Answer:
The number of available energy states per unit volume is
Explanation:
Given that,
Average energy
Photon =
We need to calculate the number of available energy states per unit volume
Using formula of energy
Where, E = energy
h = Planck constant
c = speed of light
Put the value into the formula
Hence, The number of available energy states per unit volume is
A. Consult with a friend and get their feeback
B. Dispute the beliefs by asking if these are true and examining the evidence
C. Seek mental health counseling
D. It is just too hard so let's just forget it.
Answer:
i believe the answer is B
Explanation:
Seeking the right answer is the best thing to do
Distance traveled by the bicycle during the 5 seconds of braking is 22m
Explanation:
initial angular velocity= 2 rev/s
final angular velocity= 0 rev/s
Angular displacement Ф=t
Ф= rev
so the distance travelled= 5(2πr)
distance=5(2π*0.7)
distance=22m
The bicycle traveled about 22 m during the 5.0 seconds of braking
Centripetal Acceleration can be formulated as follows:
a = Centripetal Acceleration ( m/s² )
v = Tangential Speed of Particle ( m/s )
R = Radius of Circular Motion ( m )
Centripetal Force can be formulated as follows:
F = Centripetal Force ( m/s² )
m = mass of Particle ( kg )
v = Tangential Speed of Particle ( m/s )
R = Radius of Circular Motion ( m )
Let us now tackle the problem !
Given:
radius of wheel = R = 0.70 m
initial angular speed = ω = 2.0 rev/s = 4π rad/s
final angular speed = ωo = 0 rad/s
time taken = t = 5.0 s
Asked:
distance covered = d = ?
Solution:
Grade: High School
Subject: Physics
Chapter: Circular Motion
The distance the putty-block system compress the spring is 0.15 meter.
Given the following data:
To determine how far (distance) the putty-block system compress the spring:
First of all, we would solver for the initialmomentum of the putty.
Next, we would apply the law of conservation of momentum to find the final velocity of the putty-block system:
Velocity, V = 0.94 m/s
To find the compression distance, we would apply the law of conservation of energy:
x = 0.15 meter
Read more: brainly.com/question/14621920
Answer:
Explanation:
Force constant of spring K = 21 N /m
we shall find the common velocity of putty-block system from law of conservation of momentum .
Initial momentum of putty
= 5.3 x 10⁻² x 8.97
= 47.54 x 10⁻² kg m/s
If common velocity after collision be V
47.54 x 10⁻² = ( 5.3x 10⁻² + .454) x V
V = .937 m/s
If x be compression on hitting the putty
1/2 k x² = 1/2 m V²
21 x² = ( 5.3x 10⁻² + .454) x .937²
x² = .0212
x = .1456 m
14.56 cm
B) 16 sqrt 2 V
C) 256 V
D) 8
Answer:
A)
Explanation:
Maximum voltage =
Maximum voltage and rms voltage are related to each other by
Answer: 132.02 J
Explanation:
By definition, the kinetic energy is written as follows:
KE = 1/2 m v²
In our question, we know from the question, the following information:
m = 0.1434 Kg
v= 42.91 m/s
Replacing in the equation for KE, we have:
KE = 1/2 . 0.1434 Kg. (42.91)² m²/s² ⇒ KE = 132.02 N. m = 132.02 J
Answer:
6.03 x 10^-3 C/Kg
Explanation:
E = 3.8 x 10^4 N/C, u = 2.32 m/s, s = 5.98 cm = 0.0598 m, t = 0.2 s, g = 9.8 m/s^2
Acceleration on object is a .
Use second equation of motion.
S = u t + 1/2 a t^2
0.0598 = 2.32 x 0.2 + 0.5 x a x 0.2 x 0.2
0.0598 = 4.64 + 0.02 x a
a = - 229 m/s^2
Now, F = ma = qE
q / m = a / E = 229 / (3.8 x 10000)
q / m = 6.03 x 10^-3 C/Kg