A beam of electrons travelling at 10.2 x 107 m/s is bent into a circle of radius 6 x 10-2 m by a magnetic field of induction 10-2 wb/m², Find e/m
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![A beam of electrons travelling at
10.2 x 107 m/s is bent into a circle of radius
6 x 10-2 m by a magnetic field of induction
10-2 wb/m2. Find e/m.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F4a78dc66-c384-487b-b06f-a91d6a53ca98%2F10a30cd1-15fd-4a25-ae61-5c089776eb97%2Fd4lg1rg_processed.jpeg&w=3840&q=75)
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- A cosmic ray electron moves at 7.10 ✕ 106 m/s perpendicular to the Earth's magnetic field at an altitude where field strength is 1.15 ✕ 10−5 T. What is the radius (in m) of the circular path the electron follows?When a -3.2 C charge moves into a magnetic field of strength 6.5 x 10-3 T it experiences a magnetic force of magnitude 7.1 N. Calculate the speed of the charge in m/s.An electron moves in a circular path perpendicular to a magnetic field of magnitude 0.230 T. If the kinetic energy of the electron is 3.70 x 10-19 J, find the speed of the electron and the radius of the circular path. (a) the speed of the electron 9.02e5 ✔ m/s (b) the radius of the circular path Your response is off by a multiple of ten. um
- An electron moves in a circular path perpendicular to a magnetic field of magnitude 0.300 T. If the kinetic energy of the electron is 3.00 ✕ 10−19 J, find the speed of the electron and the radius of the circular path. (a) the speed of the electron m/s(b) the radius of the circular path ?m1. A 11.8 ?F capacitor is charged by a 25.0 V battery through a resistance R. The capacitor reaches a potential difference of 4.00 V at a time 3.00 s after charging begins. Find R. ________ kΩ 2.A proton moves perpendicular to a uniform magnetic field at a speed of 1.20 107 m/s and experiences an acceleration of 1.40 1013 m/s2 in the positive x-direction when its velocity is in the positive z-direction. Determine the magnitude and direction of the field. magnitude _______ PLEASE ANSWER BOTH6.
- A wire extends from x = - (infinity) to x = 0 on the x-axis, then turns and extends from y = 0 to y = (infinity) on the y-axis. The direction of the current is in the positive direction. What is the direction of the magnetic field at x = 5 m, y = 0m?T electrical force between two uranium nuclei placed a distance of 1.81 x 10^-12 m apart from one another? 0.952 N 0.298 N 0.595 N 0.833 N So here goes What is the magnitude of theTutorial Exercise In an experiment designed to measure the Earth's magnetic field using the Hall effect, a copper bar 0.415 cm thick is positioned along an east-west direction. Assume n = 8.46 x 1028 electrons/m3 and the plane of the bar is rotated to be perpendicular to the direction of B. If a current of 8.00 A in the conductor results in a Hall voltage of 5.52 x 10-12 v, what is the magnitude of the Earth's magnetic field at this location?
- Problem 22: A proton moves in a circular path of the same radius as a cosmic ray electron moving at 9.5 × 106 m/s perpendicular to the Earth’s magnetic field at an altitude where the field strength is 1.0 × 10-5 T. Part (a) What will the speed of the proton be in m/s? vp = ______ Part (b) What would the radius of the path be in meters if the proton had the same speed as the electron? rp,v = ______ Part (c) What would the radius be in meters if the proton had the same kinetic energy as the electron? rp,E = ______ Part (d) What would the radius be in meters if the proton had the same momentum as the electron? rp,p = ______please i need the full answer with the stepsA charged particle moves un-deflected through a region in which there is a homogeneous electric field and magnetic field as shown. The electric field points in the -x direction, and the magnetic field points into the page. What can be said about the speed of the particle? Its speed is changing Its speed is equal to E/B Its speed is zero Its speed is equal to qBr/m