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New Jersey Institute of Technology


Next-generation optics offer the widest real-time views of vast regions of the sun

A new optical device has provided the most precisely detailed, real-time pictures to date of solar activity occurring across vast stretches of the star's surface. The system corrects images distorted by atmospheric turbulence, allowing researchers to analyze magnetic events and forces that propel the star's magnetic fields.

SourceNew Jersey Institute of Technology·JournalAstronomy and Astrophysics·DateJan 10, 2017

Remoras don't suck

Researchers studied remoras' ability to attach to surfaces securely yet release easily, finding a complex mechanism involving lamellar spinules and uniquely-structured blood vessels. This discovery could inspire designs for tags or bandages that don't harm hosts.

Solving sunspot mysteries

Multi-wavelength observations of sunspots have provided new insights into their complex and dynamic nature. The data revealed rapidly rotating plasma rolls, powerful shocks, and widespread plasma eruptions driven by solar-energy flux and controlled by intense magnetic fields.

Researching an endangered relationship

New Jersey Institute of Technology researchers are investigating how climate change may disrupt the vital relationship between bees and plants, which could lead to poor crop pollination and lower yields. The study, supported by a $150,000 grant from the National Science Foundation, aims to understand how temperature changes may affect ...

A fish that pushes in the wrong direction solves a mystery of animal locomotion

Researchers discovered that fish use a counterintuitive fin arrangement to increase both stability and maneuverability. By analyzing slow-motion videos and mathematical models, the team found that the opposing forces generated by the fin movements create stabilizing forces while improving velocity change.

SourceNew Jersey Institute of Technology·JournalProceedings of the National Academy of Sciences·DateNov 7, 2013

Published research shows promise of new device to detect disease with drop of blood

Researchers at New Jersey Institute of Technology have developed a lab-on-a-chip that can detect cells with sub-cellular resolution, enabling early detection of diseases such as viruses and cancer. The device uses carbon nanotubes to measure electrical properties of cells, offering a non-invasive and quick method for disease diagnosis.

SourceNew Jersey Institute of Technology·JournalBiosensors and Bioelectronics·DateJun 24, 2013