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aivan3 [116]
4 years ago
11

Even though ozone may be dangerous to our health here on Earth, how can it be beneficial in the upper atmosphere?

Chemistry
1 answer:
Annette [7]4 years ago
5 0

Answer:

It absorbs ultraviolet (UV) radiation from the sun.

Explanation:

Excess UV radiation damages DNA, causing malignant skin cancers.

The ozone in the upper atmosphere is beneficial because it absorbs much of this harmful radiation.

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N a football game, two players tackle each other so hard that they both fly in opposite directions after they hit each other. �W
evablogger [386]

Answer:

Newton's Third Law

Explanation:

Newton's Third Law stipulates that for every action there is an equal and opposite reaction.

So when the two players are tackling they exert a force on each other.

If player 1 tackles (exerts a force) player 2,  player 2 will exert an equal and opposite reaction on player 1 as stated in Newton's Third Law.

Therefore when they tackle each other so hard they both experience reaction forces so powerful that they fly in opposite directions.

Thus this is an example of the Newton's Third Law.

4 0
3 years ago
How does a chemical clock work
Rudik [331]

Answer:

The reaction in this experiment is termed an iodine clock reaction, because it is the molecular iodine (I2) that undergoes the sudden concentration change. When the iodine concentration increases, it reacts with the starch in the solution to form a complex, turning it a deep blue-black color.

3 0
3 years ago
Can someone help me, please
Gnesinka [82]
What do you need help with
4 0
3 years ago
Read 2 more answers
Combustion reactions are characterized by the reaction of a substance with
pashok25 [27]

Answer: Combustion reactions are characterized by the reaction of a substance with O2 to form one or more oxygen, often water. Combustion reactions emit heat, and they are important because most of society's energy is derived from them. Ex.: CH4 (g) + 2O2 (g) -- CO2 (g) + 2H2O (g)

Explanation: I hope thus helps UwU

8 0
3 years ago
Read 2 more answers
A gas occupies 135 cm3 at 143. K. At what Celsius temperature will its volume be 140 cm3? Assume that pressure remains constant.
Agata [3.3K]

Answer:

New temperature T2 = -124.7 °C

Explanation:

Given:

Old volume V1 = 135 cm³

New volume V2 = 140 cm³3

Old temperature T1 = 143 K

Find:

New temperature T2

Computation:

V1 / T1 = V2 / T2

135 / 143 = 140 / T2

New temperature T2 = 148.3 K

New temperature T2 = 148.3 - 273

New temperature T2 = -124.7 °C

3 0
3 years ago
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