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MIT team developing 1MW motor for electric aviation

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A team of MIT engineers is developing a 1MW motor that could be a key stepping stone toward electrifying larger aircraft. The motor under design is a 1-MW, air-cooled, outer-rotor, Halbach-array PMSM. Electric Machine Design Specifications Metric Value Units Power 1 MW Specific power 17 kW/kg Speed 12500 RPM Shear stress 5.3

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MIT-Led Team Designs Two Airplanes That Would Use 70% Less Fuel Than Current Models

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An MIT-led team has designed an airplane that is estimated to use 70% less fuel than current planes while also reducing noise and emission of NO x. The design was one of two that the team, led by faculty from the Department of Aeronautics and Astronautics, presented to NASA last month as part of a $2.1 Click to enlarge.

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MIT, NASA engineers develop morphing wing

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A team of engineers has built and tested a radically new kind of airplane wing, assembled from hundreds of tiny identical pieces. The new approach to wing construction could afford greater flexibility in the design and manufacturing of future aircraft. Wing is assembled from hundreds of identical subunits.

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MIT researchers use neural networks to speed materials design; 5 weeks vs 50 years for flow battery proof-of-concept

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Now, researchers at MIT have found a way to streamline the discovery process using a machine learning system. MIT professor of chemical engineering Heather Kulik says they “are really fascinating, functional materials that are unlike a lot of other material phases. These can exist in a vast number of different forms. 0c00026.

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MIT team exploring using LOHCs directly on-board hydrogen-fueled trucks

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A team of MIT researchers led by William H. Green, the Hoyt Hottel Professor in Chemical Engineering, is developing a technology that allows liquid organic hydrogen carriers (LOHCs) not only to deliver hydrogen to the trucks, but also to store the hydrogen onboard. Proposed process flow diagram for onboard dehydrogenation.

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MIT, Scripps study examines behavior of midwater sediment plumes from deep-sea nodule mining

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Now, oceanographers at MIT, the Scripps Institution of Oceanography, and elsewhere have carried out an experiment at sea for the first time to study the turbulent sediment plume that mining vessels would potentially release back into the ocean. —Thomas Peacock, professor of mechanical engineering at MIT and co-corresponding author.

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MIT proof-of-concept demo of ionic wind propulsion for aircraft

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MIT researchers have demonstrated that an aircraft with a 5-meter wingspan can sustain steady-level flight using ionic-wind propulsion. Here we demonstrate that a solid-state propulsion system can sustain powered flight, by designing and flying an electroaerodynamically propelled heavier-than-air aeroplane. EAD airplane design.

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