Combination of Capacitors
PHXII02:ELECTROSTATIC POTENTIAL AND CAPACITANCE

359260 In the circuit shown, find \(C\) if the effective capacitance of the whole circuit is to be 0.5 \(\mu F\). All values in the circuit are in \(\mu F\)
supporting img

1 \(\frac{6}{5}\mu F\)
2 \(4\mu F\)
3 \(\frac{7}{{11}}\mu F\)
4 \(\frac{7}{{10}}\mu F\)
PHXII02:ELECTROSTATIC POTENTIAL AND CAPACITANCE

359261 The equivalent capacitance between \(A\) and \(B\) is
supporting img

1 \(3\mu F\)
2 \(2\mu F\)
3 \(0.5\mu F\)
4 \(5\mu F\)
PHXII02:ELECTROSTATIC POTENTIAL AND CAPACITANCE

359262 Four condensers are joined as shown in the figure. The capacity of each is \(8\mu F\) The equivalent capacity between the points \(A\) and \(B\) will be
supporting img

1 \(2\mu F\)
2 \(32\mu F\)
3 \(16\mu F\)
4 \(8\mu F\)
PHXII02:ELECTROSTATIC POTENTIAL AND CAPACITANCE

359263 Three parallel plate air capacitors are connected in parallel. Each capacitor has plate area \(\frac{A}{3}\) and the separation between the plates is \(d\), 2\(d\) and 3\(d\) respectively. The equivalent capacity of combination is (\({\varepsilon _0} = \) absolute permittvity of free space)

1 \(\frac{{7{\varepsilon _0}A}}{{18d}}\)
2 \(\frac{{11{\varepsilon _0}A}}{{18d}}\)
3 \(\frac{{13{\varepsilon _0}A}}{{18d}}\)
4 \(\frac{{17{\varepsilon _0}A}}{{18d}}\)
PHXII02:ELECTROSTATIC POTENTIAL AND CAPACITANCE

359260 In the circuit shown, find \(C\) if the effective capacitance of the whole circuit is to be 0.5 \(\mu F\). All values in the circuit are in \(\mu F\)
supporting img

1 \(\frac{6}{5}\mu F\)
2 \(4\mu F\)
3 \(\frac{7}{{11}}\mu F\)
4 \(\frac{7}{{10}}\mu F\)
PHXII02:ELECTROSTATIC POTENTIAL AND CAPACITANCE

359261 The equivalent capacitance between \(A\) and \(B\) is
supporting img

1 \(3\mu F\)
2 \(2\mu F\)
3 \(0.5\mu F\)
4 \(5\mu F\)
PHXII02:ELECTROSTATIC POTENTIAL AND CAPACITANCE

359262 Four condensers are joined as shown in the figure. The capacity of each is \(8\mu F\) The equivalent capacity between the points \(A\) and \(B\) will be
supporting img

1 \(2\mu F\)
2 \(32\mu F\)
3 \(16\mu F\)
4 \(8\mu F\)
PHXII02:ELECTROSTATIC POTENTIAL AND CAPACITANCE

359263 Three parallel plate air capacitors are connected in parallel. Each capacitor has plate area \(\frac{A}{3}\) and the separation between the plates is \(d\), 2\(d\) and 3\(d\) respectively. The equivalent capacity of combination is (\({\varepsilon _0} = \) absolute permittvity of free space)

1 \(\frac{{7{\varepsilon _0}A}}{{18d}}\)
2 \(\frac{{11{\varepsilon _0}A}}{{18d}}\)
3 \(\frac{{13{\varepsilon _0}A}}{{18d}}\)
4 \(\frac{{17{\varepsilon _0}A}}{{18d}}\)
NEET Test Series from KOTA - 10 Papers In MS WORD WhatsApp Here
PHXII02:ELECTROSTATIC POTENTIAL AND CAPACITANCE

359260 In the circuit shown, find \(C\) if the effective capacitance of the whole circuit is to be 0.5 \(\mu F\). All values in the circuit are in \(\mu F\)
supporting img

1 \(\frac{6}{5}\mu F\)
2 \(4\mu F\)
3 \(\frac{7}{{11}}\mu F\)
4 \(\frac{7}{{10}}\mu F\)
PHXII02:ELECTROSTATIC POTENTIAL AND CAPACITANCE

359261 The equivalent capacitance between \(A\) and \(B\) is
supporting img

1 \(3\mu F\)
2 \(2\mu F\)
3 \(0.5\mu F\)
4 \(5\mu F\)
PHXII02:ELECTROSTATIC POTENTIAL AND CAPACITANCE

359262 Four condensers are joined as shown in the figure. The capacity of each is \(8\mu F\) The equivalent capacity between the points \(A\) and \(B\) will be
supporting img

1 \(2\mu F\)
2 \(32\mu F\)
3 \(16\mu F\)
4 \(8\mu F\)
PHXII02:ELECTROSTATIC POTENTIAL AND CAPACITANCE

359263 Three parallel plate air capacitors are connected in parallel. Each capacitor has plate area \(\frac{A}{3}\) and the separation between the plates is \(d\), 2\(d\) and 3\(d\) respectively. The equivalent capacity of combination is (\({\varepsilon _0} = \) absolute permittvity of free space)

1 \(\frac{{7{\varepsilon _0}A}}{{18d}}\)
2 \(\frac{{11{\varepsilon _0}A}}{{18d}}\)
3 \(\frac{{13{\varepsilon _0}A}}{{18d}}\)
4 \(\frac{{17{\varepsilon _0}A}}{{18d}}\)
PHXII02:ELECTROSTATIC POTENTIAL AND CAPACITANCE

359260 In the circuit shown, find \(C\) if the effective capacitance of the whole circuit is to be 0.5 \(\mu F\). All values in the circuit are in \(\mu F\)
supporting img

1 \(\frac{6}{5}\mu F\)
2 \(4\mu F\)
3 \(\frac{7}{{11}}\mu F\)
4 \(\frac{7}{{10}}\mu F\)
PHXII02:ELECTROSTATIC POTENTIAL AND CAPACITANCE

359261 The equivalent capacitance between \(A\) and \(B\) is
supporting img

1 \(3\mu F\)
2 \(2\mu F\)
3 \(0.5\mu F\)
4 \(5\mu F\)
PHXII02:ELECTROSTATIC POTENTIAL AND CAPACITANCE

359262 Four condensers are joined as shown in the figure. The capacity of each is \(8\mu F\) The equivalent capacity between the points \(A\) and \(B\) will be
supporting img

1 \(2\mu F\)
2 \(32\mu F\)
3 \(16\mu F\)
4 \(8\mu F\)
PHXII02:ELECTROSTATIC POTENTIAL AND CAPACITANCE

359263 Three parallel plate air capacitors are connected in parallel. Each capacitor has plate area \(\frac{A}{3}\) and the separation between the plates is \(d\), 2\(d\) and 3\(d\) respectively. The equivalent capacity of combination is (\({\varepsilon _0} = \) absolute permittvity of free space)

1 \(\frac{{7{\varepsilon _0}A}}{{18d}}\)
2 \(\frac{{11{\varepsilon _0}A}}{{18d}}\)
3 \(\frac{{13{\varepsilon _0}A}}{{18d}}\)
4 \(\frac{{17{\varepsilon _0}A}}{{18d}}\)