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chemistry semester 1 – honors review name 6. how did new evidence suppo…

Question

chemistry semester 1 – honors review
name

  1. how did new evidence support revisions to dalton’s indivisible atom theory? list or describe two pieces of evidence.

a.
b.

  1. identify the three basic particles in the atom. give their location, charge, and mass. (fill in the table)
particlechargemass (amu)location
  1. the (protons/neutrons/electrons) contribute to the overall charge of an atom which is (positive/negative/neutral).
  2. isotopes have the same number of (protons / neutrons) but a different number (protons / neutrons).
  3. write the isotopic symbol for carbon-12 and carbon-14 including the atomic number and mass number:
  4. fill in the blanks for the elements using the periodic table
elementsymbolatomic ##protons# electrons#neutronsmass #
74180
3343
$\frac{147}{61}$pm
92235
  1. silicon has three naturally occurring isotopes. explain why the actual average atomic mass of silicon is closest to silicon-28.

a.

isotope nameisotope mass (amu)relative abundance (%)
silicon-2928.984.70
silicon-3029.973.09

is 1.1_b: nuclear stability
examples to practice:

  1. what subatomic particle ratio determines nuclear stability in an atom?
  2. what are the 3 main uses of nuclear science at this point in time?

Explanation:

Question 6
Brief Explanations

To answer how new evidence supported revisions to Dalton’s indivisible atom theory, we recall key discoveries:

  • Discovery of electrons (e.g., Thomson’s cathode ray experiment): Showed atoms have negatively charged particles (electrons), so atoms are divisible (contain subatomic particles).
  • Discovery of the nucleus (Rutherford’s gold foil experiment): Showed most of an atom’s mass is concentrated in a tiny, positively charged nucleus, with electrons orbiting. This contradicted Dalton’s idea of a solid, indivisible atom.
Brief Explanations

The three basic subatomic particles are protons, neutrons, and electrons. We recall their properties:

  • Proton: Positive charge (\(+1\)), mass \(1\) amu, located in the nucleus.
  • Neutron: Neutral charge (\(0\)), mass \(1\) amu, located in the nucleus.
  • Electron: Negative charge (\(-1\)), mass \(\approx 0\) amu (or \(5.486 \times 10^{-4}\) amu), located in electron cloud/orbitals around the nucleus.
Brief Explanations
  • Protons have a positive charge, electrons have a negative charge, and neutrons are neutral.
  • In a neutral atom, the number of protons (positive charge) equals the number of electrons (negative charge), so the overall charge is neutral.
  • Protons and electrons contribute to the atom’s charge (neutrons do not).

Answer:

a. Discovery of electrons (Thomson’s experiment) showed atoms contain subatomic particles (not indivisible).
b. Rutherford’s gold foil experiment revealed a dense, positively charged nucleus, proving atoms have internal structure (not solid/indivisible).

Question 7