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ipn [44]
2 years ago
9

Calculate the mass of 4.95 x 10^15 Ag atoms

Chemistry
1 answer:
Marysya12 [62]2 years ago
7 0

Answer:

              8.87 × 10⁻⁷ grams

Explanation:

Moles = No. of Particles / 6.022 × 10²³ Particles/mol

Moles = 4.95 × 10¹⁵ atoms / 6.022 × 10²³ atoms/mol

Moles = 8.22 × 10⁻⁹ mol

Also,

Mass = Moles × M.Mass

Mass = 8.22 × 10⁻⁹ mol × 107.87 g/mol

Mass = 8.87 × 10⁻⁷ grams

You might be interested in
What happens if you pour water in baking soda? Does it release energy? What kind?
alexandr1967 [171]

Answer:

When baking soda or sodium Bicarbonate (NaHCo3) reacts with water carbonic acid is formed . The reaction is exothermic (so yes releases energy) that is heat (type of energy released) and Carbonic acid are produced. Carbonic acid is unstable so breaks up into carbon dioxide (which is the fizzy gas you see) and water forms.

Explanation:

5 0
3 years ago
3) a) (2 points) Label the 1H NMR spectrum of adipic acid by identifying key resonances. Use letters (a, b, c, etc.) to match Hs
Bess [88]

Answer:

The label of spectrum is attached.

Explanation:

adipic acid is equal to:

COOH - CH2 - CH2 - CH2 - CH2 - COOH

(1)            (2)      (3)       (3)       (2)       (1)

The structure of adipic acid indicates that it has 3 equivalent carbons, therefore it should have 3 peaks in the spectrum:

The first peak at approximately 172 ppm is from carbon (1) COOH. The second peak is at approximately 23 ppm and is by carbon number (3) CH2. and the third peak is at approximately 37 ppm and is due to group number (2) CH2.

3 0
3 years ago
Please help ASAP I’ll mark you as brainlister
EastWind [94]

Answer:

2

Explanation:

The balanced chemical equation for this reaction is:

2Na + K2S → 2K + Na2S

Meaning the coefficient for potassium (K) is 2.

4 0
3 years ago
Read 2 more answers
0.010 moles of carbon C4H10 reacts with oxygon as in the queation 1.76g of carbon dioxide and 0.90 of water are produced. Use th
Sonbull [250]

The coefficients are 2C₄H₁₀ + 13O₂ ⟶ 8CO₂ + 10H₂O

<em>Step 1</em>. <em>Gather all the information</em> in one place.

<em>M</em>_r:       58.12    32.00     44.01    18.02

             <em>a</em>C₄H₁₀ + <em>b</em>O₂ ⟶ <em>c</em>CO₂ + <em>d</em>H₂O

<em>m</em>/g:                                      1.76      0.90

<em>n</em>/mol:  0.010

<em>Step 2</em>. Calculate the <em>mass of C₄H₁₀</em>.

Mass = 0.010 mol C₄H₁₀ × (58.12 g C₄H₁₀/1 mol C₄H₁₀) = 0.581 g C₄H₁₀

<em>Step 3</em>. Calculate the <em>mass of O₂</em>

Mass of C₄H₁₀ + mass of O₂ = mass of CO₂ + mass of H₂O

0.581 g + <em>x </em>g = 1.76 g + 0.90 g

<em>x</em> = 1.76 + 0.90 - 0.581 = 2.079

Our information now has the form:

M_r:       58.12   32.00    44.01    18.02

           aC₄H₁₀ + bO₂ ⟶ cCO₂ + dH₂O

<em>m</em>/g:     0.581    2.079      1.76      0.90

<em>n</em>/mol:  0.010

<em>Step 4</em>. Calculate the <em>moles of each compound</em>.

Moles of O₂ = 2.079 g O₂ × (1 mol O₂/32.00 g O₂) = 0.064 97 mol O₂

Moles of CO₂ = 1.76 g CO₂ × (1 mol CO₂/44.01 g CO₂) = 0.040 00 mol CO₂

Moles of H₂O = 0.90 g H₂O × (1 mol H₂O/18.02 g H₂O) = 0.0499 mol H₂O

Our information now has the form:

           <em>a</em>C₄H₁₀ +    <em>b</em>O₂ ⟶   <em>c</em>CO₂ +    <em>d</em>H₂O

<em>n</em>/mol:  0.010   0.064 97  0.040 00  0.0499

<em>Step 5</em>: Calculate the <em>molar ratios</em> of all the compounds.

<em>a</em>:<em>b</em>:<em>c</em>:<em>d</em> = 0.010:0.064 97:0.040 00:0.0499 = 1:6.497:4.000:4.99

= 2 :12.99:8.00:9.98 ≈ 2:13:8:10

∴ <em>a</em> = 2; <em>b</em> = 13; <em>c</em> = 8; <em>d</em> = 10

The balanced equation is

2C₄H₁₀ + 13O₂ ⟶ 8CO₂ + 10H₂O

7 0
3 years ago
The process in which an organic acid and an alcohol react to form an ester and water is known as esterification. Ethyl butanoate
Daniel [21]

Answer:

696g

Explanation:

To determine the mass of ethylbutanoate produced, it is important that we know the number of moles of ethylbutanoate produced.

Now from the chemical equation, it can be seen that one mole of ethanol produces one mole of ethylbutanoate. This means that 6.0 mol of ethanol will surely produce 6.0 mol of ethylbutanoate.

Now, we need to get the mass of ethylbutanoate produced. The mass of ethylbutanoate produced is the number of moles of ethylbutanoate produced multiplied by the molar mass of ethylbutanoate produced.

The molar mass of ethylbutanoate is 12(6) + 12(1) + 16(2) = 116g/mol

The mass thus produced is 116 * 6 = 696g

3 0
4 years ago
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