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viktelen [127]
2 years ago
14

Compare the compressibility of gases and liquids. Support your answer by describing the arrangement of particles in gases and li

quids.
Chemistry
1 answer:
lawyer [7]2 years ago
8 0

Given what we know about liquids and gases, we can confirm that due to the loose molecular nature of gases, they can be compressed much more so than liquids.

<h3>Why are gases able to compress more than liquids?</h3>
  • This is due to the space in between particles for each state of matter.
  • In the case of solids, there is virtually no space in between the particles, which is why they are <u>very resistant to being compressed.</u>
  • In the case of liquids, there is space in between particles, though not a lot, which offers some compressibility.
  • Finally, gases have quite a lot of space in between particles, which <u>allows them to be compressed to great lengths.</u>

Therefore, given that gases contain much more space in between particles than that of a liquid, we can confirm that they will be able to be compressed to far greater lengths than that of liquids.

To learn more about gases visit:

brainly.com/question/1369730?referrer=searchResults

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Plants like the ones shown in the picture, that use seeds, flowers, or fruit for reproduction are A) flowering. B) invertebrates
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Plants like the ones shown in the picture, that use seeds, flowers, or fruit for reproduction are A) flowering.

The picture shows flowering plants that are using seeds, flowers or fruits and they are called flowering plant .

So the answer here is A) flowering.

Plants like the ones shown in the picture, that use seeds, flowers, or fruit for reproduction are A) flowering.

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3 years ago
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You are part of a team of scientists and engineers in charge of launching a new spacecraft to venus. What are two ways in which
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Answer: A barrier should be created to overcome the atmosphere of the Venus, while launching spacecraft to Venus.

Explanation:

The atmosphere of Venus consists of 96.5% carbon dioxide, other composition includes nitrogen and other gases in trace amounts. The large amount of carbon dioxide in the atmosphere can extinguish the missile of the launcher of spacecraft thus it will become difficult in launch of spacecraft to the Venus.

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Are spotted cats cuter than solid-colored cats?

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3 years ago
Boyle's law states that the pressure of a gas is always:
natka813 [3]

Answer:

d. inversely proportional to the volume of its container.

Explanation:

Boyle's law  states that at constant temperature and number of moles, the pressure of the gas is inversely proportional to the volume of the gas.

Thus, P ∝ T

P is the pressure

T is the temperature

For two gases at same temperature, the law can be written as:-

{P_1}\times {V_1}={P_2}\times {V_2}

<u>Thus, according to the question, the answer is:- d. inversely proportional to the volume of its container.</u>

7 0
3 years ago
(a) The original value of the reaction quotient, Qc, for the reaction of H2(g) and I2(g) to form HI(g) (before any reactions tak
Taya2010 [7]

Answer:

Here's what I get  

Explanation:

Assume the initial concentrations of H₂ and I₂ are 0.030 and 0.015 mol·L⁻¹, respectively.

We must calculate the initial concentration of HI.

1. We will need a chemical equation with concentrations, so let's gather all the information in one place.

                   H₂ +    I₂    ⇌ 2HI

I/mol·L⁻¹:    0.30   0.15         x

2. Calculate the concentration of HI

Q_{\text{c}} = \dfrac{\text{[HI]}^{2}} {\text{[H$_{2}$][I$_{2}$]}} =\dfrac{x^{2}}{0.30 \times 0.15} =  5.56\\\\x^{2} = 0.30 \times 0.15 \times 5.56 = 0.250\\x = \sqrt{0.250} = \textbf{0.50 mol/L}\\\text{The initial concentration of HI is $\large \boxed{\textbf{0.50 mol/L}}$}

3. Plot the initial points

The graph below shows the initial concentrations plotted on the vertical axis.

 

7 0
3 years ago
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