcePrinceton University, Engineering School·JournalProceedings of the National Academy of Sciences·DateOct 21, 2016