Just Add Water (2009): Properties & Ratios of Hydrogen & Oxygenand with and
Electrolysis a method of separating elements by pushing an electric current through a compound. It is used in various industrial applications such as removing copper from its ore. It is also used to separate hydrogen and oxygen from water. Electrolysis isn't the most efficient way to obtain hydrogen, but it is one of the easiest and cheapest ways to "homebrew" hydrogen. Hydrogen is the most abundant element in the universe.
Oxyhydrogen is a mixture of hydrogen H 2 and oxygen O 2 gases. This gaseous mixture is used for torches to process refractory materials and was the first  gaseous mixture used for welding. Theoretically, a ratio of hydrogen:oxygen is enough to achieve maximum efficiency; in practice a ratio or is needed to avoid an oxidizing flame. This mixture may also be referred to as Knallgas Scandinavian and German Knallgas : "bang-gas" , although some authors define knallgas to be a generic term for the mixture of fuel with the precise amount of oxygen required for complete combustion, thus oxyhydrogen would be called "hydrogen-knallgas". Oxyhydrogen will combust when brought to its autoignition temperature. When ignited, the gas mixture converts to water vapor and releases energy , which sustains the reaction:
Electrolysis of acidified water dilute sulfuric acid. AND the aqueous solutions of certain sulfate salts of reactive metals e. The electrolysis of dilute sulfuric acid is described and explained.
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Electrolysis of water is its decomposition to give hydrogen and oxygen gases due to the passage of an electric current. Electric effects on water Magnetic effects on water Electromagnetic effects on water Water redox processes. Driving cars using water. Introduction to electrolysis Electrolysis compartments. What is less well understood? Commercial systems.
Separate Hydrogen and Oxygen From Water Through Electrolysis
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What is the ratio of oxygen and hydrogen gases by their volume and masses on the decomposition of water? In the electrolysis of water, liter of hydrogen liberated at cathod at NTP. The hydrogen gas is obtained at the cathode and the oxygen gas is obtained at the anode.
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