QUESTION IMAGE
Question
key formulas & constants
- 1 mole = 6.022 × 10²³ particles (avogadros number)
- molar mass (m) = mass of 1 mole of a substance (g/mol)
symbols explained
symbol meaning
n amount of substance (in moles)
m mass (in grams)
m molar mass (in g/mol)
n number of particles (atoms, molecules,
formula units, etc.)
nₐ avogadros constant = 6.022 × 10²³
particles/mol
grams ↔ moles
n = m / m (moles = mass ÷ molar mass)
m = n × m (mass = moles × molar mass)
moles ↔ particles
n = n / nₐ (moles = particles ÷ avogadros number)
n = n × nₐ (particles = moles × avogadros number)
part 1: grams ↔ moles
Step1: Calculate moles of NaCl
Use the formula \( n=\frac{m}{M} \). Here, \( m = 11.7\ g \) (mass of NaCl) and \( M = 58.44\ g/mol \) (molar mass of NaCl).
\( n=\frac{11.7}{58.44}\)
Step2: Perform the division
\( n=\frac{11.7}{58.44}= 0.200\ mol\) (rounded to three - significant figures)
Step3: Calculate mass of \(C_{6}H_{12}O_{6}\)
Use the formula \( m=n\times M \). Here, \( n = 2.50\ mol \) (moles of glucose) and \( M = 180.16\ g/mol \) (molar mass of glucose).
\( m=2.50\times180.16\)
Step4: Perform the multiplication
\( m = 2.50\times180.16=450.4\ g\)
Step5: Calculate mass of \(O_{2}\)
Use the formula \( m=n\times M \). Here, \( n = 0.0250\ mol \) (moles of \(O_{2}\)) and \( M = 32.00\ g/mol \) (molar mass of \(O_{2}\)).
\( m=0.0250\times32.00\)
Step6: Perform the multiplication
\( m=0.0250\times32.00 = 0.800\ g\)
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| Substance | Molar Mass (g/mol) | Problem | Show Work (2 pts) | Ans (1 pt) |
|---|---|---|---|---|
| \(CO_{2}\) | \(44.01\) | What is the mass of \(0.750\ mol\) of carbon dioxide? | \(0.750\times44.01\) | \(33.0\) |
| \(NaCl\) | \(58.44\) | Convert \(11.7\ g\) of table salt to moles. | \(11.7\div58.44\) | \(0.200\) |
| \(C_{6}H_{12}O_{6}\) | \(180.16\) | How many grams are in \(2.50\ mol\) of glucose? | \(2.50\times180.16\) | \(450.4\) |
| \(O_{2}\) | \(32.00\) | Find the mass of \(0.0250\ mol\) of oxygen gas. | \(0.0250\times32.00\) | \(0.800\) |