volatilityThe abilityfor asubstance toevaporatetrigonalplanarThemolecularshape ofBH3electronegativityTheattraction ofelectrons ina bondsigmabondA bondformed fromthe overlapof s orbitalspolarmoleculeA moleculewith anoveralldipolemomentcovalentbondingBonding typeformedbetweennonmetalssquarepyramidalThemolecularshape ofICl5tetrahedralThemolecularshape ofCH4solubilityBased on"likedissolveslike"sp2Thehybridizationof the carbonatoms inethenesp3Thehybridizationof the carbonatoms inethanemoleculargeometryGeometry basedon the number ofbonding vsnonbondingelectrons aroundan atomcationApositivelychargediondipole-dipoleforcesIMF presentbetweenpolarmoleculessquareplanarThemolecularshape ofXeCl4CFCType ofmoleculethat causesozonedepletion180The bondangle fora linearmoleculeseesawThemolecularshape ofSCl4linearThemolecularshape ofCO2resonance2 or moredifferentarrangementsfor electronsin a moleculeoctetWhen there are8 electronsaround an atomin a molecule107The bondangle for atrigonalpyramidalmoleculecoordinatecovalentbondBond formedfrom 2electronsdonated fromthe same atomoctahedralThemolecularshape ofSF6hybridizationThe mixing ofdifferenttypes oforbitals withinan atom.latticeAn organizedstructuremade ofrepeatingionsnonpolarmoleculeA moleculewhere allthe dipolescanceltrigonalbipyramidalThemolecularshape ofPCl5104.5The bondangle fora bentmoleculeformalchargeMethod usedto determinethe preferredLewisStructuremetallicbondingBondingtypewithinmetalsdelocalizedelectronsElectronsthat do notbelong to asingle atomnetworkcovalentbondingBonding typepresent indiamond andgraphite90 and180The bondangles for anoctahedralmoleculeT-shapedThemolecularshape ofICl3bentThemolecularshape ofwaterLondondispersionforcesIMF presentbetweennonpolarmoleculesanionAnegativelychargediontrigonalpyramidalThemolecularshape ofNH3conductivityIoniccompoundshave this onlyin the molten oraqueous statespThehybridizationof the carbonatoms inethyneexpandedoctetWhen there aremore than 8electronsaround an atomin a moleculeionicbondingBonding typeformedbetweenmetal andnonmetalhydrogenbondingIMF presentbetween polarmoleculeswith H bondedto N, O, or F109.5The bondangle for atetrahedralmolecule120The bondangle for atrigonalplanarmoleculepibondA bondformed fromthe overlapof parallel porbitalselectrondomaingeometryGeometry basedon number oflocations ofelectrons aroundan atom90, 120,and 180The bondangles for atrigonalbipyramidalmoleculebondorderThe number ofbondingelectron pairsshared by twoatoms in amoleculevolatilityThe abilityfor asubstance toevaporatetrigonalplanarThemolecularshape ofBH3electronegativityTheattraction ofelectrons ina bondsigmabondA bondformed fromthe overlapof s orbitalspolarmoleculeA moleculewith anoveralldipolemomentcovalentbondingBonding typeformedbetweennonmetalssquarepyramidalThemolecularshape ofICl5tetrahedralThemolecularshape ofCH4solubilityBased on"likedissolveslike"sp2Thehybridizationof the carbonatoms inethenesp3Thehybridizationof the carbonatoms inethanemoleculargeometryGeometry basedon the number ofbonding vsnonbondingelectrons aroundan atomcationApositivelychargediondipole-dipoleforcesIMF presentbetweenpolarmoleculessquareplanarThemolecularshape ofXeCl4CFCType ofmoleculethat causesozonedepletion180The bondangle fora linearmoleculeseesawThemolecularshape ofSCl4linearThemolecularshape ofCO2resonance2 or moredifferentarrangementsfor electronsin a moleculeoctetWhen there are8 electronsaround an atomin a molecule107The bondangle for atrigonalpyramidalmoleculecoordinatecovalentbondBond formedfrom 2electronsdonated fromthe same atomoctahedralThemolecularshape ofSF6hybridizationThe mixing ofdifferenttypes oforbitals withinan atom.latticeAn organizedstructuremade ofrepeatingionsnonpolarmoleculeA moleculewhere allthe dipolescanceltrigonalbipyramidalThemolecularshape ofPCl5104.5The bondangle fora bentmoleculeformalchargeMethod usedto determinethe preferredLewisStructuremetallicbondingBondingtypewithinmetalsdelocalizedelectronsElectronsthat do notbelong to asingle atomnetworkcovalentbondingBonding typepresent indiamond andgraphite90 and180The bondangles for anoctahedralmoleculeT-shapedThemolecularshape ofICl3bentThemolecularshape ofwaterLondondispersionforcesIMF presentbetweennonpolarmoleculesanionAnegativelychargediontrigonalpyramidalThemolecularshape ofNH3conductivityIoniccompoundshave this onlyin the molten oraqueous statespThehybridizationof the carbonatoms inethyneexpandedoctetWhen there aremore than 8electronsaround an atomin a moleculeionicbondingBonding typeformedbetweenmetal andnonmetalhydrogenbondingIMF presentbetween polarmoleculeswith H bondedto N, O, or F109.5The bondangle for atetrahedralmolecule120The bondangle for atrigonalplanarmoleculepibondA bondformed fromthe overlapof parallel porbitalselectrondomaingeometryGeometry basedon number oflocations ofelectrons aroundan atom90, 120,and 180The bondangles for atrigonalbipyramidalmoleculebondorderThe number ofbondingelectron pairsshared by twoatoms in amolecule

