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Worksheets

Molecular Geometry Flashcards

Total questions: 69

Worksheet time: 3hrs 27mins

Name
Class
Date
1.

What is the molecular geometry and bond angle of BeCl2 (Beryllium Chloride)?

a)

Linear geometry (2 electron pairs) and bond angle: 180°

b)

Trigonal planar geometry (3 electron pairs) and bond angle: 120°

c)

Tetrahedral geometry (4 electron pairs) and bond angle: 109.5°

d)

Bent geometry (2 electron pairs) and bond angle: 104.5°

2.

What is the molecular geometry and bond angle of CO2 (Carbon Dioxide)?

a)

Linear geometry (2 electron pairs) and bond angle: 180°

b)

Trigonal planar geometry (3 electron pairs) and bond angle: 120°

c)

Tetrahedral geometry (4 electron pairs) and bond angle: 109.5°

d)

Bent geometry (2 electron pairs) and bond angle: 104.5°

3.

What is the molecular geometry and bond angle of HCN (Hydrogen Cyanide)?

a)

Linear geometry (2 electron pairs) and bond angle: 180°

b)

Trigonal planar geometry (3 electron pairs) and bond angle: 120°

c)

Tetrahedral geometry (4 electron pairs) and bond angle: 109.5°

d)

Bent geometry (2 electron pairs) and bond angle: 104.5°

4.

What is the molecular geometry and bond angle of C2H2 (Ethyne/Acetylene)?

a)

Linear geometry (2 electron pairs) and bond angle: 180°

b)

Trigonal planar geometry (3 electron pairs) and bond angle: 120°

c)

Tetrahedral geometry (4 electron pairs) and bond angle: 109.5°

d)

Bent geometry (2 electron pairs) and bond angle: 104.5°

5.

What is the molecular geometry and bond angle of XeF2 (Xenon Difluoride)?

a)

Linear geometry (5 domains) and bond angle: 180°

b)

Trigonal bipyramidal geometry and bond angle: 120°

c)

T-shaped geometry and bond angle: 90°

d)

Bent geometry and bond angle: 104.5°

6.

What is the molecular geometry and bond angle of I3- (Triiodide)?

a)

Linear geometry (5 domains) and bond angle: 180°

b)

Trigonal planar geometry (3 domains) and bond angle: 120°

c)

T-shaped geometry (5 domains) and bond angle: 90°

d)

Bent geometry (4 domains) and bond angle: 104.5°

7.

What is the molecular geometry and bond angle of BF3 (Boron Trifluoride)?

a)

Trigonal planar geometry (3 electron pairs) and bond angle: 120°

b)

Tetrahedral geometry (4 electron pairs) and bond angle: 109.5°

c)

Linear geometry (2 electron pairs) and bond angle: 180°

d)

Bent geometry (3 electron pairs) and bond angle: 104.5°

8.

What is the molecular geometry of SO3 (Sulfur Trioxide)?

a)

Trigonal Planar (3 electron pairs)

b)

Tetrahedral (4 electron pairs)

c)

Bent (2 electron pairs)

d)

Linear (2 electron pairs)

9.

What is the bond angle in SO3 (Sulfur Trioxide)?

a)

120°

b)

109.5°

c)

104.5°

d)

180°

10.

What is the molecular geometry of CH2O (Formaldehyde)?

a)

Trigonal Planar (3 electron pairs)

b)

Tetrahedral (4 electron pairs)

c)

Linear (2 electron pairs)

d)

Bent (3 electron pairs)

11.

What is the bond angle in CH2O (Formaldehyde)?

a)

120°

b)

109.5°

c)

104.5°

d)

180°

12.

What is the molecular geometry of CO3 2- (Carbonate Ion)?

a)

Trigonal Planar (3 electron pairs)

b)

Tetrahedral (4 electron pairs)

c)

Bent (2 electron pairs)

d)

Linear (2 electron pairs)

13.

What is the bond angle in CO3 2- (Carbonate Ion)?

a)

120°

b)

109.5°

c)

90°

d)

104.5°

14.

What is the molecular geometry of CH4 (Methane)?

a)

Tetrahedral (4 electron pairs)

b)

Trigonal planar (3 electron pairs)

c)

Linear (2 electron pairs)

d)

Bent (2 electron pairs, 1 or 2 lone pairs)

15.

What is the bond angle in CH4 (Methane)?

a)

109.5°

b)

90°

c)

120°

d)

180°

16.

