Question

An electron moves with velocity v ⃗ =(6.8i−5.3j)× 10 4 m/s in a magnetic field B...

An electron moves with velocity v ⃗ =(6.8i−5.3j)× 10 4 m/s in a magnetic field B ⃗ =(−0.64i+0.57j)T .

Part A

Determine the x-component of the force on the electron.

Express your answer using two significant figures. Fx =    N

Part B

Determine the y-component of the force on the electron.

Express your answer using two significant figures. Fy = N

Part C

Determine the z-component of the force on the electron.

Express your answer using two significant figures. Fz = N

0 0
Add a comment Improve this question Transcribed image text
Know the answer?
Add Answer to:
An electron moves with velocity v ⃗ =(6.8i−5.3j)× 10 4 m/s in a magnetic field B...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • An electron moves with velocity 7 =(7.91 – 7.0) x 104ms a magnetic field B=(-0.75i +0.633)...

    An electron moves with velocity 7 =(7.91 – 7.0) x 104ms a magnetic field B=(-0.75i +0.633) T Part A Determine the x-component of the force on the electron. Express your answer using two significant figures. 190 A * O O ? Submit Request Answer Part B Determine the y-component of the force on the electron. Express your answer using two significant figures. % ALDO ? Fy= N Submit Request Answer Part Determine the 2-component of the force on the electron...

  • Constants | Periodic Table An electron moves with velocity v (6.61-5.6J) × 104 m/s in a...

    Constants | Periodic Table An electron moves with velocity v (6.61-5.6J) × 104 m/s in a magnetic field B (-0.90i + 0.69) T. Part A Part complete Part B Part complete Part C Determine the z-component of the force on the electron. Express your answer using two significant figures.

  • Constants Periodic Table PartA An electron moves with velocity B = (-0.891 + 0.62j) T (6.7i...

    Constants Periodic Table PartA An electron moves with velocity B = (-0.891 + 0.62j) T (6.7i 6.6j) x 104 m/s in a magnetic field Determine the x-component of the force on the electron. Express your answer using two significant figures. empe Symbola Ledo redo resat keyboard shortcuts helo Fx- Submit Request Answer Part EB Determine the y-component of the force on the electron. Express your answer using two significant figures. Symbola Ledo redo resat keyboard shortcuts helo Submit Request Answer...

  • An electron moves in the magnetic field B? = 0.600 i^Twith a speed of 1.30 ×107m/s...

    An electron moves in the magnetic field B? = 0.600 i^Twith a speed of 1.30 ×107m/s in the directions shown in the figure. For each, what is magnetic force F?  on the electron? Express vector F? in the form of Fx, Fy, Fz, where the x, y, and z components are separated by commas. Express vector F?  in the form of Fx, Fy, Fz, where the x, y, and z components are separated by commas.? ía) 45

  • A proton moves in the magnetic field B⃗ =0.56i^T with a speed of 9.0×106 m/s in...

    A proton moves in the magnetic field B⃗ =0.56i^T with a speed of 9.0×106 m/s in the directions shown in the figure. (Figure 1) Part B In Figure (b), what is the magnetic force F⃗  on the proton? Give your answers in component form. Express vector F⃗ in the form of Fx, Fy, Fz , where the x, y, and z components are separated by commas.

  • An electron (charge e) with a velocity described by the vector v=(2.0, 3.5, 5.5) m/s at...

    An electron (charge e) with a velocity described by the vector v=(2.0, 3.5, 5.5) m/s at an instant in time is traveling through a uniform magnetic field of 6.0 T in the z-direction. Calculate the components of the magnetic force vector on the electron. A. Fx= 21e Fy = -12e Fz= 0 B. Fx= 21e Fy = -12e Fz= 33e C. Fx= 21e Fy = 12e Fz= 0 D. Fx= 12e Fy = 21e Fz= 0

  • An electron travels at a speed of 4.0×104 m/s through a uniform magnetic field whose magnitude...

    An electron travels at a speed of 4.0×104 m/s through a uniform magnetic field whose magnitude is 1.1×10−3 T . Part A What is the magnitude of the magnetic force on the electron if its velocity and the magnetic field are perpendicular? Express your answer using two significant figures. F F = nothing   N   SubmitRequest Answer Part B What is the magnitude of the magnetic force on the electron if its velocity and the magnetic field make an angle of...

  • An electron with velocity v = (12 m/s) i moves through a magnetic field B =...

    An electron with velocity v = (12 m/s) i moves through a magnetic field B = (4.0 T) k. (i, j, and k denote unit vectors pointing along the x, y, and z axes, respectively.)  Find the direction of the force on the electron.

  • Part A An electron moves in the magnetic field B 0.440i T with a speed of...

    Part A An electron moves in the magnetic field B 0.440i T with a speed of 1.50 x107 m/s in the directions shown in the figure. For each, what is magnetic force F on the electron? (Figure 1) Express vector F in the form of F, Fy, F, where the x, y, and z components are separated by commas Submit Request Answer gure 1 of 1 Part B Express vector F in the form of F, Fy, F, where the...

  • A particle with a charge of 31 ÆC moves with a speed of 77 m/s in...

    A particle with a charge of 31 ÆC moves with a speed of 77 m/s in the positive x direction. The magnetic field in this region of space has a component of 0.42 T in the positive y direction, and a component of 0.87 T in the positive z direction Part A What is the magnitude of the magnetic force on the particle? Express your answer using two significant figures. ΤΗ ΑΣΦ ? Part B What is the direction of...

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT