A 1-D conduction heat transfer problem with internal energy generation is governed by the following equation: d'T è dr =0 where è = 5E5 and k = 32 If you are given the following node diagram with a spacing of Ax = .02m and know that T= 611K and T2 = 600K, write the general equation for these internal nodes in finite difference form and determine the m-K temperature at nodes 3 and 4. Insulated Ar For the answer window, enter the temperature at node 4 in Kelvin (K). Your Answer: Answer units
A 1-D conduction heat transfer problem with internal energy generation is governed by the following equation: d'T è dr =0 where è = 5E5 and k = 32 If you are given the following node diagram with a spacing of Ax = .02m and know that T= 611K and T2 = 600K, write the general equation for these internal nodes in finite difference form and determine the m-K temperature at nodes 3 and 4. Insulated Ar For the answer window, enter the temperature at node 4 in Kelvin (K). Your Answer: Answer units
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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data:image/s3,"s3://crabby-images/86df3/86df357335cf24a6950a9d4e023dcb85c3279d1f" alt="A 1-D conduction heat transfer problem with internal energy generation is governed by the following equation:
+-=
dx2 =0
W
where è = 5E5 and k = 32 If you are given the following node diagram with a spacing of Ax = .02m and know that
m-K
T = 611K and T, = 600K, write the general equation for these internal nodes in finite difference form and determine the
temperature at nodes 3 and 4.
Insulated
Ar
, T
For the answer window, enter the temperature at node 4 in Kelvin (K).
Your Answer:
EN
SORN
Answer
units
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Transcribed Image Text:A 1-D conduction heat transfer problem with internal energy generation is governed by the following equation:
+-=
dx2 =0
W
where è = 5E5 and k = 32 If you are given the following node diagram with a spacing of Ax = .02m and know that
m-K
T = 611K and T, = 600K, write the general equation for these internal nodes in finite difference form and determine the
temperature at nodes 3 and 4.
Insulated
Ar
, T
For the answer window, enter the temperature at node 4 in Kelvin (K).
Your Answer:
EN
SORN
Answer
units
Pri
qu) 232 PM
4/27/2022
99+
66°F Sunny a .
20
ENLARGED
oW TEXTURE
PRT SCR
IOS
DEL
F8
F10
F12
BACKSPACE
num
-
%3D
LOCK
HOME
PGUP
170
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