For each of the following ions, draw diagrams (on a piece of paper), like the one...
For each of the following ions, draw diagrams (on a piece of paper), like the one to the right below, to show orbital occupancies for both weak and strong octahedral fields. Indicate (on the table below) the total number of unpaired electrons in each case. Ion # Unpaired Weak field # Unpaired Strong field (a) Ag3+ (b) Cu2+ (c) Mo5+ (d) Co4+ (e) Mo4+
For each of the following ions, druw diagrams (on a piece of paper), like the one to the right below, to show orbital occupancies for both weak and strong octahedral fields. Indicate (on the table below) the total number of unpaired electrons in each case. Ion #Unpaired Unpaired Weak field Strong field (a) Cr" (b) Nb2 eg (c) Rh fo (d) Mn? 5 (0) N. 2 0
References Use the References to access important values if needed for this question. For each of the following ions, draw diagrams (on a piece of paper), like the one to the right below, to show orbital occupancies for both weak and strong octahedral fields. Indicate (on the table below) the total number of unpaired electrons in each case. Ion # Unpaired # Unpaired Weak field Strong field (a) Co2+ do (b) Mn2+ eg Ca2+ t29 (d) Fe2+ Nb2+ tron Configurations...
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For each of the following ions, draw diagrams (on a piece of paper), like the one to the right below, to show orbital occupancies for both weak and strong octahedral fields. Indicate (on the table below) the total number of unpaired electrons in each case. Ion #Unpaired Weak field # Unpaired Strong field Ni3+ d' (a) (b) (c) Mo5+ eg Mn4+ tzg (d) V3+ (e) Ni4+ Submit Answer
References Use the References to access important values if needed for this question. For each of the following ions, draw diagrams (on a piece of paper), like the one to the right below, to show orbital occupancies for both weak and strong octahedral fields. Indicate (on the table below) the total number of unpaired electrons in each case. Ion # Unpaired #Unpaired Weak field Strong field Mn++ (b) 3 (c) Fe? 00000 00000 (d) Cr? Mn2- Submit Answer
On a piece of paper, draw the following circle. Then fill in the cell at rest. - Where are Na, K, Cl, A in greatest quantity? Put these ions in or out of cell. - Add the charges (+ or -) to each ion. - Draw labeled arrows for the diffusion force for each ion. - Draw labeled arrows for the electrostatic force for each ion.
1.- Define what are complex ions 2.- Using NiCl as a reactant look in a book or in the web for a reaction to form a complex ion, indicate which is the Lewis acid and which is the Lewis base. An example of your answer is this: Ag (aq) + 2NH, (aq) - Ag(NH),(aq) Lewis acid Lewis base 3.- Using the rules of nomenclature name the complex you have proposed in question 2 4.- Indicate the coordination number and geometry...
(5 pts] Saraw orbital diagrams for atoms with the following electron configurations:15 2s 2p 3s 3p 45-30 33. Write the equations representing the following processes. In each case, be sure to indicate the physical state of the ions. [2 x 4 pts) The electron affinity of S (1) The fourth ionization energy of titanium (TI) 34 For each of the following pairs, indicate which one of the two species is larger: (3 x 1 pt) (a) N or F- (b)...
(5 pts] Saraw orbital diagrams for atoms with the following electron configurations:15 2s 2p 3s 3p 45-30 33. Write the equations representing the following processes. In each case, be sure to indicate the physical state of the ions. [2 x 4 pts) The electron affinity of S (1) The fourth ionization energy of titanium (TI) 34 For each of the following pairs, indicate which one of the two species is larger: (3 x 1 pt) (a) N or F- (b)...
LUUN OZUL 27. For each of the following, draw the magnetic force vector on the charge or, if appropriate, write "F into page," "F out of page," or "F = 0." X TIT ** * * . + * of the SX 28. For each of the following, determine the sign of the charge (tor). I TIL Toll 1 III II Foto page into page 29. The magnetic field has constant magnitude inside the dashed lines and is zero outside....