Data was collected for a solenoid of length 130 cm and plotted on the graph below: Magnetic Field vs. Current y 0+0.00126x R=1 Magnetic Field (N/C[m/s]] 0.0014 0.0012 0.001 0.0008 0.0006 0.0004 0.0002 0 0 0.2 0.4 0.6 Current (amps) 0.8 1 1.2

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Chapter1: Units, Trigonometry. And Vectors
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How many turns are in this solenoid?

Data was collected for a solenoid of length 130 cm and plotted on the graph below:
Magnetic Field vs. Current
y=0+0.00126x R=1
Magnetic Field (N/C(m/s))
0.0014
0.0012
0.001
0.0008
0.0006
0.0004
0.0002
0
0
0.2
0.4
0.6
Current (amps)
0.8
1
1.2
Transcribed Image Text:Data was collected for a solenoid of length 130 cm and plotted on the graph below: Magnetic Field vs. Current y=0+0.00126x R=1 Magnetic Field (N/C(m/s)) 0.0014 0.0012 0.001 0.0008 0.0006 0.0004 0.0002 0 0 0.2 0.4 0.6 Current (amps) 0.8 1 1.2
Part A
How many turns are in this solenoid?
Hint: find the slope of the straight line on the graph below and
compare it to the formula for the magnetic field inside a
solenoid. Assume that the radius of the solenoid is much
smaller than the length of the solenoid, so that the formula for
an infinitely long solenoid (Eq. (2) in the lab manual) can be
used to find the magnetic field.
Ñ
Β = unlo = μ - 10
N
=
Templates
Symbols
ΑΣΦ
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Transcribed Image Text:Part A How many turns are in this solenoid? Hint: find the slope of the straight line on the graph below and compare it to the formula for the magnetic field inside a solenoid. Assume that the radius of the solenoid is much smaller than the length of the solenoid, so that the formula for an infinitely long solenoid (Eq. (2) in the lab manual) can be used to find the magnetic field. Ñ Β = unlo = μ - 10 N = Templates Symbols ΑΣΦ Submit Request Answer und undo redo reset 1 keyboard shortcuts help
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