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What value of wavelength is associated with the Lyman series for {image} {image}

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1. 2. 3. 4. 5. What value of wavelength is associated with the Lyman series for {image} {image}. {image} {image} {image} {image} {image}. What wavelength (in {image} is associated with the Paschen series for {image} {image}. 330 2.1 1.9 0.4 590. - PowerPoint PPT Presentation
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Page 1: What value of wavelength is associated with the Lyman series for {image} {image}

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4. 5.

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1. 3302. 2.13. 1.94. 0.45. 590

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1. 32. 83. 44. 55. 6

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1. 0.282. 2.493. 1.134. 10.25. 0.20

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1. 2462. 6143. 3894. 1825. 1,451

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4. 5.

Page 7: What value of wavelength is associated with the Lyman series for {image} {image}

How fast is the electron moving in the fourth Bohr orbit?

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1. 2.

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4. 5.

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1. 2.

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1. 2.

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4. 5.

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1. 2.

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1. 1, 2, 32. 0, 1, 2, 3, 43. 0, 1, 24. 0, 1, 2, 35. 1, 2, 3, 4

Page 13: What value of wavelength is associated with the Lyman series for {image} {image}

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1. 2.

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4. 5.

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1. 2.

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4. 5.

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1. 502. 793. 524. 255. 8

Page 16: What value of wavelength is associated with the Lyman series for {image} {image}

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1. 2.

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4. 5.

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1. 2.

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1. 2.

3.

4. 5.

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1. 2.

3.

4. 5.

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1. 2.

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4. 5.

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4. 5.

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4. 5.

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1. 2.

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4. 5.

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4. 5.

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4. 5.

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Page 28: What value of wavelength is associated with the Lyman series for {image} {image}

Which of the following statements is true?

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3. 4.

Page 29: What value of wavelength is associated with the Lyman series for {image} {image}

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1. 2.

3.

4. 5.

Page 30: What value of wavelength is associated with the Lyman series for {image} {image}

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1. energy quantization2. magnetic orbital

quantization3. space quantization4. orbital angular momentum

quantization5. that particles behave like

waves

Page 31: What value of wavelength is associated with the Lyman series for {image} {image}

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1. 2.

3.

4. 5.

Page 32: What value of wavelength is associated with the Lyman series for {image} {image}

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1. 2.

3.

4. 5.

Page 33: What value of wavelength is associated with the Lyman series for {image} {image}

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1. 2.

3.

4. 5.

Page 34: What value of wavelength is associated with the Lyman series for {image} {image}

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1. 2.

3.

4. 5.

Page 35: What value of wavelength is associated with the Lyman series for {image} {image}

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1. no two atoms can have the same set of quantum numbers

2. when an atom has orbitals of equal energy, the order in which they are filled by electrons is such that a maximum number of electrons have unpaired spins

3. when an atom has orbitals of equal energy, the maximum number of electrons will be paired spins

4. no two electrons in the same atom can have the same set of quantum numbers

5. there is an inherent uncertainty in the position and momentum of a particle

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1. a photon has linear momentum

2. a photon has energy3. a photon has angular

momentum4. a photon has mass5. a photon has parity

Page 37: What value of wavelength is associated with the Lyman series for {image} {image}

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1. 2.

3. 4.

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1. 2.

3.

4. 5.

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1. 2.

3.

4. 5.

Page 40: What value of wavelength is associated with the Lyman series for {image} {image}

1 2 3 4 5

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1. a maximum number of electrons has unpaired spins

2. a minimum number of electrons first fills the next energy level

3. a maximum number of electrons has intrinsic angular momentum

4. the minimum number of electrons has the same set of quantum numbers

5. a minimum number of electrons has unpaired spins

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1. the intrinsic spin of the electrons does not produce a resultant magnetic moment

2. the orbital motion of the electrons produces a resultant magnetic moment

3. the electrons do not contribute to paramagnetic or ferromagnetic effects

4. the first and third above answers are correct

5. all of the above are correct

Page 42: What value of wavelength is associated with the Lyman series for {image} {image}

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1. 2.

3.

4. 5.

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1.2.

3.

4. 5.

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1. 2.

3.

4. 5.

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1.2.

3.

4. 5.

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1. 2.

3.

4. 5.

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1. 2.

3.

4. 5.

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1. 2.

3.

4. 5.

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1. 2.

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4. 5.

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1 2 3

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1. the atom is excited to a higher allowed state

2. the atom is ionized3. the photons pass

by the atom without interaction

Page 51: What value of wavelength is associated with the Lyman series for {image} {image}

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1. The first transition.2. The second

transition.3. Neither, because

the wavelengths are the same for both transitions.

Page 52: What value of wavelength is associated with the Lyman series for {image} {image}

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1. 52. 43. 34. 25. 1

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1. (a) 4 and (b) 92. (a) 4 and (b) 103. (a) 5 and (b) 94. (a) 5 and (b) 105. (a) 9 and (b) 4

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1. True2. False

Page 55: What value of wavelength is associated with the Lyman series for {image} {image}

Rank the energy necessary to remove the outermost electron from the following three elements, smallest to largest: helium, neon, argon.

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1. helium, neon, argon2. helium, argon, neon3. neon, helium, argon4. neon, argon, helium5. argon, helium, neon6. argon, neon, helium

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1. Final: K, Initial: M2. Final: M, Initial: K3. Final: M, Initial: O4. Final: O, Initial: M

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1 2 3

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1. increase2. decrease3. do not change

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1 2

50%50%

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1. True2. False

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1. 2.

3.

4. 5.

Page 60: What value of wavelength is associated with the Lyman series for {image} {image}

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1. oxygen2. iron3. gallium4. copper5. nickel

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1. 2.

3.

4. 5.

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1. nickel2. manganese3. vanadium4. scandium5. chromium

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1. 2.

3.

4. 5.


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