em (4): Kirchhoff's rules experiment In the figure; &=40V, R₁ = 1000 2; R₂ = 30 22; R 1200 2. Q6. The current passing through resistance R₁ (in mA) is: (c) 25 (d) 40 (a) 10.3 (b) 15 Q7. The potential difference (a) 976 acro (d) Decrease its charge. R₂ E

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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please solve queeeestion 6

Its voltage.
nside the
(b) Increase its capacitance.
(d) Decrease its charge.
Problem (4): Kirchhoff's rules experiment
In the figure;
-40V, R₁ = 1000 12; R₂ = 30 22; R³
Q6. The current passing through resistance R₁ (in mA) is:
(a) 10.3
(b) 15
(c) 25
(d) 40
Q7. The potential difference across resistance R₂ (in mV) is:
(a) 976
(b) 784
(c) 560
(d) 300
= 1200 2.
R₂5
Fig (2)
Transcribed Image Text:Its voltage. nside the (b) Increase its capacitance. (d) Decrease its charge. Problem (4): Kirchhoff's rules experiment In the figure; -40V, R₁ = 1000 12; R₂ = 30 22; R³ Q6. The current passing through resistance R₁ (in mA) is: (a) 10.3 (b) 15 (c) 25 (d) 40 Q7. The potential difference across resistance R₂ (in mV) is: (a) 976 (b) 784 (c) 560 (d) 300 = 1200 2. R₂5 Fig (2)
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