VSEPR Flashcards: Molecular Geometry & Bond Angles

Practice VSEPR shapes, electron geometry, lone pairs, AXE notation, and ideal bond angles with 78 focused English flashcards.

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Practice VSEPR molecular geometry with 78 English flashcards for high-school and introductory-college chemistry. You should already be able to read simple formulas and Lewis structures. This is focused shape prediction and recall, not a complete chemistry course.

Cards map electron-domain counts to electron geometry; AXE notation to molecular shape and, where lone pairs change the shape, to electron geometry; and selected molecular formulas to shape. Separate prompts retrieve ideal bond-angle benchmarks. A few reverse prompts recover AXE notation from a shape plus its domain count. Contrast and error-diagnosis questions distinguish electron geometry from molecular geometry, count multiple bonds correctly, and show why a shape name alone may not determine the domain count or an exact angle.

The 13 cases are AX₂; AX₃ and AX₂E; AX₄, AX₃E, and AX₂E₂; AX₅, AX₄E, AX₃E₂, and AX₂E₃; and AX₆, AX₅E, and AX₄E₂. Later cards cover axial and equatorial sites, usual lone-pair placements, and ideal versus actual angles. The sequence starts with domains and notation, develops two-to-four-domain cases, then interleaves five- and six-domain cases before final comparisons. Related prompts are separated; the review scheduler handles longer-term spacing.

Practice is text based. Diagram identification, exhaustive Lewis-structure construction, formal charges, polarity, radicals, transition-metal coordination, seven-domain cases, hybridization, and molecular-orbital theory are excluded to keep the deck focused. Shape-to-molecule lists and every possible reverse mapping are omitted because many answers would be valid. Numerical species-angle tables are omitted: ideal benchmarks do not give exact measured angles for every molecule.

All cards carry the VSEPR tag. Original questions, answers, organization, and metadata were prepared with AI assistance and checked against university chemistry references. The cover is an original AI-generated illustration of a generic tetrahedral model; its colors do not identify elements. No source prose, diagrams, competitor cards, or examination questions were copied. Common chemical facts are not claimed as proprietary. Original material, including the generated cover to the extent applicable rights exist, is dedicated under CC0 1.0. This is independent study material, with no university, course, or examination endorsement.

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  1. Thẻ 1

    Câu hỏi

    In VSEPR, what is an electron domain around a central atom?

    Câu trả lời

    A region of electron density: one bond to a neighboring atom, regardless of bond order, or one lone pair.

  2. Thẻ 2

    Câu hỏi

    What does the VSEPR model use to predict a central atom’s geometry?

    Câu trả lời

    Repulsion between electron domains. The domains favor an arrangement that reduces their mutual repulsion.

  3. Thẻ 3

    Câu hỏi

    In AXₙEₘ notation, what does A represent?

    Câu trả lời

    The central atom whose local geometry is being described.

  4. Thẻ 4

    Câu hỏi

    How do electron geometry and molecular geometry differ in VSEPR?

    Câu trả lời

    Electron geometry includes all electron domains. Molecular geometry describes the arrangement of atoms around the central atom, leaving lone pairs out of the shape name.

  5. Thẻ 5

    Câu hỏi

    How many VSEPR domains does one triple bond contribute at either bonded atom?

    Câu trả lời

    One domain. Three shared electron pairs occupy one bonding direction.

  6. Thẻ 6

    Câu hỏi

    In AXₙEₘ notation, what does n count?

    Câu trả lời

    Atoms directly bonded to the central atom. A double or triple bond still contributes one X.

  7. Thẻ 7

    Câu hỏi

    For a molecule with several central atoms, where do you apply VSEPR?

    Câu trả lời

    At each central atom separately, using its own bonded neighbors and lone pairs.

  8. Thẻ 8

    Câu hỏi

    In AXₙEₘ notation, what does m count?

    Câu trả lời

    Lone pairs on the central atom. E counts pairs, not individual electrons.

  9. Thẻ 9

    Câu hỏi

    For an AXₙEₘ center in the usual closed-shell VSEPR model, how many electron domains are present?

    Câu trả lời

    n + m domains: bonded neighbors plus lone pairs.

  10. Thẻ 10

    Câu hỏi

    VSEPR molecular shape of AX₂, with no lone pairs on A?

    Câu trả lời

    Linear. The two bonded atoms lie on opposite sides of the central atom.

  11. Thẻ 11

    Câu hỏi

    VSEPR molecular shape of AX₃, with no lone pairs on A?

    Câu trả lời

    Trigonal planar. The central atom and three bonded atoms lie in one plane.

  12. Thẻ 12

    Câu hỏi

    In an X–A–X bond angle, at which atom is the angle measured?

    Câu trả lời

    At A, the central atom, between the two bonds to X atoms.

