b) For the sliding bar, lying in the field B = 0.6 a, T, velocity of the bar v = 2/5 e" ay m/s and d = 14 cm. Assume y = 0 at t= 0. Find: i. v (t= 0) ii. y (t = 0.6) v (t = 0.6) V (potential difference) at t = 0.6 as indicated by the voltmeter. iii. iv.

University Physics Volume 2
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ISBN:9781938168161
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Chapter8: Capacitance
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Problem 8.6CYU: Check Your Understanding The potential difference across a 5.0-pF capacitor is 0.40 V. (a) What is...
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b) For the sliding bar, lying in the field B = 0.6 a, T, velocity of the bar v = 2/5 e"y ay m/s and
d= 14 cm. Assume y = 0 at t = 0. Find:
i. v (t= 0)
ii. y (t = 0.6)
iii.
v (t = 0.6)
V (potential difference) at t = 0.6 as indicated by the voltmeter.
iv.
Transcribed Image Text:b) For the sliding bar, lying in the field B = 0.6 a, T, velocity of the bar v = 2/5 e"y ay m/s and d= 14 cm. Assume y = 0 at t = 0. Find: i. v (t= 0) ii. y (t = 0.6) iii. v (t = 0.6) V (potential difference) at t = 0.6 as indicated by the voltmeter. iv.
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