AP Chemistry Flashcards: Atomic Structure And Electron Configuration

Study Atomic Structure And Electron Configuration in AP Chemistry with focused flashcards that help you recognize the idea, recall the key rule, and apply it in practice-style prompts.

AP Chemistry

Atomic Structure And Electron Configuration

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QUESTION
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Determine the number of electrons in a magnesium ion (Mg2+^{2+}).

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ANSWER

10 electrons. Magnesium loses 2 electrons to form Mg2+Mg^{2+}, leaving 10 electrons.

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Flashcard 1: Determine the number of electrons in a magnesium ion (Mg2+^{2+}).

Answer: 10 electrons. Magnesium loses 2 electrons to form Mg2+Mg^{2+}, leaving 10 electrons.

Flashcard 2: What is the formula for calculating the number of neutrons?

Answer: Neutrons = Mass number - Atomic number. Mass number includes both protons and neutrons, so subtract protons to get neutrons.

Flashcard 3: Identify the number of unpaired electrons in a carbon atom.

Answer: 2 unpaired electrons. Carbon's 2p subshell has 2 electrons, both unpaired by Hund's rule.

Flashcard 4: Identify the quantum number that describes the shape of an orbital.

Answer: Azimuthal quantum number (ll). The ll value determines whether an orbital is s, p, d, or f type.

Flashcard 5: What is the spin quantum number (msm_s) possible values?

Answer: +12+\frac{1}{2} or 12-\frac{1}{2}. Represents the two possible spin orientations of an electron.

Flashcard 6: State the element with electron configuration [Ne]3s23p5[Ne] 3s^2 3p^5.

Answer: Chlorine (Cl). The configuration [Ne]3s23p5[Ne] 3s^2 3p^5 indicates 17 total electrons, which is chlorine.

Flashcard 7: Identify the charge of a neutron.

Answer: Neutral charge (0). Neutrons are electrically neutral particles in the nucleus.

Flashcard 8: What is the electron configuration of helium?

Answer: 1s21s^2. Helium has 2 electrons, both filling the 1s orbital.

Flashcard 9: How many electrons can the n=2 energy level hold?

Answer: 8 electrons. The n=2n=2 level has 2s and 2p subshells: 2+6=82 + 6 = 8 electrons total.

Flashcard 10: What is the maximum number of orbitals in the n=3 energy level?

Answer: 9 orbitals. The n=3n=3 level has s, p, and d subshells: 1+3+5=91 + 3 + 5 = 9 orbitals.

Flashcard 11: What is the maximum number of orbitals in the n=3 energy level?

Answer: 9 orbitals. The n=3n=3 level has s, p, and d subshells: 1+3+5=91 + 3 + 5 = 9 orbitals.

Flashcard 12: State the element with electron configuration [Ne]3s23p5[Ne] 3s^2 3p^5.

Answer: Chlorine (Cl). The configuration [Ne]3s23p5[Ne] 3s^2 3p^5 indicates 17 total electrons, which is chlorine.

Flashcard 13: What is the electron configuration of argon?

Answer: 1s22s22p63s23p61s^2 2s^2 2p^6 3s^2 3p^6. Argon has 18 electrons completely filling through the 3p subshell.

Flashcard 14: What is the electron configuration of potassium?

Answer: 1s22s22p63s23p64s11s^2 2s^2 2p^6 3s^2 3p^6 4s^1. Potassium has 19 electrons, with the last electron in the 4s orbital.

Flashcard 15: What is the electron configuration of an oxygen ion (O2^{2-})?

Answer: 1s22s22p61s^2 2s^2 2p^6. Oxide ion gains 2 electrons, achieving neon's electron configuration.

Flashcard 16: What does the magnetic quantum number (mlm_l) indicate?

Answer: Orientation of an orbital. Describes which specific orbital within a subshell the electron occupies.

Flashcard 17: Identify the quantum number that describes the shape of an orbital.