  13. Thẻ 13

    Câu hỏi

    Does a lone pair count as one VSEPR domain or two?

    Câu trả lời

    One domain. The pair contains two electrons, but it occupies one region around the central atom.

  14. Thẻ 14

    Câu hỏi

    VSEPR molecular shape of AX₄, with no lone pairs on A?

    Câu trả lời

    Tetrahedral. The four bonded atoms occupy the corners of a tetrahedron around A.

  15. Thẻ 15

    Câu hỏi

    VSEPR molecular shape of AX₂E?

    Câu trả lời

    Bent, also called angular or V-shaped. There are two bonded atoms and one lone pair around A.

  16. Thẻ 16

    Câu hỏi

    What is the ideal X–A–X bond angle in AX₂ with no lone pairs?

    Câu trả lời

    180°.

  17. Thẻ 17

    Câu hỏi

    What electron geometry does VSEPR assign to three domains around a central atom?

    Câu trả lời

    Trigonal planar.

  18. Thẻ 18

    Câu hỏi

    VSEPR molecular shape of AX₃E?

    Câu trả lời

    Trigonal pyramidal. Three bonded atoms and one lone pair occupy four electron domains.

  19. Thẻ 19

    Câu hỏi

    What is the ideal X–A–X bond angle in tetrahedral AX₄?

    Câu trả lời

    About 109.5°.

  20. Thẻ 20

    Câu hỏi

    A central atom has two bonded neighbors and two lone pairs. What is its AXE notation?

    Câu trả lời

    AX₂E₂.

  21. Thẻ 21

    Câu hỏi

    What is the ideal X–A–X bond angle in trigonal planar AX₃?

    Câu trả lời

    120°.

  22. Thẻ 22

    Câu hỏi

    VSEPR molecular shape of AX₂E₂?

    Câu trả lời

    Bent, also called angular or V-shaped. Two lone pairs occupy the other two domains.

  23. Thẻ 23

    Câu hỏi

    What is the electron geometry around A in AX₃E?

    Câu trả lời

    Tetrahedral: three bonding domains plus one lone-pair domain.

  24. Thẻ 24

    Câu hỏi

    In O=C=O, how many electron domains surround carbon?

    Câu trả lời

    Two domains. Each C=O double bond counts once.

  25. Thẻ 25

    Câu hỏi

    What is the electron geometry around A in AX₂E?

    Câu trả lời

    Trigonal planar: two bonding domains plus one lone-pair domain.

  26. Thẻ 26

    Câu hỏi

    What molecular shape does VSEPR predict around carbon in CH₄?

    Câu trả lời

    Tetrahedral. Carbon has four bonded neighbors and no lone pairs.

  27. Thẻ 27

    Câu hỏi

    A learner counts a double bond as two VSEPR domains. What should they correct?

    Câu trả lời

    Count it as one domain. Bond order changes the number of shared electrons, not the number of bonded directions.

  28. Thẻ 28

    Câu hỏi

    What molecular shape does VSEPR predict around nitrogen in NH₃?

    Câu trả lời

    Trigonal pyramidal. Nitrogen has three bonded neighbors and one lone pair.

  29. Thẻ 29

    Câu hỏi

    What electron geometry does VSEPR assign to four domains around a central atom?

    Câu trả lời

    Tetrahedral.

  30. Thẻ 30

    Câu hỏi

    What molecular shape does VSEPR predict around oxygen in H₂O?

    Câu trả lời

    Bent. Oxygen has two bonded neighbors and two lone pairs.

  31. Thẻ 31

    Câu hỏi

    What molecular shape does VSEPR predict around carbon in the carbonate ion, CO₃²⁻?

    Câu trả lời

    Trigonal planar. The three C–O bonding directions give three domains, even when a Lewis structure shows one double bond.

  32. Thẻ 32

    Câu hỏi

    In the simple VSEPR model, how does a central lone pair usually affect neighboring bond angles?

    Câu trả lời

    It tends to compress nearby bond angles because its electron density occupies more space near the central atom. This is a qualitative tendency, not a fixed number of degrees.

  33. Thẻ 33

    Câu hỏi

    A VSEPR center is trigonal pyramidal with four total domains. What is its AXE notation?

    Câu trả lời

    AX₃E: three bonded atoms and one lone pair.

  34. Thẻ 34

    Câu hỏi

    Which two common AXE cases give a bent molecular shape with three or four total domains?

    Câu trả lời

    AX₂E with three domains, and AX₂E₂ with four domains. Their electron geometries differ.

  35. Thẻ 35

    Câu hỏi

    What electron geometry does VSEPR assign to five domains around a central atom?

    Câu trả lời

    Trigonal bipyramidal.

  36. Thẻ 36

    Câu hỏi

    What electron geometry does VSEPR assign to six domains around a central atom?

