JEE Exam  >  JEE Questions  >  Two particles have equal masses of 5 g each a... Start Learning for Free
Two particles have equal masses of 5 g each and opposite charges of 4.0x10^-5 and -4.0x10^-5. They are released from rest with a separation of 1 m between them. Find speeds of the particles when the separation is reduced to 50cm.?
Most Upvoted Answer
Two particles have equal masses of 5 g each and opposite charges of 4....
Community Answer
Two particles have equal masses of 5 g each and opposite charges of 4....
Problem

Two particles with masses of 5 g each and opposite charges of 4.0x10^-5 and -4.0x10^-5 are released from rest with a separation of 1 m. Find the velocities of the particles when the separation is reduced to 50 cm.

Solution

Step 1: Calculate the initial potential energy

The initial potential energy of the system is given by:
Ei = k * q1 * q2 / r, where
k = Coulomb's constant = 9.0x10^9 Nm^2/C^2
q1 = 4.0x10^-5 C (charge of particle 1)
q2 = -4.0x10^-5 C (charge of particle 2)
r = 1 m (initial separation between the particles)

Substituting the values, we get:
Ei = 9.0x10^9 * 4.0x10^-5 * (-4.0x10^-5) / 1
Ei = -1.44 J (negative sign indicates an attractive force)

Step 2: Calculate the final potential energy

The final potential energy of the system is given by:
Ef = k * q1 * q2 / r', where
r' = 50 cm = 0.5 m (final separation between the particles)

Substituting the values, we get:
Ef = 9.0x10^9 * 4.0x10^-5 * (-4.0x10^-5) / 0.5
Ef = -28.8 J

Step 3: Calculate the change in potential energy

The change in potential energy is given by:
ΔE = Ef - Ei

Substituting the values, we get:
ΔE = -28.8 - (-1.44)
ΔE = -27.36 J

Step 4: Calculate the kinetic energy

According to the law of conservation of energy, the change in potential energy is equal to the kinetic energy gained by the particles. Therefore, the kinetic energy of the particles is given by:
K = ΔE

Substituting the value of ΔE, we get:
K = -27.36 J

Step 5: Calculate the velocities

The kinetic energy of each particle is given by:
K = 1/2 * m * v^2, where
m = 5 g = 0.005 kg (mass of each particle)
v = velocity of each particle

Substituting the values, we get:
-27.36 = 1/2 * 0.005 * v^2
v^2 = -27.36 / (1/2 * 0.005)
v^2 = -10,944
This is not a valid answer as velocity cannot be negative.

Therefore, there is an error in the calculation. After reviewing the calculations, it is found that the initial potential energy was calculated incorrectly. The correct value is -1.44x10^-7 J.

Substituting this value in the calculations, we get:
ΔE = -27.3593 J
Explore Courses for JEE exam

Similar JEE Doubts

Two particles have equal masses of 5 g each and opposite charges of 4.0x10^-5 and -4.0x10^-5. They are released from rest with a separation of 1 m between them. Find speeds of the particles when the separation is reduced to 50cm.?
Question Description
Two particles have equal masses of 5 g each and opposite charges of 4.0x10^-5 and -4.0x10^-5. They are released from rest with a separation of 1 m between them. Find speeds of the particles when the separation is reduced to 50cm.? for JEE 2024 is part of JEE preparation. The Question and answers have been prepared according to the JEE exam syllabus. Information about Two particles have equal masses of 5 g each and opposite charges of 4.0x10^-5 and -4.0x10^-5. They are released from rest with a separation of 1 m between them. Find speeds of the particles when the separation is reduced to 50cm.? covers all topics & solutions for JEE 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for Two particles have equal masses of 5 g each and opposite charges of 4.0x10^-5 and -4.0x10^-5. They are released from rest with a separation of 1 m between them. Find speeds of the particles when the separation is reduced to 50cm.?.
Solutions for Two particles have equal masses of 5 g each and opposite charges of 4.0x10^-5 and -4.0x10^-5. They are released from rest with a separation of 1 m between them. Find speeds of the particles when the separation is reduced to 50cm.? in English & in Hindi are available as part of our courses for JEE. Download more important topics, notes, lectures and mock test series for JEE Exam by signing up for free.
Here you can find the meaning of Two particles have equal masses of 5 g each and opposite charges of 4.0x10^-5 and -4.0x10^-5. They are released from rest with a separation of 1 m between them. Find speeds of the particles when the separation is reduced to 50cm.? defined & explained in the simplest way possible. Besides giving the explanation of Two particles have equal masses of 5 g each and opposite charges of 4.0x10^-5 and -4.0x10^-5. They are released from rest with a separation of 1 m between them. Find speeds of the particles when the separation is reduced to 50cm.?, a detailed solution for Two particles have equal masses of 5 g each and opposite charges of 4.0x10^-5 and -4.0x10^-5. They are released from rest with a separation of 1 m between them. Find speeds of the particles when the separation is reduced to 50cm.? has been provided alongside types of Two particles have equal masses of 5 g each and opposite charges of 4.0x10^-5 and -4.0x10^-5. They are released from rest with a separation of 1 m between them. Find speeds of the particles when the separation is reduced to 50cm.? theory, EduRev gives you an ample number of questions to practice Two particles have equal masses of 5 g each and opposite charges of 4.0x10^-5 and -4.0x10^-5. They are released from rest with a separation of 1 m between them. Find speeds of the particles when the separation is reduced to 50cm.? tests, examples and also practice JEE tests.
Explore Courses for JEE exam

Top Courses for JEE

Explore Courses
Signup for Free!
Signup to see your scores go up within 7 days! Learn & Practice with 1000+ FREE Notes, Videos & Tests.
10M+ students study on EduRev