What does the table displays?
what does the table displays? - 1

Answers

Answer 1
Answer:

Answer:

d

Explanation:


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Why does red appear first in the visible light spectrum? A Red light has the shortest wavelength, so it is refracted the least. B Red light has the shortest wavelength, so it is refracted the most. C Red light has the longest wavelength, so it is refracted the most. D Red light has the longest wavelength, so it is refracted the least.

Answers

The red light appears first in the visible light spectrum as it exhibits the longest wavelength, and is refracted the least.

The relation between wavelength and refraction of light:

The phenomenon of bending of light as it moves from one medium to another is termed refraction. The intensity of refraction enhances with the decrease in the wavelength of light. The shorter wavelengths of light, that is, blue and violet are slowed more and at the same time experience more bending in comparison to the lights of longer wavelengths, that is, red.

The red color exhibits the longest wavelength and the slowest vibration, on the other hand, violet color exhibits the shortest wavelength and the fastest vibration of energy. The longer the wavelength, the less it is refracted and vice versa, This is the reason that red light appears first in the visible light spectrum.

Thus, the correct answer is option D.

Find out more information about the relation between wavelength and refraction here:

brainly.com/question/15906061

Answer:

c.

Explanation:

Describe your accuracy of your density measurements asummunf that you correctly identified your mystery solid and liquid

Answers

I don’t know the answer

What are the variables of Boyle's law?pressure and number of molecules of gas
volume and temperature
pressure and temperature
volume and number of molecules of gas
pressure and volume

Answers

Boyles law is P1V1=P2V2 where P is pressure and V is volume so the answer is pressure and volume

In the mid-1900s, most scientists used the Bohr atomic model to study atoms. In the Bohr model, electrons move in set paths around the atom's nucleus.In current atomic models, electron clouds are shown around the atom's nucleus. Electron clouds are regions where electrons are likely to be found.

What is a limitation of current atomic models as compared to the Bohr atomic model?

A. Current atomic models do not indicate the position of the nucleus within the atom's structure.

B. Current atomic models do not show how many electrons an atom has.

C. Current atomic models do not show where the electron is but only where the electron is likely to be.

Answers

the answer is c beca it true

Answer:

The answer is C.

Explanation:

A student has a sample of isopropanol (C3H7OH) that has a mass of 78.6 g. The molar mass of isopropanol is 60.1 g/mol. How many moles of isopropanol are contained in this sample?

Answers

Answer : The number of moles of isopropanol are 1.308 moles.

Solution : Given,

Mass of isopropanol = 78.6 g

Molar mass of isopropanol = 60.1 g/mole

Formula used :

\text{ Number of moles}=\frac{\text{ Given mass}}{\text{ Molar mass}}

Now put all the given values in this formula, we get the number of moles of isopropanol.

\text{ Number of moles}=(78.6g)/(60.1g/mole)=1.308moles

Therefore, 1.308 moles of isopropanol are contained in this sample.

The thing we are asked to calculate here is the amount of the substance in the given sample in units of moles. To obtain this value, the molar mass of the substance is needed. Molar mass has the units of grams per mole so it is a useful value for converting mass into moles.

78.6 g ( 1mol / 60.1g) = 1.31 mol isopropanol

How much heat energy is required to raise the temperature of 0.368 kg of copper from 23.0 ∘C to 60.0 ∘C? The specific heat of copper is 0.0920 cal/(g⋅∘C)

Answers

23.0 + 60.0 = 83.0° C heat energy is required to raise
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