A body revolving in circle generally has tangential acceleration if the speed is changing. Since the speed is uniform here, the tangential acceleration is zero.
centripetal acceleration is directed towards the center and is given as
a = v²/r where a = centripetal acceleration , v = speed , r = radius
Since both speed and radius are constant here, the centripetal acceleration is constant and is always directed towards the center.
hence the correct choice is
The acceleration is directed toward the center.
14 m/s
6.0 m/s
16 m/s
Answer:
Explanation:
Linear Momentum
Two objects of masses and moving in a linear path at speeds and respectively have a total momentum of
When the objects collide, a change of conditions occurs and they start to move at different speeds. The necessary condition to find the after-colliding speeds is the conservation of linear momentum that states the total momentum of an isolated system doesn't change regardless of the internal interactions of the objects. Thus, the new momentum is
And they must be the same, thus
We know both cars stick together after the collision, so the final speed is common to both, and the above formula becomes
Solving for v'
Plugging in the values, we have
Correct option (closest to the computed speed): 14 m/s
b. Its direction can be reversed.
c. Its strength can be changed.
d. Its speed can be slowed.
Answer: The correct answer is "Its speed can be slowed".
Explanation:
The current carrying conductor produces the magnetic field. The electric current produces the magnetic field.
The motion of the charge produces the electric field and the magnetic field. If the charge is not moving then it will produce electric field only not magnetic field.
The rate of flow of charges constitutes the current. If the current is not flowing in the conductor then, the magnetic field will not produce. If the amount of current flow increases then the strength of the magnetic field increases.
The magnetic field can be produced by following methods from the given options :
It can be turned on and off.
Its direction can be reversed.
Its strength can be changed.
Therefore, the correct option is (d).
Answer:
they meet from the girl's original position at: 2.37 (meters)
Explanation:
We need to use the Newton's law, exactly the second law that relate force, mass and acceleration as: with this we can get both accelerations; solving for acceleration . Now and. Then knowing that they both travel at the same time and assuming that the distance among the girl and the sled is: 15.0-x, so, and, solving for the time we get: and with this equations we solving for the x that is the distance between the girl and the sled after the apply the force and we get:. Finally we get: and replacing the values we have got: so so x=2.37 (meters).
The force between the two point charges is "5 N".
The total of almost all of the forces operating on an item is referred to as the magnitude of force. When some of the forces operate in the same direction, this same magnitude rises. Whenever forces occur in opposite directions around an item, the amount of something like the force diminishes.
Distance between charges, d = 6 cm
Attractive force, F = 20 N
Separated, d' = 12 cm
We know the formula,
F =
or,
F ...(Equation 1)
New force will be:
F' ...(Equation 2)
From "Equation 1" and "Equation 2", we get
→
By substituting the values,
F' = 5 N
Thus the approach above is appropriate.
Find out more information about force here:
Answer:
The force between them when they are separated by 12 cm is 5 N.
Explanation:
Distance between two point charges, d = 6 cm
The attractive force between them is 20 N, F = 20 N
Let F' is the force between them when they are separated by 12 cm, d' = 12 cm
The force between point charges is given by the formula as :
........(1)
New force,
............(2)
From (1) and (2) :
So, the force between them when they are separated by 12 cm is 5 N. Hence, this is the required solution.