Which type of solar radiation is the most powerful?

Answers

Answer 1
Answer:

Answer:

The type of solar radiation that is the most powerful is the Ultraviolet Radiation.

Explanation:

Ultraviolet Radiation is the radiation that has the shortest wavelength (360 nanometers), which carries a lot of energy and interferes with molecular bonds. Especially those less than 300 nanometers, which can alter DNA molecules, very important for life. These waves are absorbed by the upper part of the atmosphere, especially by the ozone layer.

The damage that ultraviolet rays can cause to humans include effects on the skin such as irritation, wrinkles, loss of elasticity, spots and cancer; also possible conditions at the ocular level and can trigger systemic lupus erythematosus.

Answer 2
Answer:

The most powerful type of solar radiation is known as gamma radiation.

Gamma radiation consists of high-energy photons and is part of the electromagnetic spectrum. It has the highest frequency and shortest wavelength among the various types of solar radiation, which include gamma rays, X-rays, ultraviolet (UV) radiation, visible light, infrared (IR) radiation, and radio waves. Gamma radiation is generated by nuclear reactions, such as those occurring in the core of the Sun and in other high-energy processes in the universe. Due to its high energy, gamma radiation can penetrate deeply into matter and has the potential to cause ionization and damage to living cells.

Therefore, it is important to limit exposure to gamma radiation and take appropriate safety precautions when working with radioactive materials or in environments with high levels of gamma radiation.

Learn more about solar radiation here:

brainly.com/question/32310977

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The molar mass of carbon dioxide (CO2) is 44.01 g/mol. The molar mass of water (H2O) is 18.01 g/mol. A reaction uses 528 g of CO2. How many moles of water are used in this reaction?

Answers

The reaction that results from this is:

H2O + CO2 --> H2CO3

Ratio between water and CO2 is 1:1. So we can say that for every Mole of CO2, we need 1 Mole of water to produce 1 Mole of H2CO3. Thus as n=m/M we can find n = 528/44.01 = 11.997 ~ 12Mol.

Therefore, we need 12 moles of water.

Answer:

12 moles

Explanation:

The reaction will form carbonic acid:

CO₂ + H₂O  ⇒   H₂CO₃

For 528 g of CO₂, the number of moles (n) will be:

n = mass/molar mass

n = 528/44.01

n  = 12 moles of CO₂

The stoichiometry is 1 mol of CO₂ reacts with 1 mol of H₂O, so 12 moles of CO₂ need 12 moles of H₂O.

Is friction better on a hard or smooth surface?

Answers

Answer:

Friction occurs because no surface is perfectly smooth. Rougher surfaces have more friction between them. Heavier objects also have more friction because they press together with greater force. Friction produces heat because it causes the molecules on rubbing surfaces to move faster and have more energy.

Explanation:

Answer:

Friction occurs because no surface is perfectly smooth. Rougher surfaces have more friction between them.

Explanation:

A chemical reaction in which compounds break up into simpler constituents is a _______ reaction. A. double replacement
B. substitution
C. decomposition
D. combination

Answers

C) Decomposition. Double replacement would be AB + CD = AD + BC, substitution is AB + C = CB + A, and combination is A + B = AB

The melting of gold is a physical change.why?

Answers

Because when a matter melts (or generally speaking, changes phases) its chemical structure does not change. By change of chemical structure I mean, reaction. When a matter melts it does not react with another one. It does not, give or take electrons to another matter or it does not share with them.
Melting gold can be reversed. Physical changes are ones that can be reversed, like bending a paperclip or getting whacked with a hammer and getting a dent. Chemical changes can't be reversed: like burning wood, or baking bread.

The shortest wavelengths occur in the:red end of the spectrum
blue end of the spectrum
middle of the spectrum

The light-gathering capacity of a telescope is dependent upon the:
magnification
focal length
size of human iris
area of aperture

Answers

Answer:

1) blue end of the spectrum

2) area of aperture

Explanation:

1) The electromagnetic spectrum encompases a wide range of frequency (ν) and wavelength (λ) that includes gamma rays, x-rays, ultra violet(UV), visible, infra red (IR), microwaves and radiowaves. The wavelength increases from gamma rays to radio waves.

The wavelength perceivable by human eyes lies in the UV-visible region which extends from 380 nm in the blue to 740 nm in the red.The shortest wavelengths occur in the blue end of the spectrum which also have the highest energy. In contrast, longer wavelengths occur on the red which have lower energy.

2) The light gathering capacity of a telescope is dependent upon its area of aperture. Larger the area, greater is the light gathering power which implies that the telescope has the capability of detecting weak or faint objects.

The area of the aperture is essentially the area of the objective of the telescopic lens which is given as:

area = (\pi*D^(2)  )/(4)

where D = diameter of the lens

1) blue end of the spectrum

2) area of aperture

If there is 8 g of a substance before a physical change, how much will there be afterwards?

Answers

8 grams because physical changes dont involve a change in the substance's components, so the matter can not be destroyed, onlt changed.

Answer:

8 g

I took the quiz and because the amount doesn’t change