Answer: Azimuthal quantum number (ll). The ll value determines whether an orbital is s, p, d, or f type.

Flashcard 18: What is the electron configuration for aluminum?

Answer: 1s22s22p63s23p11s^2 2s^2 2p^6 3s^2 3p^1. Aluminum has 13 electrons, with 1 electron in the 3p subshell.

Flashcard 19: State the maximum number of electrons in the n=4 energy level.

Answer: 32 electrons. The n=4n=4 level can hold 2n2=2(4)2=322n^2 = 2(4)^2 = 32 electrons total.

Flashcard 20: What is the electron configuration of an oxygen ion (O2^{2-})?

Answer: 1s22s22p61s^2 2s^2 2p^6. Oxide ion gains 2 electrons, achieving neon's electron configuration.

Flashcard 21: Determine the number of unpaired electrons in oxygen.

Answer: 2 unpaired electrons. Oxygen's 2p subshell has 4 electrons: 2 paired and 2 unpaired by Hund's rule.

Flashcard 22: Determine the electron configuration for sodium.

Answer: 1s22s22p63s11s^2 2s^2 2p^6 3s^1. Sodium has 11 electrons, filling through 3s with one electron.

Flashcard 23: What is the electron configuration of helium?

Answer: 1s21s^2. Helium has 2 electrons, both filling the 1s orbital.

Flashcard 24: Identify the number of unpaired electrons in a carbon atom.

Answer: 2 unpaired electrons. Carbon's 2p subshell has 2 electrons, both unpaired by Hund's rule.

Flashcard 25: What is the electron configuration notation for neon?

Answer: 1s22s22p61s^2 2s^2 2p^6. Neon has 10 electrons filling through the 2p subshell completely.

Flashcard 26: What is the maximum number of orbitals in the n=3 energy level?

Answer: 9 orbitals. The n=3n=3 level has s, p, and d subshells: 1+3+5=91 + 3 + 5 = 9 orbitals.

Flashcard 27: What does the magnetic quantum number (mlm_l) indicate?

Answer: Orientation of an orbital. Describes which specific orbital within a subshell the electron occupies.

Flashcard 28: State the element with electron configuration [Ne]3s23p5[Ne] 3s^2 3p^5.

Answer: Chlorine (Cl). The configuration [Ne]3s23p5[Ne] 3s^2 3p^5 indicates 17 total electrons, which is chlorine.

Flashcard 29: What is the electron configuration for sulfur?

Answer: 1s22s22p63s23p41s^2 2s^2 2p^6 3s^2 3p^4. Sulfur has 16 electrons, with 4 electrons in the 3p subshell.

Flashcard 30: What is the electron configuration of an oxygen ion (O2^{2-})?

Answer: 1s22s22p61s^2 2s^2 2p^6. Oxide ion gains 2 electrons, achieving neon's electron configuration.

Flashcard 31: What is the formula for calculating the number of neutrons?

Answer: Neutrons = Mass number - Atomic number. Mass number includes both protons and neutrons, so subtract protons to get neutrons.

Flashcard 32: Find the total number of electrons in a neon atom.

Answer: 10 electrons. Neon's atomic number is 10, so neutral atoms have 10 electrons.

Flashcard 33: What is the azimuthal quantum number for p orbitals?

Answer: l=1l = 1. P orbitals correspond to l=1l = 1 in the azimuthal quantum number system.

Flashcard 34: Determine the electron configuration for sodium.

Answer: 1s22s22p63s11s^2 2s^2 2p^6 3s^1. Sodium has 11 electrons, filling through 3s with one electron.

Flashcard 35: What is the azimuthal quantum number for p orbitals?

Answer: l=1l = 1. P orbitals correspond to l=1l = 1 in the azimuthal quantum number system.

Flashcard 36: What is the electron configuration of potassium?

Answer: 1s22s22p63s23p64s11s^2 2s^2 2p^6 3s^2 3p^6 4s^1. Potassium has 19 electrons, with the last electron in the 4s orbital.

