ELECTRICITY FOR TRADES
ELECTRICITY FOR TRADES
3rd Edition
ISBN: 9780078118630
Author: Petruzella
Publisher: RENT MCG
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Chapter 3.1, Problem 9RQ
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Explain the operation of an electrostatic paint-spraying process.

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2. a) Given the circuit shown below in figure P2, compute the inductor current, iL(t), for t≥ 0 utilizing the generalized equation method presented in lecture. Assume the switch shown in figure P2 is ideal and opens in zero time at t=0[s]. The current and voltage conventions shown must be used in the analysis to receive any credit. b) Use your answer to part 2(a) above and the relationship between the inductor current, iL(t), and the inductor voltage, VL(t), shown below in equation P2 to compute VL(t) for t≥0. Equation P2: V(t) = L di(t) dt + Vs = 100[V] t=0 I₁ R₁ = 100[2] w V₁ A ||iz(t) V2(t) R₂ = 200[2] ↓iL(t) | iz(t) V3(t) R3 = 200[2] VL(t) L = 1[H] B Figure P2
I WANT THIS PART BELWO ONLY2. For the system above the input is v(t) = 2 + 4 sin(0.25t +20°) + 5cos (t -25°)a) Determine the output signal vo (t).b) Determine the input normalized power pertaining to vt(t)c) Determine the percent of input normalized power that is transferred to the outputVo(t)
s+10 H(s) = 10. 1. Rewrite the network function as a product of recognizable 1st order responses. 2. Name each response (gain, LP, HP, diff., integrator, augmented diff.) and provide a numeric value for the respective critical frequency. • Clue: Integrators and differentiators are uniquely specified by their "unity gain” frequency the frequency at which the magnitude response becomes 1 or 1 dB. 3. Sketch the corresponding magnitude response on a dB-per-decade (log-log) scale.
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