A current passes through a 2.5 oh resistor of a galvanic cell for 2 hrs. The galvanic cell is made using
H2SO3 and VO2+ . A 150 grams of H2SO3 and 305 grams of VO2+ is dissolve with H2O to make the
electrolyte solution for the galvanic cell. The volume of the solutions made is 0.012m3
. Determine the
following:
a.) The reaction take place in the anode and cathode compartment. The overall redox reaction
and cell notation for VO2+ and H2SO3.
b.) Concentration of VO2
+
, VO2+ and SO4
2-
from the dissolution of H2SO3 and VO2+
c.) Standard Cell Potential, E⁰
d.) If the condition take place at a temperature of 425K, what is the
d1) Cell potential, E
d2) current that passes through 2.5ohm, I
d3) amount of electricity, Q
d4) energy, Joules
d5) Power, watts
e.) If the condition is at a Temperature of 250C, calculate
e1) Cell potential, E
e2) current that passes through 2.5ohm, I
e3) amount of electricity, Q
e4) energy, Joules
e5) Power, watts
A Galvanic cell converts chemical energy into electrical energy. An electrolytic cell converts electrical energy into chemical energy.The redox reaction is not spontaneous and electrical energy has to be supplied to initiate the reaction.
Comments
Leave a comment