About the Open-Source Simulation Trend
(Altair: Troy, MI) -- Earlier this year, Altair announced that its finite element dynamic simulation tool, Radioss, will have an open-source version available to users, called OpenRadioss.
(Altair: Troy, MI) -- Earlier this year, Altair announced that its finite element dynamic simulation tool, Radioss, will have an open-source version available to users, called OpenRadioss.
(MIT: Cambridge, MA) -- In May 2022, the TeraByte InfraRed Delivery (TBIRD) payload onboard a small CubeSat satellite was launched into orbit 300 miles above Earth’s surface.
(Oak Ridge National Laboratory: Oak Ridge, TN) -- Researchers at the U.S. Department of Energy’s Oak Ridge National Laboratory have developed a new method for producing a key component of lithium-ion batteries.
(NIST: Gaithersburg, MD) -- NIST scientist Gary Zabow had never intended to use candy in his lab.
(Sculpteo: Paris) -- Sculpteo, a leader in 3D printing and digital manufacturing, has just published the eighth edition of The State of 3D Printing Report, its annual global survey conducted to provide the additive manufacturing insight required to inform and improve business strategies.
(FARO: Lake Mary, FL) -- FARO Technologies Inc., a global leader in 4D digital reality solutions, has announced the acquisition of SiteScape, an innovator in LiDAR 3D scanning software solut
(Molex: Lisle, IL) -- Molex, a global electronics leader and connectivity innovator, offers
(Oak Ridge National Laboratory: Oak Ridge, TN) -- The U.S. Department of Energy’s Oak Ridge National Laboratory has exclusively licensed battery electrolyte technology to Safire Technology Group.
(Cubicure: Vienna, Austria) -- A new high-performance polymer with exceptional heat resistance is ideally suited for ultra-precise 2-photon polymerization (2PP) 3D printing. This will enable micro-3D printing to meet the specific requirements of the electrical industry for the first time.
(MIT: Cambridge, Massachusetts) -- A new MIT-developed heat treatment transforms the microscopic structure of 3D-printed metals, making the materials stronger and more resilient in extreme thermal environments.
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