367593 A metal sample carrying a current along \(X\)-axis with density \(J_{x}\) is subjected to a magnetic field \(B_{z}\) along \(Z\) -axis. The electric field \(E_{y}\) developed along \(Y\) -axis is directly proportional to \(J_{x}\) as well as \(B_{z}\). The constant of proportionality has \(SI\) unit.
367593 A metal sample carrying a current along \(X\)-axis with density \(J_{x}\) is subjected to a magnetic field \(B_{z}\) along \(Z\) -axis. The electric field \(E_{y}\) developed along \(Y\) -axis is directly proportional to \(J_{x}\) as well as \(B_{z}\). The constant of proportionality has \(SI\) unit.
367593 A metal sample carrying a current along \(X\)-axis with density \(J_{x}\) is subjected to a magnetic field \(B_{z}\) along \(Z\) -axis. The electric field \(E_{y}\) developed along \(Y\) -axis is directly proportional to \(J_{x}\) as well as \(B_{z}\). The constant of proportionality has \(SI\) unit.
367593 A metal sample carrying a current along \(X\)-axis with density \(J_{x}\) is subjected to a magnetic field \(B_{z}\) along \(Z\) -axis. The electric field \(E_{y}\) developed along \(Y\) -axis is directly proportional to \(J_{x}\) as well as \(B_{z}\). The constant of proportionality has \(SI\) unit.