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in parallel
C= C1+C2+C3
=14 μF
in series
C = C1C2C3 / C2C3 +C3C1+C1C2
= 70 / 14 +35 +10
= 70 / 59
=1.186 μF
Three capacitors, C1-5.00 AuF, C2-2.00 AμF, and C3 7.00 AuF, are connected together. Find the effective...
Three capacitors of capacitance C1=2.00 C2 =5.00 and C3=17.0 μF are connected to a 24.0 V battery as shown in the figure 1 3 C2 Calculate the charge on C3. 14258 c What is the equivalent capacitance for the circuit? How does the charge on that equivalent capacitance compare with the charge on C3? submit AnsNer Incorrect. Tries 1/20 Previous Tries Calculate the voltage across C1 Submit AtENer Tries 0/20
Three capacitors with capacitances C1, C2, and C3 are connected in different ways. Which of the following statements concerning the equivalent capacitance C is incorrect? Question 20 options: 1) C is the same no matter how C1, C2, and C3 are connected. 2) C is smallest if C1, C2, and C3 are connected in series. 3) C depends on how C1, C2, and C3 are connected. 4) C is greatest if C1, C2, and C3 are connected in parallel.
Three capacitors of capacitance
C1=3.50 μF, C2 =7.00 μF, and C3=16.0 μF are connected to a 30.0 V
battery as shown in the figure.
Calculate the charge on C3.
Please fully explain
7) Consider three capacitors: C1 6 nF, C2 12 nF, C3 21 nF a) Connect the three capacitors in a circuit (make a circuit drawing) such that the effective capacitance is the Smallest it can be: b) Are the three capacitors above connected in series, parallel, or some other combination? c) What is the effective capacitance of this circuit that has the smallest series effective capacitance using these three capacitors? 3.36 nF
Take C1= 5.00 uF, C2= 10.00 uF, and C3= 2.00 uF
Use the numbers given for C1, C2 and C3, (and V later on).
Redraw the circuits as needed.
For the top part:
a) For C1 and C2 on the left upper side, find Cleq,
(series).
b) For C1 and C2 on the right upper side, find Creq,
(series).
Redrawing the top part, will now have 3 Cs (Cleq, C3, and Creq)
in parallel. This is in series with the...
Three capacitors of capacitance C1=3.50 μF, C2 =9.00 μF, and
C3=12.0 μF are connected to a 40.0 V battery as shown in the
figure.
Calculate the charge on C3. 2.45×10-4 C Y
Calculate the voltage across C1.
You can use your answer to the previous problem to find the
voltage across C3, and then find the voltage across C1. Or you can
find the charge across the parallel combination of C1 and C2, then
find the voltage.
Capacitors C1, C2, and C3 are connected purely in parallel to a 13 volt battery. The charge in C2 is 2 times larger than the charge in C1, and C3 has a factor of 9 times less charge than C2. The total stored energy in all three capacitor is 160 micro-joules. What is the charge in C3 in micro-coulombs?
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Thanks
in advance!
What is the equivalent capacitance for the following three capacitors connected in series: C1 = 70 uF, C2 = 10 pF, and C3 = 70 UF ? F Submit Answer Tries 0/2 e Post Discussion C1 C2 C3 What is the equivalent capacitance for the following three capacitors connected in parallel: C1 = 10 pF, C2 = 30 pF, and C3 = 60 uF ? MF Submit Answer Tries 0/2
Three capacitors of capacitance C1=3.50 μF, C2 =9.50 μF, and C3=11.0 μF are connected to a 40.0 V battery as shown in the figure.1. Calculate the charge on C3.2. Calculate the voltage across C1
Three capacitors of capacitance C1=1.50 ?F,
C2 =6.00 ?F, and C3=15.0 ?F are connected to
a 30.0 V battery as shown in the figure.1. Calculate the charge on C3.2. Calculate the voltage across C1.