The calculated experimental values for the heat capacity of ammonia are: T(C) Cp (cal/g.mol C) 0 8.371 18 8.472 25 8.514 100 9.035 200 9.824 300 10.606 400 11.347 500 12.045 1. Fit the data for the following function: Cp=aT³+bT2+ cT +d Where T is in C 2. Then calculate amount of heat Q required to increase the temperature of 150 mol/hr of ammonia vapor from 0 C to 200 C if you know that: Tour Q=nf Cpdt Tin
The calculated experimental values for the heat capacity of ammonia are: T(C) Cp (cal/g.mol C) 0 8.371 18 8.472 25 8.514 100 9.035 200 9.824 300 10.606 400 11.347 500 12.045 1. Fit the data for the following function: Cp=aT³+bT2+ cT +d Where T is in C 2. Then calculate amount of heat Q required to increase the temperature of 150 mol/hr of ammonia vapor from 0 C to 200 C if you know that: Tour Q=nf Cpdt Tin
Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
Problem 1RQ
Related questions
Question
![The calculated experimental values for the heat capacity of ammonia are:
T(C)
0
Cp (cal/g.mol C)
8.371
18
8.472
25
8.514
100
9.035
200
9.824
300
10.606
400
11.347
500
12.045
1. Fit the data for the following function:
Cp=aT³+bT²+eT+d
Where T is in C
2. Then calculate amount of heat Q required to increase the temperature of 150 mol/hr of
ammonia vapor from 0 C to 200 C if you know that:
Tout
Q=n Cpdt
Tin](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fc38ab6ce-6c94-40aa-8aba-19043acb1e21%2Fddb047f2-de41-4a6f-b8d4-4c897a005caf%2Fqwj6p6j_processed.jpeg&w=3840&q=75)
Transcribed Image Text:The calculated experimental values for the heat capacity of ammonia are:
T(C)
0
Cp (cal/g.mol C)
8.371
18
8.472
25
8.514
100
9.035
200
9.824
300
10.606
400
11.347
500
12.045
1. Fit the data for the following function:
Cp=aT³+bT²+eT+d
Where T is in C
2. Then calculate amount of heat Q required to increase the temperature of 150 mol/hr of
ammonia vapor from 0 C to 200 C if you know that:
Tout
Q=n Cpdt
Tin
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