Answer:
average speed
Explanation:
The directions were different, so the velocities could not be the same.
However, the magnitude of the velocity (speed) was 56/2 = 28 m/s for the first car, and 84/3 = 28 m/s for the second car. These<em> average speeds are the same</em>.
Answer:
v=8m/s
Explanation
The initial velocity, u, of the car=32m/s
Since the car has decelerated, we negate the acceleration
This implies that,
Time,t=4s
Let v be the final velocity,
using the relation,
We obtain the below by substitution
By cross multiplying we obtain,
v=8m/s
Motion of solids, liquids, and gases may be compared with the motion of marbles in a tray: molecules of solids do not move one relative to each other, like the marbles in a tray full, molecules of liquids are like marbles in a tray with many marbles but no full, and molecules in gases are like a few marbles in a tray.
As you can imagine, as the tray has less empty space (the molecules are closer and tighter) the marbles cannot move freely, which is like the molecules of a solids which cannot move one relative to each other; when the tray has some room to move, the marbles can move better, which is like the molecules of a liquid, and when there is plenty space for marbles to move in the tray is like the molecules of gases which move freely without interacting among them.
Answer:
what i don't understand the question
Answer:
10.28571 N
Explanation:
m = Mass of toboggan = 15 kg
u = Initial velocity = 4.8 m/s
v = Final velocity = 0
t = Time taken = 7 seconds
Friction force is given by the change in momentum over time
The magnitude of the average friction force acting on the toboggan while it was moving is 10.28571 N