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The scientists expected that this discovery would lead to more precise calculations of the strength and other characteristics of hydrogen bonds in any given hydrogen compound and therefore allow chemists to predict more precisely the behaviour of hydrogen-containing bulk materials such as water.
Owing to certain characteristics of hydrogen, its use has been reduced over the years.
This has necessitated fundamental research on combustion characteristics of hydrogen fuel.
Fast burning characteristics of hydrogen have permitted high speed engine operation.
The chemical characteristics of hydrogen fermentation effluent (COD and TKN) showed a high C/N ratio (approximately 312).
In this paper we report the burning rate characteristics of hydrogen peroxide and micron-aluminum propellants.
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A new equation with high precision has been proposed to investigate the fuel consumption characteristics of hydrogen-fueled vehicles.
Specific focus is on investigating the ignition characteristics of hydrogen-containing fuels at gas-turbine-relevant operating conditions.
Flame propagation characteristics of hydrogen-air mixtures were investigated using an improved annular stepwise diverging tube (ASDT).
Schroeder and Holtappels (2005) published data on the explosion characteristics of hydrogen-air mixtures, looking at the effect of pressure and temperature on upper and lower explosive limits and the effect of pressure, temperature, and composition on explosion ratio, PEX/PO.
Latest results include the release characteristics of hydrogens and tritium during normal regeneration of the cryopumps and under off-normal events.
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CEO of Professional Science Editing for Scientists @ prosciediting.com