Flashcard 37: What is the electron configuration notation for neon?

Answer: 1s22s22p61s^2 2s^2 2p^6. Neon has 10 electrons filling through the 2p subshell completely.

Flashcard 38: State the number of valence electrons in oxygen.

Answer: 6 valence electrons. Oxygen is in group 16, so it has 6 electrons in its outermost shell.

Flashcard 39: Which rule states that electrons fill degenerate orbitals singly first?

Answer: Hund's Rule. Maximizes unpaired electrons before pairing to minimize electron-electron repulsion.

Flashcard 40: What is the electron configuration of argon?

Answer: 1s22s22p63s23p61s^2 2s^2 2p^6 3s^2 3p^6. Argon has 18 electrons completely filling through the 3p subshell.

Flashcard 41: Identify the number of valence electrons in nitrogen.

Answer: 5 valence electrons. Nitrogen is in group 15, so it has 5 valence electrons.

Flashcard 42: What is the electron configuration of argon?

Answer: 1s22s22p63s23p61s^2 2s^2 2p^6 3s^2 3p^6. Argon has 18 electrons completely filling through the 3p subshell.

Flashcard 43: What is the electron configuration for a fluoride ion (F-)?

Answer: 1s22s22p61s^2 2s^2 2p^6. Fluoride ion gains one electron, achieving neon's electron configuration.

Flashcard 44: What is the electron configuration for a fluoride ion (F-)?

Answer: 1s22s22p61s^2 2s^2 2p^6. Fluoride ion gains one electron, achieving neon's electron configuration.

Flashcard 45: What does the Aufbau principle describe?

Answer: Electron filling order in orbitals. Electrons fill lowest energy orbitals first before higher energy ones.

Flashcard 46: State the maximum number of electrons in the n=4 energy level.

Answer: 32 electrons. The n=4n=4 level can hold 2n2=2(4)2=322n^2 = 2(4)^2 = 32 electrons total.

Flashcard 47: How many electrons can the n=2 energy level hold?

Answer: 8 electrons. The n=2n=2 level has 2s and 2p subshells: 2+6=82 + 6 = 8 electrons total.

Flashcard 48: What is the electron configuration for a fluoride ion (F-)?

Answer: 1s22s22p61s^2 2s^2 2p^6. Fluoride ion gains one electron, achieving neon's electron configuration.

Flashcard 49: What is the principal quantum number symbolized by?

Answer: n. The principal quantum number indicates the energy level or shell.

Flashcard 50: How many electrons can occupy a single orbital?

Answer: 2 electrons. Maximum capacity per orbital due to Pauli Exclusion Principle.

Flashcard 51: Which principle states that no two electrons can have the same set of quantum numbers?

Answer: Pauli Exclusion Principle. Each electron must have a unique set of four quantum numbers.

Flashcard 52: What is the electron configuration for sulfur?

Answer: 1s22s22p63s23p41s^2 2s^2 2p^6 3s^2 3p^4. Sulfur has 16 electrons, with 4 electrons in the 3p subshell.

Flashcard 53: Identify the number of orbitals in a d subshell.

Answer: 5 orbitals. The d subshell contains 5 degenerate orbitals.

Flashcard 54: Find the total number of electrons in a neon atom.

Answer: 10 electrons. Neon's atomic number is 10, so neutral atoms have 10 electrons.

Flashcard 55: What is the electron configuration notation for neon?

Answer: 1s22s22p61s^2 2s^2 2p^6. Neon has 10 electrons filling through the 2p subshell completely.

Flashcard 56: What is the electron configuration of carbon?

Answer: 1s22s22p21s^2 2s^2 2p^2. Carbon has 6 electrons: 2 in 1s, 2 in 2s, and 2 in 2p.

Flashcard 57: What is the electron configuration notation for neon?

Answer: 1s22s22p61s^2 2s^2 2p^6. Neon has 10 electrons filling through the 2p subshell completely.

