Use the information in the picture: a) Calculate the current through R(bk) and call it I(bk) b) Calculate the power dissipated through the R2 resistor

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Use the information in the picture: a) Calculate the current through R(bk) and call it I(bk) b) Calculate the power dissipated through the R2 resistor
Coulomb constant, k= 8.987 x 10° N. m²/Cacuum permitivity, en = 8.854 x 10-12 F/ TMagnetic Permeability of vacuum, 40 = 12.566370614356 x 10-7 H|m
Magnitude of the Charge of one electron, e = -1.60217662 × 10-19 CMass of one electron, me = 9.10938356 x 10-31 kgUnless specified otherwise, each symbol carries
their usual meaning. For example, µCmeans micro coulomă
Ry
Ez
Rg
ww
R,
R6
R9
e
R3
Rs
Rz
b
a
Suppose you have the following circuit diagram. Here R = 11 K R2 = 3.3 KN, R3 = 1.1 k R4 = 11 K R = 1.1 K, R = 3.3 K R1 = 1.1 k Rs = 1.1 K,
Ro = 3.3 AMare the resistances on the circuit where N stands for kilo ohm. The electromotive forces of the batteries are E1 = 8 voltsand E2 = 2 volts
Transcribed Image Text:Coulomb constant, k= 8.987 x 10° N. m²/Cacuum permitivity, en = 8.854 x 10-12 F/ TMagnetic Permeability of vacuum, 40 = 12.566370614356 x 10-7 H|m Magnitude of the Charge of one electron, e = -1.60217662 × 10-19 CMass of one electron, me = 9.10938356 x 10-31 kgUnless specified otherwise, each symbol carries their usual meaning. For example, µCmeans micro coulomă Ry Ez Rg ww R, R6 R9 e R3 Rs Rz b a Suppose you have the following circuit diagram. Here R = 11 K R2 = 3.3 KN, R3 = 1.1 k R4 = 11 K R = 1.1 K, R = 3.3 K R1 = 1.1 k Rs = 1.1 K, Ro = 3.3 AMare the resistances on the circuit where N stands for kilo ohm. The electromotive forces of the batteries are E1 = 8 voltsand E2 = 2 volts
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