    Câu trả lời

    Octahedral.

  37. Thẻ 37

    Câu hỏi

    Does an ideal VSEPR angle give the exact measured angle in every molecule of that shape?

    Câu trả lời

    No. It is a geometric benchmark; lone pairs and the bonding environment can change actual angles.

  38. Thẻ 38

    Câu hỏi

    How many axial and equatorial positions are in a trigonal bipyramid?

    Câu trả lời

    Two axial positions and three equatorial positions.

  39. Thẻ 39

    Câu hỏi

    VSEPR molecular shape of AX₅, with no lone pairs on A?

    Câu trả lời

    Trigonal bipyramidal.

  40. Thẻ 40

    Câu hỏi

    VSEPR molecular shape of AX₆, with no lone pairs on A?

    Câu trả lời

    Octahedral.

  41. Thẻ 41

    Câu hỏi

    VSEPR molecular shape of AX₄E in the usual lowest-repulsion arrangement?

    Câu trả lời

    Seesaw. The lone pair occupies an equatorial position in a trigonal-bipyramidal domain arrangement.

  42. Thẻ 42

    Câu hỏi

    In an ideal trigonal bipyramid, what is the angle between two equatorial bonds?

    Câu trả lời

    120°.

  43. Thẻ 43

    Câu hỏi

    VSEPR molecular shape of AX₃E₂ in the usual lowest-repulsion arrangement?

    Câu trả lời

    T-shaped. Both lone pairs occupy equatorial positions.

  44. Thẻ 44

    Câu hỏi

    VSEPR molecular shape of AX₅E?

    Câu trả lời

    Square pyramidal. One lone pair occupies the sixth position of an octahedral domain arrangement.

  45. Thẻ 45

    Câu hỏi

    In an ideal trigonal bipyramid, what is the angle between an axial bond and an equatorial bond?

    Câu trả lời

    90°.

  46. Thẻ 46

    Câu hỏi

    VSEPR molecular shape of AX₂E₃ in the usual lowest-repulsion arrangement?

    Câu trả lời

    Linear. Three equatorial lone pairs leave the two bonded atoms in opposite axial positions.

  47. Thẻ 47

    Câu hỏi

    VSEPR molecular shape of AX₄E₂ in the usual lowest-repulsion arrangement?

    Câu trả lời

    Square planar. Two opposite lone pairs leave four bonded atoms in a square around A.

  48. Thẻ 48

    Câu hỏi

    In a trigonal-bipyramidal domain arrangement, which sites do lone pairs preferentially occupy?

    Câu trả lời

    Equatorial sites, in the usual VSEPR arrangements with one to three lone pairs.

  49. Thẻ 49

    Câu hỏi

    Which X–A–X angles occur in an ideal octahedral AX₆ molecule?

    Câu trả lời

    90° between adjacent bonds and 180° between opposite bonds.

  50. Thẻ 50

    Câu hỏi

    A VSEPR center has a seesaw shape and five total domains. What is its AXE notation?

    Câu trả lời

    AX₄E.

  51. Thẻ 51

    Câu hỏi

    A VSEPR center has a T-shaped molecular geometry and five total domains. What is its AXE notation?

    Câu trả lời

    AX₃E₂.

  52. Thẻ 52

    Câu hỏi

    In an ideal trigonal bipyramid, what is the angle between its two axial bonds?

    Câu trả lời

    180°. The axial positions lie on opposite sides of the central atom.

  53. Thẻ 53

    Câu hỏi

    A VSEPR center is square pyramidal with six total domains. What is its AXE notation?

    Câu trả lời

    AX₅E.

  54. Thẻ 54

    Câu hỏi

    In the usual octahedral AX₄E₂ arrangement, how are the two lone pairs positioned relative to each other?

    Câu trả lời

    Opposite each other, 180° apart in the ideal domain arrangement.

  55. Thẻ 55

    Câu hỏi

    What molecular shape does VSEPR predict for an isolated SF₄ molecule?

    Câu trả lời

    Seesaw. Sulfur has four bonded fluorine atoms and one lone pair.

  56. Thẻ 56

    Câu hỏi

    What molecular shape does VSEPR predict for an isolated XeF₂ molecule?

    Câu trả lời

    Linear. Xenon has two bonded fluorine atoms and three lone pairs.

  57. Thẻ 57

    Câu hỏi

    What is the electron geometry around A in AX₃E₂?

    Câu trả lời

    Trigonal bipyramidal: three bonding domains plus two lone-pair domains.

  58. Thẻ 58

    Câu hỏi

    What molecular shape does VSEPR predict for an isolated BrF₅ molecule?

    Câu trả lời

    Square pyramidal. Bromine has five bonded fluorine atoms and one lone pair.

  59. Thẻ 59

    Câu hỏi

    What molecular shape does VSEPR predict for an isolated XeF₄ molecule?

