Respuesta :
Hi, I crunched some numbers for you and got the following results:
Starting from initial velocity of zero (rest) the sled reached a top speed of 257.3 m/s^2.
Upon slowing down or braking, the sled slowed down very hard to about 76.35 m/s^2.
Acceleration and Gravitational Acceleration were the main interpretations obviously in this problem.
Also, if my math was correct, the speed of the sled slowing down was around 7.7 G's (acceleration due to gravity)! That is about on par with the acceleration of a F-16 Fighter Jet pulling out of a dive!--> (79 m/s^2) The human test subject probably came close to blacking out I would guess as well or very close to!
Starting from initial velocity of zero (rest) the sled reached a top speed of 257.3 m/s^2.
Upon slowing down or braking, the sled slowed down very hard to about 76.35 m/s^2.
Acceleration and Gravitational Acceleration were the main interpretations obviously in this problem.
Also, if my math was correct, the speed of the sled slowing down was around 7.7 G's (acceleration due to gravity)! That is about on par with the acceleration of a F-16 Fighter Jet pulling out of a dive!--> (79 m/s^2) The human test subject probably came close to blacking out I would guess as well or very close to!
The acceleration while accelerating is 257.31 m/s² and acceleration while braking is -193.17 m/s².
What is acceleration?
Acceleration is the rate of change of the velocity of an object with respect to time. It is a vector quantity.
The equation for acceleration is
a = Δv / Δt
where a is acceleration,
Δv is the change in velocity,
Δt is the amount of time it took for that change to occur.
The unit is [tex]m/s^{2}[/tex] .
There are two ways by which an object can accelerate. One is to change the speed and other one is to change the direction. Even you can change both at same time.
If not changing any of them then object can not accelerate.
Some of examples of acceleration are
- Turning a corner at high speed as turning changes the direction and giving rise to acceleration.
- Slowing or speeding a car is acceleration as speed is changing. So acceleration happens.
- Falling from the bridge. Here acceleration equals to gravitational acceleration.
Given:
Initial velocity, [tex]u = 0 m/s[/tex]
Final velocity, [tex]v = 651 m/s[/tex]
Time,[tex]t = 2.53 s[/tex]
Let, [tex]a[/tex] be the acceleration.
By using
[tex]v = u+at[/tex]
We get, acceleration while accelerating
[tex]651 = 0 + a*2.53\\a = 257.31 m/s^{2}[/tex]
Now, the traveled distance by sled is
[tex]v^2 - u^2 = 2as\\651^2 = 2*257.31*s\\s = 823.52 m[/tex]
Acceleration while braking is
[tex]v = u+at\\0 = 651+a*3.37\\a = - 193.17 m/s^{2}[/tex]
Hence, the acceleration while accelerating is 257.31 m/s² and acceleration while braking is -193.17 m/s².
To learn more about Acceleration here
https://brainly.com/question/12550364
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