Answer:- The electric field must be in the +y direction.
Explanation:- If the electric field will be in the +y direction then the electron will experience a force in the -y direction as the electron has negative charge. Hence, the electron will experience an acceleration in the -y direction and it will eventually stop and turn back after travelling some distance
An nixtro la Lamchat with a velocity in the ty direction shown. The electron stops momentarily...
An electron moving at 19489423 m/s in the positive x-direction at right angles to a magnetic field, experiences a magnetic force of 0.0000000039 N in the positive y-direction. Find the magnitude of the magnetic field Answer: | Choose ▲ What must be the direction of this magnetic field Select one: a. -i hat d. +k hat
+0.5/1 points Previous AnswersSCalcCC4 7.2.001 2, 9x cos(Ty) is shown A direction field for the differential equation y y 2.0 1.5 1.0 0.5 0.4 -0.6 -0.4 -0.2 0.0 0.2 0.6 (a) Sketch the graphs of the solutions that satisfy the given initial conditions. (i) y(0) 0 (iii y(0) 1 (ii) y(0) 0.5 (iv) y(0) 1.6 V y 2:0 1.5 1.5 .5 X -0.6 O-0.6 -0.2 -0.4 0.6 -0.4 0.0 0.2 0.4 0.6 -0.2 0.0 0.2 0.4 2.0r 1.5 1.5 0.5...
An electron moving at 19817425 m/s in the positive x-direction at right angles to a magnetic field, experiences a magnetic force of 0.0000000056 N in the positive y-direction. Find the magnitude of the magnetic field. Answer Choose... Question 2 Not yet answered Points out of 2.00 Flag question What must be the direction of this magnetic field Select one: a. - i hat b. -j hat c. - k hat d. +k hat
An infinite straight wire carries current I1 = 3 A in
the positive y-direction as shown. At time t = 0, a conducting
wire, aligned with the y-direction is located a distance d = 50 cm
from the y-axis and moves with velocity v = 12 cm/s in the negaitve
x-direction as shown. The wire has length W = 24 cm.
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What is ε(0), the emf induced in the moving wire at t = 0?
Define the emf to...
An infinite straight wire carries current I1 = 3 A in
the positive y-direction as shown. At time t = 0, a conducting
wire, aligned with the y-direction is located a distance d = 41 cm
from the y-axis and moves with velocity v = 18 cm/s in the negaitve
x-direction as shown. The wire has length W = 28 cm.
1)What is ε(0), the emf induced in the moving wire at t = 0?
Define the emf to be...
Conceptual Problem about Projectilé Motion the earth. Hence, the y component of its velocity, ty changes continuously Here tn equals speed eg by symmetry and both exceed vi. This is because tu and tn include vertical speed as well as the constant hortzontal 3 An object undergoing projectile motion will undergo the horizontal and vertical motions described above from the instant it is launched until the instant it strikes the ground again. Even though the horizontal and a diagram of...
In F=ma when summing the forces, I know they must all be in the same direction (along with the acceleration), but should they all be acting on a single point also (or acting relative to a point)? So if you had two forces acting on an object and say one is acting on the center and one is acting on some distance from the end, you must set up an origin point, and have two position vectors from the origin...
As shown in the figure, an electron is fired with a speed of 3.73 x 10 m/s through a hole in one of the two parallel plates and into the region between the plates separated by a distance of 0.24 m. There is a magnetic field in the region between the plates and, as shown, it is directed into the plane of the page (perpendicular to the velocity of the electron). Determine the magnitude of the magnetic field so that...
in java
Program 0: Due 9/3 A track coach wants to predict where her runners are on a 600 foot course. One complication is that the course is an out-and-back course, so runners must stop and turn at the half way point. Write a program that allows her to specify each runner's name, top speed (m/h) and acceleration (f/s/s). Print the predicted location (distance from the start) of each runner every 5 seconds. There is a maximum of 5 runners....
For the beam shown, assume that ET-130 ,000 kip-ft2, P = 80 kips, and w = 4.5 kips/ft. Use discontinuity functions to determine (a) the reactions at A, C, and D (b) the beam deflection at B Assume LAB = LBC = 9.0 ft, LCD = 18.0 ft. AB CD Sum the forces in the y direction to find an expression that includes the reaction forces Ay, Cy, and Dy acting on the beam. Positive values for the reactions are...