Photo AI

What are isotopes? Define relative atomic mass, A_r - Leaving Cert Chemistry - Question (a) - 2006

Question icon

Question (a)

What-are-isotopes?--Define-relative-atomic-mass,-A_r-Leaving Cert Chemistry-Question (a)-2006.png

What are isotopes? Define relative atomic mass, A_r. What is the principle on which the mass spectrometer is based? Calculate the relative atomic mass of a sample... show full transcript

Worked Solution & Example Answer:What are isotopes? Define relative atomic mass, A_r - Leaving Cert Chemistry - Question (a) - 2006

Step 1

What are isotopes?

96%

114 rated

Answer

Isotopes are atoms of the same element that have the same atomic number (same number of protons) but different mass numbers due to varying numbers of neutrons.

Step 2

Define relative atomic mass, A_r.

99%

104 rated

Answer

The relative atomic mass, A_r, of an element is defined as the average mass of an atom of the element compared to 1/12 of the mass of a carbon-12 atom, taking into account the different abundances of its isotopes.

Step 3

What is the principle on which the mass spectrometer is based?

96%

101 rated

Answer

The mass spectrometer operates on the principle of separating positive ions based on their mass-to-charge ratio. When ions are subjected to a magnetic field, they follow different paths based on their velocities and masses, allowing for their identification and quantification.

Step 4

Calculate the relative atomic mass of a sample of lithium, given that a mass spectrometer shows that it consists of 7.4% of \(^{6}Li\) and 92.6% of \(^{7}Li\).

98%

120 rated

Answer

To calculate the relative atomic mass of lithium (Li), we can use the formula:

A_r = \frac{(\% \; of \; ^{6}Li \times mass \; of \; ^{6}Li) + (\% \; of \; ^{7}Li \times mass \; of \; ^{7}Li)}{100}

Substituting the values:

Ar=(7.4×6)+(92.6×7)100A_r = \frac{(7.4 \times 6) + (92.6 \times 7)}{100}

Calculating:

  1. For (^{6}Li): (7.4 \times 6 = 44.4)
  2. For (^{7}Li): (92.6 \times 7 = 647.2)
  3. Sum: (44.4 + 647.2 = 691.6)

Finally, the relative atomic mass is:

Ar=691.6100=6.916A_r = \frac{691.6}{100} = 6.916

Thus, the calculated relative atomic mass of lithium is approximately 6.926.

Join the Leaving Cert students using SimpleStudy...

97% of Students

Report Improved Results

98% of Students

Recommend to friends

100,000+

Students Supported

1 Million+

Questions answered

;