2- A 40.0 ampere current flowed through molten iron(III) chloride for 5 hours. Compute the mass of iron that is produced during this time. [ F= 96500 Cmol·']

General, Organic, and Biological Chemistry
7th Edition
ISBN:9781285853918
Author:H. Stephen Stoker
Publisher:H. Stephen Stoker
Chapter8: Solutions
Section: Chapter Questions
Problem 8.9EP: A solution is made by dissolving 34.0 g of NaCl in 100 g of H2O at 0C. Based on the data in Table...
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1- With appropriate diagram, estimate the additional grams of
NaNO, which are needed to keep a solution saturated when
the temperature changes from 10°C to 40°C in 200 gm of
(Refer to the figure: solubility curves)
water.
Transcribed Image Text:1- With appropriate diagram, estimate the additional grams of NaNO, which are needed to keep a solution saturated when the temperature changes from 10°C to 40°C in 200 gm of (Refer to the figure: solubility curves) water.
2- A 40.0 ampere current flowed through molten iron(III) chloride
for 5 hours. Compute the mass of iron that is produced during this
time. [ F= 96500 Cmol']
Transcribed Image Text:2- A 40.0 ampere current flowed through molten iron(III) chloride for 5 hours. Compute the mass of iron that is produced during this time. [ F= 96500 Cmol']
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