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Chemistry, 09.08.2021 20:50 bvbbridesmaid5519

2 C2H6(9) + 7 O2(g) ---> 4 CO2(g) + 6 H2O(g). AH = -1560.7 kJ/mol Which direction with the equilibrium shift if oxygen is removed?​

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Challenge question: this question is worth 6 points. as you saw in problem 9 we can have species bound to a central metal ion. these species are called ligands. in the past we have assumed all the d orbitals in some species are degenerate; however, they often are not. sometimes the ligands bound to a central metal cation can split the d orbitals. that is, some of the d orbitals will be at a lower energy state than others. ligands that have the ability to cause this splitting are called strong field ligands, cnÒ’ is an example of these. if this splitting in the d orbitals is great enough electrons will fill low lying orbitals, pairing with other electrons in a given orbital, before filling higher energy orbitals. in question 7 we had fe2+, furthermore we found that there were a certain number (non-zero) of unpaired electrons. consider now fe(cn)6 4Ò’: here we also have fe2+, but in this case all the electrons are paired, yielding a diamagnetic species. how can you explain this?
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2 C2H6(9) + 7 O2(g) ---> 4 CO2(g) + 6 H2O(g). AH = -1560.7 kJ/mol Which direction with the equili...
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