Graz University of Technology and the University of Surrey show how water moves in surprisingly different ways on ultra-thin ...
Dot Physics on MSN
Kinematics in 2D: An Introduction to Projectile Motion
In this video, we introduce the fundamentals of kinematics in 2D, focusing on projectile motion. Learn how to break down the horizontal and vertical components of motion, apply key equations, and ...
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Two-dimensional (2D) van der Waals (vdW) ferromagnets are thin and magnetic materials in which molecules or layers are held together by weak attractive forces known as vdW forces. These materials have ...
A surprising discovery about how water behaves on one of the world's thinnest 2D materials could lead to major technological improvements, from better anti-icing coatings for aircraft and ...
Tech Xplore on MSN
Improved formula predicts energy barriers in 2D chips, aiding ultra-scaled device development
A research team affiliated with UNIST has made a significant breakthrough in overcoming one of the most persistent challenges ...
Water rolls on h-BN but encounters friction on graphene. Atomic structure and substrate shape nanoscale movement, guiding advances in coatings and anti-icing surfaces.
A study at the Massachusetts Institute of Technology's (MIT) from Computer Science and Artificial Intelligence Laboratory (CSAIL) have created a method to understand complex motion in 3D and visualize ...
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