a rod of semiconducting meterial of length L = 4m and cross-sectioanal area A=5mm2 lies along the x axis between x=0 and x=L. the meterial obeys ohms law, and its resistivity varies along the rod according to p=p0(1-(x2/L2)) where p0=5 * 10-4 ohm*m. the end of the rod at x=0 is at a potential V0= 20 V greater than the end at x = L. a)what is the total resistance, in units of ohm, of the rod ? b)what is the current, in units of miliamperes in the rod? c)what is the electric potential, in units of Volt in the rod at x=L/2 ? d)what is the electric field magnitude E, in units of V/m, in the rod at x=L/2 ?
a rod of semiconducting meterial of length L = 4m and cross-sectioanal area A=5mm2 lies along the x axis between x=0 and x=L. the meterial obeys ohms law, and its resistivity varies along the rod according to p=p0(1-(x2/L2)) where p0=5 * 10-4 ohm*m. the end of the rod at x=0 is at a potential V0= 20 V greater than the end at x = L. a)what is the total resistance, in units of ohm, of the rod ? b)what is the current, in units of miliamperes in the rod? c)what is the electric potential, in units of Volt in the rod at x=L/2 ? d)what is the electric field magnitude E, in units of V/m, in the rod at x=L/2 ?
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ISBN:9780133923605
Author:Robert L. Boylestad
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a rod of semiconducting meterial of length L = 4m and cross-sectioanal area A=5mm2 lies along the x axis between x=0 and x=L. the meterial obeys ohms law, and its resistivity varies along the rod according to p=p0(1-(x2/L2)) where p0=5 * 10-4 ohm*m. the end of the rod at x=0 is at a potential V0= 20 V greater than the end at x = L.
a)what is the total resistance, in units of ohm, of the rod ?
b)what is the current, in units of miliamperes in the rod?
c)what is the electric potential, in units of Volt in the rod at x=L/2 ?
d)what is the electric field magnitude E, in units of V/m, in the rod at x=L/2 ?
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