Q&A: What makes a bestselling textbook?
The millionth sale of “Introduction to Algorithms” prompts Charles Leiserson and Tom Corman look back at the creation and legacy of the foundational textbook, now in its fourth edition.
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The millionth sale of “Introduction to Algorithms” prompts Charles Leiserson and Tom Corman look back at the creation and legacy of the foundational textbook, now in its fourth edition.
SMART breakthrough could help develop technologies that can identify materials according to desired properties for specific applications.
The Raman spectroscopy-based method enables early detection and quantification of pathogens in plants, to enhance plant disease management.
Paper-based blood test developed by SMART researchers can rapidly determine the presence of SARS-CoV-2 neutralizing antibodies.
SMART researchers demonstrate a practical way to make indium gallium nitride LEDs with considerably higher indium concentration.
SMART nanosensors are safer and less tedious than existing techniques for testing plants’ response to compounds such as herbicides.
SMART researchers have developed an innovative method to detect and quantify the B.1.1.7 (Alpha) variant of concern via wastewater epidemiology.
Four times faster than conventional PCR methods, new RADICA approach is highly specific, sensitive, and resistant to inhibitors.
Researchers could rapidly obtain high-resolution images of blood vessels and neurons within the brain.
SMART researchers explore the potential of e-scooter sharing as a replacement for short-distance transit in Singapore.
Study of Beijing’s car-restriction policy underscores value of regional coordination to meet transportation and emissions goals.
SMART study determines benefits of competition and potential impact for future urban cities and transport systems.
SMART findings allow a new way to control light emitting from materials.
Theory-based residual neural network combines discrete choice models and deep neural networks, long viewed as conflicting methods.
The findings pave the way to develop more efficient next-gen LEDs that cover the entire visible spectrum.