The moving charge has a charge of q = -2.0C and is moving inside electric and magnetic fields as drawn. Calculate the magnitude of the net force acting on it to the nearest Newton.
The moving charge has a charge of q = -2.0C and is moving inside electric and magnetic fields as drawn. Calculate the magnitude of the net force acting on it to the nearest Newton.
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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![**Diagram Description:**
- There is a moving charge, represented by a green circle with a negative sign, indicating it is negatively charged.
- The charge is moving to the left with a velocity of 500 m/s, shown by a green arrow pointing left.
- The magnetic field \( B \) is represented by blue crosses, indicating it is directed into the page. The strength of the magnetic field is given as \( B = 2.5 \, \text{T} \).
- The electric field \( E \) is shown by pink arrows pointing upwards, with a magnitude of \( E = 1000 \, \text{V/m} \).
**Problem Statement:**
The moving charge has a charge of \( q = -2.0 \, \text{C} \) and is moving inside electric and magnetic fields as drawn. Calculate the magnitude of the net force acting on it to the nearest Newton.
**Answer Box:**
[This is where students would input their calculated answer for the net force in Newtons.]
---
**Note:**
To solve the problem, students should consider both the electric force and the magnetic force acting on the charge. Use the formulas:
- Electric force: \( F_E = qE \)
- Magnetic force: \( F_B = qvB \) (using the right-hand rule to determine direction)
The net force is the vector sum of \( F_E \) and \( F_B \).](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fe797144e-f278-4cfc-bcaf-8db94ba34ace%2F013bf048-8036-4b8f-94dd-124a8cc0858f%2Fhszndfm_processed.png&w=3840&q=75)
Transcribed Image Text:**Diagram Description:**
- There is a moving charge, represented by a green circle with a negative sign, indicating it is negatively charged.
- The charge is moving to the left with a velocity of 500 m/s, shown by a green arrow pointing left.
- The magnetic field \( B \) is represented by blue crosses, indicating it is directed into the page. The strength of the magnetic field is given as \( B = 2.5 \, \text{T} \).
- The electric field \( E \) is shown by pink arrows pointing upwards, with a magnitude of \( E = 1000 \, \text{V/m} \).
**Problem Statement:**
The moving charge has a charge of \( q = -2.0 \, \text{C} \) and is moving inside electric and magnetic fields as drawn. Calculate the magnitude of the net force acting on it to the nearest Newton.
**Answer Box:**
[This is where students would input their calculated answer for the net force in Newtons.]
---
**Note:**
To solve the problem, students should consider both the electric force and the magnetic force acting on the charge. Use the formulas:
- Electric force: \( F_E = qE \)
- Magnetic force: \( F_B = qvB \) (using the right-hand rule to determine direction)
The net force is the vector sum of \( F_E \) and \( F_B \).
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