A 10 kilogram cart is moving 5 m/s toward a motionless cart of unknown mass. The two carts collide, sending the second cart moving 6 m/s while the first cart slows to 3 m/s. What is the mass of the unknown cart? Show all work, including the equation and substitution with units

Answers

Answer 1

Answer:

conservation of linear momentum:

m1u1+m2u2=m1v1+m2v2

m1(u1-v1)=m2(v2-u2)

10(5-3)=m2(6-0)

m2=10*2/6

m2 10/3

m2=3.3333kg

Answer 2

Answer:look at the picture below

Explanation:

A 10 Kilogram Cart Is Moving 5 M/s Toward A Motionless Cart Of Unknown Mass. The Two Carts Collide, Sending

Related Questions

Find the value of x help asap

Answers

Answer:

46 degrees

Explanation:

90+44+x=180

44+x=90

x=46

Answer:well isn't it 90 like it said on the image?

Explanation?????

During a fireworks display, a shell is shot into the air at an angle of theta degrees above the horizontal. The fuse is timed to 8.6 seconds for the shell just as it reaches its highest point above the ground. If the horizontal displacement of the shell is 81.7 meters when it explodes, what is the angle theta of the initial velocity

Answers

Answer:

θ = 83.6º

Explanation:

Once the shell is in the air, the only influence acting on it (assuming that the resistance of the air is negligible) is gravity.Gravity acts on the shell accelerating it in the vertical direction with a=g=-9.8 m/s2 (taking the upward direction as the positive one).Since movements in perpendicular directions are independent each other, we conclude that in the horizontal direction, speed must be constant.So, we can find the speed in the horizontal direction (the projection of the velocity vector along the horizontal axis) applying simply the definition of average velocity, as follows:

       [tex]v_{avg} =\frac{\Delta x}{\Delta t} (1)[/tex]

Taking the launch site as the origin, and making the horizontal direction coincident with the x-axis (positive to the right), we know that the horizontal displacement is 81.7 m, and the time at the explosion, 8.6 s, so we can write the horizontal component of the velocity vector (its projection along the x-axis) as follows:

       [tex]v_{x} = \frac{81.7m}{8.6s} = v_{o} * cos \theta = 9.5 m/s (2)[/tex]

In the vertical direction, since we know that the shell will explode when it reaches to the maximum height, at this point just before exploding, the vertical component of the velocity is just zero, even though it continues being accelerated downward.Applying the definition of acceleration, replacing a by the value of g, we can write the following expression:

        [tex]v_{fy} = v_{oy} - g*t = v_{o} * sin \theta -g*t = 0 (3)[/tex]

⇒      v₀* sin θ = g*t = 9.8m/s2* 8.6s = 84.3 m/s (4)

Dividing (4) by (2), we can find tg θ (the angle of the initial velocity with the x-axis), as follows:

       [tex]\frac{v_{o}* sin \theta}{v_{o}* cos \theta} = tg \theta= \frac{84.3m/s}{9.5m/s} = 8.87 (5)[/tex]

⇒    θ = tg⁻¹ (8.87) = 83.6º

The graph represents velocity over time.

A graph with horizontal axis time (seconds) and vertical axis velocity (meters per second). A line runs from 0 seconds 2 meters to 100 seconds 22 meters.

What is the acceleration?

Answers

–0.2 m/s2 I did it on edge 2020

Answer:

the answer is C

Explanation:

i got it wrong the first time because the answer above says -0.2 but its actually 0.2

i hope this helps

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