Cheryl has a mug that she says is made up of matter. Heather says that the hot chocolate inside the cup is made up of matter, too. Keaton says that the steam coming from the cup is also made up of matter. Mikayla says that none of it is matter because matter is too small to see. Which best describes who is correct?

Answers

Answer 1
Answer:

They are all correct. All of the substances referred to are indeed matter and matter is too small to be seen by eye. But when it stacks up together, then it becomes visible. Million and millions of small particles form up and form the visible matter.

Answer 2
Answer:

Answer:

Cheryl, Heather, and Keaton

Explanation:


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The portion of a light ray that falls on a surface is a/an A. reflected ray.
B. diffuse reflection.
C. specular reflection.
D. incident ray.

Answers

So we want to know what is a light ray that falls on a surface. The incident ray that fallls on a surface can then fe reflected, refracted or transmitted. The angle in which the incident ray is must be the same as the angle of a refracted light ray. So the correct answer is D.
d. incident ray, i just took the test yesterday

If a fully loaded shopping cart has a head-on collision with an empty cart both moving at the same speed toward each other, which cart experiences the greater force? The greater impulse? The greater change in momentum? The greater acceleration?

Answers

Answer:

impact- equal

impulse- equal

momentum- equal

acceleration- the empty cart

Bode's Law: correctly predicted the location of Jupiter, uses a number sequence to determine planetary distances, incorrectly predicted the location of Uranus and Neptune, all of the above

Answers

The correct answer for the question that is being presented above is this one: "correctly predicted the location of Jupiter, uses a number sequence to determine planetary distances." Bode's law correctly predicted the location of Jupiter, uses a number sequence to determine planetary distances.

Final answer:

Bode's Law, also known as Titius-Bode law, provides a numerical pattern that predicts the position of most planets in our Solar System, including Jupiter. It, however, fails to accurately predict the location of Uranus and Neptune. The fundamental principles of planetary motion were established by Kepler's laws and later consolidated by Newton in his Universal Law of Gravitation.

Explanation:

This question pertains to Bode's Law, a rule of planetary distances at times referred to as the Titius-Bode Law. The rule indicates a pattern of increasing distances of the planets from the sun, which interestingly correlates to the position of most planets in our Solar System, including Jupiter. However, exceptions, particularly Uranus and Neptune, don't fit precisely into this pattern.

The origins of planetary motions can be traced back to the work of scientists like Herr Tycho Brahe, Johannes Kepler, and Sir Isaac Newton. Kepler's work in particular developed three fundamental laws of planetary motion using Brahe's meticulously collected data. These laws describe the behavior of planets in their orbits and together provide the foundation of the Universal Law of Gravitation as later synthesized by Newton.

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What fuel(s) are the main energy source during short, intense bursts of exercise?Metabolism of protein only
Metabolism of fat only
Metabolism of carbohydrate only
Carbohydrates and vitamins
Caffeine
Medium-chain triglycerides
Erythropoietin
Carnitine

Answers

The answer is Metabolism of carbohydrate only. Remember that metaolism is the set of biochemical reactions that occur in the living organism to obtainn energy from food. The most important carbohydrate is glucose. Glucose readily oxydizes into CO2 and water and produces energy.

How to generate electricity from biogas?

Answers

The same way as electricity is generated from any other gas:

-- Burn the gas.
-- Use the heat to boil water.
-- Pipe the steam through the fan of a turbine.
-- Use the rotation of the turbine to spin an electric-power generator.

Sound waves in air are a series ofa. periodic disturbances.
b. periodic condensations and rarefactions.
c. high- and low-pressure regions.
d. all of the above E. none of the above

Answers

Sound waves in air are a series of periodic disturbances, periodic condensations and rarefactions, and high- and low-pressure regions. It is all of the above. The answer is letter D.

Final answer:

Sound waves in air are a series of periodic condensations and rarefactions.

Explanation:

Sound waves in air are a series of periodic condensations and rarefactions. When a sound is produced, it creates compression regions (areas of high pressure) and rarefaction regions (areas of low pressure) that propagate through the air. These alternating regions of high and low pressure create the characteristic waveform of the sound wave.

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