Flashcard 58: What is the atomic number of an element?

Answer: The number of protons in the nucleus. Defines the element's identity and equals the number of electrons in neutral atoms.

Flashcard 59: What is the shape of an s orbital?

Answer: Spherical. All s orbitals have spherical symmetry around the nucleus.

Flashcard 60: What is the electron configuration of helium?

Answer: 1s21s^2. Helium has 2 electrons, both filling the 1s orbital.

Flashcard 61: Identify the quantum number that describes the shape of an orbital.

Answer: Azimuthal quantum number (ll). The ll value determines whether an orbital is s, p, d, or f type.

Flashcard 62: Determine the number of electrons in a magnesium ion (Mg2+^{2+}).

Answer: 10 electrons. Magnesium loses 2 electrons to form Mg2+Mg^{2+}, leaving 10 electrons.

Flashcard 63: What is the atomic number of an element?

Answer: The number of protons in the nucleus. Defines the element's identity and equals the number of electrons in neutral atoms.

Flashcard 64: State the maximum number of electrons in the n=4 energy level.

Answer: 32 electrons. The n=4n=4 level can hold 2n2=2(4)2=322n^2 = 2(4)^2 = 32 electrons total.

Flashcard 65: What is the electron configuration for sulfur?

Answer: 1s22s22p63s23p41s^2 2s^2 2p^6 3s^2 3p^4. Sulfur has 16 electrons, with 4 electrons in the 3p subshell.

Flashcard 66: Identify the maximum number of electrons in an f subshell.

Answer: 14 electrons. The f subshell has 7 orbitals, each holding 2 electrons maximum.

Flashcard 67: Identify the number of orbitals in a d subshell.

Answer: 5 orbitals. The d subshell contains 5 degenerate orbitals.

Flashcard 68: What is the shape of an s orbital?

Answer: Spherical. All s orbitals have spherical symmetry around the nucleus.

Flashcard 69: Which principle states that no two electrons can have the same set of quantum numbers?

Answer: Pauli Exclusion Principle. Each electron must have a unique set of four quantum numbers.

Flashcard 70: What does the magnetic quantum number (mlm_l) indicate?

Answer: Orientation of an orbital. Describes which specific orbital within a subshell the electron occupies.

Flashcard 71: What is the atomic number of an element?

Answer: The number of protons in the nucleus. Defines the element's identity and equals the number of electrons in neutral atoms.

Flashcard 72: What is the electron configuration of carbon?

Answer: 1s22s22p21s^2 2s^2 2p^2. Carbon has 6 electrons: 2 in 1s, 2 in 2s, and 2 in 2p.

Flashcard 73: State the number of valence electrons in oxygen.

Answer: 6 valence electrons. Oxygen is in group 16, so it has 6 electrons in its outermost shell.

Flashcard 74: Which principle states that no two electrons can have the same set of quantum numbers?

Answer: Pauli Exclusion Principle. Each electron must have a unique set of four quantum numbers.

Flashcard 75: State the value range for the azimuthal quantum number (ll).

Answer: 0 to n1n-1. For a given nn, the azimuthal quantum number ranges from 0 to n1n-1.

Flashcard 76: State the element with the electron configuration [Xe]6s24f145d106p2[Xe] 6s^2 4f^{14} 5d^{10} 6p^2.

Answer: Lead (Pb). The configuration ends in 6p26p^2, characteristic of lead in group 14.

Flashcard 77: Identify the charge of a neutron.

Answer: Neutral charge (0). Neutrons are electrically neutral particles in the nucleus.

Flashcard 78: What is the spin quantum number (msm_s) possible values?

Answer: +12+\frac{1}{2} or 12-\frac{1}{2}. Represents the two possible spin orientations of an electron.

Flashcard 79: State the value range for the azimuthal quantum number (ll).

Answer: 0 to n1n-1. For a given nn, the azimuthal quantum number ranges from 0 to n1n-1.

