Combination of Resistors
PHXII03:CURRENT ELECTRICITY

356979 The effective resistance across the point \(A\) and \(B\) is
supporting img

1 \(2\,\Omega \)
2 \(1\,\Omega \)
3 \(0.5\,\Omega \)
4 \(5\,\Omega \)
PHXII03:CURRENT ELECTRICITY

356980 A finite square grid, each link having resistance \({r}\), is fitted in a resistance-less conducting circular wire. Determine the equivalent resistance between \({A}\) and \({B}\) if \({r=(80 / 7) \Omega}\).
supporting img

1 \(2\,\Omega \)
2 \(6\,\Omega \)
3 \(8\,\Omega \)
4 \(10\,\Omega \)
PHXII03:CURRENT ELECTRICITY

356981 Thirteen resistance each of resistance \(R\) \(ohm\) are connected in the circuit as shown in the figure below. The effective resistance between \(A\) and \(B\) is
supporting img

1 \(R\Omega \)
2 \(2R\,\Omega \)
3 \(\frac{{2R\,}}{3}\Omega \)
4 \(\frac{{4R\,}}{3}\Omega \)
PHXII03:CURRENT ELECTRICITY

356982 The equivalent resistance between the points \(A\) and \(B\) will be (each resistance is \(15\Omega \))
supporting img

1 \(10\Omega \)
2 \(40\Omega \)
3 \(30\Omega \)
4 \(8\Omega \)
PHXII03:CURRENT ELECTRICITY

356983 Each branch in the following circuit has a resistance \(R\). The equivalent resistance of the circuit between the points \(A\) and \(B\) is
supporting img

1 8 \(R\)
2 2 \(R\)
3 \(R\)
4 4 \(R\)
PHXII03:CURRENT ELECTRICITY

356979 The effective resistance across the point \(A\) and \(B\) is
supporting img

1 \(2\,\Omega \)
2 \(1\,\Omega \)
3 \(0.5\,\Omega \)
4 \(5\,\Omega \)
PHXII03:CURRENT ELECTRICITY

356980 A finite square grid, each link having resistance \({r}\), is fitted in a resistance-less conducting circular wire. Determine the equivalent resistance between \({A}\) and \({B}\) if \({r=(80 / 7) \Omega}\).
supporting img

1 \(2\,\Omega \)
2 \(6\,\Omega \)
3 \(8\,\Omega \)
4 \(10\,\Omega \)
PHXII03:CURRENT ELECTRICITY

356981 Thirteen resistance each of resistance \(R\) \(ohm\) are connected in the circuit as shown in the figure below. The effective resistance between \(A\) and \(B\) is
supporting img

1 \(R\Omega \)
2 \(2R\,\Omega \)
3 \(\frac{{2R\,}}{3}\Omega \)
4 \(\frac{{4R\,}}{3}\Omega \)
PHXII03:CURRENT ELECTRICITY

356982 The equivalent resistance between the points \(A\) and \(B\) will be (each resistance is \(15\Omega \))
supporting img

1 \(10\Omega \)
2 \(40\Omega \)
3 \(30\Omega \)
4 \(8\Omega \)
PHXII03:CURRENT ELECTRICITY

356983 Each branch in the following circuit has a resistance \(R\). The equivalent resistance of the circuit between the points \(A\) and \(B\) is
supporting img

1 8 \(R\)
2 2 \(R\)
3 \(R\)
4 4 \(R\)
PHXII03:CURRENT ELECTRICITY

356979 The effective resistance across the point \(A\) and \(B\) is
supporting img

1 \(2\,\Omega \)
2 \(1\,\Omega \)
3 \(0.5\,\Omega \)
4 \(5\,\Omega \)
PHXII03:CURRENT ELECTRICITY

356980 A finite square grid, each link having resistance \({r}\), is fitted in a resistance-less conducting circular wire. Determine the equivalent resistance between \({A}\) and \({B}\) if \({r=(80 / 7) \Omega}\).
supporting img

1 \(2\,\Omega \)
2 \(6\,\Omega \)
3 \(8\,\Omega \)
4 \(10\,\Omega \)
PHXII03:CURRENT ELECTRICITY

356981 Thirteen resistance each of resistance \(R\) \(ohm\) are connected in the circuit as shown in the figure below. The effective resistance between \(A\) and \(B\) is
supporting img