What is the molecular geometry and bond angle of CCl4 (Tetrachloromethane)?

a)

Trigonal Planar, 120°

b)

Tetrahedral, 109.5°

c)

Linear, 180°

d)

Octahedral, 90°

17.

What is the molecular geometry and bond angle of SiF4 (Silicon Tetrafluoride)?

a)

Trigonal Planar, 120°

b)

Tetrahedral, 109.5°

c)

Linear, 180°

d)

Octahedral, 90°

18.

What is the molecular geometry and bond angle of PO4 3- (Phosphate ion)?

a)

Trigonal Planar, 120°

b)

Tetrahedral, 109.5°

c)

Linear, 180°

d)

Octahedral, 90°

19.

What is the molecular geometry and bond angle of SO4 2- (Sulfate ion)?

a)

Trigonal Planar, 120°

b)

Tetrahedral, 109.5°

c)

Linear, 180°

d)

Octahedral, 90°

20.

What is the molecular geometry and bond angle of NH4+ (Ammonium ion)?

a)

Tetrahedral, 109.5°

b)

Trigonal Pyramidal, 107°

c)

Linear, 180°

d)

Bent, 104.5°

21.

What is the molecular geometry and bond angle of NH3 (Ammonia)?

a)

Tetrahedral, 109.5°

b)

Trigonal Pyramidal, 107°

c)

Linear, 180°

d)

Bent, 104.5°

22.

What is the molecular geometry and bond angle of PCl3 (Phosphorus trichloride)?

a)

Tetrahedral, 109.5°

b)

Trigonal Pyramidal, 107°

c)

Linear, 180°

d)

Bent, 104.5°

23.

What is the molecular geometry and bond angle of H3O+ (Hydronium ion)?

a)

Tetrahedral, 109.5°

b)

Trigonal Pyramidal, 107°

c)

Linear, 180°

d)

Bent, 104.5°

24.

What is the bond angle of H2O (Water)?

a)

104.5°

b)

120°

c)

180°

d)

90°

25.

What is the bond angle of SO2 (Sulfur Dioxide)?

a)

120°

b)

109.5°

c)

180°

d)

104.5°

26.

What is the bond angle of H2S (Hydrogen Sulfide)?

a)

92°

b)

104.5°

c)

120°

d)

180°

27.

What is the bond angle of O3 (Ozone)?

a)

117°

b)

104.5°

c)

120°

d)

109.5°

28.

What is the molecular geometry and bond angles of PCl5 (Pentachloride of Phosphorus)?

a)

Geometria Bipiramidal Trigonal (5 pares de elétrons) e ângulo de ligação: 120° e 90°

b)

Geometria Tetraédrica (4 pares de elétrons) e ângulo de ligação: 109,5°

c)

Geometria Octaédrica (6 pares de elétrons) e ângulo de ligação: 90°

d)

Geometria Angular (3 pares de elétrons) e ângulo de ligação: 104,5°

29.

What is the molecular geometry and bond angles of AsF5 (Pentafluoride of Arsenic)?

a)

Geometria Bipiramidal Trigonal (5 pares de elétrons) e ângulo de ligação: 120° e 90°

b)

Geometria Tetraédrica (4 pares de elétrons) e ângulo de ligação: 109,5°

c)

Geometria Octaédrica (6 pares de elétrons) e ângulo de ligação: 90°

d)

Geometria Angular (3 pares de elétrons) e ângulo de ligação: 104,5°

30.

What is the molecular geometry and bond angle of ClF3 (Trifluoride of Chlorine)?

a)

Geometria em Forma de T (5 domínios, 2 pares não ligantes) e ângulo de ligação: 87.5°

b)

Geometria Trigonal Plana (3 domínios, 0 pares não ligantes) e ângulo de ligação: 120°

c)

Geometria Tetraédrica (4 domínios, 0 pares não ligantes) e ângulo de ligação: 109.5°

d)

Geometria Bipiramidal Trigonal (5 domínios, 0 pares não ligantes) e ângulo de ligação: 90° e 120°

31.

