DELMAR'S STANDARD TXTBK.OF...>CUSTOM<
DELMAR'S STANDARD TXTBK.OF...>CUSTOM<
6th Edition
ISBN: 9781337499750
Author: Herman
Publisher: CENGAGE C
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Chapter 6, Problem 10RQ

Referring to the circuit described in Questions 8 and 9, determine the drop across each of the resistors.

160   Ω , _ _ _ _ _ _ _ V 100  Ω , _ _ _ _ _ _ _ V 82   Ω , _ _ _ _ _ _ _ V 120   Ω , _ _ _ _ _ _ _ V

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Z1 A B Z2 Z3 + Z4 1 Z5 G Z6 Z7 2 Z8 Consider the system above with the zones of protection. Answer the questions below: a) Which circuit breaker(s) should operate if there is a fault at position 1? b) Which circuit breaker(s) should operate if there is a fault at position 2? c) If the circuit breakers in case b fail to operate, which circuit breaker(s) should operate as a backup?
Determine the current, voltage and power dissipated by each of the 6 resisters in the following circuit: R47:     V:_______   I:_______   P:_______ R16:    V:_______   I:_______   P:_______ R5:     V:_______   I:_______   P:_______ R40:    V:_______   I:_______   P:_______ R22:    V:_______   I:_______   P:_______ R2 :     V:_______   I:_______   P:_______
GIVEN: Three-phase System Data: 30 Source ZLine 30 Load Ean Zan = Zbn = Zen = 0.1 + j1.5 n Source: 12020° v; Epn = 1202 – 120° v; Een = 1204120° v (grounded neutral) Line Impedance: Zline a = Zline b Zline c = 1+ j2 N; C Load Impedance: Zab 40 + j30 N; Zbc = 40 – j30 N; Zca = 50 + j0 N %3D %3D
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