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Pavel [41]
3 years ago
9

What is the value of the equilibrium constant at 25 oC for the reaction between the pair: Sn(s) and Pb2 (aq) to give Pb(s) and S

n2 (aq) Use the reduction potential values for Sn2 (aq) of -0.14 V and for Pb2 (aq) of -0.13 V Give your answer using E-notation with NO decimal places (e.g., 2 x 10-2 would be 2E-2; and 2.12 x 10-2 would also be 2E-2.). Do NOT include spaces, units, punctuation or anything else silly
Chemistry
1 answer:
Lilit [14]3 years ago
6 0

Answer:

The value of the equilibrium constant at 25°C is 2.177

Explanation:

Based on the half-reactions:

Sn(s) → Sn²⁺ + 2e⁻  E° = -(Reduction potential) = 0.14V

Pb²⁺ + 2e⁻ → Pb(s) E° = -0.13V

Sn(s) + Pb²⁺ → Pb(s) + Sn²⁺ E° = 0.14V - 0.13V = 0.01V

Using:

Eºcell = 0.0592/n (log K) At 25°C

<em>Where E° cell = 0.01V</em>

<em>n are moles of electrons = 2</em>

<em>K is equilibrium constant</em>

<em />

Replaing:

0.01V = 0.0592/2 * (logK)

0.3378 = log K

2.177 = K

<h3>The value of the equilibrium constant at 25°C is 2.177</h3>
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Which answer correctly ranks the atoms in terms of decreasing electronegativity (the highest electronegativity first)? which ans
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O, N, C, H

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On the periodic table, Electronegativity increases across the period but decreases down a group.

To solve the given problem, let us use thE Pauling's table of electronegativities to compare the electronegativities of the elements.

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Determine the molarity of a solution that contains 30 moles naoh in 0.80 liters of solution?
UkoKoshka [18]

Taking into account the definition of molarity,  the molarity of a solution that contains 30 moles naoh in 0.80 liters of solution is 37.5 \frac{moles}{liters}.

<h3>Definition of molarity</h3>

Molar concentration or molarity is a measure of the concentration of a solute in a solution and indicates the number of moles of solute that are dissolved in a given volume.

The molarity of a solution is calculated by dividing the moles of solute by the volume of the solution:

Molarity=\frac{number of moles}{volume}

Molarity is expressed in units \frac{moles}{liters}.

<h3>This case</h3>

In this case, you have:

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Replacing in the definition of molarity:

Molarity=\frac{30 moles }{0.80 L}

Solving:

<u><em>Molarity= 37.5 </em></u>\frac{moles}{liters}<em />

Finally, the molarity of a solution that contains 30 moles naoh in 0.80 liters of solution is 37.5 \frac{moles}{liters}.

Learn more about molarity:

brainly.com/question/9324116

brainly.com/question/10608366

brainly.com/question/7429224

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How many grams are in 3.45 moles of CaCl2
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Answer:

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now:

\frac{110.984 grams}{mol} * 3.45 mol

the mol cancels out and we left with 3.45 * 110.984 grams = 382.89 grams

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