1 / 59

Atomic Structure and Radiation REVIEW GAME

Atomic Structure and Radiation REVIEW GAME. To complete this review game: You will need a copy of the Periodic Table. You will NOT need a calculator.

ronna
Télécharger la présentation

Atomic Structure and Radiation REVIEW GAME

An Image/Link below is provided (as is) to download presentation Download Policy: Content on the Website is provided to you AS IS for your information and personal use and may not be sold / licensed / shared on other websites without getting consent from its author. Content is provided to you AS IS for your information and personal use only. Download presentation by click this link. While downloading, if for some reason you are not able to download a presentation, the publisher may have deleted the file from their server. During download, if you can't get a presentation, the file might be deleted by the publisher.

E N D

Presentation Transcript


  1. Atomic Structure and RadiationREVIEW GAME

  2. To complete this review game: You will need a copy of the Periodic Table.You will NOT need a calculator.

  3. For additional review, see also:The Atomic Structure Self-QUIZ at http://www.mcwdn.org/chemist/atom/atomquiz.htmlandThe Half-life Self-QUIZ athttp://www.softschools.com/quizzes/chemistry/half_life/quiz3544.html

  4. List the following electromagnetic spectrum wave types in order from lowest energy to highest energy: Gamma rays Infrared Microwaves Radiowaves Ultraviolet Visible light X-rays

  5. List the following electromagnetic spectrum wave types in order from lowest energy to highest energy: Radiowaves Microwaves Infrared Visible light Ultraviolet X-rays Gamma rays

  6. What is the relationship between wavelength and frequency in the electromagnetic spectrum?

  7. What is the relationship between wavelength and frequency in the electromagnetic spectrum? As wavelength decreases, frequency increases

  8. What is the relationship between frequency and energy in the electromagnetic spectrum?

  9. What is the relationship between frequency and energy in the electromagnetic spectrum? As frequency increases, energy increases

  10. Which of the wave types within the electromagnetic spectrum are potentially ionizing?

  11. Which of the wave types within the electromagnetic spectrum are potentially ionizing? Ultraviolet X-rays Gamma rays

  12. Which of the statements below is an accurate description of what occurs during ionization of an atom? a. An atom loses a proton and becomes a negatively charged ion. b. An atom loses an electron and becomes a positively charged ion. c. An atom loses an electron and becomes a negatively charged ion. d. An atom gains a neutron and its atomic mass increases by 1.

  13. Which of the statements below is an accurate description of what occurs during ionization of an atom? a. An atom loses a proton and becomes a negatively charged ion. b. An atom loses an electron and becomes a positively charged ion. c. An atom loses an electron and becomes a negatively charged ion. d. An atom gains a neutron and its atomic mass increases by 1.

  14. How many prot0ns, neutrons and electrons in an atom of Platinum?

  15. How many prot0ns, neutrons and electrons in an atom of Platinum? Protons = 78 Neutrons = 117 Electrons = 78 Referring to the Periodic Table, we can see that platinum, Pt, has an atomic number of 78. Thus Pt has 78 protons. As we are speaking of an uncharged atom, we know that the number of electrons is equal to the number of protons, and is therefore also 78. Referring to the Periodic Table, we can see that platinum has an average atomic mass of 195.08 amu. Rounding to the nearest whole number gives 195 amu. As amu = # protons + # neutrons, we can calculate # neutrons = amu - # protons, which is 195 – 78 = 117. Thus platinum has 117 neutrons.

  16. Element identity (what element it is) is determined by its atomic number. its mass number. its neutron number. All of these are correct.

  17. Element identity (what element it is) is determined by its atomic number. its mass number. its neutron number. All of these are correct. Element identity, meaning the element NAME, is determined solely be the number of protons, and hence solely by atomic number.

  18. How many prot0ns, neutrons and electrons in a Ba2+ ion?

  19. How many prot0ns, neutrons and electrons in a Ba2+ ion? Protons = 56, Neutrons = 81, Electrons = 54 Referring to the Periodic Table, we can see that Ba, barium, has an atomic number of 56. Thus Ba2+ has 56 protons. As we are speaking of an ion with a +2 positive charge, this atom has LOST TWO ELECTRONS. Therefore, this ion has 56 - 2 electrons = 54 electrons. Referring to the Periodic Table, we can see that barium has an average atomic mass of 137.327 amu. As electrons do not contribute to the atomic mass (having virtually no mass themselves), this barium ion has the same average atomic mass. Rounding to the nearest whole number gives 137 amu. As amu = # protons + # neutrons, we can calculate # neutrons = amu - # protons, which is 137 – 56 = 81. Thus, our barium ion has 81 neutrons.

