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the atom and atomic theory test study guide 1) explain in detail the ac…

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the atom and atomic theory test study guide

  1. explain in detail the accomplishments of arrhenius, the curies, bohr, chadwick, dalton, heisenberg, pauli, planck, rutherford, and thomson.
  2. one of my cats, \handsome jack,\ weighs a whopping 22.4 lbs. the vet tells me that jack needs to come down to 15 lbs. calculate how many grams that jack needs to lose.
  3. compare and contrast alpha, beta and gamma radiation.
  4. draw a single electromagnetic spectrum. draw arrows from increasing to decreasing energy, frequency and wavelength. what wavelengths have more than 1 type of wave? what are they?
  5. explain the four forces of nature and list them from strongest to weakest.
  6. what is max plancks formula? what does it help to explain?
  7. compare and contrast ground and excited states of an atom.
  8. how many protons(p), neutrons(n), and electrons(e) in hg? (round the atomic masses to whole numbers)
  9. how many protons(p), neutrons(n), and electrons(e) in u? (round the atomic masses to whole numbers)
  10. how many protons(p), neutrons(n), and electrons(e) in bi? (round the atomic masses to whole numbers)
  11. how many protons(p), neutrons(n), and electrons(e) in au? (round the atomic masses to whole numbers)
  12. how many protons(p), neutrons(n), and electrons(e) in sr? (round the atomic masses to whole numbers)
  13. how many protons(p), neutrons(n), and electrons(e) in k? (round the atomic masses to whole numbers)
  14. use roygbiv to draw the visible spectrum and label which ends have higher/lower energy, frequency and wavelengths.
  15. compare and contrast the sizes of the atomic particles, electrons, neutrons and protons.

complete the following frequency problems. use the formula: 2.99792108m/s = c = l n.

  1. a wave is 975nm; find its frequency.
  2. a wave is 842000000hz, find its wavelength.
  3. a wave is 500nm. whats its frequency?
  4. a 4.29*1013hz wave has what wavelength?

draw bohr models (orbital box diagrams) for the following elemental atoms. 20) al. 21) n. 22) ne. 23) li

Explanation:

Step1: Identify relevant physics formulas

The speed - of - light formula is $c = \lambda
u$, where $c = 2.99792\times10^{8}\text{m/s}$, $\lambda$ is the wavelength, and $
u$ is the frequency.

Step2: Solve problem 16

Given $\lambda=975\text{nm}=975\times 10^{- 9}\text{m}$. Rearrange the formula to $
u=\frac{c}{\lambda}$. Substitute the values: $
u=\frac{2.99792\times 10^{8}\text{m/s}}{975\times 10^{-9}\text{m}}\approx3.075\times 10^{14}\text{Hz}$.

Step3: Solve problem 17

Given $
u = 842000000\text{Hz}$. Rearrange the formula to $\lambda=\frac{c}{
u}$. Substitute the values: $\lambda=\frac{2.99792\times 10^{8}\text{m/s}}{842000000\text{Hz}}\approx0.356\text{m}$.

Step4: Solve problem 18

Given $\lambda = 500\text{nm}=500\times 10^{-9}\text{m}$. Rearrange the formula to $
u=\frac{c}{\lambda}$. Substitute the values: $
u=\frac{2.99792\times 10^{8}\text{m/s}}{500\times 10^{-9}\text{m}}=5.99584\times 10^{14}\text{Hz}\approx6.0\times 10^{14}\text{Hz}$.

Step5: Solve problem 19

Given $
u = 4.29\times 10^{11}\text{Hz}$. Rearrange the formula to $\lambda=\frac{c}{
u}$. Substitute the values: $\lambda=\frac{2.99792\times 10^{8}\text{m/s}}{4.29\times 10^{11}\text{Hz}}\approx6.99\times 10^{-4}\text{m}$.

Answer:

  1. $\approx3.075\times 10^{14}\text{Hz}$
  2. $\approx0.356\text{m}$
  3. $\approx6.0\times 10^{14}\text{Hz}$
  4. $\approx6.99\times 10^{-4}\text{m}$