11. The complex ion [Ti(H20)]3+ is violet in solution. Calculate the crystal field splitting energy in kJ/mol for this i

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11. The complex ion [Ti(H20)]3+ is violet in solution. Calculate the crystal field splitting energy in kJ/mol for this i

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11 The Complex Ion Ti H20 3 Is Violet In Solution Calculate The Crystal Field Splitting Energy In Kj Mol For This I 1
11 The Complex Ion Ti H20 3 Is Violet In Solution Calculate The Crystal Field Splitting Energy In Kj Mol For This I 1 (55.17 KiB) Viewed 96 times
11. The complex ion [Ti(H20)]3+ is violet in solution. Calculate the crystal field splitting energy in kJ/mol for this ion. (10 pts) h=6.626 x 10-34 Js c= 3.00 x 10 m/s Absorbed wavelength (nm) Observed Color 6.02 x 102 ions/mol 400 violet greenish-yellow 450 blue yellow I nm= 10ºm 490 blue-green red 570 yellow-green violet 580 yellow dark-blue blue 650 red green 600 orange 12. Calculate the pH of a 0.250 M HCsHsNCI salt solution. Hint: HCH N is the conjugate acid of the weak base CHxN. (15 pts) Kb = 1.7 x 10
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