Question

A -4.80 μC charge is moving at a constant speed of 6.80×105 m/s in the +x−direction...

A -4.80 μC charge is moving at a constant speed of 6.80×105 m/s in the +x−direction relative to a reference frame. At the instant when the point charge is at the origin, what is the magnetic-field vector it produces at the following points.

Part A

x=0.500m,y=0, z=0

Enter your answers numerically separated by commas.

Part B

x=0, y=0.500m, z=0

Part C

x=0.500m, y=0.500m, z=0

Enter your answers numerically separated by commas.

Part D

x=0, y=0, z=0.500m

Homework Answers

Know the answer?
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
Similar Questions
A -5.00 μC charge is moving at a constant speed of 6.90×105 m/s in the +x−direction...
A -5.00 μC charge is moving at a constant speed of 6.90×105 m/s in the +x−direction relative to a reference frame. At the instant when the point charge is at the origin, what is the magnetic-field vector it produces at the following points. Part A x=0.500m,y=0, z=0 Enter your answers numerically separated by commas. Bx,By,Bz = nothing   T   SubmitRequest Answer Part B x=0, y=0.500m, z=0 Enter your answers numerically separated by commas. Bx,By,Bz = nothing   T   SubmitRequest Answer Part C...
A +5.50 μC point charge is moving at a constant 8.00 ×106m/s in the +y-direction, relative...
A +5.50 μC point charge is moving at a constant 8.00 ×106m/s in the +y-direction, relative to a reference frame. At the instant when the point charge is at the origin of this reference frame, what is the magnetic-field vector B⃗  it produces at the following points. Part A x=0.500m,y=0, z=0 Enter your answers component-wise and numerically separated by commas. Bx, By, Bz = __   T   Part B x=0, y=−0.500m, z=0 Enter your answers component-wise and numerically separated by commas. Bx,...
A -4.60 μC charge is moving at a constant speed of 6.70×105 m/s in the +x−direction...
A -4.60 μC charge is moving at a constant speed of 6.70×105 m/s in the +x−direction relative to a reference frame. At the instant when the point charge is at the origin, what is the magnetic-field vector it produces at the following points. C) x=0.500m, y=0.500m, z=0
A -4.80 μC charge is moving at a constant speed of 7.80×105m/s in the +x-direction relative...
A -4.80 μC charge is moving at a constant speed of 7.80×105m/s in the +x-direction relative to a reference frame. At the instant when the point charge is at the origin, what is the magnetic-field vector it produces at point x = 0.500 m, y = 0, z = 0. At the instant when the point charge is at the origin, what is the magnetic-field vector it produces at point x = 0, y = 0.500 m, z = 0....
A -4.60 μC μC charge is moving at a constant speed of 6.70×105 m/s in the...
A -4.60 μC μC charge is moving at a constant speed of 6.70×105 m/s in the +x−direction +x−direction relative to a reference frame. At the instant when the point charge is at the origin, what is the magnetic-field vector it produces at the following points. x=0.500m,y=0 z=0 ; Find Bx,By,Bz x=0, y=0.500m,z=0 ; Find Bx,By,Bz x=.500m,y=.500m,z=0 ;Find Bx,By,Bz x=0,y=0,z=.500m ; Find Bx,By,Bz
A +6.00 μC point charge is moving at a constant 9.00 ×10^6m/s in the +y-direction, relative...
A +6.00 μC point charge is moving at a constant 9.00 ×10^6m/s in the +y-direction, relative to a reference frame. At the instant when the point charge is at the origin of this reference frame, what is the magnetic-field vector B⃗ it produces at the following points. Bx, By, Bz? A) x=0.500m,y=0, z=0 B) x=0, y= -0.500m, z=0 C) x=0, y=0, z=+0.500m D) x=0, y= -0.500m, z=+0.500m
A point charge q1 = 4.80×10−6 C located at the point (0,   0.45  m, 0), has a velocity...
A point charge q1 = 4.80×10−6 C located at the point (0,   0.45  m, 0), has a velocity v⃗ 1= − 6×105 m/sι^+ 3×105 m/s k^ . Point charge q2 = −2.00×10−6 Clocated at the point (0.5  m, 0, 0) has a velocity  v⃗ 2=  5.6×105 m/s j^ − 5.25×105 m/s k^ . At this instant, what is the magnetic force that q1 exerts on q2? Enter the x, y, and z components of the force separated by commas. Fx, Fy, Fz = ___, ___,...
A long, straight wire lies along the z−axis and carries a 4.10 −A current in the...
A long, straight wire lies along the z−axis and carries a 4.10 −A current in the +z−direction. Find the magnetic field (magnitude and direction) produced at the following points by a 0.400 −mm segment of the wire centered at the origin. Part A x=2.00m,y=0, z=0 Enter your answers numerically separated by commas. Bx,By,Bz = ___ T Part B x=0, y=2.00m, z=0 Enter your answers numerically separated by commas. Bx,By,Bz = ___ T Part C x=2.00m, y=2.00m, z=0 Enter your answers...
An electron moves along the z-axis with vz=3.5×107m/svz=3.5×107m/s. As it passes the origin, what are the...
An electron moves along the z-axis with vz=3.5×107m/svz=3.5×107m/s. As it passes the origin, what are the strength and direction of the magnetic field at the following (x, y, z) positions? Part A: (2 cm , 0 cm, 0 cm) Express your answers using two significant figures. Enter your answers numerically separated by commas. Part B: (0 cm, 0 cm, 2 cm ) Express your answers using two significant figures. Enter your answers numerically separated by commas. Part C: (0 cm,...
A particle with a charge of −1.24×10−8C is moving with instantaneous velocity v⃗ = (4.19×104m/s)i^ +...
A particle with a charge of −1.24×10−8C is moving with instantaneous velocity v⃗ = (4.19×104m/s)i^ + (−3.85×104m/s)j^ . Part A What is the force exerted on this particle by a magnetic field B⃗  = (1.40 T ) i^? Enter the x, y, and z components of the force separated by commas. Part B What is the force exerted on this particle by a magnetic field B⃗  = (1.40 T ) k^? Please solve and show how you get the z component from...
ADVERTISEMENT
Need Online Homework Help?

Get Answers For Free
Most questions answered within 1 hours.

Ask a Question
ADVERTISEMENT