EBK 3N3-EBK: INDUSTRIAL MOTOR CONTROL
7th Edition
ISBN: 9780176919962
Author: Herman
Publisher: VST
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Textbook Question
Chapter 50, Problem 4RQ
When using a two-input AND gate, what conditions of input must be met to have an output?
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Figure 3 shows the numerical solution of the advection equation for a scalar u along x at three
consecutive timesteps.
1.0
0.8-
0.6
0.4-
0.2
0.0
00
-0.2
-0.4
-0.6-
3.0
3.5
4.0
4.5
5.0
5.5
6.0
6.5
Figure 3: Advection equation, solution for three different timesteps.
Question 2
Figure 3 shows the numerical solution of the advection equation for a scalar u along x at three
consecutive timesteps.
1.0
0.8-
0.6-
0.4-
0.2-
0.0-
-0.2-
-0.4-
-0.6
3.0
3.5
4.0
4.5
5.0
5.5
6.0
6.5
Figure 3: Advection equation, solution for three different timesteps.
a) Provide an explanation what conditions and numerical setup could explain the curves. Identify
which of the three curves is the first, second and third timestep.
b) Consider explicit schemes with central and upwind discretisations. Explain how each of these
candidate discretisations could produce the behaviour shown in Figure 3.
c) Determine the CFL number that was used in the simulation for each of the candidate schemes for
all possible updates.
Assume that the timestep and mesh-width used are constant. Read the data to two digits of
accuracy from Figure 4 shown at the end of the question, which is an enlarged version of Figure 3.
Demonstrate your method and input data for one calculation, but then use a…
Chapter 50 Solutions
EBK 3N3-EBK: INDUSTRIAL MOTOR CONTROL
Ch. 50 - Prob. 1RQCh. 50 - What precautions must be taken when connecting...Ch. 50 - What do the letters COSMOS stand for?
Ch. 50 - When using a two-input AND gate, what conditions...Ch. 50 - When using a two-input OR gate, what conditions of...Ch. 50 - Explain the difference between an OR gate and an...Ch. 50 - When using a two-input NOR gate, what condition of...Ch. 50 - When using a two-input NAND gate, what condition...Ch. 50 - If an INVERTER is connected to the output of a...Ch. 50 - If an INVERTER is connected to the output of an OR...
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