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Dvinal [7]
3 years ago
6

The dimerization of NO2 has a rate constant at 25 degrees Celcius of 2.45x10^-2 L/mol min. What will be the concentration of NO2

after 120 seconds, given a starting concentration of NO2 of 11.5 mol/L?
Chemistry
1 answer:
ohaa [14]3 years ago
6 0

Answer:

7.4 mol/L

Explanation:

To solve problems involving the determination of the concentration of a reactant after a time given the rate constant for the reaction, one needs to know the rate law.

Given the units of the rate constant one can learn about the rate law of the reaction.

One can deduce the order by remembering that the rate has units of concentration per time = molarity/ t = M/t.

Now M is equal to mol/L and one is working in units of time in minutes, as is the case in this question where k= 2.45 x 10⁻²  L/mol min, and knowing:

rate = k[A]^n

You need to ask yourself what are the units I need to multiply with  the L/mol min given in the question to get mol/L.

mol/Lmin = [A]^n ( L/molmin ) ⇒  if n = 2  

mol/Lmin = mol²/L² x L/mol·min   Therefore, the rate order is 2 and

r = k[A]²

In general the units of k given a general order n is  1 /( M ^n-1 s)

For a second order reaction, the integrated rate law is:

1/[A]t  = 1 / [A]₀ + kt  

So for t = 2 min, we have:

1/ [A]t =  1/ 11.5 mol/L+ 2.45 x 10⁻² L/mol min(2 min )  

= 0.0870 L/mol +0.0490 L/mol = 0.136 L/mol

⇒ [A]t = 1/ 0.136 mol/L = 7.35 mol/L

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3. At STP, how many liters of oxygen gas are required to react completely with 3.2 x 10^22
Mrrafil [7]

The volume of oxygen required to react with 3.2 * 10²² molecules of hydrogen is 0.56 L.

<h3>What is stoichiometric law?</h3>

The stoichiometric law has been given as the representation of the moles of product and reactant in a chemical reaction are represented by the stoichiometric coefficient.

It has been known that 1 mole of a compound has 6.023 * 10²³ molecules. Thus, the moles of hydrogen gas equivalent to 3.2 * 10²² molecules has been:

6.023 * 10²³ molecules = 1 mole

3.2 * 10²² molecules = 1/6.023 * 10²³ * 3.2 * 10²² moles

3.2 * 10²²  molecules = 0.05 moles

Thus, the moles of hydrogen gas available is 0.05 moles.

From the stoichiometric law, according to the balanced chemical equation,

2 moles of hydrogen requires = 1 moles of oxygen

0.05 moles of hydrogen requires = 1/2 * 0.05 moles oxygen

0.05 moles of hydrogen requires =  0.025 moles oxygen

Thus, the moles of oxygen required is 0.025 moles. At STP, a mole of gas been equivalent to 22.4 L . Thus, the volume of 0.025 moles oxygen has been:

1 mole = 22.4 L

0.025 moles = 22.4 * 0.025 L

0.025 mole = 0.56 L

Thus, the volume of oxygen required to react with 3.2 * 10²² molecules of hydrogen is 0.56 L.

Learn more about stoichiometric law, here:

brainly.com/question/23742235

#SPJ1

7 0
2 years ago
Can you guys help me answer question 5 on homogeneous mixture tysm
hjlf

Answer:

Hope this helped :) good luck! ❤️

Explanation:

A <em>coolant solution</em> is a <u><em>homogeneous </em></u>mixture because the coolant particles are not chemically combined with the water (keep their properties) and they are evenly distributed throughout the water.

7 0
3 years ago
A gas occupies a volume at 34.2 mL at a temperature of 15.0 C and a pressure of 800.0 torr. What will be the volume of this gas
Grace [21]
The answer is 34.1 mL.
Solution:
Assuming ideal behavior of gases, we can use the universal gas law equation
     P1V1/T1 = P2V2/T2
The terms with subscripts of one represent the given initial values while for terms with subscripts of two represent the standard states which is the final condition.
At STP, P2 is 760.0torr and T2 is 0°C or 273.15K. Substituting the values to the ideal gas expression, we can now calculate for the volume V2 of the gas at STP:
     (800.0torr * 34.2mL) / 288.15K = (760.0torr * V2) / 273.15K
     V2 = (800.0torr * 34.2mL * 273.15K) / (288.15K * 760.0torr)
     V2 = 34.1 mL
3 0
4 years ago
Read 2 more answers
What does velocity describe
White raven [17]
<span>Velocity describes the speed of an object and its direction of motion</span>
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4 years ago
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Is P2I4 or Diphosphorus tetraiodide covalent or ionic?
elena55 [62]

Diphosphorus tetraiodide  is a covalent compound.

It has low melting point as compared to ionic compounds

It is a rare compound where the oxidation state of Phosphorous is +2.

It is also termed as subhalide of phosphorous.

5 0
3 years ago
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