31 Problem 1: Consider a parallel-plate capacitor made up of two conducting plates with dimensions 39 mm × 32 mm. Part (a) If the separation between the plates is 1.1 mm, what is the capacitance, in pF, between them?

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Chapter16: Electrical Energy And Capacitance
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Problem 6CQ: An air-filled parallel-plate capacitor with capacitance C0 stores charge Q on plates separated by...
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Problem 1: Consider a parallel-plate capacitor made up of two conducting plates with dimensions 39 mm × 32 mm.
Part (a) If the separation between the plates is 1.1 mm, what is the capacitance, in pF, between them?
C = 1.00
7 (789 HOME
EM 4 5 6
sin() cos( tan()
cotan() asin() acos()
atan() acotan() sinh()
cosh() tanh() cotanh()
Degrees O Radians
/* 1 2 3
0
VO BACKSPACE DEL
Part (b) If there is 0.59 nC of charged stored on the positive plate, what is the potential, in volts, across the capacitor?
V=
E' =
sin())
cotan()
atan()
cosh()
cos()
tan()
asin()
acos()
acotan()
sinh()
4 5 6
12 3
0
NO BACKSPACE DEL CLEAR
+ -
END
tanh() cotanh()
Degrees O Radians
Part (c) What is the magnitude of the electric field, in newtons per coulomb, inside this capacitor?
E=|
→
sin()
cos()
cotan()
asin()
atan() acotan
cosh()
END
CLEAR
πι() 7 8 9
EL
acos()
sinh()
tan() T () 7
ETAAL 4
/
tanh() cotanh()
ⒸDegrees O Radians
tan()
T() 7 89 HOME
sin()) cos()
cotan() asin()
E^4
acos()
sinh()
5 6
1 2 3
cosh()
atan() acotan()
tanh() cotanh()
Degrees O Radians
+
0
END
NO BACKSPACE DEL CLEAR
Part (d) If the separation between the plates doubles, what will the electric field be if the charge is kept constant?
89
5 6
1 2 3
+ | - | 0.
END
NO BACKSPACE
BACKSPACE DEL CLEAR
HOME
HOME
Transcribed Image Text:*3 Problem 1: Consider a parallel-plate capacitor made up of two conducting plates with dimensions 39 mm × 32 mm. Part (a) If the separation between the plates is 1.1 mm, what is the capacitance, in pF, between them? C = 1.00 7 (789 HOME EM 4 5 6 sin() cos( tan() cotan() asin() acos() atan() acotan() sinh() cosh() tanh() cotanh() Degrees O Radians /* 1 2 3 0 VO BACKSPACE DEL Part (b) If there is 0.59 nC of charged stored on the positive plate, what is the potential, in volts, across the capacitor? V= E' = sin()) cotan() atan() cosh() cos() tan() asin() acos() acotan() sinh() 4 5 6 12 3 0 NO BACKSPACE DEL CLEAR + - END tanh() cotanh() Degrees O Radians Part (c) What is the magnitude of the electric field, in newtons per coulomb, inside this capacitor? E=| → sin() cos() cotan() asin() atan() acotan cosh() END CLEAR πι() 7 8 9 EL acos() sinh() tan() T () 7 ETAAL 4 / tanh() cotanh() ⒸDegrees O Radians tan() T() 7 89 HOME sin()) cos() cotan() asin() E^4 acos() sinh() 5 6 1 2 3 cosh() atan() acotan() tanh() cotanh() Degrees O Radians + 0 END NO BACKSPACE DEL CLEAR Part (d) If the separation between the plates doubles, what will the electric field be if the charge is kept constant? 89 5 6 1 2 3 + | - | 0. END NO BACKSPACE BACKSPACE DEL CLEAR HOME HOME
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