What's the difference between the movement of particles in liquid and the movement of particles in gases
What's the difference between the movement of particles in liquid - 1

Answers

Answer 1
Answer: liquids move freely and slide past each other while gases move in zig zag motions not sliding past each other at all they're all over the place
Answer 2
Answer: Gas is like just air, but liquid, is water. Water, moves quickly, when, air just kind of like moves like in a weird way, like if you see it move over hot tea, that is how it would look like. So, that should help you, have a great day!

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I don't understand how to find the frequency and period of wavelengths. Can anyone help me?
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An ohmmeter is a common device for measuring resistance. Using an ohmmeter, you find that a certain material has a very high resistance. This material is most likely what?conductorinsulatorsemiconductorsuperconductor

Electrical outlets in a house maintain a steady voltage, even when the amount of resistance on them changes. How is this possible?

Answers

The situation presented above is possible because the outlets could be operating in a parallel circuit. Electrical outlets in a house maintain a steady voltage, even when the amount of resistance on them changes because it operates with a parallel circuit wherein voltage is constant even if resistance changes.

What is a/an Diorama???

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A three-dimensional miniature or life-size scene in which figures, stuffed wildlife, or other objects are arranged in a naturalistic setting against a painted background.

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a three dimensional scene

3. Three metal spoons are on a table. They are each at room temperature. If the three spoonstouch,
heat will flow among all three spoons.
heat will flow between two spoons.
no heat will flow among the spoons.
o heat will flow from the spoons to the air.

Answers

If the spoons touch, no heat will flow among the spoons. This is because they are already at thermal equilibrium with each other. This is hinted by the statement "they are at room temperature" which means they all have the same temperature. Heat only flows when there is a difference in temperature.

The device which is used to increase or decrease the voltage of electricity is called​

Answers

Answer:

Transformer

Explanation:

Transformers can increase (step up), or it can decrease (step down) voltage.

Please Explain two ways nitrogen gas in the atmosphere is changed into nitrogen compounds that plants can use. -Thank you all in advance! I do need this by 9:20 Am Eastern Time tomorrow

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Not sure if this is what your looking for, but hope it helps. Nitrogen gas can be changed into nitrogen compound through nitrogen fixation, which is the conversion of nitrogen gas to ammonia, that are absorbed by the plant to make protein. Another way is through animals eating plants and obtaining nitrogen, which is later released, by decomposes, when the organism dies.

The frequency of violet light is 7.5x10 to the 14th power hertz. What is the wavelength?

Answers

Wavelength times frequency = speed of light
7.5E14 x wavelength = 300,000 m/s

Wavelength in meters = 300,000 divided by 7.5E14

Final answer:

Violet light frequency is 7.5 x 10^14 hertz. As according to the relation between light's speed, frequency and wavelength, λ = c / f, the wavelength of violet light can be found to be approximately 400 nanometers.

Explanation:

The relationship between frequency (f), wavelength (λ), and the speed of light (c) is expressed by the equation c = fλ. Given the speed of light c is approximately 3.00 × 10⁸ meters per second (m/s) and the frequency of violet light f is given as 7.5 × 10¹⁴ hertz (Hz), we can solve for wavelength λ. Rearranging the equation gives us λ = c / f. Substituting the given values we find that λ = (3.00 × 10⁸ m/s) / (7.5 × 10¹⁴ Hz), which computes to approximately 400 nanometers (nm). This result corroborates that violet light is typically within the range of 380 - 450 nm, thus confirming its position at the high-frequency, short-wavelength end of the visible light spectrum.

Learn more about Visible Light Wavelength here:

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