A charge of 28.0 nC is placed in a uniform electric field thatis directed vertically upward and has a magnitude of 4.00 * 10^4 V/m.What work is done by the electric force when the charge moves 0.670 m upward
Q: A uniform electric field of magnitude 414 N/C pointing in the positive x-direction acts on an…
A: Given: Electric field, E = 414 N/C mass,m = 9.1 x 10-31 kg distance,d = 3 cm
Q: A small object with a charge of q-10.0 C travels from the origin to the point (x, y)-(20.0 cm, 50.0…
A:
Q: A uniform electric field of magnitude 367 N/C pointing in the positive x-direction acts on an…
A: The charge of an electron is 1.6×10-19C. Now the electric field and charge can be used to calculate…
Q: A uniform electric field of magnitude 378 N/C pointing in the positive x-direction acts on an…
A: Given data The electric field is given as E = 378 N/C. The distance traveled by the electron is d =…
Q: Oppositely charged parallel plates are separated by 6.06 mm. A potential difference of 600 V exists…
A:
Q: A uniform electric field of magnitude 220 V/m is directed in the positive x direction. A +12.0 pC…
A:
Q: Oppositely charged parallel plates are separated by 4.37 mm. A potential difference of 600 V exists…
A: Given value--- separation between plates = 4.37 mm. Potential difference = 600 V. We have to…
Q: A uniform electric field of magnitude 280 V/m is directed in the positive x direction. A +14.0 µC…
A:
Q: charge of 28.0 nC is placed in a uniform electric field that is directed vertically upward and that…
A: Answer = A) since the force on charge is along the vertical direction ,there is no component of the…
Q: Oppositely charged parallel plates are separated by 5.78 mm. A potential difference of 600 V exists…
A:
Q: An electron with charge −1.60×10−19 C moves a distance of 3.17 mm in the negative x direction in a…
A: Given data: Charge on electron, qe=-1.60×10-19 C Distance moved by the electron, d=-3.17 mm =…
Q: A charge of 23.0 nC is placed in a uniform electric field that is directed vertically upward and…
A:
Q: charge of 56.0 nC is placed in a uniform electric field that is directed vertically upward and that…
A: Concept Use formula of work done by force w = f.d Cos (theta) Replace f = qE And solve
Q: A proton (mass = 1.67 kg, charge = 1.60 x 10-19 C) moves from point A to point B %3D under the…
A: Given data: Mass of the proton mp=1.6×10-27kg Charge, q=1.6×10-19C Speed of the proton at point A…
Q: A uniform electric field of magnitude 423 N/C pointing in the positive x-direction acts on an…
A: Electric field (E) = 423 N/C distance moved (d) = 3.40 cm = 0.034 m initial speed (u) = 0 m/s
Q: A proton is acted on by an uniform electric field of magnitude 443 N/C pointing in the positive x…
A: Given that:- Electric field is 443N/C along + x axis
Q: Oppositely charged parallel plates are separated by 5.32 mm. A potential difference of 600 V exists…
A: Given Distance of seperation of plate ,d=5.32 mm=5.32×10-3 mPotential difference ,(V)=600 V
Q: Oppositely charged parallel plates are separated by 6.12 mm. A potential difference of 600 V exists…
A:
Q: A uniform electric field of magnitude 401 N/C pointing in the positive x-direction acts on an…
A:
Q: A uniform electric field of magnitude 392 N/C pointing in the positive x-direction acts on an…
A: Given that, Electric field, E = 392 N/C pointing in the positive x-direction The distance moved by…
Q: A proton is released from rest at the origin in a uniform electric field in the positive x direction…
A:
Q: A uniform electric field of magnitude 410 N/C pointing in the positive x-direction acts on an…
A:
Q: A particle with charge 8.75 x 10-13 C moves a distance d = 0.30 m in a straight line between points…
A:
Q: A -10mC charge is placed in an Electric Field that is directed vertically downward and its magnitude…
A: Charge q = -10 mC The applied electric field is E = 2×105y2-y3+1 V/m downwards At the starting point…
Q: A uniform electric field of magnitude 250. V/m is directed in the positive xdirection. A 12.0-μC…
A:
Q: Oppositely charged parallel plates are separated by 6.28 mm. A potential difference of 600 V exists…
A: Given values:Potential difference between the plates, V = 600 VDistance between the plates, d = 6.28…
Q: A particle with a charge of q = 12.0 µC travels from the origin to the point (x, y) = (20.0 cm, 50.0…
A:
A charge of 28.0 nC is placed in a uniform electric field that
is directed vertically upward and has a magnitude of 4.00 * 10^4 V/m.
