A charge +q moves with a constant velocity w along a straight line until thetime t = to. In a time interval from t = to to t = to + At, a force perpendicular to the trajectory changes the direction without changing the magnitude of the velocity. After time t = to + At the charge moves with velocity w along a straight line and form small angle Aa with initial trajectory. a. Find the direction of the electric field caused by the acceleration, at the distant point P1. b. Find the direction in which the radiation intensity of the accelerated charge most intense. c. Find the direction in which the radiation intensity of the accelerated charge least intense. d. Point P2 is twice as far from the bend in the trajectory as P1. What fraction does the amplitude of the magnetic disturbance decrease as the radiation pulse went from P1 to P2? e. Find the total radiated energy,
A charge +q moves with a constant velocity w along a straight line until thetime t = to. In a time interval from t = to to t = to + At, a force perpendicular to the trajectory changes the direction without changing the magnitude of the velocity. After time t = to + At the charge moves with velocity w along a straight line and form small angle Aa with initial trajectory. a. Find the direction of the electric field caused by the acceleration, at the distant point P1. b. Find the direction in which the radiation intensity of the accelerated charge most intense. c. Find the direction in which the radiation intensity of the accelerated charge least intense. d. Point P2 is twice as far from the bend in the trajectory as P1. What fraction does the amplitude of the magnetic disturbance decrease as the radiation pulse went from P1 to P2? e. Find the total radiated energy,
Related questions
Question
Expert Solution
This question has been solved!
Explore an expertly crafted, step-by-step solution for a thorough understanding of key concepts.
This is a popular solution!
Trending now
This is a popular solution!
Step by step
Solved in 7 steps with 4 images