  20. Isotopes of an element a. Are always radioactive b. Differ in their number of protons c. Differ in their number of neutrons d. Differ in their number of electrons

  21. Isotopes of an element a. Are always radioactive b. Differ in their number of protons c. Differ in their number of neutrons d. Differ in their number of electrons

  22. Element Q has three common isotopes. If the abundance of 44X is 0.03, the abundance of 45X is 0.25%, and the abundance of 48X is 99.72%, what is the average atomic mass of element Q? a. 32.89 b. 43.63 c. 47.99 d. 48.76

  23. Element Q has three common isotopes. If the abundance of 44X is 0.03, the abundance of 45X is 0.25%, and the abundance of 48X is 99.72%, what is the average atomic mass of element Q? a. 32.89 b. 43.63 c. 47.99 d. 48.76 P.S. In this case you don’t even need a calculator to figure it out, since only one of the provided responses is within the atomic mass range of the three isotopes. Clearly the average can’t be LOWER or HIGHER than that range, and therefore responses a., b., and d. CANNOT be correct. Only c. fits within the range of atomic masses of the isotopes.

  24. What atom is depicted in this figure?

  25. What atom is depicted in this figure? Argon: this atom has 18 protons, meaning an atomic number of 18. referring to the Periodic Table, we can see that the element with an atomic number of 18 is Argon.

  26. Which one of the following is a correct representation of an alpha particle? a. 42He b. 0-1e c. 10e d. 00

  27. Which one of the following is a correct representation of an alpha particle? a. 42He b. 0-1e c. 10e d. 00

  28. Following α decay, the total number of protons has a. increased by 2b. decreased by 4c. decreased by 2d. unchanged

  29. Following α decay, the total number of protons has a. increased by 2b. decreased by 4c. decreased by 2d. unchanged

  30. Following α decay, the atomic number has a. increased by 2b. decreased by 4c. decreased by 2d. unchanged

  31. Following α decay, the atomic number has a. increased by 2b. decreased by 4c. decreased by 2d. unchanged

  32. Following α decay, the atomic mass has a. increased by 2b. decreased by 4c. decreased by 2d. unchanged

  33. Following α decay, the atomic mass has a. increased by 2b. decreased by 4c. decreased by 2d. unchanged

  34. Alpha decay produces a new atom whose __________ than those of the original atom. a. atomic number is 2 less and atomic mass is 4 less b. atomic number is 2 less and atomic mass is 2 less c. atomic number is 2 more and atomic mass is 4 more d. atomic number is 2 more and atomic mass is 2 less

  35. Alpha decay produces a new atom whose __________ than those of the original atom. a. atomic number is 2 less and atomic mass is 4 less b. atomic number is 2 less and atomic mass is 2 less c. atomic number is 2 more and atomic mass is 4 more d. atomic number is 2 more and atomic mass is 2 less

  36. Which one of the following is a correct representation of a beta particle? a. 42He b. 0-1e c. 10e d. 00

  37. Which one of the following is a correct representation of a beta particle? a. 42He b. 0-1e c. 10e d. 00

  38. Following beta decay, the total number of protons has not changed decreased by 1 increased by 1 increased by 2

  39. Following beta decay, the total number of protons has not changed decreased by 1 increased by 1 increased by 2

  40. Following beta decay, the atomic mass has not changed decreased by 1 increased by 1 increased by 2

  41. Following beta decay, the atomic mass has not changed decreased by 1 increased by 1 increased by 2

  42. Following beta decay, the atomic number has not changed decreased by 1 increased by 1 increased by 2

  43. Following beta decay, the atomic number has not changed decreased by 1 increased by 1 increased by 2

  44. What happens to the atomic mass and atomic number of an atom when it undergoes beta (β) decay? a. The mass number increases by 2 and the atomic number increases by 1. b. The mass number decreases by 4 and the atomic number decreases by 2. c. The mass number does not change and the atomic number increases by 1. d. Neither the mass number nor the atomic number change.

  45. What happens to the atomic mass and atomic number of an atom when it undergoes beta (β) decay? a. The mass number increases by 2 and the atomic number increases by 1. b. The mass number decreases by 4 and the atomic number decreases by 2. c. The mass number does not change and the atomic number increases by 1. d. Neither the mass number nor the atomic number change.

  46. By what process does uranium-238 decay to thorium-234? a. alpha decay b. beta decay c. gamma ray emission d. electron capture

  47. By what process does uranium-238 decay to thorium-234? a. alpha decay b. beta decay c. gamma ray emission d. electron capture Uranium 238 must have undergone alpha decay to produce thorium-234, since atomic mass has decreased by 4. Furthermore, according to the Periodic Table, uranium has an atomic number of 92, while thorium has an atomic number of 90. Therefore, atomic number has decreased by 2. The complete nuclear decay equation is: 23892U → 23490Th + 42He

  48. What is the missing product from this nuclear decay reaction: 13755Cs → 13756Ba + _______________ a. 42He b. 0+1e c. 0-1e d. 00

  49. What is the missing product from this nuclear decay reaction: 13755Cs → 13756Ba + _______________ a. 42He b. 0+1e c. 0-1e d. 00 Cesium-137 has an atomic number of 55, while Barium-137 has an atomic number of 56. Therefore, during this decay reaction, atomic number has gone up by one while atomic mass is unchanged. Such changes are characteristic of beta decay, thus the missing product is a beta particle. The complete nuclear decay equation is: 13755Cs → 13756Ba + 0-1e

  50. Thorium undergoes alpha decay. The product of this reaction also undergoes alpha decay. What is the final product of this second decay reaction __________ ?

More Related