The set up of a concentration cell is given whose right compartment undergoes a change of concentration of Fe 2 + ions from 0.1 M to 1 × 10 − 7 M . The direction of electron flow and the anode and cathode compartments is to be stated. Concept introduction: When the transport of substance occurs from one half cell to another due to difference in concentration gradient there occurs generation of current. This leads to the formation of concentration cells. They are of two types, Electrode concentration cell Electrolyte concentration cell The difference in ion concentration in different compartments decides the direction of electron flow and helps in assigning the position of anode and cathode. To determine: The direction of electron flow and the anode and cathode compartments.
The set up of a concentration cell is given whose right compartment undergoes a change of concentration of Fe 2 + ions from 0.1 M to 1 × 10 − 7 M . The direction of electron flow and the anode and cathode compartments is to be stated. Concept introduction: When the transport of substance occurs from one half cell to another due to difference in concentration gradient there occurs generation of current. This leads to the formation of concentration cells. They are of two types, Electrode concentration cell Electrolyte concentration cell The difference in ion concentration in different compartments decides the direction of electron flow and helps in assigning the position of anode and cathode. To determine: The direction of electron flow and the anode and cathode compartments.
Solution Summary: The author explains the difference in ion concentration in different compartments decides the direction of electron flow and helps in assigning the position of anode and catho
The set up of a concentration cell is given whose right compartment undergoes a change of concentration of
Fe2+ ions from
0.1M to
1×10−7M. The direction of electron flow and the anode and cathode compartments is to be stated.
Concept introduction:
When the transport of substance occurs from one half cell to another due to difference in concentration gradient there occurs generation of current. This leads to the formation of concentration cells.
They are of two types,
Electrode concentration cell
Electrolyte concentration cell
The difference in ion concentration in different compartments decides the direction of electron flow and helps in assigning the position of anode and cathode.
To determine: The direction of electron flow and the anode and cathode compartments.
Pheromone G of the maize stalk borer, chilo partelus, can be synthesized based on the partial scheme shown below. Complete the scheme by identifying the structures of the intermediate compounds A, B, C, D, E, F and pheromone G. Indicate stereochemistry where relevant
Q8: Draw the resonance structures for the following molecule. Show the curved arrows (how
you derive each resonance structure). Circle the major resonance contributor.
од
Q9: Explain why compound I is protonated on O while compound II is protonated on N.
NH2
DD
I
II
NH2
Chapter 17 Solutions
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