Two waves have the following waveforms.Wave A
U
Wave B
Which conclusion can BEST be supported by the illustrations?

Answers

Answer 1
Answer:

lol i’m in your physical science class what was the answer

Answer 2
Answer:

Final answer:

Without seeing the specific waveforms for Wave A and Wave B, we cannot draw a conclusive comparison. However, comparing waveforms can give insights into aspects such as frequency, wavelength, amplitude, and phase difference.

Explanation:

Without the actual illustrations of waveforms for Wave A and Wave B, it's not possible to draw a reliable conclusion about these waves. However, generally, by comparing waveforms, we can discern their frequency, wavelength, amplitude, and phase difference. For example, if Wave A has more complete cycles passing a certain point in a given time than Wave B, we can conclude that Wave A has a higher frequency. If wave A has a higher peak than Wave B, we can say that Wave A has a greater amplitude. These are examples of the types of conclusions one could potentially draw from waveforms, but without the specific waveforms for Wave A and Wave B, any conclusion here would be purely hypothetical.

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Which one of the following types of electromagnetic radiation causes certain substances to fluoresce? A. Ultraviolet rays
B. Infrared waves
C. X rays
D. Cosmic rays

Answers

It is Ultra-Violet rays

How can we run out of energy if energy cannot be created or destroyed?

Answers

Excellent question !
When people say "run out of energy", what they really mean is: run out of the easiest substances to get energy FROM ... coal, oil, and wood.
you don't run out of energy, you run out of USABLE energy. That may or may not happen, if humans somehow manage to become a type two civilization, it's almost never happening, because if a civilization becomes type two, they can harvest all of the energy produced by their sun. And if the human civilization becomes a type two, they're going to become type 3 well before the sun runs out of gases. If we become a type 3, we can use all energy from every part of the universe.

A ray of light bends upon entering a new medium. What is this phenomenon called?

Answers

Answer:

Refraction

Explanation:

Refraction is a phenomenon which results when a ray of light enters from one medium to another medium. The speed of light in a medium slows down. It depends upon the optical density of the medium which is given by refractive index.

When a ray of light enters from rarer medium to denser medium, it bends towards the normal.

When a ray of light enters from denser medium to rarer medium, it bends away from the normal.

The laws of refraction are:

  • The incident ray, the refracted ray and the normal all lie in the same plane.
  • (sin i)/(sin r)=(n_2)/(n_1)

This is Snell's law. i is the angle of incidence, r is the angle of refraction, n₁ is the refractive index of medium 1 and n₂ is the refractive index of the medium 2.

Ii believe it's a refraction

What can cause a big city to be warmer than the surrounding countryside?

Answers

In cities, a phenomenon known as the "urban heat island effect" causes air temperatures to be warmer than in nearby suburban or rural areas and
The smoothness of the landscape and the local climate—not the materials of the concrete jungle—govern the urban heat island effect, a new study finds

there are many people in the city and so much traffic that it pollutes the air and makes it warmer where the country dosent have much traffic so there for its cooler

What is the most important reason to control the condition of a experiment

Answers

The most important reason to control the conditions of an experiment is to make sure that the environment is affecting the results of the experiment--which would void the study. 

A 72-tooth gear is connected to a 12-tooth gear. If the large gear makes one complete turn, how many turnsdoes the small gear make?

Answers

You divide 72 by 12 to get 6.