Answer:
The magnitude of gravitational force between two masses is .
Explanation:
Given that,
Mass of first lead ball,
Mass of the other lead ball,
The center of a large ball is separated by 0.057 m from the center of a small ball, r = 0.057 m
We need to find the magnitude of the gravitational force between the masses. It is given by the formula of the gravitational force. It is given by :
So, the magnitude of gravitational force between two masses is . Hence, this is the required solution.
Answer:
(a). The velocity of the object is -2.496 m/s.
(b). The total distance of the object travels during the fall is 23.80 m.
Explanation:
Given that,
Time = 1.95 s
Distance = 23.5 m
(a). We need to calculate the velocity
Using equation of motion
Put the value into the formula
(b). We need to calculate the total distance the object travels during the fall
Using equation of motion
Put the value in the equation
The total time is
We need to calculate the distance
Using equation of motion
Put the value into the formula
Hence, (a). The velocity of the object is -2.496 m/s.
(b). The total distance of the object travels during the fall is 23.80 m.
Answer:
222.22 N
Explanation:
r = 5 cm = 0.05 m, R = 1.5 m, f = ? , F = 200,000 N
Use pascal's law
F / A = f / a
F / 3.14 x R^2 = f / 3.14 x r^2
F / R^2 = f / r^2
f = F x r^2 / R^2
f = 200000 x 0.05 x 0.05 / (1.5 x 1.5)
f = 222.22 N
Answer:
maybe C i'm not 100% sure
I'm sorry if this didn't help
Explanation:
Answer:
Solid, liquid, Gas
Explanation:
There are three main states of matter:
- Solid: a substance in a solid state has a definite shape and volume. When in solid state, the particles of the substance are tightly bound together, so they cannot move freely, but they can only vibrate about their fixed position. An example of this state is ice
- Liquid: a substance in a liquid state has definite volume but no definite shape. When in liquid state, the particles of the substance are not tightly bound, so they can slide past each other; however, there are still intermolecular forces that keep the particles close to each other, so that they cannot move freely. An example of this state is liquid water
- Gas: a substance in a gas state has no definite shape or volume. When in gas state, the intermolecular forces between the particles are negligible, so the particles are completely free to move far away from each other. An example of this state is steam