1 \(R\Omega \)
2 \(2R\,\Omega \)
3 \(\frac{{2R\,}}{3}\Omega \)
4 \(\frac{{4R\,}}{3}\Omega \)
PHXII03:CURRENT ELECTRICITY

356982 The equivalent resistance between the points \(A\) and \(B\) will be (each resistance is \(15\Omega \))
supporting img

1 \(10\Omega \)
2 \(40\Omega \)
3 \(30\Omega \)
4 \(8\Omega \)
PHXII03:CURRENT ELECTRICITY

356983 Each branch in the following circuit has a resistance \(R\). The equivalent resistance of the circuit between the points \(A\) and \(B\) is
supporting img

1 8 \(R\)
2 2 \(R\)
3 \(R\)
4 4 \(R\)
NEET Test Series from KOTA - 10 Papers In MS WORD WhatsApp Here
PHXII03:CURRENT ELECTRICITY

356979 The effective resistance across the point \(A\) and \(B\) is
supporting img

1 \(2\,\Omega \)
2 \(1\,\Omega \)
3 \(0.5\,\Omega \)
4 \(5\,\Omega \)
PHXII03:CURRENT ELECTRICITY

356980 A finite square grid, each link having resistance \({r}\), is fitted in a resistance-less conducting circular wire. Determine the equivalent resistance between \({A}\) and \({B}\) if \({r=(80 / 7) \Omega}\).
supporting img

1 \(2\,\Omega \)
2 \(6\,\Omega \)
3 \(8\,\Omega \)
4 \(10\,\Omega \)
PHXII03:CURRENT ELECTRICITY

356981 Thirteen resistance each of resistance \(R\) \(ohm\) are connected in the circuit as shown in the figure below. The effective resistance between \(A\) and \(B\) is
supporting img

1 \(R\Omega \)
2 \(2R\,\Omega \)
3 \(\frac{{2R\,}}{3}\Omega \)
4 \(\frac{{4R\,}}{3}\Omega \)
PHXII03:CURRENT ELECTRICITY

356982 The equivalent resistance between the points \(A\) and \(B\) will be (each resistance is \(15\Omega \))
supporting img

1 \(10\Omega \)
2 \(40\Omega \)
3 \(30\Omega \)
4 \(8\Omega \)
PHXII03:CURRENT ELECTRICITY

356983 Each branch in the following circuit has a resistance \(R\). The equivalent resistance of the circuit between the points \(A\) and \(B\) is
supporting img

1 8 \(R\)
2 2 \(R\)
3 \(R\)
4 4 \(R\)
PHXII03:CURRENT ELECTRICITY

356979 The effective resistance across the point \(A\) and \(B\) is
supporting img

1 \(2\,\Omega \)
2 \(1\,\Omega \)
3 \(0.5\,\Omega \)
4 \(5\,\Omega \)
PHXII03:CURRENT ELECTRICITY

356980 A finite square grid, each link having resistance \({r}\), is fitted in a resistance-less conducting circular wire. Determine the equivalent resistance between \({A}\) and \({B}\) if \({r=(80 / 7) \Omega}\).
supporting img

1 \(2\,\Omega \)
2 \(6\,\Omega \)
3 \(8\,\Omega \)
4 \(10\,\Omega \)
PHXII03:CURRENT ELECTRICITY

356981 Thirteen resistance each of resistance \(R\) \(ohm\) are connected in the circuit as shown in the figure below. The effective resistance between \(A\) and \(B\) is
supporting img

1 \(R\Omega \)
2 \(2R\,\Omega \)
3 \(\frac{{2R\,}}{3}\Omega \)
4 \(\frac{{4R\,}}{3}\Omega \)
PHXII03:CURRENT ELECTRICITY

356982 The equivalent resistance between the points \(A\) and \(B\) will be (each resistance is \(15\Omega \))
supporting img

1 \(10\Omega \)
2 \(40\Omega \)
3 \(30\Omega \)
4 \(8\Omega \)
PHXII03:CURRENT ELECTRICITY

356983 Each branch in the following circuit has a resistance \(R\). The equivalent resistance of the circuit between the points \(A\) and \(B\) is
supporting img

1 8 \(R\)
2 2 \(R\)
3 \(R\)
4 4 \(R\)