3. Methane hydrate (also known as methane clathrate) has a formula , and is found in very large quantities in deep sea locations around the world. Calculate the mass of methane that would be released in the decomposition of 1000 kg of methane hydrate.

Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Post-lab Questions
1. A sample of iron(II) chloride hydrate, weighs 1.025 g. After carefully removing the
water molecules from the compound, the mass of the anhydrous compound is 0.653
g. Find the empirical formula of this hydrate.
2. Nickel(II) nitrate forms a hexahydrate, . If a 5.237-g sample is heated until the water
is removed, predict the mass of the remaining anhydrous salt.
3. Methane hydrate (also known as methane clathrate) has a formula , and is found
in very large quantities in deep sea locations around the world. Calculate the mass
of methane that would be released in the decomposition of 1000 kg of methane
hydrate.
Transcribed Image Text:Post-lab Questions 1. A sample of iron(II) chloride hydrate, weighs 1.025 g. After carefully removing the water molecules from the compound, the mass of the anhydrous compound is 0.653 g. Find the empirical formula of this hydrate. 2. Nickel(II) nitrate forms a hexahydrate, . If a 5.237-g sample is heated until the water is removed, predict the mass of the remaining anhydrous salt. 3. Methane hydrate (also known as methane clathrate) has a formula , and is found in very large quantities in deep sea locations around the world. Calculate the mass of methane that would be released in the decomposition of 1000 kg of methane hydrate.
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