Assuming an efficiency of 32.70%,32.70%, calculate the actual yield of magnesium nitrate formed from 145.4 g145.4 g of magnesium and excess copper(II) nitrate. Mg+Cu(NO3)2⟶Mg(NO3)2+Cu
Science behind corrosion-test
Corrosion is defined as an activity that transforms refined metals into more chemically stable forms such as oxide, hydroxide, carbonate, or sulfide. It refers to the slow decomposition of things (typically metals); thanks to chemical and/or electrochemical reactions with their surroundings. Corrosion engineering is the science of preventing and controlling corrosion.
Corrosion
Corrosion is defined as an activity that transforms refined metals into more chemically stable forms such as oxide, hydroxide, carbonate, or sulfide. It refers to the slow decomposition of things (typically metals); thanks to chemical and/or electrochemical reactions with their surroundings. Corrosion engineering is the science of preventing and controlling corrosion.
Assuming an efficiency of 32.70%,32.70%, calculate the actual yield of magnesium nitrate formed from 145.4 g145.4 g of magnesium and excess copper(II) nitrate.
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Given for the following Reaction, efficiency is 32.70% -
Here , the Atomic mass/ molar mass of Different elements and compounds are -
Mg - 24.305 g/mol
Cu(NO3)2 - 187.56 g/mol
Mg(NO3)2 - 148.32 g/mol
Cu - 63.546 g/mol
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