Determination of a chemical formula, mass of crucible is 14.9234g, crucible + dehydrated sample is 16.5852g, mass of hydrated sample is 1.6618g, Determination of the amount of water, mass of crucible + dehydrated sample is 16.2265g, mass of dehydrated Sample is 1.3031g, mass of water is 0.3587g, moles of water is 0.01991 moles, Determination of the amount of copper, mass of copper is 0.6291g, moles of copper 9.900 × 10 to the negative 3 moles, Determination of the amount of chlorine, mass of copper + water is 0.9878g, Calculate mass of Chlorine (original sample -(Cu + H2O)).
Determination of a chemical formula, mass of crucible is 14.9234g, crucible + dehydrated sample is 16.5852g, mass of hydrated sample is 1.6618g, Determination of the amount of water, mass of crucible + dehydrated sample is 16.2265g, mass of dehydrated Sample is 1.3031g, mass of water is 0.3587g, moles of water is 0.01991 moles, Determination of the amount of copper, mass of copper is 0.6291g, moles of copper 9.900 × 10 to the negative 3 moles, Determination of the amount of chlorine, mass of copper + water is 0.9878g, Calculate mass of Chlorine (original sample -(Cu + H2O)).
Introductory Chemistry: An Active Learning Approach
6th Edition
ISBN:9781305079250
Author:Mark S. Cracolice, Ed Peters
Publisher:Mark S. Cracolice, Ed Peters
Chapter10: Quantity Relationships In Chemical Reactions
Section: Chapter Questions
Problem 80E
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Determination of a chemical formula, mass of crucible is 14.9234g, crucible + dehydrated sample is 16.5852g, mass of hydrated sample is 1.6618g, Determination of the amount of water, mass of crucible + dehydrated sample is 16.2265g, mass of dehydrated Sample is 1.3031g, mass of water is 0.3587g, moles of water is 0.01991 moles, Determination of the amount of copper, mass of copper is 0.6291g, moles of copper 9.900 × 10 to the negative 3 moles, Determination of the amount of chlorine, mass of copper + water is 0.9878g, Calculate mass of Chlorine (original sample -(Cu + H2O)).
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