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Paraphin [41]
3 years ago
13

181 mL of an unknown HCl solution was neutralized in a titration with 36.2 mL of 0.250 M NaOH. What is the molarity of the unkno

wn HCl solution
Chemistry
1 answer:
dimaraw [331]3 years ago
7 0

Answer: The molarity of the unknown HCl solution is 0.05 M

Explanation:

To calculate the molarity of acid, we use the equation given by neutralization reaction:

n_1M_1V_1=n_2M_2V_2

where,

n_1,M_1\text{ and }V_1 are the n-factor, molarity and volume of acid which is HCl

n_2,M_2\text{ and }V_2 are the n-factor, molarity and volume of base which is NaOH.

We are given:

n_1=1\\M_1=?\\V_1=181mL\\n_2=1\\M_2=0.250M\\V_2=36.2mL

Putting values in above equation, we get:

1\times M_1\times 181=1\times 0.250\times 36.2\\\\M_1=0.05M

Thus the molarity of the unknown HCl solution is 0.05 M

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Answer:

1) The value of Kc:

C. remains the same.

2) The value of Qc:

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3) The reaction must:

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Explanation:

Hello,

In this case, by means of the Le Chatelier's principle which is based on the shift a chemical reaction could have under some modifications, we have:

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C. remains the same, since it just depend the reaction's thermodynamics as it is computed via:

ln(K)=\frac{\Delta _RG}{RT}

2) The value of Qc:

A. is greater than Kc, since the reaction quotient is:

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Thus, the lower the concentration of ammonia, the higher Qc, making Qc>Kc.

3) The reaction must:

B. run in the reverse direction to restablish equilibrium, since ammonia was withdrawn and should be regenerated to reach the equilibrium.

4) The concentration of N2 will:

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3 years ago
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What would the molecular formula be if lithium and sulfur reacted to form a neutral compound?
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Explanation:

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2 years ago
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500 mL solution of calcium chloride with a concentration of 0.75 mol/L. The mass of solute needed to make this solution is ___ _
BabaBlast [244]

Answer:

41.63g

Explanation:

Given parameters:

Volume of CaCl₂  = 500mL  = 0.5L

Concentration  = 0.75mol/L

Unknown:

Mass of the solute needed = ?

Solution:

The mass of the solute can be derived using the expression below;

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