What is the molecular geometry and bond angle of BrF3 (Trifluoride of Bromine)?

a)

Geometria em Forma de T (5 domínios, 2 pares não ligantes) e ângulo de ligação: 87.5°

b)

Geometria Trigonal Plana (3 domínios, 0 pares não ligantes) e ângulo de ligação: 120°

c)

Geometria Tetraédrica (4 domínios, 0 pares não ligantes) e ângulo de ligação: 109.5°

d)

Geometria Bipiramidal Trigonal (5 domínios, 0 pares não ligantes) e ângulo de ligação: 90° e 120°

32.

What is the molecular geometry and bond angle of SF4 (Tetrafluoreto de Enxofre)?

a)

Geometria Gangorra (5 domínios, 1 par não ligante) e ângulo de ligação: 102°

b)

Geometria Tetraédrica (4 domínios, 0 pares não ligantes) e ângulo de ligação: 109,5°

c)

Geometria Octaédrica (6 domínios, 0 pares não ligantes) e ângulo de ligação: 90°

d)

Geometria Trigonal Plana (3 domínios, 0 pares não ligantes) e ângulo de ligação: 120°

33.

What is the molecular geometry and bond angle of TeCl4 (Tetracloreto de Telúrio)?

a)

Geometria Gangorra (5 domínios, 1 par não ligante) e ângulo de ligação: 102°

b)

Geometria Tetraédrica (4 domínios, 0 pares não ligantes) e ângulo de ligação: 109,5°

c)

Geometria Trigonal Plana (3 domínios, 0 pares não ligantes) e ângulo de ligação: 120°

d)

Geometria Bipiramidal Trigonal (5 domínios, 0 pares não ligantes) e ângulo de ligação: 90° e 120°

34.

What is the molecular geometry and bond angle of SF6 (Hexafluoreto de Enxofre)?

a)

Geometria Octaédrica (6 pares de elétrons) e ângulo de ligação: 90°

b)

Geometria Tetraédrica (4 pares de elétrons) e ângulo de ligação: 109,5°

c)

Geometria Trigonal Plana (3 pares de elétrons) e ângulo de ligação: 120°

d)

Geometria Bipiramidal Trigonal (5 pares de elétrons) e ângulo de ligação: 120° e 90°

35.

What is the molecular geometry and bond angle of PCl6- (Íon Hexacloreto de Fósforo)?

a)

Geometria Octaédrica (6 pares de elétrons) e ângulo de ligação: 90°

b)

Geometria Trigonal Bipiramidal (5 pares de elétrons) e ângulo de ligação: 120° e 90°

c)

Geometria Tetraédrica (4 pares de elétrons) e ângulo de ligação: 109,5°

d)

Geometria Planar Trigonal (3 pares de elétrons) e ângulo de ligação: 120°

36.

What is the molecular geometry and bond angle for IO6 5- (Íon Periodato)?

a)

Geometria Octaédrica (6 pares de elétrons) e ângulo de ligação: 90°

b)

Geometria Tetraédrica (4 pares de elétrons) e ângulo de ligação: 109,5°

c)

Geometria Trigonal Plana (3 pares de elétrons) e ângulo de ligação: 120°

d)

Geometria Bipiramidal Trigonal (5 pares de elétrons) e ângulo de ligação: 90° e 120°

37.

What is the molecular geometry and bond angle for AsF6-?

a)

Geometria Octaédrica (6 pares de elétrons) e ângulo de ligação: 90°

b)

Geometria Tetraédrica (4 pares de elétrons) e ângulo de ligação: 109,5°

c)

Geometria Trigonal Bipiramidal (5 pares de elétrons) e ângulo de ligação: 120° e 90°

d)

Geometria Planar Trigonal (3 pares de elétrons) e ângulo de ligação: 120°

38.

What is the molecular geometry and bond angle for BrF5 (Pentafluoreto de Bromo)?

a)

Geometria Piramidal Quadrada (6 domínios, 1 par não ligante) e ângulo de ligação: 90°

b)

Geometria Bipiramidal Trigonal (5 domínios, 0 pares não ligantes) e ângulo de ligação: 120°

c)

Geometria Octaédrica (6 domínios, 0 pares não ligantes) e ângulo de ligação: 90°

d)

Geometria Tetraédrica (4 domínios, 0 pares não ligantes) e ângulo de ligação: 109,5°

39.

What is the molecular geometry and bond angle for IF5 (Pentafluoreto de Iodo)?

a)

Geometria Piramidal Quadrada (6 domínios, 1 par não ligante) e ângulo de ligação: 90°

b)

Geometria Bipiramidal Trigonal (5 domínios, 0 pares não ligantes) e ângulo de ligação: 120°

c)

Geometria Octaédrica (6 domínios, 0 pares não ligantes) e ângulo de ligação: 90°

d)

Geometria Tetraédrica (4 domínios, 0 pares não ligantes) e ângulo de ligação: 109,5°

40.

