Answer: the particles are close together
Explanation:
Answer :
Average acceleration,
Average velocity, v = 13 km/h
Explanation:
It is given that,
Initial velocity of ship, v = 26 Km/h
Final velocity of ship, u = 0
Distance covered by ship, d = 5 km
Time taken, t = 22 min = 0.36 h
(a) Average acceleration,
So, the magnitude of ship's acceleration is .
(b) Average velocity,
So, ship's average velocity is 13 km/h.
Hence, this is the required solution.
B-2s
C-400s
D-800s
Answer:
Option (B)
Explanation:
mass of car, m = 2000 kg, initial velocity of car, u = 40 m/s,
Force, F = 40,000 N, Final velocity, v = 0 m/s
Let the impact time be t.
By use of Newton's second law
F = m a
where, a be the acceleration and m be the mass.
40000 = 2000 x a
a = 20 m/s^2
Acceleration is negative because the car is stopped.
Use first equation of motion,
v = u + a x t
0 = 40 - 20 x t
t = 2 second
Answer: Earth is around 150,000,000 km far from the Sun.
Explanation:
Earth is the third planet in Our Solar System which revolves around the Sun.
The distance of Earth from Sun is 149.6 million kilometers which can be approximated to 150 million km.
Using the conversion factor:
Now, converting 150 million km to kilometers, we get:
Hence, Earth is around 150,000,000 km far from the Sun.
Answer:
Convection is the transfer of thermal energy from one place to another by the movement of gas or liquid particles. How does this happen? As a gas or liquid is heated, the substance expands. This is because the particles in liquids and gases gain kinetic energy when they are heated and start to move faster.
Answer:Convection is the transfer of thermal energy from one place to another by the movement of gas or liquid particles. How does this happen? As a gas or liquid is heated, the substance expands. This is because the particles in liquids and gases gain kinetic energy when they are heated and start to move faster.
B. A feather will fall slower than a bowling ball.
C. A feather and a bowling ball will fall at the same rate.
D. Both a feather and a bowling ball can't fall, but will always remain motionless.