Simone created a chart to summarize the energy transformations that take place when energy from the wind is used to generate electricity.Which best completes the chart?


nuclear energy transformed to electrical energy

chemical energy transformed to electrical energy

radiant energy transformed to mechanical energy

kinetic energy transformed to mechanical energy

Answers

Answer 1
Answer:

Kinetic energy transformed to mechanical energy. The object that is being rotated by the wind gains kinetic energy and the motor, that is connected to the rotating object, gains mechanical energy.

The mechanical energy gained will be transformed into electrical energy once  the set up starts to be used for generating electricity.

Answer 2
Answer:

Answer:

kinetic energy transformed to mechanical energy or D

Explanation:

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The image shows a ray diagram in a telescope. what lenses are used in the telescope

Answers

Answer:

In a simple telescope two lenses are used, objective lens and eyepiece lens. A parallel beam of light is focused by the objective lens of a telescope and then light passes through an eyepiece forming a magnified image. Above diagram shows the ray diagram of an astronomical telescope.

Water pressure in a lake is greater __________. a. at the bottom b. at the surface c. at any point, for pressure is the same d. throughout midway to the bottom

Answers

Answer:

The correct answer  a

Explanation:

In the fluid pressure is a measure of force per unit area, in this case force is the weight of the fluid that increases as we descend. Therefore, the pressure increases with the depth of the fluid.

The correct answer  a

Answer:

a. at the bottom

Explanation:

Since water at the bottom of the lake is under pressure by all the water molecules above it plus atmospheric pressure. It is no doubt that the pressure at the bottom of the lake is larger than pressure in the middle and at the surface of the lake.

According to newton's third law of motion, when a hammer strikes and exerts force to push it into a piece of wood, the nailA. creates a friction with the hammer
B. exerts an equal force on the wood
C. exerts an equal or opposite force on the hammer
D. moves at a constant speed

Answers

According to newton's third law of motion, when a hammer strikes and exerts force to push it into a piece of wood, the nail C. exerts an equal or opposite force on the hammer. The third law of motion states that every action has an equal BUT opposite reaction. This means that the nail exerts the same force the hammer exerts on it.

When electromagnetic radiation is arranged to wavelength and frequency, it forms theA. electromagnetic spectrum.
B. ecliptic plane.
C. multiple-spectrum vividness.
D. multiple-vivid spectrum.

Answers

a. electronic spectrum

39WERELAIS
01:21:51
Which type of reaction is C2H2011 - 12C + 11H202
O synthesis
decomposition
O oxidation
combustion

Answers

Answer:

A

Explanation:

synthesis decompostion

Answer:

Decompositon

Explanation:

Oppositely charged objects attract each other. This attraction holds electrons in atoms and holds atoms to one another in many compounds. However, Ernest Rutherford’s model of the atom failed to explain why electrons were not pulled into the atomic nucleus by this attraction. What change to the atomic model helped solve the problem seen in Rutherford’s model?

Answers

Answer:

A) Bohr’s work with atomic spectra led him to say that the electrons were limited to existing in certain energy levels, like standing on the rungs of a ladder.

Explanation:

Final answer:

The change to the atomic model that helped solve the problem seen in Rutherford's model was the discovery of the strong nuclear force.

Explanation:

Rutherford's model required that the electrons be in motion. Positive and negative charges attract each other, so stationary electrons would fall into the positive nucleus. However, Rutherford's model failed to explain why electrons were not pulled into the atomic nucleus by this attraction. The change to the atomic model that helped solve this problem was the discovery of the strong nuclear force, which is much stronger than electrostatic interactions and holds the protons and neutrons together in the nucleus.

Learn more about Atomic model here:

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