What is the molecular geometry and bond angle for XeF4 (Tetrafluoroxenon)?

a)

Square planar geometry (6 domains, 2 lone pairs) and bond angle: 90°

b)

Tetrahedral geometry (4 domains, 0 lone pairs) and bond angle: 109.5°

c)

Trigonal bipyramidal geometry (5 domains, 0 lone pairs) and bond angle: 120° and 90°

d)

Octahedral geometry (6 domains, 0 lone pairs) and bond angle: 90°

41.

What is the molecular geometry and bond angle for ICl4- (Tetrachloroiodide ion)?

a)

Square planar geometry (6 domains, 2 lone pairs) and bond angle: 90°

b)

Tetrahedral geometry (4 domains, 0 lone pairs) and bond angle: 109.5°

c)

Trigonal bipyramidal geometry (5 domains, 1 lone pair) and bond angle: 120° and 90°

d)

Octahedral geometry (6 domains, 0 lone pairs) and bond angle: 90°

42.

What is the molecular geometry and bond angle for PtCl4 2- (Tetrachloroplatinate ion)?

a)

Square planar geometry (6 domains, 2 lone pairs) and bond angle: 90°

b)

Tetrahedral geometry (4 domains, 0 lone pairs) and bond angle: 109.5°

c)

Trigonal bipyramidal geometry (5 domains, 0 lone pairs) and bond angle: 120° and 90°

d)

Octahedral geometry (6 domains, 0 lone pairs) and bond angle: 90°

43.

What is the molecular geometry and bond angle for SO3 2- (Sulfite ion)?

a)

Trigonal pyramidal geometry and bond angle: 120°

b)

Trigonal planar geometry and bond angle: 120°

c)

Tetrahedral geometry and bond angle: 109.5°

d)

Bent geometry and bond angle: 104.5°

44.

What is the geometry and bond angle of N2O (Nitrous Oxide)?

a)

Linear geometry and bond angle: 180°

b)

Bent geometry and bond angle: 120°

c)

Trigonal planar geometry and bond angle: 109.5°

d)

Tetrahedral geometry and bond angle: 104.5°

45.

What is the geometry and bond angle of SCl2 (Dichlorine Monosulfide)?

a)

Angular geometry and bond angle: 104.5°

b)

Linear geometry and bond angle: 180°

c)

Trigonal planar geometry and bond angle: 120°

d)

Tetrahedral geometry and bond angle: 109.5°

46.

What is the geometry and bond angle of ClO3- (Chlorate Ion)?

a)

Trigonal pyramidal geometry and bond angle: 120°

b)

Tetrahedral geometry and bond angle: 109.5°

c)

Trigonal planar geometry and bond angle: 120°

d)

Bent geometry and bond angle: 104.5°

47.

What is the geometry and bond angle of ClO2- (Chlorite Ion)?

a)

Angular geometry and bond angle: 120°

b)

Linear geometry and bond angle: 180°

c)

Tetrahedral geometry and bond angle: 109.5°

d)

Trigonal planar geometry and bond angle: 120°

48.

What is the molecular geometry and bond angle of XeO3 (Trioxide of Xenon)?

a)

Trigonal Pyramidal geometry and bond angle of 120°

b)

Tetrahedral geometry and bond angle of 109.5°

c)

Trigonal Planar geometry and bond angle of 90°

d)

Linear geometry and bond angle of 180°

49.

What is the molecular geometry and bond angle of XeOF4 (Xenon Oxytetrafluoride)?

a)

Square Pyramidal geometry and bond angle of 90°

b)

Trigonal Bipyramidal geometry and bond angle of 120°

c)

Tetrahedral geometry and bond angle of 109.5°

d)

Octahedral geometry and bond angle of 90°

50.

What is the molecular geometry and bond angle of SOCl2 (Thionyl Chloride)?

a)

Trigonal Pyramidal geometry and bond angle of 120°

b)

Tetrahedral geometry and bond angle of 109.5°

c)

Bent geometry and bond angle of 104.5°

d)

Trigonal Planar geometry and bond angle of 120°

51.

