360666 A compass needle whose magnetic moment is \({60 {Am}^{2}}\) is pointing geographical north at a certain place whereas the horizontal component of the earth's magnetic field is \({40 \mu {Wb} / {m}^{2}}\) and experiences a torque of \({1.2 \times 10^{-3} {Nm}}\). What is the declination of the place in degrees?
360668 A dip needle vibrates in the vertical plane perpendicular to the magnetic meridan. The time period of vibration is found to be \(2 \mathrm{~s}\). The same needle is then allowed to vibrate in the horizontal plane, and the time period is again found to be 2\(s\). Then the angle of dip is
360666 A compass needle whose magnetic moment is \({60 {Am}^{2}}\) is pointing geographical north at a certain place whereas the horizontal component of the earth's magnetic field is \({40 \mu {Wb} / {m}^{2}}\) and experiences a torque of \({1.2 \times 10^{-3} {Nm}}\). What is the declination of the place in degrees?
360668 A dip needle vibrates in the vertical plane perpendicular to the magnetic meridan. The time period of vibration is found to be \(2 \mathrm{~s}\). The same needle is then allowed to vibrate in the horizontal plane, and the time period is again found to be 2\(s\). Then the angle of dip is
360666 A compass needle whose magnetic moment is \({60 {Am}^{2}}\) is pointing geographical north at a certain place whereas the horizontal component of the earth's magnetic field is \({40 \mu {Wb} / {m}^{2}}\) and experiences a torque of \({1.2 \times 10^{-3} {Nm}}\). What is the declination of the place in degrees?
360668 A dip needle vibrates in the vertical plane perpendicular to the magnetic meridan. The time period of vibration is found to be \(2 \mathrm{~s}\). The same needle is then allowed to vibrate in the horizontal plane, and the time period is again found to be 2\(s\). Then the angle of dip is
360666 A compass needle whose magnetic moment is \({60 {Am}^{2}}\) is pointing geographical north at a certain place whereas the horizontal component of the earth's magnetic field is \({40 \mu {Wb} / {m}^{2}}\) and experiences a torque of \({1.2 \times 10^{-3} {Nm}}\). What is the declination of the place in degrees?
360668 A dip needle vibrates in the vertical plane perpendicular to the magnetic meridan. The time period of vibration is found to be \(2 \mathrm{~s}\). The same needle is then allowed to vibrate in the horizontal plane, and the time period is again found to be 2\(s\). Then the angle of dip is