YoVDO

Physics Problem: Lorentz Force and the Hall Effect Sensor

Offered By: Dot Physics via YouTube

Tags

Physics Courses Electromagnetism Courses Electric Fields Courses Electric Potential Courses Magnetic Fields Courses

Course Description

Overview

Save Big on Coursera Plus. 7,000+ courses at $160 off. Limited Time Only!
Explore a 12-minute physics tutorial that delves into the Lorentz Force and Hall Effect Sensor. Learn how to calculate the electric field vector in a current-carrying metal bar, determine the drift velocity of charge carriers, and analyze the perpendicular electric field due to magnetic force. Discover the process of finding the change in electric potential across the bar's height. Gain valuable insights into electromagnetic interactions and their practical applications in sensor technology.

Syllabus

- Intro
- What is the vector value of the electric field in the direction of the length of the bar that goes along with the current?
- What is the drift velocity of the charge carriers negative electrons.
- What is the vector value of the electric field that is perpendicular to the current due to the magnetic force?
- What is the change in electric potential across the height of the bar?


Taught by

Dot Physics

Related Courses

Networked Life
University of Pennsylvania via Coursera
Intro to Physics
Udacity
How Things Work: An Introduction to Physics
University of Virginia via Coursera
Solar: Solar Cells, Fuel Cells and Batteries
Stanford University via Stanford OpenEdx
A Look at Nuclear Science and Technology
University of Pittsburgh via Coursera