QUESTION 1 For problem 28.2, assume a mass of 4.0 g and solve for the required magnetic field, B ***in units of mT (miliTesla)***. 5 sig. figs.

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For problem 2, assume a mass of 4.0 g and solve for the required magnetic field, B ***in units of mT (miliTesla)***. (5 sig figs)
**Problem Statement:**

A particle of mass 10 g and charge 80 μC moves through a uniform magnetic field, in a region where the free-fall acceleration is \( -9.8 \, \hat{j} \, \text{m/s}^2 \). The velocity of the particle is a constant \( 20 \, \hat{i} \, \text{km/s} \), which is perpendicular to the magnetic field. What, then, is the magnetic field?
Transcribed Image Text:**Problem Statement:** A particle of mass 10 g and charge 80 μC moves through a uniform magnetic field, in a region where the free-fall acceleration is \( -9.8 \, \hat{j} \, \text{m/s}^2 \). The velocity of the particle is a constant \( 20 \, \hat{i} \, \text{km/s} \), which is perpendicular to the magnetic field. What, then, is the magnetic field?
**Question 1**

For problem 28.2, assume a mass of 4.0 g and solve for the required magnetic field, B, in units of mT (milliTesla). Provide your answer to 5 significant figures.

*Note: There are no graphs or diagrams associated with this text.*
Transcribed Image Text:**Question 1** For problem 28.2, assume a mass of 4.0 g and solve for the required magnetic field, B, in units of mT (milliTesla). Provide your answer to 5 significant figures. *Note: There are no graphs or diagrams associated with this text.*
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