A very long solenoid of inner radius 3.25 cm creates an oscillating magnetic field B of the form B = Bmax COS (@t) For this solenoid, Bmax = 0.00725 T and o = 379 rad/s. What is the maximum value Emax of the induced electric field at a perpendicular distance 1.25 cm from the axis of the solenoid and near the center of the solenoid's length? 1.20 x10-7 Emax V/m Incorrect What is the maximum value of the induced electric field Emax at a perpendicular distance 6.05 cm from the axis of the solenoid and near the center of the solenoid's length? 5.79 x10-7 Emax V/m Incorrect II
A very long solenoid of inner radius 3.25 cm creates an oscillating magnetic field B of the form B = Bmax COS (@t) For this solenoid, Bmax = 0.00725 T and o = 379 rad/s. What is the maximum value Emax of the induced electric field at a perpendicular distance 1.25 cm from the axis of the solenoid and near the center of the solenoid's length? 1.20 x10-7 Emax V/m Incorrect What is the maximum value of the induced electric field Emax at a perpendicular distance 6.05 cm from the axis of the solenoid and near the center of the solenoid's length? 5.79 x10-7 Emax V/m Incorrect II
Related questions
Question
Please help with both parts:
A very long solenoid of inner radius 3.25 cm3.25 cm creates an oscillating magnetic field ?B of the form
?=?maxcos(??)B=Bmaxcos(ωt)
For this solenoid, ?max=0.00725 TBmax=0.00725 T and ?=379 rad/s.ω=379 rad/s.
What is the maximum value ?maxEmax of the induced electric field at a perpendicular distance 1.25 cm1.25 cm from the axis of the solenoid and near the center of the solenoid's length?
What is the maximum value of the induced electric field ?maxEmax at a perpendicular distance 6.05 cm6.05 cm from the axis of the solenoid and near the center of the solenoid's length?
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 5 steps with 4 images