What work is done by the electric force when the charge moves 0.670 m upward
Trending now
This is a popular solution!
Step by step
Solved in 2 steps
- A uniform electric field of magnitude 315 V/m is directed in the negative y direction as shown in the figure below. The coordinates of point are (−0.400, −0.750) m, and those of point are (0.450, 0.300) m. Calculate the electric potential difference VB − VA using the dashed-line path.Oppositely charged parallel plates are separated by 5.09 mm. A potential difference of 600 v exists between the plates. (a) What is the magnitude of the electric field between the plates? V N/C (b) What is the magnitude of the force on an electron between the plates? N (c) How much work must be done on the electron to move it to the negative plate if it is initially positioned 2.36 mm from the positive plate? Apply the definition of work in terms of force and displacement. JInside a particular radiation therapy device, there is a uniform electric field with a magnitude 385 N/C pointing in the positive x-direction. An electron, initially at rest, moves a distance of 3.60 cm in this field. (a) How much work (in J) does the electric field do on the electron? J (b) What is the change in potential energy (in J) of the entire system (radiation therapy device plus electron)? J (c) What is the velocity (in m/s) of the electron after it moves the 3.60 cm distance? m/s magnitude direction ---Select--- ✓
- A uniform electric field points in the positive y-direction and has a magnitude of 3.8 × 106 N/C. Find the change in electric potential energy of a 50-nC charge as it moves from the origin to the following points: (a) (0, 4.5 m) (b) (4.5 m, 0) (c) (4.5 m, 4.5 m)A point charge q = +39.0 µC moves from A to B separated by a distance d = 0.195 m in the presence of an external electric field of magnitude 290 N/C directed toward the right as in the following figure. (a) Find the electric force exerted on the charge. magnitude _______ N direction toward the right toward the left The magnitude is zero. (b) Find the work done by the electric force. ______ J(c) Find the change in the electric potential energy of the charge. ______ J(d) Find the potential difference between A and B.VB − VA = _______ VOppositely charged parallel plates are separated by 5.00 mm. A potential difference of 600 V exists between the plates. (a) What is the magnitude of the electric field between the plates? N/C (b) What is the magnitude of the force on an electron between the plates? N (c) How much work must be done on the electron to move it to the negative plate if it is initially positioned 3.00 mm from the positive plate? J
- 5. A uniform electric field of magnitude 250 V/m is directed in the positive x direction. A 112.0-µC charge moves from the origin to the point (x, y) = (20.0 cm, 50.0 cm). (a) What is the change in the potential energy of the charge-field system?A uniform electric field of magnitude 270 V/m is directed in the positive x direction. A +14.0 µC charge moves from the origin to the point (x, y) = (20.0 cm, 50.0 cm). (a) What is the change in the potential energy of the charge field system?(b) Through what potential difference does the charge move?A particle with a charge of q = 11.0 µC travels from the origin to the point (x, y) = (20.0 cm, 50.0 cm) in the presence of a uniform electric field E = 250î V/m. Determine the following. (a) the change in the electric potential energy (in J) of the particle-field system (b) the electric potential difference (in V) through which the particle moves V
- Oppositely charged parallel plates are separated by 3.95 mm. A potential difference of 600 V exists between the plates. (a) What is the magnitude of the electric field between the plates? N/C (b) What is the magnitude of the force on an electron between the plates? N (c) How much work must be done on the electron to move it to the negative plate if it is initially positioned 2.18 mm from the positive plate? Need Help? Master ItA uniform electric field of magnitude 405 N/C pointing in the positive x-direction acts on an electron, which is initially at rest. The electron has moved 3.40 cm. (a) What is the work done by the field on the electron? (b) What is the change in potential energy associated with the electron? (c) What is the velocity of the electron?A proton is acted on by an uniform electric field of magnitude 233 N/C pointing in the negative x direction. The particle is initially at rest. (a) In what direction will the charge move? -x direction A (b) Determine the work done by the electric field when the particle has moved through a distance of 3.55 cm from its initial position. J (c) Determine the change in electric potential energy of the charged particle. (d) Determine the speed of the charged particle. 3.85 Consider applying the conservation of energy. m/s