Answer:
centripetal acceleration
Explanation:
convert 1.63rev/sec to rpm by multiplying by 60
= 1.63*60=97.8rpm
Convert this to rad/sec
1rpm =π/30 rad/sec
97.8rpm = 97.8 * (π/30 rad/sec)
=10.25rad/sec
linear velocity= angular velocity *radius
radius =13.2cm=13.2/100=0.132m
v=rω
v= 0.132*10.25
v=1.35m/s
centripetal acceleration =
Answer:
= 13.8 m/s².
Explanation:
The acceleration centripetal is given by:
(1)
where v: is the tangential speed and r: is the container radius
The tangential speed is equal to:
(2)
where ω: is the angular velocity
Since 1 revolution is equal to 2π rad, the velocity (equation 2) is:
Now, by entering the velocity value calculated into equation (1) we can find the acceleration centripetal:
I hope it helps you!
B. at twice the velocity of the molecules in a longitudinal wave.
C. with smaller amplitudes than the molecules in a longitudinal wave.
D. in the direction in which the wave travels
b. implied
c. intended
d. inherent n here.
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Why value of 'g' is zero at center of Earth?
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When we move towards centre of earth, the mass is equally distributed in all directions.
The mass beneath you = Mass in front of you = Mass behind you
Thus, all the gravitational forces applied cancel each other and acceleration due to gravity (g) at centre of earth on centre of earth becomes zero (0).
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The general equation of acceleration due to gravity is;-
g =
Assuming earth to be a perfect sphere and considering its uniform density.
We make the following adjustments in the following equation.
g =
Multiplying and dividing RHS by volume 'V'.
g =
We know that;-
= Density, ρ
Therefore,
g =
For sphere;-
V = π
This makes
g = π
×
g =
So, at center of Earth
since, r = 0
so, g = 0.
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Answer:
The ball was 1.01 seconds in the air
Explanation:
Horizontal Motion
When an object is thrown horizontally with a speed v from a height h, the range or maximum horizontal distance traveled by the object can be calculated as follows:
If we know the value of d and h, we can solve the equation for v:
Since the horizontal speed is constant, we can calculate the time the ball was in the air by using the equation:
The ping pong ball rolls from a height of h=5 m and lands on the floor a distance of d= 3 m away from the table. Calculate the speed:
Calculating:
Now calculate the time:
The ball was 1.01 seconds in the air
Note: The time does not depend on the distance d at all. If we borrow the equation from free-fall motion, the time can be calculated with:
Answer:
These two forces are called action and reaction forces and are the subject of Newton's third law of motion. Formally stated, Newton's third law is: For every action, there is an equal and opposite reaction.