jeemains.netfield at the centre of the loop is ba. when the dipole moment is doubled by keeping the...

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Page 1: jeemains.netfield at the centre of the loop is Ba. When the dipole moment is doubled by keeping the current constant, the magnetic field at the centre of the loop is B2. The ratio
Page 2: jeemains.netfield at the centre of the loop is Ba. When the dipole moment is doubled by keeping the current constant, the magnetic field at the centre of the loop is B2. The ratio
Page 3: jeemains.netfield at the centre of the loop is Ba. When the dipole moment is doubled by keeping the current constant, the magnetic field at the centre of the loop is B2. The ratio
Page 4: jeemains.netfield at the centre of the loop is Ba. When the dipole moment is doubled by keeping the current constant, the magnetic field at the centre of the loop is B2. The ratio
Page 5: jeemains.netfield at the centre of the loop is Ba. When the dipole moment is doubled by keeping the current constant, the magnetic field at the centre of the loop is B2. The ratio
Page 6: jeemains.netfield at the centre of the loop is Ba. When the dipole moment is doubled by keeping the current constant, the magnetic field at the centre of the loop is B2. The ratio
Page 7: jeemains.netfield at the centre of the loop is Ba. When the dipole moment is doubled by keeping the current constant, the magnetic field at the centre of the loop is B2. The ratio
Page 8: jeemains.netfield at the centre of the loop is Ba. When the dipole moment is doubled by keeping the current constant, the magnetic field at the centre of the loop is B2. The ratio
Page 9: jeemains.netfield at the centre of the loop is Ba. When the dipole moment is doubled by keeping the current constant, the magnetic field at the centre of the loop is B2. The ratio
Page 10: jeemains.netfield at the centre of the loop is Ba. When the dipole moment is doubled by keeping the current constant, the magnetic field at the centre of the loop is B2. The ratio
Page 11: jeemains.netfield at the centre of the loop is Ba. When the dipole moment is doubled by keeping the current constant, the magnetic field at the centre of the loop is B2. The ratio
Page 12: jeemains.netfield at the centre of the loop is Ba. When the dipole moment is doubled by keeping the current constant, the magnetic field at the centre of the loop is B2. The ratio
Page 13: jeemains.netfield at the centre of the loop is Ba. When the dipole moment is doubled by keeping the current constant, the magnetic field at the centre of the loop is B2. The ratio
Page 14: jeemains.netfield at the centre of the loop is Ba. When the dipole moment is doubled by keeping the current constant, the magnetic field at the centre of the loop is B2. The ratio
Page 15: jeemains.netfield at the centre of the loop is Ba. When the dipole moment is doubled by keeping the current constant, the magnetic field at the centre of the loop is B2. The ratio
Page 16: jeemains.netfield at the centre of the loop is Ba. When the dipole moment is doubled by keeping the current constant, the magnetic field at the centre of the loop is B2. The ratio
Page 17: jeemains.netfield at the centre of the loop is Ba. When the dipole moment is doubled by keeping the current constant, the magnetic field at the centre of the loop is B2. The ratio
Page 18: jeemains.netfield at the centre of the loop is Ba. When the dipole moment is doubled by keeping the current constant, the magnetic field at the centre of the loop is B2. The ratio
Page 19: jeemains.netfield at the centre of the loop is Ba. When the dipole moment is doubled by keeping the current constant, the magnetic field at the centre of the loop is B2. The ratio
Page 20: jeemains.netfield at the centre of the loop is Ba. When the dipole moment is doubled by keeping the current constant, the magnetic field at the centre of the loop is B2. The ratio