Примеры использования Molecular hydrogen на Английском языке и их переводы на Русский язык
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Molecular hydrogen is a safe antioxidant for rejuvenation.
The two main constituents of the Jovian atmosphere are molecular hydrogen(H 2) and helium.
Belongs to the molecular hydrogen Н2 dissolved in glass 11.
A GMC is a cold(10-20 K) anddense cloud consisting mostly of molecular hydrogen.
Innovative method of using molecular hydrogen for the rejuvenation of the whole body.
Protostars mainly form from molecular clouds consisting primarily of molecular hydrogen.
The total mass of the molecular hydrogen does not exceed 10% of that of neutral hydrogen. .
The composition of the Uranian atmosphere is different from that of Uranus as a whole,consisting mainly of molecular hydrogen and helium.
In addition to molecular hydrogen, the thermosphere-corona contains many free hydrogen atoms.
The technique of such a complex subsoil radon method allows to define concentration of molecular hydrogen directly in a point of sampling.
The concentrations of molecular hydrogen measured in the field exceed to a great extent its probable production in soils.
Since 2007, large-scale studies of antioxidant andtherapeutic effects of molecular hydrogen(H2) on the human body have been carried out.
Mz 3 has no trace of molecular hydrogen emission, whereas the M 2-9 has prominent H 2 emission lines in the near-IR.
At the basis of this system are nanocrystals of cadmium selenide(CdSe), and nickel ions,which catalyze the direct synthesis of molecular hydrogen.
Sensitivity of the device at level clarke content of molecular hydrogen in ground atmosphere:(0.5÷1.0)×10-40volume% 0.5÷1.0 ppm.
Molecular hydrogen quickly disappears from the surface of the satellite as it is relatively light and the gravity force on Europa is weak.
The soils influenced by two factors-a flux of molecular hydrogen and temporary waterlogging-are shown to degrade rapidly.
The molecular hydrogen that escapes Europa's gravity, along with atomic and molecular oxygen, forms a gas torus in the vicinity of Europa's orbit around Jupiter.
Sensitivity of a sensor allows measuring concentration of molecular hydrogen in natural bedding of rocks, in atmosphere of underground constructions, etc.
Molecular hydrogen is difficult to detect by infrared and radio observations, so the molecule most often used to determine the presence of H2 is carbon monoxide CO.
Megamaser hosts are rich in molecular gas compared to spiral galaxies, with molecular hydrogen masses in excess of one billion solar masses, or H2> 109 M☉.
Hydrogenosomes are approximately 1 micrometre in diameter but under stress conditions can reach up to 2 micrometres andare so called because they produce molecular hydrogen.
The helium abundance is 0.157± 0.004 relative to molecular hydrogen by number of molecules, and its mass fraction is 0.234± 0.005, which is slightly lower than the Solar System's primordial value.
Such deeply embedded objects can only be observed at infrared or radio wavelengths,usually in the frequencies of hot molecular hydrogen or warm carbon monoxide emission.
The methane abundance relative to molecular hydrogen in the stratosphere is about 10-4, while the abundance ratio of other light hydrocarbons, like ethane and acetylene, to molecular hydrogen is about 10-6.
Electrochemical studies of the clathrochelate transition metal complexes andelaboration of new electrocatalytic processes with their participation in particular, molecular hydrogen production.
At first it was believed their molecular hydrogen content was similar to that of a normal spiral, but subsequent studies have shown that a number of them are deficient in molecular gas.
The precipitating electrons have energy in the range 10-100 keV and penetrate deep into the atmosphere of Jupiter,where they ionize and excite molecular hydrogen causing ultraviolet emission.
All of the hydrogen in the fuel is converted to water, andthere is no significant molecular hydrogen in the exhaust due to formation as part of the water-gas reaction during the combustion process.
Furthermore, in the area of industrial energy efficiency and implementation of the Kyoto Protocol to the United Nations Framework Convention on Climate Change, biotechnology can produce cleaner coal and petroleum andproduce cleaner fuels such as biodiesel, ethanol, methane and molecular hydrogen as a means of lowering the levels of greenhouse gases GC.9/Res.2/B( b),( d) and e.