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Ad libitum [116K]
4 years ago
10

How many molecules are there in 0.035 moles of CO2?

Chemistry
1 answer:
Svet_ta [14]4 years ago
7 0
I would say C but I’m not entirely sure
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The number placed in front of a compound to balance a chemical reaction is called
masha68 [24]

Answer: <em>The number placed in front of a compound to balance a chemical reaction is called </em><em><u>coefficient</u></em>.

Explanation:

Assume this general form for a <em>chemical equation</em>:

  • <em>a</em>A + <em>b</em>B → <em>c</em>C + <em>d</em>D

The letters <em>a, b, c, </em>and <em>d,</em> in front of each compound A, B, C, and D, are called coefficients and indicate the number of formula units (molecules or ions) that take part in the equation.

Those coefficients are needed to <em>balance the equation</em> and ensure compliance with the law of mass conservation.

This example shows it:

  • Word equation: hydrogen + oxygen yields water

  • Chemical equation: H₂ (g) + O₂(g) → H₂O(g)

  • Balance, adding the coefficients so that the number of each kind of atoms is the same on the left and the right of the chemical equation:

        H₂ (g) + 2O₂(g) → 2H₂O(g)

In that equation:

  • The coefficient of H₂ (g) on the left is 1 (it is not written)
  • The coefficient of O₂(g) on the left is 2
  • The coefficient of H₂O(g) on the right is 2

You read it as: 1 mole of gaseous hydrogen and 2 moles of gaseous oxygen yield 2 moles of water vapor.

4 0
3 years ago
Which trends appear as the elements in Period 3 are considered from left to right?
andreev551 [17]

Answer:

Metallic character decreases, and electronegativity increases.

Explanation:

Hello!

In this case, according to the organization of the periodic table, we can see that from left to right, the electronegativity increases as nonmetals are able to attract electrons more easily than metals.

Moreover, in contrast to the previous periodic trend, the metallic character decreases from left to right because the elements tend to decrease the capacity to lose electrons and consequently start attracting them.

Thus, the answer would be: "Metallic character decreases, and electronegativity increases".

Best regards!

8 0
3 years ago
Below is a phase diagram for Carbon Dioxide. Use this diagram to answer the following question.
kompoz [17]
If you mark those points on the phase diagram it appears to be moving from vapor to liquid. If you can’t see how I determined that please let me know and I can further explain.

Vapor to liquid is the same as saying gas to liquid, which I believe to be the correct answer.
8 0
3 years ago
Which of the following is the correct abbreviation for the air mass at point C in the diagram below?MT
erma4kov [3.2K]

Answer:

mP C. Is right

Explanation:

8 0
3 years ago
Read 2 more answers
You need to prepare 0.2 liters of a 0.1 M solution of a phosphate buffer with a pH of 7.2. If you have solid K2HPO4 (FW=136.09)
Lera25 [3.4K]

Answer:

To prepare 0,2 L of a 0,1M solution of a phosphate buffer to a pH of 7,2 you need to add 1,05 mL of 6M HCl, 2,722 g of K₂HPO₄ and complete 0,2 L with water.

Explanation:

The acid equilibrium of phosphate buffer for a pH of 7,2 is:

H₂PO₄⁻ ⇄ HPO₄²⁻+ H⁺ pka = 6,86

Using Henderson-Hasselbalch formula:

pH = pka + log₁₀ \frac{[HPO_{4}^{2-}]}{[H_{2}PO_{4}^-]}

7,2 = 6,86 + log₁₀ \frac{[HPO_{4}^{2-}]}{[H_{2}PO_{4}^-]}

2,18776 =  \frac{[HPO_{4}^{2-}]}{[H_{2}PO_{4}^-]}<em> (1)</em>

You need to add 0,2L× 0,1M = 0,02 moles of phosphate buffer, that means:

0,02 moles = H₂PO₄⁻ + HPO₄²⁻ <em>(2)</em>

Replacing (2) in (1):

H₂PO₄⁻: <em>6,2739x10⁻³ moles</em>

Thus,

HPO₄²⁻: 0,013726 moles

K₂HPO₄ reacts with HCl thus:

K₂HPO₄ + HCl → KH₂PO₄ + KCl

Thus, you need to add 0,02 moles of K₂HPO₄ that will react with 6,2739x10⁻³ moles of HCl To produce the necessary moles for the buffer:

0,02 moles of K₂HPO₄× \frac{136,09 g}{1 mole} = <em>2,722 g</em>

6,2739x10⁻³ moles of HCl÷ 6 M = 1,05x10⁻³ L ≡<em> 1,05 mL of 6M HCl</em>

Thus, to prepare 0,2 L of a 0,1M solution of a phosphate buffer to a pH of 7,2 you need to add 1,05 mL of 6M HCl, 2,722 g of K₂HPO₄ and complete 0,2 L with water.

6 0
4 years ago
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