The magnetic field near the surface of a neutron star has a magnitude of 1.00 x 108 T. Find the acceleration of an electron near the star moving at 1.03 x 107 m/s if both v and B are in the same plane, with B directed to the right and v directed 32.0° above B. magnitude of the acceleration =

Physics for Scientists and Engineers: Foundations and Connections
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Chapter30: Magnetic Fields And Forces
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**Problem Statement:**

The magnetic field near the surface of a neutron star has a magnitude of \(1.00 \times 10^8\) T. Find the acceleration of an electron near the star moving at \(1.03 \times 10^7\) m/s if both \(\mathbf{v}\) and \(\mathbf{B}\) are in the same plane, with \(\mathbf{B}\) directed to the right and \(\mathbf{v}\) directed \(32.0^\circ\) above \(\mathbf{B}\).

**Required:**

Calculate the magnitude of the acceleration.

**Solution Box:**

\[ \text{magnitude of the acceleration} = \] _______
Transcribed Image Text:**Problem Statement:** The magnetic field near the surface of a neutron star has a magnitude of \(1.00 \times 10^8\) T. Find the acceleration of an electron near the star moving at \(1.03 \times 10^7\) m/s if both \(\mathbf{v}\) and \(\mathbf{B}\) are in the same plane, with \(\mathbf{B}\) directed to the right and \(\mathbf{v}\) directed \(32.0^\circ\) above \(\mathbf{B}\). **Required:** Calculate the magnitude of the acceleration. **Solution Box:** \[ \text{magnitude of the acceleration} = \] _______
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