2) A proton is moving in a constant magnetic field, see figure, what is the direction of the force on the proton? proton Velocity B-Field
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A: The solution is given below
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A: The difference between magnetic and non-magnetic materials are as follows
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A: The solution can be achieved as follows.
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A: It is given that: B=4.4 mTF=3.2×10-15 Nq=1.6×10-19 C
Q: 10) A proton is moving in a constant magnetic field, see figure, what is the direction of the force…
A: In this question , we have given a proton is moving in a constant magnetic field...We have to find…
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A: As per our policy we can provide solution of first question only. The fundamental feature magnetic…
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A: Write the given values in the question.
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- A loop of wire lies in the plane of the page. A constant magnetic field (same at all locations) is directed out of the page. If you turn the loop slightly out of the plane, what direction is the induced current? Explain.An electron moves in a circle of radius 2.3 cm inside the magnetic field of a solenoid. The motion of electron is perpendicular to the solenoid axis. If the solenoid has 100 turns/cm and the speed of electron is 0.0460 c (c is speed of light), find the current in the solenoid.There are regions where the magnetic field of earth is almost perpendicular to the surface of Earth. What difficulty does this cause in the use of a compass? Explain with pictures and diagrams. To get an overview understanding
- When changes occur in a magnetic field that intersects a conductor, what results? Select one: a. Induced voltage. b. Increased conductor resistance. c. An overload condition. d. A short circuit.A wire with length 1m moved with velocity 0.5 m/s made angle 45 degree with x-axis, it is moved in a uniform magnetic field 0.2T along y-axis, what is the motional emf in this wire?In detail, find the magnetic field of a ring of radius R with current i at somepoint d away from the center of the ring (Draw a figure).
- One of the following is not a source of magnetostatic fields (Answer needed with explanation):(a) A de current in a wire(b) A permanent magnet( c) An accelerated charge(d) An electric field linearly changing with time( e) A charged disk rotating at uniform speedAn electron starts from rest. There are two charged plates, 12 cm apart, which an electric field strength of 175 N/C, that accelerate an electron into a magnetic field, which has a field strength of 0.260T (refer to the diagram below) (a) What is the speed of the electron as it leaves the plates/ enters the magnetic field (b) What is the magnetic force acting on the electron when it is in the magnetic field (c) What is the radius of the path the electron takes in the magnetic field (Draw the path the electron takes/ state initial direction of turn)As in the figure, two electrons are moving on the same plane with velocities of v=3x10^6 m/s and v'=1x10^6 m/s in the direction perpendicular to each other at a certain moment. The distance between them is 0.8x10-10 m.What is the magnetic force exerted by the above load on the load below, in pN (pico Newton)?
- 1. A long straight current-carrying wire is placed in a region where there is a magnetic field B that has a constant direction. If there is no magnetic force on the wire, what can you say about the direction of B relative to the wire?The force experienced by a particle of charge q moving with a velocity v in a uniform magnetic field B is given by F = q (v x B) then: a. q is always parallel to v and B b. v is always perpendicular to F and B c. F is always perpendicular to v and B d. F is always perpendicular to q and BExplain the difference between magnetic and nonmagnetic materials and give example of each.