the total capacitace when connected in parallel

Tc=total capacitor

c1=c2=c3=0.5uf

Tc=c1+c2+c3

Tc=1.5uf

Description : If a three farad capacitor and a six farad capacitor are connected in parallel, what is their equivalent capacitance?

Last Answer : ANSWER: 9 FARADS

Description : Three capacitors 15µf, 18µf and 12µf are connected in a circuit. Find equivalent capacitance when they are connected in – 1) Series 2) Parallel

Last Answer : Ans: Value of equivalent capacitance: Given: C1= 15μF, C2=18 µF, C3= 12µF i)For Series combination of capacitors: 1/Cs = (1/C1)+( 1/C2) +(1/C3) = (1/15)+( 1/18)+( 1/12) 1/Cs = 0.0666+0.0555+0. ... Cs = 4.868 µF ii) For parallel combination of capacitors: Cp = C1 + C2 + C3 = 15 +18+ 12 = 45 µF

Description : A two farad and a four farad capacitor are connected in parallel. What single capacitance is "equivalent" to this combination?

Last Answer : ANSWER: 6 FARADS

Description : How will the total capacitance change, when two capacitors are connected in parallel?

Last Answer : The capacitance will increase if connected in parallel because it will be like you have increase surface area of a plate by connecting it to another.

Description : Equivalent capacitance ‘C’ of a system of capacitors C1,C2,C3 connected in parallel is

Last Answer : Equivalent capacitance ‘C’ of a system of capacitors C1,C2,C3 connected in parallel is C = C1+C2+C3

Description : Series and parallel capacitor problem

Last Answer : Series and parallel capacitor problem 1 : https://youtu.be/MSl5mRwtjAE Series and parallel capacitor problem 2 : https://youtu.be/yGwbpyEtIyw Series and parallel capacitor problem 3 : https:// ... https://youtu.be/_7KwEwWqiNU Series and parallel capacitor problem 10 : https://youtu.be/et8MCWV_OyE

Description : A two farad and a four farad capacitor are connected in series. What single capacitance is "equivalent" to this combination?

Last Answer : ANSWER: 4/3 FARADS

Description : Series parallel resistances problem solution

Last Answer : Series parallel resistances problem solution

Description : A 10 farad capacitor is used in a circuit. The voltage difference between the plates of the capacitor is 20 volts. What is the magnitude of the charge on each of the capacitor's plates?

Last Answer : ANSWER: 200 COULOMBS

Description : Three capacitors with different capacitances are connected in series. Which of the following statements is TRUE? w) All three of the capacitors have the same potential difference between their plates. x ... y) The capacitance of the system depends on the voltage applied across the three capacitors.

Last Answer : ANSWER: X -- THE MAGNITUDE OF THE CHARGE IS THE SAME ON ALL OF THE CAPACITOR PLATES

Description : The effective capacitance of four, 5-microfarad capacitors connected in series is: w) 0.20 microfarad x) 0.5 microfarad y) 1.0 microfarad z) 1.25 microfarad

Last Answer : ANSWER: Z -- 1.25 MICROFARAD

Description : Problem on resistance and resistivity 5

Last Answer : Problem on resistance and resistivity 5

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Last Answer : Problem on electrical power and energy 5

Description : Problem on capacitor

Last Answer : Problem on capacitor 1 : https://youtu.be/ZyT3WOFN8fs Problem on capacitor 2 : https://youtu.be/JBwEfekvutE Problem on capacitor 3 : https://youtu.be/E1lhIn5t8Mo Problem on capacitor 4 : https://youtu.be/yl651f4IUfg

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Last Answer : Problem on resistance and resistivity 13

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Last Answer : Problem on resistance and resistivity 12

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Last Answer : Problem on resistance and resistivity 11

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Last Answer : Problem on resistance and resistivity 10

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Last Answer : Problem on resistance and resistivity 9

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Last Answer : Problem on resistance and resistivity 8

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Last Answer : Problem on resistance and resistivity 7

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Last Answer : Problem on resistance and resistivity 6

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Last Answer : Problem on resistance and resistivity 4

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Last Answer : Problem on resistance and resistivity 2

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Last Answer : Problem on resistance and resistivity 1

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Last Answer : Problem on electrical power and energy 2

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Last Answer : Problem on electrical power and energy 7

Description : Problem on electrical power and energy 6

Last Answer : Problem on electrical power and energy 6

Description : if voltage is 230 Volts , frequency is 50 Hz and current is 1 ampere then what will be the resistance?

Last Answer : As V = 230v and I = 1A Therfore by ohm's law V =IR R = V/I =230/1 =230 ohm

Description : If resistance is 8 Ohm and current is 16 ampere then what will be the voltage and power?

Last Answer : 128 volts ,2048 watts

Description : Examine the three capacitors shown below. What is the capacitance of each?

Last Answer : a. 26µF or 260,00pF b. 630pF c. 9600pF

Description : 'Farad' is the unit of : (1) Capacitance (2) Inductance (3) Resistance (4) Conductance

Last Answer : (1) Capacitance Explanation: The Farad is the SI derived unit of capacitance. It is named after the English physicist Michael Faraday.

Description : ‘Farad’ is the unit of : (1) Capacitance (2) Inductance (3) Resistance (4) Conductance

Last Answer : Capacitance

Description : Why 0.04 micro farad capacitor is used in a thermistor based fire alarm?

Last Answer : Need answer

Description : Alternating voltages and phasors (Problem 5)

Last Answer : Alternating voltages and phasors (Problem 5)

Description : Matrix problem 5

Last Answer : Matrix problem 5

Last Answer : The capacity of capacitor is added and it becomes multiple of no of capacitors capacity

Description : If the capacitors are connected in parallel, then the potential difference across each capacitor is A. same B. different C. zero D. infinite

Last Answer : same

Description : What do you do when you have a problem that you can't solve until the next morning?

Last Answer : Sleep on it. Go do some exercise, burn yourself out and get rid of the nervous energy.

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Description : Alternating voltages and phasors (Problem 15)

Last Answer : Alternating voltages and phasors (Problem 15)

Description : Alternating voltages and phasors (Problem 14)

Last Answer : Alternating voltages and phasors (Problem 14)

Description : Alternating voltages and phasors (Problem 13)

Last Answer : Alternating voltages and phasors (Problem 13)