IB Chemistry HL Bonding Bingo - Call List

(Print) Use this randomly generated list as your call list when playing the game. There is no need to say the BINGO column name. Place some kind of mark (like an X, a checkmark, a dot, tally mark, etc) on each cell as you announce it, to keep track. You can also cut out each item, place them in a bag and pull words from the bag.


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  1. The ability for a substance to evaporate
    volatility
  2. The molecular shape of BH3
    trigonal planar
  3. The attraction of electrons in a bond
    electronegativity
  4. A bond formed from the overlap of s orbitals
    sigma bond
  5. A molecule with an overall dipole moment
    polar molecule
  6. Bonding type formed between nonmetals
    covalent bonding
  7. The molecular shape of ICl5
    square pyramidal
  8. The molecular shape of CH4
    tetrahedral
  9. Based on "like dissolves like"
    solubility
  10. The hybridization of the carbon atoms in ethene
    sp2
  11. The hybridization of the carbon atoms in ethane
    sp3
  12. Geometry based on the number of bonding vs nonbonding electrons around an atom
    molecular geometry
  13. A positively charged ion
    cation
  14. IMF present between polar molecules
    dipole-dipole forces
  15. The molecular shape of XeCl4
    square planar
  16. Type of molecule that causes ozone depletion
    CFC
  17. The bond angle for a linear molecule
    180
  18. The molecular shape of SCl4
    seesaw
  19. The molecular shape of CO2
    linear
  20. 2 or more different arrangements for electrons in a molecule
    resonance
  21. When there are 8 electrons around an atom in a molecule
    octet
  22. The bond angle for a trigonal pyramidal molecule
    107
  23. Bond formed from 2 electrons donated from the same atom
    coordinate covalent bond
  24. The molecular shape of SF6
    octahedral
  25. The mixing of different types of orbitals within an atom.
    hybridization
  26. An organized structure made of repeating ions
    lattice
  27. A molecule where all the dipoles cancel
    nonpolar molecule
  28. The molecular shape of PCl5
    trigonal bipyramidal
  29. The bond angle for a bent molecule
    104.5
  30. Method used to determine the preferred Lewis Structure
    formal charge
  31. Bonding type within metals
    metallic bonding
  32. Electrons that do not belong to a single atom
    delocalized electrons
  33. Bonding type present in diamond and graphite
    network covalent bonding
  34. The bond angles for an octahedral molecule
    90 and 180
  35. The molecular shape of ICl3
    T-shaped
  36. The molecular shape of water
    bent
  37. IMF present between nonpolar molecules
    London dispersion forces
  38. A negatively charged ion
    anion
  39. The molecular shape of NH3
    trigonal pyramidal
  40. Ionic compounds have this only in the molten or aqueous state
    conductivity
  41. The hybridization of the carbon atoms in ethyne
    sp
  42. When there are more than 8 electrons around an atom in a molecule
    expanded octet
  43. Bonding type formed between metal and nonmetal
    ionic bonding
  44. IMF present between polar molecules with H bonded to N, O, or F
    hydrogen bonding
  45. The bond angle for a tetrahedral molecule
    109.5
  46. The bond angle for a trigonal planar molecule
    120
  47. A bond formed from the overlap of parallel p orbitals
    pi bond
  48. Geometry based on number of locations of electrons around an atom
    electron domain geometry
  49. The bond angles for a trigonal bipyramidal molecule
    90, 120, and 180
  50. The number of bonding electron pairs shared by two atoms in a molecule
    bond order