A) 14 B) 20 C) 22 D) 26
A) covalent B) metallic C) ionic
A) electrons would not be involved B) donated/accepted C) shared
A) donated/accepted B) shared C) elelctrons would not be involved
A) Be3N2 B) BeN C) Be2N3 D) BeN2
A) Rb B) K C) Li D) Fr
A) P B) Cl C) Ar D) S
A) Kr B) As C) K D) Ca
A) less energy levels B) more protons C) higher mass D) more energy levels
A) flower B) dumbell C) sphere
A) 2 B) 1 C) 3 D) 6
A) N B) Si C) O D) C
A) 4f B) 5f C) 7s D) 5d
A) [Ar] 4s2 3d4 B) [Ar] 4s2 3d5 C) [Ne] 4s2 3d5 D) [Ar] 1s2 2s2 2p6 3s2 3p6 4s2 3d5
A) 4s must be filled before 3d B) Each p orbital must contain 1 electron before any of them can accept a second C) The 1st p orbital must be full before the 2nd and 3rd p orbitals can accept any electrons D) Orbitals can only hold 1 electron each
A) beryllium (II) fluoride B) beryllium fluoride C) beryllium difluoride
A) iron phosphate B) iron (III)phosphate C) iron phosphide D) iron (III) phosphide
A) carbon sulfide B) dicarbon pentasulfate C) carbon (V) sulfide D) dicarbon pentasulfide
A) K2O B) PO C) KO D) P2O
A) Li2SO4 B) LiSO3 C) Li2SO3 D) Li2S
A) BBr3 B) B6Br3 C) BBr D) B3Br6
A) 24g/mol B) 6.02x1023 g/mol C) 12g/mol D) 22.4g/mol
A) nonpolar covalent, less than 0.3 B) polar covalent, less than 0.3 C) nonpolar covalent, between 0.3 and 0.8 D) ionic, higher than 0.8 |