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saveliy_v [14]
4 years ago
10

Calculate the ph of a solution that is 0.225m benzoic acid and 0.160m sodium benzoate, a salt whose anion is the conjugate base

of benzoic acid.
Chemistry
1 answer:
Llana [10]4 years ago
4 0
Answer is: pH of benzoic acid is 4.052.
c(C₆H₅<span>COOH) = ck = 0.225 M.
</span>c(C₆H₅COO⁻) = cs = 0.160 M.
pKa(C₆H₅COOH) = 4.2.
Henderson–Hasselbalch equation for buffers: pH = pKa + log(cs/ck).
pH = 4.2 + log(0.160 M / 0.225 M).
pH = 4.2 - 0.148.
pH = 4.052.
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AleksandrR [38]
The answer is <span>(3) 3 × 12.4 hours
</span>
To calculate this, we will use two equations:
(1/2) ^{n} =x
t_{1/2} = \frac{t}{n}
where:
<span>n - number of half-lives
</span>x - remained amount of the sample, in decimals
<span>t_{1/2} - half-life length
</span>t - total time elapsed.

First, we have to calculate x and n. x is <span>remained amount of the sample, so if at the beginning were 16 grams of potassium-42, and now it remained 2 grams, then x is:
2 grams : x % = 16 grams : 100 %
x = 2 grams </span>× 100 percent ÷ 16 grams
x = 12.5% = 0.125

Thus:
<span>(1/2) ^{n} =x
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n*log(0.5)=log(0.125)
n= \frac{log(0.5)}{log(0.125)}
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It is known that the half-life of potassium-42 is 12.36 ≈ 12.4 hours.
Thus:
<span>t_{1/2} = 12.4
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Therefore, it must elapse 3 × 12.4 hours <span>before 16 grams of potassium-42 decays, leaving 2 grams of the original isotope</span>
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A piece of silver releases 202.8 J of heat while cooling 65.0 °C. What is the mass of the sample? Silver has a specific heat of
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Answer: 13 grams

Explanation:

The quantity of heat energy (Q) released from a heated substance depends on its Mass (M), specific heat capacity (C) and change in temperature (Φ)

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202.8J = M x 15.6 J/g

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