3 Questions: Hessam AzariJafari on mitigating climate change with reflective pavements
MIT postdoc explains how reflective pavements can significantly — and often indirectly — mitigate climate change and extreme heat.
MIT postdoc explains how reflective pavements can significantly — and often indirectly — mitigate climate change and extreme heat.
As cases increased worldwide this spring, mechanical engineers developed solutions to help slow and stop the spread of the coronavirus.
Leakage from frozen layers was a puzzle, but a new study shows how the potent greenhouse gas breaks through icy barriers.
Professor of civil and environmental engineering honored for his continuing research in understanding and improving supply chain management.
Study suggests mechanical properties of spike proteins can predict infectivity and lethality of different coronaviruses.
Graduate student Manon Revel uses quantitative methodologies to investigate how advertising in online publications affects trust in journalism.
Discovery could lead to new designs for improved and more sustainable materials inspired by nature.
Despite the disruption caused by the pandemic, MIT students have carved out meaningful hands-on experiences.
A team of MIT researchers is using the thermodynamic properties of water evaporation to bring off-grid cold storage of produce to remote, arid regions.
Michael Birnbaum, Anders Hansen, and Tami Lieberman receive NIH Director’s New Innovator Awards from the NIH Common Fund’s High-Risk, High-Reward Research program.
Professor Yossi Sheffi's latest book, “The New (Ab)Normal,” offers a key supply chain perspective on the pandemic.
Study suggests sea ice blocks the flow of carbon both into and out of the ocean, in roughly equal measure.
New analysis can help scientists and engineers better assess flood risk and habitat creation associated with restoration efforts.
Project supported by the Simons Foundation aims to reinvigorate environmental science by leaning on Parsons Laboratory's past as a leader in the space.