Answer:
Luminosity
Explanation:
The apparent magnitude is a measure of the star's apparent luminosity, the apparent luminosity is directly related to the star's apparent magnitude.
The star's luminosity is the measure of the star's brightness and this diminishes with distance, the luminosity of a star also depends on the size of the star, this means that a star's magnitude and luminosity are directly related.
The potential difference between the center of the sphere and the surface of the sphere will be PD=3.6 x 10^8 V
It is given that:-
Charge Q = +4.00 mC or
insulating sphereradius R = 5.00 cm = 0.05 m
The formula for the potentialdifference at the surface of the sphere is given by
The formula for the potentialdifference at the center of the sphere
The difference between the potential difference will be
Thus the potential difference between the center of the sphere and the surface of the sphere will be PD=3.6 x 10^8 V
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Answer:
3.6 x 10^8 V
Explanation:
Q = 4 m C = 4 x 10^-3 C
r = 5 cm = 0.05 m
The formula for the potential at the surface is
Vs = K Q / r = (9 x 10^9 x 4 x 10^-3) / 0.05 = 7.2 x 10^8 V
The formula for the potential at the centre is
Vc = 3/2 Vs
Vc = 1.5 x 7.2 x 10^8 V = 10.8 x 10^8 V
The difference in potential is
V = Vc - Vs = 10.8 x 10^8 - 7.2 x 10^8 = 3.6 x 10^8 V
1.0 x 10^2 A
1.0 x 10^-10 A
4.0 x 10^0 A
Q= I×t
Where Q is charge in Coulombs C,
I is current in Amperes A,
t is in seconds s.
The rate of current flow is defined as the charge passing through a point in the circuit per second.
Rearranging formula gives I=
⇒I = = 4 Amperes
∴ current flow = 4.0×10^0 A
(B.negative charge arrows pointed inward)
Answer:
See below
Explanation:
Distance = 27 + 13 = 40 km
Displacement = 27 - 13 = 14 km
Answer:
The average force between the ball and bat during contact is 1131N.
Explanation:
The average force can be found employing Newton's second law:
(1)
Where F is the force, m is the mass and a is the acceleration.
The acceleration can be determined employing the equations for a Uniformly Accelerated Rectilinear Motion:
(2)
Where is the final velocity, is the initial velocity and t is the time.
Then, a will be isolated from equation 2:
(3)
Replacing equation (3) in equation (1) it is gotten:
But , therefore:
So, the average force between the ball and bat during contact is 1131N.