Question

The figure shows a three-particle system, with masses m1 = 1.1 kg, m2 = 4.1 kg, and m3 = 7.1 kg. What are (a) the x coordinat

0 0
Add a comment Improve this question Transcribed image text
Answer #1

(B) Y | X = m2 + m2 2 + M2 K3 мі+м2 низ 1.140 + 4.1X2+7.1X! =):244 Jol + 4.1 +7.7 So al xom = 1.244 m . Ans. X(m) Now You = m

Add a comment
Know the answer?
Add Answer to:
The figure shows a three-particle system, with masses m1 = 1.1 kg, m2 = 4.1 kg, and m3 = 7.1 kg. What are (a) the x coo...
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
  • The figure shows a three-particle system, with masses m1 = 3.0 kg, m2 = 4.1 kg,...

    The figure shows a three-particle system, with masses m1 = 3.0 kg, m2 = 4.1 kg, and m3 = 9.3 kg. What are (a) the x coordinate and (b) the y coordinate of the system's center of mass? Question 8 1 pts In the circuit shown below the time taken for the current to reach 70% of it's steady state value is (L=30 mH, R=5 K22) is (a) 2.14 psecs (b) 0.20 secs (c) 9.16 pisecs (d) 5.11 Hisecs (e)...

  • The figure below shows a three-particle system, with masses m1 = 2.3 kg, m2 = 4.0...

    The figure below shows a three-particle system, with masses m1 = 2.3 kg, m2 = 4.0 kg, and m3 = 9.0 kg. N (a) What are the coordinates of the center of mass? m (x-coordinate) m (y-coordinate) (b) What happens to the center of mass as the mass of the topmost particle is gradually increased? The center of mass shifts toward the particle on the right. The center of mass shifts toward the particle on the left. The center of...

  • The figure below show three masses m1=1.1 kg, m2=2.8 kg, and m3=4.3 kg which undergo two...

    The figure below show three masses m1=1.1 kg, m2=2.8 kg, and m3=4.3 kg which undergo two successive collisions. The first collision between m1, which has an initial velocity v=8.2 m/s, and m2 (which is initially at rest) is completely inelastic. The second collision between the combined mass m1+m2 and m3 (which is initially at rest) is elastic. What is the velocity of m3 after the second collision? The figure below show three masses m1=1.1 kg, m2=2.8 kg, and m3=4.3 kg...

  • The figure below show three masses m=1.1 kg, m2=2.6 kg, and m3=4.1 kg which undergo two...

    The figure below show three masses m=1.1 kg, m2=2.6 kg, and m3=4.1 kg which undergo two successive collisions. The first collision between my, which has an initial velocity v=6.2 m/s, and m2 (which is initially at rest) is completely inelastic. The second collision between the combined mass m +m2 and m3 (which is initially at rest) is elastic. What is the velocity of mz after the second collision? 1 2 3 Select one 2.97 m/s 1.92 m/s 1.22 m/s 2.27...

  • The figure below show three masses m1=1.7 kg, m2=2.9 kg, and m3=4.5 kg which undergo two...

    The figure below show three masses m1=1.7 kg, m2=2.9 kg, and m3=4.5 kg which undergo two successive collisions. The first collision between m1, which has an initial velocity v=7.9 m/s, and m2 (which is initially at rest) is completely inelastic. The second collision between the combined mass m1+m2 and m3 (which is initially at rest) is elastic. What is the velocity of m3 after the second collision? (use figure in picture, but answer question above) The figure below show three...

  • The figure below shows two masses m1=4.5 kg and m2=4.1 kg which are connected by a...

    The figure below shows two masses m1=4.5 kg and m2=4.1 kg which are connected by a cable and are in contact with frictionless surfaces as shown. The ramp makes an angle θ=35° with the horizontal and m2 is acted on by a force of magnitude F=44 N which acts up the ramp. What is the tension in the cable? (ANSWER ABOVE QUESTION, but use figure below) The figure below shows two masses m1=2.2 kg and m2=4.3 kg which are connected...

  • The figure below show three masses m1=1.6 kg, m2=3.0 kg, and m3=4.6 kg which undergo two...

    The figure below show three masses m1=1.6 kg, m2=3.0 kg, and m3=4.6 kg which undergo two successive collisions. The first collision between m1, which has an initial velocity v=6.9 m/s, and m2 (which is initially at rest) is completely inelastic. The second collision between the combined mass m1+m2 and m3 (which is initially at rest) is elastic. What is the velocity of m3 after the second collision? V 1 2 co

  • The figure below show three masses m1=1.5 kg, m2=2.7 kg, and m3=4.6 kg which undergo two...

    The figure below show three masses m1=1.5 kg, m2=2.7 kg, and m3=4.6 kg which undergo two successive collisions. The first collision between m1, which has an initial velocity v=8.6 m/s, and m2 (which is initially at rest) is completely inelastic. The second collision between the combined mass m1+m2 and m3 (which is initially at rest) is elastic. What is the velocity of m3 after the second collision? V 1 2 co

  • The figure below show three masses m1=1.6 kg, m2=3.0 kg, and m3=4.6 kg which undergo two...

    The figure below show three masses m1=1.6 kg, m2=3.0 kg, and m3=4.6 kg which undergo two successive collisions. The first collision between m1, which has an initial velocity v=6.9 m/s, and m2 (which is initially at rest) is completely inelastic. The second collision between the combined mass m1+m2 and m3 (which is initially at rest) is elastic. What is the velocity of m3 after the second collision? V 1 2 3

  • The figure below show three masses m1=1.5 kg, m2=2.9 kg, and m3=4.6 kg which undergo two...

    The figure below show three masses m1=1.5 kg, m2=2.9 kg, and m3=4.6 kg which undergo two successive completely inelastic collisions. If m1 has an initial velocity v=6.2 m/s and both m2 and m3 are initially at rest, what is the velocity of the combined mass after the second collision. V 1 2 co

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