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Svetlanka [38]
3 years ago
10

A truck moving with an initial speed v collides with a car that is one-half as massive as the incident truck and is initially at

rest. After the collision, the truck moves off in the same direction as before the collision with a speed v/3.
Determine the following:
(a) the final speed of the car in terms of the initial speed of the truck
(b) if the collision is elastic or inelastic
Mathematics
1 answer:
mylen [45]3 years ago
5 0

Answer:

a. 4v/3  b. The collision is elastic.

Step-by-step explanation:

(a) the final speed of the car in terms of the initial speed of the truck

From the law of conservation of momentum, the initial and final momentum of the system is the same.

So, Mv + mV = Mv' + mV' where M = mass of truck, v = initial velocity of truck, v' = final velocity of truck = v/3, m = mass of car = M/2, V = initial velocity of car = 0 (since it was initially at rest) and V' = final velocity of car.

So, substituting the values of the variables into the equation, we have

Mv + mV = Mv' + mV'

Mv + M/2 × 0 = Mv/3 + (M/2)V'

Mv + 0 = Mv/3 + (M/2)V'

Mv - Mv/3 = (M/2)V'

2Mv/3 = (M/2)v'

v' = 2Mv/3 ÷ M/2

v' = 4v/3

(b) if the collision is elastic or inelastic

The collision is elastic if the initial kinetic energy equals the final kinetic energy.

So, initial kinetic energy K = initial kinetic energy of truck + initial kinetic energy of car = 1/2Mv² + 0 = 1/2Mv²

Final kinetic energy K' = final kinetic energy of truck + final kinetic energy of car = 1/2Mv'² + 1/2mV'²

= 1/2M(v/3)² + 1/2(M/2)(4v/3)²

= Mv²/(2 × 3²)(1 + 4²/2)

= (Mv²/18)(1 + 16/2)

= (Mv²/18)(1 + 8)

= 9Mv²/18

= Mv²/2

Since K = 1/2Mv² = K' = 1/2Mv², <u>the collision is elastic</u>.

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A motorboat travels 168 kilometers in 4 hours going upstream. It travels 280 kilometers going downstream in the same amount of t
Grace [21]

Answer:

The speed of the boat is 56 km/hr

The rate of the current is 14 km/hr

Step-by-step explanation:

We are given the following;

  • Distance traveled upstream = 168 km
  • Time taken to travel upstream = 4 hours
  • Distance traveled down stream = 280 km
  • Time taken down stream = 4 hours

We are required to determine the speed of the boat in still water and the speed of the current.

We are going to take;

Speed of the boat as = x km/hr

Rate of flow of current = y km/hr

We can determine the speed of the boat upstream;

Speed = Distance ÷ time

               = 168 km ÷ 4 hours

               = 42 km/hr

But, the speed upstream is given by (x - y) km/hr

Therefore; ( x-y) km/hr = 42 km/hr ......................... Eqn 1

Speed of the boat down stream

    speed = 280 km ÷ 4 hours

                = 70 km/hr

But, the speed downstream is given by (x+y) km/hr

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Solving Eqn 1 and Eqn 2 simultaneously;

x - y = 42

x + y = 70

Eliminating x

-2y = - 28

    y = 14 km/hr

Solving for x,

x = 42 + y

   = 42 + 14

   = 56 km/hr

Therefore, the speed of the boat is 56 km/hr while the rate of the current is 14 km/hr

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