What is the molecular geometry and bond angle of ICl2 (Dichloroiodate)?

a)

Linear geometry and bond angle of 180°

b)

Bent geometry and bond angle of 104.5°

c)

Trigonal planar geometry and bond angle of 120°

d)

Tetrahedral geometry and bond angle of 109.5°

52.

What is the geometry and bond angle of PF3?

a)

Geometria Piramidal Trigonal e ângulo de ligação: 120°

b)

Geometria Tetraédrica e ângulo de ligação: 109,5°

c)

Geometria Linear e ângulo de ligação: 180°

d)

Geometria Plana Trigonal e ângulo de ligação: 120°

53.

What is the geometry and bond angle of SF5−?

a)

Geometria Piramidal Quadrada e ângulo de ligação: 90°

b)

Geometria Bipiramidal Trigonal e ângulo de ligação: 120°

c)

Geometria Tetraédrica e ângulo de ligação: 109,5°

d)

Geometria Octaédrica e ângulo de ligação: 90°

54.

In coordination compounds where the central metal is Pt2+ or Pd2+, the geometry is almost always:

a)

QUADRADO PLANAR

b)

TETRAÉDRICA

c)

OCTAHEDRAL

d)

TRIGONAL BIPYRAMIDAL

55.

Complexes of Ni2+ and Zn2+ with strong ligands (CN−, CO, NH3) have the geometry:

a)

QUADRADO PLANAR

b)

TETRAÉDRICA

c)

OCTAHÉDRICA

d)

TRIGONAL BIPIRAMIDAL

56.

The geometry of complexes of Ni²⁺ and Zn²⁺ with weak ligands (Cl⁻, H₂O) is: _________.

a)

Tetrahedral

b)

Octahedral

c)

Square planar

d)

Trigonal bipyramidal

57.

The geometry of C₂H₄ (Ethene) is: _________.

a)

Trigonal planar

b)

Tetrahedral

c)

Linear

d)

Octahedral

58.

The geometry of BCl₃ (Boron trichloride) is: _________

a)

Trigonal planar

b)

Tetrahedral

c)

Linear

d)

Bent

59.

The geometry of IF₆⁺ cation is: _________.

a)

Octahedral, angles of 90 degrees, 6 bonding pairs

b)

Trigonal bipyramidal, angles of 120 and 90 degrees, 5 bonding pairs

c)

Square planar, angles of 90 degrees, 4 bonding pairs

d)

Tetrahedral, angles of 109.5 degrees, 4 bonding pairs

60.

Molecules with 2 pairs of bonding electrons and 0 pairs of lone electrons have geometry: _________.

a)

linear and angle of 120

b)

bent and angle of 104.5

c)

trigonal planar and angle of 120

d)

tetrahedral and angle of 109.5

61.

Molecules with 3 pairs of bonding electrons and 0 pairs of lone electrons have geometry: _________.

a)

trigonal planar or trigonal planar and angle of 120

b)

tetrahedral

c)

linear

d)

bent

62.

Molecules with 4 pairs of bonding electrons and 0 pairs of lone electrons have geometry: _________.

a)

Tetrahedral

b)

Trigonal planar

c)

Linear

d)

Octahedral

63.

Molecules with 5 pairs of bonding electrons and 0 pairs of lone electrons have geometry: _________.

a)

Trigonal Bipyramidal

b)

Tetrahedral

c)

Octahedral

d)

Square Planar

64.

Molecules with 6 pairs of bonding electrons and 0 lone pairs have what geometry?

a)

Octahedral

b)

Tetrahedral

c)

Trigonal bipyramidal

d)

Square planar

65.

What is the geometry of the Nitrate ion (NO₃⁻)?

a)

Trigonal planar

b)

Tetrahedral

c)

Linear

d)

Bent

66.

What is the geometry of the Amide ion (NH₂⁻)?

a)

Angular

b)

Linear

c)

Tetrahedral

d)

Trigonal planar

67.

What is the geometry of the Perchlorate ion (ClO₄⁻)?

a)

Tetrahedral

b)

Trigonal planar

c)

Octahedral

d)

Square planar

68.

What is the molecular geometry of NO2- (Nitrite ion)?

a)

angular

b)

linear

c)

trigonal planar

d)

tetrahedral

69.

What is the molecular geometry of NO2+ (Nitronium ion)?

a)

linear

b)

bent

c)

trigonal planar

d)

tetrahedral