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Mumz [18]
4 years ago
5

ANSWER Soon!!

Chemistry
1 answer:
vichka [17]4 years ago
7 0

Answer:

  • 1. 0.1683 mol
  • 2. 1.191 g
  • 3. 0.02695 mol
  • 4. Na₂Cl₃
  • 5. The empirical formula obtained is not correct. This is likely due to experimental errors, since much precision was required (the masses are determined in thousandths of grams).

Explanation:

<em><u></u></em>

<em><u>1. How many moles of elemental sodium were used in the reaction?</u></em>

Since all of the solid sodium is used up by the reaction, you can cancluate the number of moles of elemental sodium used dividing the mass by the molar mass:

  • number of moles = mass in grams / atomic mass

  • mass in grams = 0.3870 g (given)

  • atomic mass = 22.990 g/mol

  • number of moles = 0.3870 g / 22.990 g/mol = 0.1683 mol

<u><em>2. What is the mass of chlorine gas used in the reaction?</em></u>

a) Mass of chlorine gas introduced in the flask = mass of the stoppered flask after filling it with chlorine gas - mass of the empty flask with the sopper

  • Mass of chlorine gas introduced = 158.1743g - 156.1870g = 1.9873 g

b) Mass of chlorine gas unreacted = 0.7962 g (given)

c) Mass of chlorine gas used = mass of chorine gas introduced in the flask - mass of chlorine gass un reacted

  • Mass of chlorine gas used = 1.9873g - 0.7962g = 1.1911g

<u><em>3. How many moles of chlorine were used in the reaction?</em></u>

  • molar mass of chlorine gas, Cl₂ = 2 × 35.453 g/mol = 70.906 g/mol

  • number of moles = mass in grams / molar mass = 1.911g / 70.906g/mol = 0.02695 mol

<u><em>4. What is the empirical formula of sodium chloride based on the experimental data?</em></u>

Divide the number of moles of each element by the smalles number of moles:

  • Na: 0.01683 / 0.01683 = 1
  • Cl = 0.02695 / 0.01683 = 1.6

Multiply by 2 to obtain whole numbers:

  • Na = 2
  • Cl = 3.2 = 3

  • Empirical formula Na₂Cl₃

<u><em></em></u>

<u><em>5. Was the empirical formula you obtained correct using the chemists data correct? Why? </em></u>

<u><em></em></u>

No, the empirical formula you obtained using the chemists data is not correct, because the correct empirical formula of sodium chloride is NaCl.

That is, there is 1 atom of sodium per every atom of chlorine in one chemical formula of NaCl, but that is not reflected by the empirical formula Na₂Cl₃.

That is a demostration of big experimental errors. You can speculate that the errors are likely due to problems of procedure collecting the gas or errors in measuring the masses.

As you see, the masses are measured to thousandths of grams, which requires much precision; thus smalls absolute errors could produce huge relative errors.

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Answer:

9.8g

Explanation:

Using periodic table find molar mass of C and H:

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Using molar mass times moles of the chemical to find the mass in 0.35 moles of c2h4:

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A 0.708 g sample of a metal, M, reacts completely with sulfuric acid according to the reaction M ( s ) + H 2 SO 4 ( aq ) ⟶ MSO 4
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Answer:

The metal has a molar mass of 65.37 g/mol

Explanation:

Step 1: Data given

Mass of the metal = 0.708 grams

Volume of hydrogen = 275 mL = 0.275 L

Atmospheric pressure = 1.0079 bar = 0.9947 atm

Temperature = 25°C

Vapor pressure of water at 25 °C = 0.03167 bar = 0.03126 atm

Step 2: The balanced equation

M(s) + H2SO4(aq) ⟶ MSO4 (aq) + H2(g)

Step 3: Calculate pH2

Atmospheric pressure = vapor pressure of water + pressure of H2

0.9947 atm = 0.03126 atm + pressure of H2

Pressure of H2 = 0.9947 - 0.03126

Pressure of H2 = 0.96344 atm

Step 4: Calculate moles of H2

p*V=n*R*T

⇒ with p = The pressure of H2 = 0.96344 atm

⇒ with V = the volume of H2 = 0.275 L

⇒ with n = the number of moles H2 = TO BE DETERMINED

⇒ with R = the gas constant = 0.08206 L*atm/K*mol

⇒ with T = the temperature = 25°C = 298 Kelvin

n = (p*V)/(R*T)

n = (0.96344 * 0.275)/(0.08206*298)

n = 0.01083 moles

Step 5: Calculate moles of M

For 1 mole of H2 produced, we need 1 mole M

For 0.0108 moles of H2 we need 0.01083 moles of M

Step 6: Calculate molar mass of M

Molar mass M = Mass M / moles M

Molar mass M = 0.708 grams / 0.01083 moles

Molar mass M = 65.37 g/mol

The metal has a molar mass of 65.37 g/mol

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Combined gas law is the combination of Boyle's law, Charles's law and Gay-Lussac's law.

The combined gas equation is,

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where,

P_1 = initial pressure of gas = 2.30 atm

P_2 = final pressure of gas = 5.40 atm

V_1 = initial volume of gas = 20.0 L

V_2 = final volume of gas = ?

T_1 = initial temperature of gas = 308 K

T_2 = final temperature of gas = 416 K

Now put all the given values in the above equation, we get:

\frac{2.30atm\times 20.0L}{308K}=\frac{5.40atm\times V_2}{416K}

V_2=11.5L

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7 0
3 years ago
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