Question

A charged particle is fired into a region between two charged plates and is seen to...

A charged particle is fired into a region between two charged plates and is seen to follow the trajectory shown by the dashed line due to the electric force. The top plate is positively charged and the bottom plate is negatively charged. Ignore edge effects throughout the problem. Take the value of electron charge as 1.6 × 10-19 C and the value of dielectric constant as 8.854 × 10-12 C2/N·m2?

If the charge density on the surface of the plates is 0.25 C/m2, calculate the magnitude of the electric field between the plates. (Round the final answer to three decimal places.)?

What must be true in order to use the kinematic equations to solve for the motion of a particle during a particular time period?

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 uniform electric field exists in a region between two oppositely charged plates. An electron is...
A uniform electric field exists in a region between two oppositely charged plates. An electron is released from rest at the surface of the negatively charged plate and strikes the surface of the opposite plate, 5.0 cm away, in a time 1.9 ✕ 10−8 s. (a) What is the speed of the electron as it strikes the second plate? (b) What is the magnitude of the electric field ?
A parallel-plate capacitor with only air between the plates is charged by connecting it to a...
A parallel-plate capacitor with only air between the plates is charged by connecting it to a battery. The capacitor is then disconnected from the battery, without any of the charge leaving the plates. A voltmeter reads 44.0 V when placed across the capacitor. When a dielectric is inserted between the plates, completely filling the space, the voltmeter reads 14.5 V . What is the dielectric constant of this material? What will the voltmeter read if the dielectric is now pulled...
Two parallel plates are charged such that there is a 400V potential difference between them. A...
Two parallel plates are charged such that there is a 400V potential difference between them. A proton is fired from a point midway between the plates toward the positive plate. The protons initial speed is 1.5 × 105 m/s. a) Show that this speed is insufficient for the proton to reach the positive plate. b) What is the proton’s speed as it collides with the negative plate? Possibly useful information: mass of a proton = 1.67 × 10−27 kg, charge...
An electric field of 120 N/C is maintained between two plates separated by 10.0 cm. A...
An electric field of 120 N/C is maintained between two plates separated by 10.0 cm. A positive charged particle of mass 1.92 x 10-20 kg is placed at the positive plate and released. If its speed at the negative plate is 21,000 m/s: A) find the work done on the charge. B) find the potential difference between the plates C) find the charge on the particle
a parallel-plate capacitor is used to accelerate a positively charged particle, of mass 1.0x 10-3g and...
a parallel-plate capacitor is used to accelerate a positively charged particle, of mass 1.0x 10-3g and charge 1.0x10-10C, from one plate to another. The charge on each plate has a magnitude 1.0x10-5C, and the separation between the plates is 1.0x10-2m. The capacitor has a capacitance of 1.0x10-9F. what is the acceleration of the particle as it moves from one plate to the other?
An electric field of 120 N/C is maintained between two plates separated by 10.0 cm. A...
An electric field of 120 N/C is maintained between two plates separated by 10.0 cm. A positive charged particle of mass 1.92 x 10-20 kg is placed at the positive plate and released. If its speed at the negative plate is 21,000 m/s, find: a)the work done on the charge. b)the potential difference between the plates c) the charge on the particle. Show all the steps and state the answer as clear as possible please. Thank you.
The separation between two charged metallic plates is 15cm. The electric field between the plates is...
The separation between two charged metallic plates is 15cm. The electric field between the plates is uniform and has an intensity of 3000N/C. An electron is released at rest at a point P precisely over the surface of the negative plate. A) In how much time will it reach the other plate? B) What is its velocity before reaching the plate? Thank you in advance!
(numbers 38-40) An ideal parallel plate capacitor with a dielectric material between the plates is charged...
(numbers 38-40) An ideal parallel plate capacitor with a dielectric material between the plates is charged by connecting it to a battery. The battery remains attached while the dielectric is now removed. During this removal of the dielectric: 38. The charge on the capacitor __________. a) increases b) decreases c) remains the same d) more information is needed to determine 39. The energy stored in the capacitor __________. a) increases b) decreases c) remains the same d) more information is...
A parallel plate capacitor has plates of area A =0.075 m2 separated by distance d =2.30...
A parallel plate capacitor has plates of area A =0.075 m2 separated by distance d =2.30 ✕ 10−5 m and is attached to a battery with potential difference ΔV = 14 V.(The permittivity of free space is εo= 8.85 ✕ 10−12 C2/N·m2). (a)Calculate the capacitance (in F) if the space between the plates is filled with air. (b) What is the electric field between the plates of the capacitor? Suppose that this capacitor is replaced with another with capacitance C...
A parallel plate capacitor has plates of area A =0.055 m2 separated by distance d =1.60...
A parallel plate capacitor has plates of area A =0.055 m2 separated by distance d =1.60 ✕ 10−5 m and is attached to a battery with potential difference ΔV = 22 V.(The permittivity of free space is εo= 8.85 ✕ 10−12 C2/N·m2). calculate the capacitance in F if the space between the plates is filled with air what is the electric field between the plates of the capacitor suppose the capacitor is replaced with another capacitance C= 1.90 x10^-5 F,...
ADVERTISEMENT
Need Online Homework Help?

Get Answers For Free
Most questions answered within 1 hours.

Ask a Question
ADVERTISEMENT