
PLEASE SHOW ALL WORK 2 An electron (magnitude of its change is (q) = 1.6*109 Coulombs,...
2 An electron (magnitude of its change is (q) = 1.6x109 Coulombs, and mass of an election m = 9.11x103 kg) enters a magnetic field of strength B= 2 x 10t Tesla, with a speed of 1.5*108 m/s perpendicularity and therefore moves in a circle. Calculate the radius of that circle.
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Shown below is an experiment with an electron (q = -1.602e-19 coulombs, m= 9.109e-31 kg) fired into a magnetic field. The magnetic field is of the strenght B=1.19e-04 Tesla and is directed into the screen. The electron is fired with a velocity V=3.66e+06m/s as shown. trajectory a magnetic field Cinto the screen) electron v Trajectory B a) which path is followed by the electron? trajectory A or trajectory B? meters b) What is the radius of...
Shown in the figure below is an experiment with an electron (q = -1.602e-19 Coulombs, m = 9.109e-31 kg) fired into a magnetic field. The magnetic field is of strength B = 1.2e-04 Tesla and is directed into the screen. The electron is fired with a velocity v = 3.75e+06 m/s as shown. Trajectory A Magnetic Field (into the screen) electron + Trajectory B + Which path is followed by the electron? Trajectory A Trajectory B What is the radius...
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and mass 1 A proton (Change 1.6x 10''coulombs m= 1.67x1027 kg) enters magnetic field of strength B=0.5T, at angle of 30° to the Ê field. Calculate the net force exerted on the proton by the magnetic field? B (middle) Cinder)
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ALSO v=2X10^8 m/s
and mass 1 A proton (Change 1.6x 10''coulombs m= 1.67x1027 kg) enters a magnetic field of strength B=0.5T, at angle of 30° to the Ê field. Calculate the net force exerted on the proton by the magnetic field? B (middle) Cinder)
An electron (charge≈ 1.602 × 10−19 C; mass≈ 9.109 × 10−31 kg) moving at speed 200 m/s finds itself in a region of constant magnetic field. The magnetic field points perpendicular to the electron velocity and has strength 10−3 Tesla. (a) Find the magnitude of the magnetic force experienced by the electron. (b) The magnetic force causes cyclotron motion, so that the electron moves around a circular trajectory. Find the radius of the circular trajectory. (c) How long does it...
3. (a) Show that when a particle with mass m and charge q enters a magnetic field having its velocity v perpendicular to the direction of the magnetic field B, it will perform a mv circular path of radius R- qB (b) Using the previous result find an expression for the period T of the circular motion. (c) A charged particle moves into a region of uniform magnetic field, goes through half a circle and then exits that region, as...
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An electrons move in a circle of radius 7.10 cm in a 0.666-T magnetic field. (me = 9.11x10-31 kg and q = -1.6xx10-19C) a) What is magnitude and direction of electron's speed? b) What are the magnitude and direction of the resulting force? c) What is the frequency of rotation? d) What value of electric field could make their paths straight? .
A negatively charged ion (particle) with mass of 1.6 Times 10^-27 kg is moving with the speed of 100,000 m/s from west to east towards the North Pole. The approximate magnetic strength of the earth's pole is, B = 6 Times 10&^-5 Tesla. This charge was deflected due to the earth's magnetic field. Assume earth's magnetic field is at geographic north. Q = -1.6 Times 10^-19 coulomb, rightarrow V = 100,000 m/s What is the magnetic force due to the...
An electron moves in a circular path perpendicular to a magnetic field of magnitude 0.38 T. If the kinetic energy of the electron is 4.4x10-19 J. (me = 9.109 × 10-31 kg) (a) Find the speed of the electron. 1.903 8.512 2.692 6.019 (b) Find the radius of the circular path. 3.712 1.375 7.795 2.062