The 200 mm conductor carrying 3 A has a flux density of 600 At/m, the force exerted on it is: Single choice
A
63 N
B
36 N
C
630 N
D
360 N
Log in for full answers
We've collected over 50,000 authentic original questions and detailed explanations from around the globe. Log in now and get instant access to the answers!
Similar Questions
A 0.18 m section of wire is placed in a uniform magnetic field of 0.40 T. The wire carries a current of 1.70 A. The angle between the magnetic field and the wire is [math: 67.0∘]. What is the magnitude of the force experienced by the wire?
A stationary charge, Q, is placed in the middle of a magnetic field, B, and electric field, E. The magnetic field and the electric field are perpendicular to each other. What is the ratio of the force on Q caused by the magnetic field and the force caused by the electric field, [math: FBFE]?
A vertical wire carries a current straight up in a region where the magnetic field vector points due north. What is the direction of the resulting force on this current?
Question text1. a) An electron has instantaneous velocity v=6i+3j+3kkm/s and is in a magnetic field B=i+3j+2k Gauss. Calculate the three components of the force per charge acting on the electron in mN/C (millinewton per coulomb) to two significant figures (the answers can be positive or negative !).Fx= Answer 1 Question 1[input]mN/C [2]Fy= Answer 2 Question 1[input]mN/C [2] Fz= Answer 3 Question 1[input]mN/C [2] b) A proton is set in circular motion with radius r=6.2m in a magnetic field perpendicular to its path, with magnitude B1=12T. The field is amplified to B2=47T while the speed of the proton remains unchanged. What will be the radius of the new circular path? Give answer to two significant figures. Newradius= Answer 4 Question 1[input] m [4]
More Practical Tools for Students Powered by AI Study Helper
Making Your Study Simpler
Join us and instantly unlock extensive past papers & exclusive solutions to get a head start on your studies!