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Two materials physicists at The University of Sydney have found a possible explanation for the huge amount of molecular ...
When it is, an electrochemical reaction takes place between the hydrogen ... a dry-cell battery. The more layers, the higher the voltage. Electrical current, meanwhile, has to do with surface ...
Researchers found a strategy to create catalysts that make the production of hydrogen for clean fuel more efficient and affordable.
If you take two objects with fairly smooth surfaces, and put these together, you would not expect them to stick together. At least not without a liberal amount of adhesive, water or some other ...
Contrary to some theorists’ expectations, water does not form hydrogen bonds in its supercritical phase ... Though such extreme conditions are rare on the Earth’s surface (at least outside a ...
As workhorses of the cell ... a hydrogen atom, and a variable component called a side chain (see below). Within a protein, multiple amino acids are linked together by peptide bonds, thereby ...
A new contender is rising in the clean-energy arena — electrolysis, which produces green hydrogen ... where the cell components are tightly stacked in layers. “If the PTL surface is rough ...
Hydrogen bonds are the invisible forces that hold water molecules together, giving water its unique properties, from high boiling point to surface tension, and enabling critical biological ...
Whole-cell catalysis is one of the several central ... Meanwhile, the multiple interactions such as hydrogen bonding (N···H or O···H) and electrostatic interactions (NH 3 + with O-) between ...
Hydrogen bonds are the invisible forces that hold water molecules together, giving water its unique properties, from high boiling point to surface tension, and enabling critical biological functions ...