Introductory Circuit Analysis; Laboratory Manual For Introductory Circuit Analysis Format: Kit/package/shrinkwrap
Introductory Circuit Analysis; Laboratory Manual For Introductory Circuit Analysis Format: Kit/package/shrinkwrap
13th Edition
ISBN: 9780134297446
Author: Boylestad, Robert L.
Publisher: Prentice Hall
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Textbook Question
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Chapter 11, Problem 1P

For the electromagnet in Fig. 11.75:

a. Find the flux density in Wb/m2.

b. What is the flux density in teslas?

c. What is the applied magnetmotive force?

d. What would the reading of the meter in Fig. 11.14 read in gauss?

Chapter 11, Problem 1P, For the electromagnet in Fig. 11.75: a. Find the flux density in Wb/m2. b. What is the flux density

Fig. 11.75

Expert Solution
Check Mark
To determine

(a)

The value of flux density.

Answer to Problem 1P

The value of flux density is 0.04Wbm2.

Explanation of Solution

Concept used:

Write the expression for magnetic flux density:

  B=ϕA   ............(1)

Here, B is magnetic flux density, ϕ is the flux and A is the area.

Calculation:

Substitute 4×104Wb for ϕ and 0.01m2 for A in equation (1).

  B=4× 10 4Wb0.01m2=0.04Wbm2

Conclusion:

Thus,value of flux density is 0.04Wbm2.

Expert Solution
Check Mark
To determine

(b)

The flux density in tesla.

Answer to Problem 1P

The value of flux density in tesla is 0.04T.

Explanation of Solution

Concept used:

  1T=1Wbm2

Calculation:

The value of flux density B is 0.04Wbm2.

  B=0.04Wbm2( 1T 1 Wb m 2 )=0.04T

Conclusion:

Thus, value of flux density in tesla is 0.04T.

Expert Solution
Check Mark
To determine

(c)

The value of applied magnetomotive force.

Answer to Problem 1P

The value of applied magnetomotive force is 88At.

Explanation of Solution

Concept used:

Write the expression for magnetomotive force.

  F=NI   ............(2)

Here, F is magnetomotive force, N is number of turns and I is value of current.

Calculation:

Substitute 40 for N and 2.2A for I in equation (2).

  F=40(2.2A)=88At

Conclusion:

Thus,value of applied magnetomotive force is 88At.

Expert Solution
Check Mark
To determine

(d)

The value of flux density in gauss.

Answer to Problem 1P

The value of flux density in gauss is 400gauss.

Explanation of Solution

Concept used:

  1T=104gauss

Calculation:

The value of flux density B in tesla is 0.04T.

  B=0.04T( 1gauss 10 4 T)=400gauss

Conclusion:

Thus, the value of flux density in gauss is 400gauss.

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Chapter 11 Solutions

Introductory Circuit Analysis; Laboratory Manual For Introductory Circuit Analysis Format: Kit/package/shrinkwrap

Ch. 11 - For the circuit of Fig. 11.78 composed of standard...Ch. 11 - For the circuit in Fig. 11.79 composed of standard...Ch. 11 - For the network of Fig. 11.80. a. Write the...Ch. 11 - Give a supply of 18 V, use standard values to...Ch. 11 - For the circuit in Fig. 11.82: a. Write the...Ch. 11 - In this problem, the effect of reversing the...Ch. 11 - For the network of Fig. 11.84: a. Find the...Ch. 11 - Prob. 18PCh. 11 - Prob. 19PCh. 11 - Prob. 20PCh. 11 - For the network in Fig. 11.88: a. Determine the...Ch. 11 - For the network in Fig. 11.89: a. Write the...Ch. 11 - Prob. 23PCh. 11 - For Fig. 11.91: a. Determine the mathematical...Ch. 11 - For Fig. 11.92: a. Determine the mathematical...Ch. 11 - For the network in Fig. 11.93, the switch is...Ch. 11 - The switch in Fig. 11.94 has been open for a long...Ch. 11 - Prob. 28PCh. 11 - The switch for the network in Fig. 11.96 has been...Ch. 11 - The switch in Fig. 11.97 has been closed for a...Ch. 11 - Given iL=100mA(1e-t/20ms) a. Determine iLatt=1ms....Ch. 11 - a. If the measured current for an inductor during...Ch. 11 - The network in Fig. 11.98 employs a DMM with an...Ch. 11 - Find the waveform for the voltage induced across a...Ch. 11 - Find the waveform for the voltage induced across a...Ch. 11 - Prob. 36PCh. 11 - Find the total inductance of the circuit of Fig....Ch. 11 - Find the total inductance for the network of Fig....Ch. 11 - Reduce the network in Fig. 11.104 to the fewest...Ch. 11 - Reduce the network in Fig. 11.105 to the fewest...Ch. 11 - Reduce the network of Fig. 11.106 to the fewest...Ch. 11 - For the network in Fig. 11.107: a. Write the...Ch. 11 - For the network in Fig. 11.108: a. Write the...Ch. 11 - For the network in Fig. 11.109. a. Find the...Ch. 11 - Find the steady-state currents I1 and I2 for the...Ch. 11 - Find the steady-state currents and voltages for...Ch. 11 - Find the steady-state currents and voltages for...Ch. 11 - Find the indicated steady-state currents and...Ch. 11 - Prob. 49PCh. 11 - Using PSpice or Multisim, verify the results of...Ch. 11 - Using the PSpice or Multisim, find the solution to...Ch. 11 - Using PSpice or Multisim, find the solution to...Ch. 11 - Using PSpice or Multisim, verify the results of...
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