(a) Find the equivalent capacitance between points a and b for the group of capacitors connected as shown in the figure above. Take C1 = 3.00 µF, C2 = 14.0 µF, and C3 = 1.00 µF. (b) What charge is stored on C3 if the potential difference between points a and b is 60.0 V?

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Chapter30: Atomic Physics
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(a) Find the equivalent capacitance between points a and b for the group of
capacitors connected as shown in the figure above.
Take C1 = 3.00 µF, C2 = 14.0 µF, and C3 = 1.00 µF.
(b) What charge is stored on C3 if the potential difference between
points a and b is 60.0 V?

 

Please use equation sheet if possible

AV = -Ed
C = € °
å
R = PĀ
Δν
kelQ1||Q2l
r2
V = E, keqi
ri
F
E
Iql
v2
P = 1²R =
= IV
R
R = Ro[1+a(T – To)]
1
+
R1
1
+...
R3
AV = IR
Reg = R1 + R2 + R3+...
Req
kelQl
E =
r2
Areaπr2|
V = !
Hol
B =
2ar
F
Holil2
mv
r =
qB
F = qvB sin0
- %=
L
2nd
1
1
+
C1
1
Ceg = C1 + C2 + ….
Ceq
||
Transcribed Image Text:AV = -Ed C = € ° å R = PĀ Δν kelQ1||Q2l r2 V = E, keqi ri F E Iql v2 P = 1²R = = IV R R = Ro[1+a(T – To)] 1 + R1 1 +... R3 AV = IR Reg = R1 + R2 + R3+... Req kelQl E = r2 Areaπr2| V = ! Hol B = 2ar F Holil2 mv r = qB F = qvB sin0 - %= L 2nd 1 1 + C1 1 Ceg = C1 + C2 + …. Ceq ||
a
C2
C2
|C3
C2
C2
Transcribed Image Text:a C2 C2 |C3 C2 C2
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