At one instant an electron (charge = –1.6 x 10–19 C) is moving in the xy plane, the components of its velocity being vx = 5.0 x 105 m/s and vy = 3.0 x 105 m/s. A magnetic field of 0.80 T is in the positive x direction. At that instant the magnitude of the magnetic force on the electron is:
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At one instant an electron (charge = –1.6 x 10–19 C) is moving in the xy...
An electron (charge= -1.6 x 10^-19 C) is moving at 3 x 10^5 m/s in the positive x direction. A magnetic field of 0.8 T is in the positive z direction. What are the magnitude and direction on the magnetic force on the electron?
5. An electron carrying charge -9 (where q=1.602e-19 C) is moving along the x axis in the +x direction with a velocity ū(x, y, z) = 5 x 107 cm/s. a. We want to make the electron to curve to the right and eventually go in a circle clockwise in the xy plane by applying a magnetic field. To achieve that, the magnetic field should exert a force on the electron that is perpendicular to its direction of motion. Which...
A particle with charge 7.76 x 10-8C is moving in a region where there is a uniform 0.700 T magnetic field in the +x-direction. At a particular instant, the velocity of the particle has components vx = -1.68 * 104 m/s, vy - -3.61 * 104 m's, and 13 -6.35 104 m/s. A. What is the x-component of the force on the particle at this time? B. What is the y-component of the force on the particle at this time?...
An electron with a mass of 9.1 x 10-31 kg; and a of charge 1.6 x 10-19 C is located at the origin of coordinates (x=0;y=0;z=0) at time t=0. At time t=0, the electron has a velocity of 4.0x105 m/s along the +x axis in the horizontal plane. Also, at this time, the electron enters a region of space with a magnetic field of 3.0 x 10-5 T pointing in the +z direction. What is the location of the electron...
Chapter 22, Problem 050 At some instant the velocity components of an electron moving between two charged parallel plates are vx=1.9×105 m/s and vy=3.8×103 m/s. Suppose the electric field between the plates is uniform and given by E→=(120N/C)j︷. In unit-vector notation, what are (a) the electron’s acceleration in that field and (b) the electron’s velocity when its x coordinate has changed by 2.2 cm?
A proton (g = 1.6 X 10-19 C, m = 1.67 X 10-27 kg) moving with constant velocity enters a region containing a constant magnetic field that is directed along the z- axis at (x,y) = (0,0) as shown. The magnetic field extends for a distance D = 0.67 m in the x-direction. The proton leaves the field having a velocity vector (Vx, vy) = (2.6 X 105 m/s, 1.2 X 105 m/s). V ---D---- 1) What is v, the...
A particle with a charge of-2.50 X 10-8 C is moving with an instantaneous velocity of magnitude 40.0 km/s in the xy- plane at an angle of 50° counterclockwise from the +x axis. What are the magnitude and direction of the force exerted on this particle by a magnetic field with magnitude 2.00 T in the (a) -x direction, and (b) +z direction?
An electron moving in an electric field, with a charge values of 1.6 x 10^-19 C, is the presence of an electric field of 400 N/C. What force does the electron experience?
A beam of photons (q = +1.6 x 10^-19 C) is moving with various speeds in the positive x direction (to the right). It enters a region where there is a uniform magnetic field of magnitude 0.25T pointing in the negative z direction (into the page). a) The protons feel a force due to this magnetic field. Explain why, and indicate the direction of the force. b) Not all protons will feel a force of the same magnitude. Why? c)...
An electron (mass m = 9.11 x 10-31 kg, charge e = 1.6 x 10-19 C) are accelerated from rest through a potential difference V = 450 V and are then deflected by a magnetic field (B = 0.4 T) that is perpendicular to their velocity. The radius of the resulting electron trajectory is: