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identify the parts of an atom diagram of an atom with labeled arrows | …

Question

identify the parts of an atom
diagram of an atom with labeled arrows

subatomic particlelocation in the atomchargeweight
neutronnucleus(0)1amu
electronelectron cloud(-).0005amu (approx)

practice: calculate the average atomic mass for each isotope set. show your work.

elementisotope massespercent abundanceaverage atomic mass
20.015%
helium30.0001%
499.9999%
carbon1298.89%
131.11%
oxygen1699.759%
170.76%
180.204%
sulfur3295.002%
330.76%
344.22%
360.014%

Explanation:

Response

To calculate the average atomic mass, we use the formula:
\[ \text{Average Atomic Mass} = \sum (\text{Isotope Mass} \times \text{Percent Abundance (in decimal)}) \]

Hydrogen
Step 1: Convert percentages to decimals
  • Isotope 1: \( 99.985\% = 0.99985 \)
  • Isotope 2: \( 0.015\% = 0.00015 \)
Step 2: Multiply and sum

\[ (1 \times 0.99985) + (2 \times 0.00015) = 0.99985 + 0.0003 = 1.00015 \, \text{amu} \]

Helium
Step 1: Convert percentages to decimals
  • Isotope 3: \( 0.0001\% = 0.000001 \)
  • Isotope 4: \( 99.9999\% = 0.999999 \)
Step 2: Multiply and sum

\[ (3 \times 0.000001) + (4 \times 0.999999) = 0.000003 + 3.999996 = 3.999999 \, \text{amu} \approx 4.0 \, \text{amu} \]

Carbon
Step 1: Convert percentages to decimals
  • Isotope 12: \( 98.89\% = 0.9889 \)
  • Isotope 13: \( 1.11\% = 0.0111 \)
Step 2: Multiply and sum

\[ (12 \times 0.9889) + (13 \times 0.0111) = 11.8668 + 0.1443 = 12.0111 \, \text{amu} \]

Oxygen
Step 1: Convert percentages to decimals
  • Isotope 16: \( 99.759\% = 0.99759 \)
  • Isotope 17: \( 0.76\% = 0.0076 \)
  • Isotope 18: \( 0.204\% = 0.00204 \)
Step 2: Multiply and sum

\[ (16 \times 0.99759) + (17 \times 0.0076) + (18 \times 0.00204) \]
\[ = 15.96144 + 0.1292 + 0.03672 = 16.12736 \, \text{amu} \approx 16.00 \, \text{amu (approximate, slight rounding)} \]

Sulfur
Step 1: Convert percentages to decimals
  • Isotope 32: \( 95.002\% = 0.95002 \)
  • Isotope 33: \( 0.76\% = 0.0076 \)
  • Isotope 34: \( 4.22\% = 0.0422 \)
  • Isotope 36: \( 0.014\% = 0.00014 \)
Step 2: Multiply and sum

\[ (32 \times 0.95002) + (33 \times 0.0076) + (34 \times 0.0422) + (36 \times 0.00014) \]
\[ = 30.40064 + 0.2508 + 1.4348 + 0.00504 = 32.09128 \, \text{amu} \approx 32.07 \, \text{amu} \]

Final Answers:
  • Hydrogen: \( \boldsymbol{1.00015 \, \text{amu}} \)
  • Helium: \( \boldsymbol{\approx 4.0 \, \text{amu}} \)
  • Carbon: \( \boldsymbol{12.0111 \, \text{amu}} \)
  • Oxygen: \( \boldsymbol{\approx 16.00 \, \text{amu}} \) (or \( 16.13 \, \text{amu} \) without rounding)
  • Sulfur: \( \boldsymbol{\approx 32.07 \, \text{amu}} \)

Answer:

To calculate the average atomic mass, we use the formula:
\[ \text{Average Atomic Mass} = \sum (\text{Isotope Mass} \times \text{Percent Abundance (in decimal)}) \]

Hydrogen
Step 1: Convert percentages to decimals
  • Isotope 1: \( 99.985\% = 0.99985 \)
  • Isotope 2: \( 0.015\% = 0.00015 \)
Step 2: Multiply and sum

\[ (1 \times 0.99985) + (2 \times 0.00015) = 0.99985 + 0.0003 = 1.00015 \, \text{amu} \]

Helium
Step 1: Convert percentages to decimals
  • Isotope 3: \( 0.0001\% = 0.000001 \)
  • Isotope 4: \( 99.9999\% = 0.999999 \)
Step 2: Multiply and sum

\[ (3 \times 0.000001) + (4 \times 0.999999) = 0.000003 + 3.999996 = 3.999999 \, \text{amu} \approx 4.0 \, \text{amu} \]

Carbon
Step 1: Convert percentages to decimals
  • Isotope 12: \( 98.89\% = 0.9889 \)
  • Isotope 13: \( 1.11\% = 0.0111 \)
Step 2: Multiply and sum

\[ (12 \times 0.9889) + (13 \times 0.0111) = 11.8668 + 0.1443 = 12.0111 \, \text{amu} \]

Oxygen
Step 1: Convert percentages to decimals
  • Isotope 16: \( 99.759\% = 0.99759 \)
  • Isotope 17: \( 0.76\% = 0.0076 \)
  • Isotope 18: \( 0.204\% = 0.00204 \)
Step 2: Multiply and sum

\[ (16 \times 0.99759) + (17 \times 0.0076) + (18 \times 0.00204) \]
\[ = 15.96144 + 0.1292 + 0.03672 = 16.12736 \, \text{amu} \approx 16.00 \, \text{amu (approximate, slight rounding)} \]

Sulfur
Step 1: Convert percentages to decimals
  • Isotope 32: \( 95.002\% = 0.95002 \)
  • Isotope 33: \( 0.76\% = 0.0076 \)
  • Isotope 34: \( 4.22\% = 0.0422 \)
  • Isotope 36: \( 0.014\% = 0.00014 \)
Step 2: Multiply and sum

\[ (32 \times 0.95002) + (33 \times 0.0076) + (34 \times 0.0422) + (36 \times 0.00014) \]
\[ = 30.40064 + 0.2508 + 1.4348 + 0.00504 = 32.09128 \, \text{amu} \approx 32.07 \, \text{amu} \]

Final Answers:
  • Hydrogen: \( \boldsymbol{1.00015 \, \text{amu}} \)
  • Helium: \( \boldsymbol{\approx 4.0 \, \text{amu}} \)
  • Carbon: \( \boldsymbol{12.0111 \, \text{amu}} \)
  • Oxygen: \( \boldsymbol{\approx 16.00 \, \text{amu}} \) (or \( 16.13 \, \text{amu} \) without rounding)
  • Sulfur: \( \boldsymbol{\approx 32.07 \, \text{amu}} \)