Q. 2: The velocity of an electron at an instant moving in a magnetic field B = (3.0 î + 4.0ĵ)m given by v = (300 î – 400ĵ)km/s. Calculate the magnetic force acting on the elec What is the radius of the electron orbit? %3D

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Chapter1: Units, Trigonometry. And Vectors
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**Question 2:**

The velocity of an electron at an instant moving in a magnetic field **B** is given by:

\[
\mathbf{v} = (300 \hat{\mathbf{i}} - 400 \hat{\mathbf{j}}) \, \text{km/s}
\]

Calculate the magnetic force acting on the electron. What is the radius of the electron orbit?

**Magnetic Field:**

\[
\mathbf{B} = (3.0 \hat{\mathbf{i}} + 4.0 \hat{\mathbf{j}}) \, \text{mT}
\]
Transcribed Image Text:**Question 2:** The velocity of an electron at an instant moving in a magnetic field **B** is given by: \[ \mathbf{v} = (300 \hat{\mathbf{i}} - 400 \hat{\mathbf{j}}) \, \text{km/s} \] Calculate the magnetic force acting on the electron. What is the radius of the electron orbit? **Magnetic Field:** \[ \mathbf{B} = (3.0 \hat{\mathbf{i}} + 4.0 \hat{\mathbf{j}}) \, \text{mT} \]
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