A 1.85 m long metal bar having a weight of 3.50 N and a resistance of 10.0 2, rests horizontally on conducting wires connecting it to the circuit shown in (Figure 1). The bar is in a uniform, horizontal, 1.65 T magnetic field and is not attached to the wires in the circuit. Figure a = Submit Part B What is the magnitude of the acceleration of the bar just after the switch is closed? Express your answer in meters per second squared to three significant figures. 15. ΑΣΦ Request Answer to the left 120.0 V to the right downward upward 25.0 Ω 10.0 Ω What is the direction of the acceleration of the bar just after the switch is closed? ? 1 of 1 > m/s²

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A 1.85 m long metal bar having a weight of 3.50 N and a resistance of 10.0 S2, rests horizontally on conducting
wires connecting it to the circuit shown in (Figure 1). The bar is in a uniform, horizontal, 1.65 T magnetic field and
is not attached to the wires in the circuit.
Figure
a =
Submit Request Answer
Part B
What is the magnitude of the acceleration of the bar just after the switch is closed?
Express your answer in meters per second squared to three significant figures.
15. ΑΣΦ
to the left
to the right
120.0 V
downward
upward
Submit
T
25.0 Ω
www
Request Answer
10.0 Ω
What is the direction of the acceleration of the bar just after the switch is closed?
S
?
1 of 1
m/s²
Transcribed Image Text:A 1.85 m long metal bar having a weight of 3.50 N and a resistance of 10.0 S2, rests horizontally on conducting wires connecting it to the circuit shown in (Figure 1). The bar is in a uniform, horizontal, 1.65 T magnetic field and is not attached to the wires in the circuit. Figure a = Submit Request Answer Part B What is the magnitude of the acceleration of the bar just after the switch is closed? Express your answer in meters per second squared to three significant figures. 15. ΑΣΦ to the left to the right 120.0 V downward upward Submit T 25.0 Ω www Request Answer 10.0 Ω What is the direction of the acceleration of the bar just after the switch is closed? S ? 1 of 1 m/s²
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