    Câu trả lời

    Square planar. Xenon has four bonded fluorine atoms and two opposite lone pairs.

  60. Thẻ 60

    Câu hỏi

    What is the electron geometry around A in AX₄E?

    Câu trả lời

    Trigonal bipyramidal: four bonding domains plus one lone-pair domain.

  61. Thẻ 61

    Câu hỏi

    What molecular shape does VSEPR predict for an isolated ClF₃ molecule?

    Câu trả lời

    T-shaped. Chlorine has three bonded fluorine atoms and two equatorial lone pairs.

  62. Thẻ 62

    Câu hỏi

    What is the electron geometry around A in AX₅E?

    Câu trả lời

    Octahedral: five bonding domains plus one lone-pair domain.

  63. Thẻ 63

    Câu hỏi

    What is the electron geometry around A in AX₂E₃?

    Câu trả lời

    Trigonal bipyramidal: two bonding domains plus three lone-pair domains.

  64. Thẻ 64

    Câu hỏi

    What molecular shape does VSEPR predict for an isolated SF₆ molecule?

    Câu trả lời

    Octahedral. Sulfur has six bonded fluorine atoms and no lone pairs.

  65. Thẻ 65

    Câu hỏi

    Which bond angles occur in an idealized T-shaped AX₃E₂ arrangement?

    Câu trả lời

    90° and 180°. These are parent-geometry benchmarks; a real molecule can be distorted.

  66. Thẻ 66

    Câu hỏi

    What is the electron geometry around A in AX₄E₂?

    Câu trả lời

    Octahedral: four bonding domains plus two lone-pair domains.

  67. Thẻ 67

    Câu hỏi

    Why does an octahedral VSEPR arrangement have six domains despite the name’s reference to eight?

    Câu trả lời

    The six domains point toward the six vertices of an octahedron. Eight refers to the solid’s faces.

  68. Thẻ 68

    Câu hỏi

    Why does a lone pair in AX₄E favor an equatorial site over an axial site?

    Câu trả lời

    An equatorial site has two 90° interactions with other domains; an axial site has three. The equatorial choice reduces these close repulsions.

  69. Thẻ 69

    Câu hỏi

    Which common AXE cases give a linear molecular shape with two or five total domains?

    Câu trả lời

    AX₂ with two domains, and AX₂E₃ with five domains. A linear shape alone does not determine the electron geometry.

  70. Thẻ 70

    Câu hỏi

    Which bond angles occur in an idealized square-pyramidal AX₅E arrangement?

    Câu trả lời

    90° and 180°. Actual angles can deviate from these octahedral parent benchmarks.

  71. Thẻ 71

    Câu hỏi

    A VSEPR center is square planar with six total domains. What is its AXE notation?

    Câu trả lời

    AX₄E₂.

  72. Thẻ 72

    Câu hỏi

    A learner assigns every bent molecule the same bond angle. What information are they missing?

    Câu trả lời

    The electron-domain arrangement and the particular molecule. Bent includes AX₂E and AX₂E₂, and actual angles depend on the species.

  73. Thẻ 73

    Câu hỏi

    A learner calls NH₃ tetrahedral because nitrogen has four domains. What shape distinction resolves the error?

    Câu trả lời

    Tetrahedral is its electron geometry. Its molecular geometry is trigonal pyramidal because only the three bonded atoms define that shape.

  74. Thẻ 74

    Câu hỏi

    Why can four bonded atoms give tetrahedral AX₄ but square planar AX₄E₂?

    Câu trả lời

    AX₄ has four total domains. AX₄E₂ has six total domains, with two opposite lone pairs in an octahedral arrangement.

  75. Thẻ 75

    Câu hỏi

    Which ideal parent angles are the benchmarks for an AX₄E seesaw arrangement?

    Câu trả lời

    90°, 120°, and 180° from trigonal-bipyramidal electron geometry. Lone-pair repulsion can distort the actual bond angles.

  76. Thẻ 76

    Câu hỏi

    What molecular shape does VSEPR predict for an isolated PF₅ molecule?

    Câu trả lời

    Trigonal bipyramidal. Phosphorus has five bonded fluorine atoms and no lone pairs.

  77. Thẻ 77

    Câu hỏi

    What is the electron geometry around A in AX₂E₂?

    Câu trả lời

    Tetrahedral: two bonding domains plus two lone-pair domains.

  78. Thẻ 78

    Câu hỏi

    Which X–A–X bond angles occur in an ideal square-planar AX₄E₂ arrangement?

    Câu trả lời

    90° between adjacent bonds and 180° between opposite bonds.

A generic tetrahedral ball-and-stick model with an orange center and four teal neighbors against a dark blue background.

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VSEPR Flashcards: Molecular Geometry & Bond Angles

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