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Len [333]
3 years ago
9

Silver Nitrate & Potasiumbromide​

Chemistry
1 answer:
Bezzdna [24]3 years ago
7 0

Answer:

For example, when silver nitrate and potassium bromide are mixed, a precipitate of silver bromide forms. The ions that remain in solution are written together as an aqueous, ionic compound on the products side. ... These ions, which do not form a precipitate, are called spectator ions.

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The heat from the Earth's cores radioactive process makes the lithospheric plates move sometimes away or toward each other.

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During a routine check of the fluoride content of Gotham City\'s water supply, the following results were obtained from replicat
Aleksandr-060686 [28]

Answer:

The mean is x=0.503\frac{mg}{L}

The 90% confidence interval is:

i_{0.90}=[0.492\frac{mg}{L},0.514\frac{mg}{L}]

Explanation:

1. First organize the data:

x_{1}=0.487

x_{2}=0.487

x_{3}=0.511

x_{4}=0.511

x_{5}=0.519

As there are 5 data, the sample size (n) is n=5

2. Calculate the mean x:

The mean is calculated adding up all the data and divide them between the sample size.

x=\frac{0.511+0.487+0.511+0.487+0.519}{5}

x=0.503\frac{mg}{L}

3. Find 90% confidence interval.

The formula to find the confidence interval is:

i_{0.90}=[x+/-z_{\frac{\alpha}{2}}*(\frac{d}{\sqrt{n}})] (Eq.1)

where x is the mean, d is the standard deviation and n is the sample size.

And

1-\alpha=0.90

\alpha=0.10

\frac{\alpha}{2}=0.05

z_{0.05}=1.645

4. Find the standard deviation

d=\sqrt{\frac{(x_{1}-x)^{2}+(x_{2}-x)^{2}+(x_{3}-x)^{2}+(x_{4}-x)^{2}+(x_{5}-x)^{2}}{n-1}}

d=\sqrt{\frac{(0.487-0.503)^{2}+(0.487-0.503)^{2}+(0.511-0.503)^{2}+(0.511-0.503)^{2}+(0.519-0.503)^{2}}{4}}

d=\sqrt{\frac{(-0.016)^{2}+(-0.016)^{2}+(0.008)^{2}+(0.008)^{2}+(0.016)^{2}}{4}}

d=\sqrt{2.24*10^{-4}}

d=0.015

5. Replace values in (Eq.1):

i_{0.90}=[0.503+/-1.645*(\frac{0.015}{2.236})]

For the addition:

i_{0.90}=[0.503+1.645*(\frac{0.015}{2.236})]

i_{0.90}=0.514

For the subtraction:

i_{0.90}=[0.503-1.645*(\frac{0.015}{2.236})]

i_{0.90}=0.492

The 90% confidence interval is:

i_{0.90}=[0.492,0.514]

4 0
3 years ago
Determine the concentration of a solution (M) made by dissolving 18.8 g of sodium chloride (NaCl) in 750.0 mL of solution.
Viefleur [7K]

Answer:

0.429 M

Explanation:

To find the molarity, you need to (1) convert grams to moles (using the molar mass), then (2) convert mL to L, and then (3) calculate the molarity (using the molarity ratio).

(Step 1)

Molar Mass (NaCl): 22.990 g/mol + 35.453 g/mol

Molar Mass (NaCl): 58.443 g/mol

18.8 grams NaCl               1 mole
--------------------------  x  ------------------------  =  0.322 moles NaCl
                                     58.443 grams

(Step 2)

1,000 mL = L

 750.0 mL                1 L
------------------  x  -----------------  =  0.7500 L
                            1,000 mL

(Step 3)

Molarity (M) = moles / volume (L)

Molarity = 0.332 moles / 0.7500 L

Molarity = 0.429 M

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