Oxygen gas can be generated by heating potassium chlorate: 2 KCIOR3R(s) → 2 KC((s) + 3 OR R(g) 1. Qualitatively, how would you expect the volume of oxygen gas generated to be related to the amount of potassium chlorate heated? Look at the data below and see if the numbers support your statement. Comment on your conclusion. Data: Mass KCIO, (x) Volume Oxygen Gas (y) 1.00 g 17.1 mL 2.50 g 1.66 in 300. mg 11.3 cm 3.00 g 30.4 cm 100. mg 5.10 mL 1.50 g 1.33 in

Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Chapter1: Introduction
Section: Chapter Questions
Problem 1.1P
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Oxygen gas can be generated by heating potassium chlorate:
2 KCIOR;R(s)
→ 2 KC(s) + 3 OR2R(g)
1. Qualitatively, how would you expect the volume of oxygen gas generated to be
related to the amount of potassium chlorate heated? Look at the data below and
see if the numbers support your statement. Comment on your conclusion.
Data:
Mass KCIO, (x)
Volume Oxygen Gas (y)
1.00 g
17.1 mL
2.50 g
1.66 in
300. mg
11.3 cm
3.00 g
30.4 cm
100. mg
5.10 mL
1.50 g
1.33 in
Transcribed Image Text:Oxygen gas can be generated by heating potassium chlorate: 2 KCIOR;R(s) → 2 KC(s) + 3 OR2R(g) 1. Qualitatively, how would you expect the volume of oxygen gas generated to be related to the amount of potassium chlorate heated? Look at the data below and see if the numbers support your statement. Comment on your conclusion. Data: Mass KCIO, (x) Volume Oxygen Gas (y) 1.00 g 17.1 mL 2.50 g 1.66 in 300. mg 11.3 cm 3.00 g 30.4 cm 100. mg 5.10 mL 1.50 g 1.33 in
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