Tapping mm. The solenoid wire is then connected to a power supply so that a current of I = 4.5 A flows through the wire. Randomized Variables L= 35 m D = 4.5 cm d = 0.75 mm I= 4,5 A Part (a) Write an expression for the number of turns, N, in the solenoid. You do not need to take into account the diameter of the wire in this calculation. N = | a B 8 НОМЕ JT a d 4 6 D g h 1 2 3 j k L + END - P BACKSPACE DEL CLEAR Submit Hint Feedback I give up! Part (b) Calculate the number of turns, N, in the solenoid. Part (c) Write an expression for the length of the solenoid (L2) in terms of the diameter of the hollow tube D, the length of the wire L and the diameter of the wire d. Assume it is constructed by using only 1 layer of loops (note that most solenoids are actually constructed with many layers, to maximize the magnetic field density). Part (d) Calculate the length of the solenoid (La) in meters

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Chapter26: Current And Resistance
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Problem 7: A solenoid is created by wrapping a L = 35 m long wire around a hollow tube of diameter D = 4.5 cm. The wire diameter is d = 0.75
mm. The solenoid wire is then connected to a power supply so that a current of I = 4.5 A flows through the wire.
Randomized Variables
L= 35 m
D= 4.5 cm
d = 0.75 mm
I= 4.5 A
Part (a) Write an expression for the number of turns, N, in the solenoid. You do not need to take into account the diameter of the wire in this
calculation.
N = |
7 8
9.
JT
НOME
d
1^ AL 4
5
6.
a
h
1
2
3
j
k
+
END
-
m
P
VO BАСKSРАСE
CLEAR
DEL
Submit
Hint
Feedback
I give up!
Part (b) Calculate the number of turns, N, in the solenoid.
Part (c) Write an expression for the length of the solenoid (L2) in terms of the diameter of the hollow tube D, the length of the wire L and the
diameter of the wire d. Assume it is constructed by using only 1 layer of loops (note that most solenoids are actually constructed with many layers, to maximize
the magnetic field density).
Part (d) Calculate the length of the solenoid (L2) in meters.
Part (e) Calculate the magnitude of the magnetic field at the center of the solenoid in tesla.
Transcribed Image Text:Problem 7: A solenoid is created by wrapping a L = 35 m long wire around a hollow tube of diameter D = 4.5 cm. The wire diameter is d = 0.75 mm. The solenoid wire is then connected to a power supply so that a current of I = 4.5 A flows through the wire. Randomized Variables L= 35 m D= 4.5 cm d = 0.75 mm I= 4.5 A Part (a) Write an expression for the number of turns, N, in the solenoid. You do not need to take into account the diameter of the wire in this calculation. N = | 7 8 9. JT НOME d 1^ AL 4 5 6. a h 1 2 3 j k + END - m P VO BАСKSРАСE CLEAR DEL Submit Hint Feedback I give up! Part (b) Calculate the number of turns, N, in the solenoid. Part (c) Write an expression for the length of the solenoid (L2) in terms of the diameter of the hollow tube D, the length of the wire L and the diameter of the wire d. Assume it is constructed by using only 1 layer of loops (note that most solenoids are actually constructed with many layers, to maximize the magnetic field density). Part (d) Calculate the length of the solenoid (L2) in meters. Part (e) Calculate the magnitude of the magnetic field at the center of the solenoid in tesla.
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