Flashcard 80: What is the formula for calculating the number of neutrons?

Answer: Neutrons = Mass number - Atomic number. Mass number includes both protons and neutrons, so subtract protons to get neutrons.

Flashcard 81: Identify the maximum number of electrons in an f subshell.

Answer: 14 electrons. The f subshell has 7 orbitals, each holding 2 electrons maximum.

Flashcard 82: Identify the number of valence electrons in nitrogen.

Answer: 5 valence electrons. Nitrogen is in group 15, so it has 5 valence electrons.

Flashcard 83: What is the principal quantum number symbolized by?

Answer: n. The principal quantum number indicates the energy level or shell.

Flashcard 84: What is the spin quantum number (msm_s) possible values?

Answer: +12+\frac{1}{2} or 12-\frac{1}{2}. Represents the two possible spin orientations of an electron.

Flashcard 85: State the number of valence electrons in oxygen.

Answer: 6 valence electrons. Oxygen is in group 16, so it has 6 electrons in its outermost shell.

Flashcard 86: What is the maximum number of orbitals in the n=3 energy level?

Answer: 9 orbitals. The n=3n=3 level has s, p, and d subshells: 1+3+5=91 + 3 + 5 = 9 orbitals.

Flashcard 87: Find the number of electrons in a neutral chlorine atom.

Answer: 17 electrons. Chlorine's atomic number is 17, so neutral atoms have 17 electrons.

Flashcard 88: What is the electron configuration of a calcium ion (Ca2+^{2+})?

Answer: 1s22s22p63s23p61s^2 2s^2 2p^6 3s^2 3p^6. Calcium loses 2 electrons to form Ca2+Ca^{2+}, giving argon's configuration.

Flashcard 89: Identify the number of unpaired electrons in a carbon atom.

Answer: 2 unpaired electrons. Carbon's 2p subshell has 2 electrons, both unpaired by Hund's rule.

Flashcard 90: Find the number of electrons in a neutral chlorine atom.

Answer: 17 electrons. Chlorine's atomic number is 17, so neutral atoms have 17 electrons.

Flashcard 91: Identify the charge of a neutron.

Answer: Neutral charge (0). Neutrons are electrically neutral particles in the nucleus.

Flashcard 92: Determine the electron configuration for sodium.

Answer: 1s22s22p63s11s^2 2s^2 2p^6 3s^1. Sodium has 11 electrons, filling through 3s with one electron.

Flashcard 93: Identify the charge of a neutron.

Answer: Neutral charge (0). Neutrons are electrically neutral particles in the nucleus.

Flashcard 94: What is the azimuthal quantum number for p orbitals?

Answer: l=1l = 1. P orbitals correspond to l=1l = 1 in the azimuthal quantum number system.

Flashcard 95: What is the electron configuration of argon?

Answer: 1s22s22p63s23p61s^2 2s^2 2p^6 3s^2 3p^6. Argon has 18 electrons completely filling through the 3p subshell.

Flashcard 96: What does the magnetic quantum number (mlm_l) indicate?

Answer: Orientation of an orbital. Describes which specific orbital within a subshell the electron occupies.

Flashcard 97: Determine the number of electrons in a magnesium ion (Mg2+Mg^{2+}).

Answer: 10 electrons. Magnesium loses 2 electrons to form Mg2+Mg^{2+}, leaving 10 electrons.

Flashcard 98: Determine the number of unpaired electrons in oxygen.

Answer: 2 unpaired electrons. Oxygen's 2p subshell has 4 electrons: 2 paired and 2 unpaired by Hund's rule.

Flashcard 99: State the value range for the azimuthal quantum number (ll).

Answer: 0 to n1n-1. For a given nn, the azimuthal quantum number ranges from 0 to n1n-1.

Flashcard 100: Identify the maximum number of electrons in an f subshell.

Answer: 14 electrons. The f subshell has 7 orbitals, each holding 2 electrons maximum.