WebA. NO+ has a bond order of 2 and is paramagnetic. B. NO+ has a bond order of 2 and is diamagnetic. C. NO+ has a bond order of 3 and is paramagnetic. D. NO+ has a bond … WebMar 18, 2024 · Hence, the bond order of #"NO"# is either #2.5# or #3.5#, depending on whether the last electron went into a bonding or antibonding MO. The MO diagram of …
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WebElectronic configuration of NO,N O+ and N O−:NO : KK σ2s2σ∗2s2σ2pz2π2px2 π2py2π∗2px1N O+: KK σ2s2σ∗2s2σ2pz2π2px2π2py2N O−: KK σ2s2σ∗2s2σ2pz2π2px2π2py2π∗2px1= π∗2py1Bond order = 21(N b −N a)B.O. of NO = 21(8− 3) = 2.5B.O. of N O+ = 21(8− 2) = 3B.O. of N O− = 21(8− 4) = 2Bond strength ∝ … WebNov 18, 2024 · 2 Answers. There are two ways to think of it. First: draw out the (major) contributing Lewis structures for both ions. Each iin has one pi bond, but it's shared between two linkages in N O X 2 X − ion versus three linkages in the N O X 3 X − ion. So the N O X 3 X − ion has less pi bonding in each linkage making those bonds weaker … serum wavetable formula
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WebThe formula for calculating bond order: B. O. = N B − N A 2 The number of electrons in the antibonding and bonding molecular orbitals, respectively, is N A, N B; Step 1: Calculating … WebAug 29, 2024 · To obtain the bond order, look at the molecular orbitals formed and decide whether they are bonding or antibonding. BO = 1 2 (bonding e− − antibonding e−) = 1 2 [(2 + 2 + 2 + 2) − (2 + 1)] = 2.5. And this should make sense because NO+ is isoelectronic with CO, which has a bond order of 3. With one additional electron in an antibonding ... WebBoth bond length and bond energy changes as the bond order increases and as the number of electrons shared between two atoms in a molecule increases, the bond order … serum wavetable synth