a. Find the current through resistor R2 b. Find the power dissipated by resistor R2. Resistor R3 is then removed from the circuit. c. Find the current through resistor R₂. d. Find the power dissipated by resistor R₂.

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ISBN:9780133923605
Author:Robert L. Boylestad
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Should say three resistors

1. In the figure below, all four resistors are identical and have resistance 4.50 Q. The battery has
an emf of 9.00 V.
Free
E
R₁
W
a. Find the current through resistor R₂
b. Find the power dissipated by resistor R₂.
eninioj
Resistor R3 is then removed from the circuit.
c. Find the current through resistor R₂.
d. Find the power dissipated by resistor R₂.
R₂2
Sbno ovillengeY b
everf Jeum Sbne Yo
R3
3 bagiarlo betslozi nA.t
montmt tiog $ 1A VBWB
3A
$1.3 b
$13.0
20g diw salhsq is eworie mapsib erT.21
neq eni no 9 ning je blall shipelo gdT
Transcribed Image Text:1. In the figure below, all four resistors are identical and have resistance 4.50 Q. The battery has an emf of 9.00 V. Free E R₁ W a. Find the current through resistor R₂ b. Find the power dissipated by resistor R₂. eninioj Resistor R3 is then removed from the circuit. c. Find the current through resistor R₂. d. Find the power dissipated by resistor R₂. R₂2 Sbno ovillengeY b everf Jeum Sbne Yo R3 3 bagiarlo betslozi nA.t montmt tiog $ 1A VBWB 3A $1.3 b $13.0 20g diw salhsq is eworie mapsib erT.21 neq eni no 9 ning je blall shipelo gdT
2. A charged particle has charge Q₁1 of 1.2 x 109 C and another charged particle has a
charge Q2 of 3.7 x 10-6 C. They exert a force of 2.7 x 105 N on each other due to their
respective charges. The masses of the particles are negligible.
a. How far apart are the two particles?
xod snil to construed orit niliw bień otople
zini asoros bleil er gnidhneeb vibsond
to elqulum 'pt dose inea
b. Consider an entirely separate arrangement of charges as shown below,
positioned at the three corners of an equilateral triangle. Each charge may be
modeled as a point charge, with distance d representing their center-to-center
separation. Express your answers symbolically and in unit vector notation.
i. Determine the force exerted on the +2q
charge by the -3q charge.
P.S.
ii. Determine the force exerted on the +2q
charge by the +q charge.
bns etsool,ms
- ebulingam terlpirl
(PS.
+29
d
Jarit roue
yriw vidaul A ini
+q
d
d
+y
3q
c. Using the expressions you developed in part b, determine the electric field at the
position of the +2q charge. For this part only, use that lql = 1.60 × 10 [C]
-19
-8
and d
and d = 1.5 × 10° [m]. Express your answer in unit vector notation.
eril svods alemilne
+X
d
Transcribed Image Text:2. A charged particle has charge Q₁1 of 1.2 x 109 C and another charged particle has a charge Q2 of 3.7 x 10-6 C. They exert a force of 2.7 x 105 N on each other due to their respective charges. The masses of the particles are negligible. a. How far apart are the two particles? xod snil to construed orit niliw bień otople zini asoros bleil er gnidhneeb vibsond to elqulum 'pt dose inea b. Consider an entirely separate arrangement of charges as shown below, positioned at the three corners of an equilateral triangle. Each charge may be modeled as a point charge, with distance d representing their center-to-center separation. Express your answers symbolically and in unit vector notation. i. Determine the force exerted on the +2q charge by the -3q charge. P.S. ii. Determine the force exerted on the +2q charge by the +q charge. bns etsool,ms - ebulingam terlpirl (PS. +29 d Jarit roue yriw vidaul A ini +q d d +y 3q c. Using the expressions you developed in part b, determine the electric field at the position of the +2q charge. For this part only, use that lql = 1.60 × 10 [C] -19 -8 and d and d = 1.5 × 10° [m]. Express your answer in unit vector notation. eril svods alemilne +X d
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