The electric field strength at the midpoint of the rings is 0 N/C.
The electric field strength at the center of the left ring is 2710.84 N/C.
The given parameters:
The electric field strength at the midpoint of the rings is calculated as follows;
The electric field strength at the center of the left ring is calculated as follows;
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The electric field strength at the midpoint between the two rings is zero, and at the center of the left ring, it is 2.88 * 10^4 N/C.
The electric field strength at the
E = (8.99 * 10^9 Nm²/C²) * (20.0 * 10^-9 C) / (0.05 m)² = 2.88 * 10^4 N/C
B. Z
C. X
D. W
The object with the least inertia is Z.
option B is the correct answer.
Newton's first law of motion states that an object at rest or uniform motion in a straight line will continue in that path unless it is acted upon by an external force and it will move in the direction of applied force.
The Newton's first law of motion is also called the law of inertia because it depends on the mass of the object.
Inertia is defined as the reluctancy of an object to move when a force is applied to it.
As the mass of an object increase, the inertia of the object increases because the object will be more reluctant to move when a force is applied to it.
Thus, the more massive an object is, the greater the object's inertia and vice versa.
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What is the normal force exerted by the surface on the bottom block? (Use the following as necessary: m and g as necessary.)
(a) The normal force exerted by the surface on the bottom block is N1 = 2mg.
Given that,
Based on the above information, we can say that the N1 is 2mg.
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Answer:
N = 2mg
Explanation:
Assuming the surface is horizontal
The surface must provide enough normal force to prevent the masses from accelerating in the vertical direction.
A. Hydrosphere
B Lithosphere
C. Atmosphere
2
A Lithosphere
B Atmosphere
C Biosphere
lithosphere and biosphere
srry ik im super late but to help other people theres the answer
Answer:
Heat flux = (598.3î + 204.3j) W/m²
a) Magnitude of the heat flux = 632.22 W/m²
b) Direction of the heat flux = 18.85°
Explanation:
- The correct question is the first image attached to this solution.
- The solution to this question is contained on the second and third images attached to this solution respectively.
Hope this Helps!!!
Answer:
As the mass is not written well, i will use the equation in terms of the gravitational acceleration:
The equation for the period of a satellite is:
We want to find r, so isolating r we get:
Where:
T = period.
r = radius of the satellite.
R = radius of the planet.
g = gravitational acceleration of the planet.
pi = 3.14159...
g = 78999.64 mi/h^2 (value of a table)
T = 42.391 h.
R = 3958.8 miles
We can replace those values in the equation and get:
Now this value is measured from the center of the Earth, then the altitude of the satellite measured from the surface of the Earth will be:
H = r - R = 38,339.1mi - 3958.8mi = 34,380.3 mi
b. the angular location of the first order minimum in the diffraction pattern. Which means at this point the light experiences destructive interference.
c. the angular location of bright interference maxima in the pattern. Which means at this point the light experiences constructive interference.
d. the angular location of bright interference maxima in the pattern. Which means at this point the light experiences destructive interference.
Answer:
the answers the correct one is c
Explanation:
The diffraction pattern for a slit is
a sin θ = m λ
Where a is the width of the slit, λ the wavelength, m the order of destructive interference and θ the angle where the interference occurs.
The expression for multi-slit diffraction (diffraction grating) is
d sin θ = m λ
Where d is the distance between slits, λ the wavelength m the order of the diffraction maximums and θ the angle for these maximums.
When we compare the expressions of the answers the correct one is c