is used to send radio signals
protects the earth from UV radiation
is made of charged ions and free electrons
The refractive index (n) of a material is defined as the ratio of the speed of light in a vacuum © to the speed of light in that material (v). Therefore, we can calculate the speed of light in material X for red light as v_red = c / n_red = c / 1.80. Similarly, the speed of light in material X for blue light can be calculated as v_blue = c / n_blue, where n_blue is the refractive index for blue light in material X.
We are given that blue light travels 5 × 10⁶ m/s slower than red light in this material. Therefore, we can write:
v_blue = v_red - 5 × 10⁶ m/s
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Substituting the expressions for v_red and v_blue, we get:
c / n_blue = c / 1.80 - 5 × 10⁶ m/s
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Solving for n_blue, we get:
n_blue = c / (c / 1.80 - 5 × 10⁶ m/s) ≈ 1.81
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Therefore, the refractive index for blue light in material X is approximately 1.81 123.
Answer:1.37
Explanation:
Given
Length of Blade
Let blades be rotating at an angular velocity of
centripetal acceleration at any radial distance r is given by
at
at
thus
Centripetal acceleration depends inversely on the radius. The ratio of the centripetal accelerations at the end of the blade and at 4.78m from the center is approximately 0.73.
The centripetal acceleration of an object moving in a circle of radius r is given by the formula ac = v²/r, where v is the tangential velocity of the object. In this scenario, the velocity at both points on the blade is the same, as the blade is rotating as a whole.
Therefore, the centripetal acceleration on the blade at any point is inversely proportional to the radius from the center of the circle to that point.
So, the ratio of the centripetal acceleration at the end of the blade (6.58 m from the center) to the centripetal acceleration at a point located 4.78 m from the center, is the inverse ratio of their distances from the center. Therefore, the ratio is 4.78/6.58 which approximately equals 0.73.
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B. Water molecules move from their fixed position.
C. Water molecules lose energy.
D. The temperature of the ice increases as it melts.
The answer for this question is part B that is Water molecules move from their fixed position.
This is because when water is freeze it is in a solid condition that means the molecules are held together tightly and are are vibrating in their fixed positions.
As soon as the molecules gain energy they start to move around from their fixed positions and turn into a liquid.
In the process of doing so ice melts and becomes water.
A chlorine ion contains 17 protons and 18 electrons, which gives it a net charge of -1 1234. Therefore, the correct answer is A. -e.