(a) Interpretation: For the given reaction, the percent of reactants consumed if the value K is equal to 10 10 is 99.999% needs to be proved. Concept introduction: For the given equilibrium reaction, A + B ⇌ C + D The expression for equilibrium constant can be represented as follows: K = [ C ] [ D ] [ A ] [ B ] Here, [ A ] , [ B ] , [ C ] and [ D ] is equilibrium concentration of A, B, C and D in the reaction. For an equilibrium reaction, the equilibrium concentration of all the species can be obtained from ICE table. A general quadratic equation is written as follows: ax 2 + b x + c = 0 To solve a quadratic equation, following formula is used: x = − b ± b 2 − 4 a c 2 a
(a) Interpretation: For the given reaction, the percent of reactants consumed if the value K is equal to 10 10 is 99.999% needs to be proved. Concept introduction: For the given equilibrium reaction, A + B ⇌ C + D The expression for equilibrium constant can be represented as follows: K = [ C ] [ D ] [ A ] [ B ] Here, [ A ] , [ B ] , [ C ] and [ D ] is equilibrium concentration of A, B, C and D in the reaction. For an equilibrium reaction, the equilibrium concentration of all the species can be obtained from ICE table. A general quadratic equation is written as follows: ax 2 + b x + c = 0 To solve a quadratic equation, following formula is used: x = − b ± b 2 − 4 a c 2 a
Solution Summary: The author explains that the percent of reactants consumed if the value K is equal to is 99.999% needs to be proved.
For the given reaction, the percent of reactants consumed if the value K is equal to 1010 is 99.999% needs to be proved.
Concept introduction:
For the given equilibrium reaction,
A+B⇌C+D
The expression for equilibrium constant can be represented as follows:
K=[C][D][A][B]
Here, [A], [B], [C] and [D] is equilibrium concentration of A, B, C and D in the reaction.
For an equilibrium reaction, the equilibrium concentration of all the species can be obtained from ICE table. A general quadratic equation is written as follows:
ax2+bx+c=0
To solve a quadratic equation, following formula is used:
x=−b±b2−4ac2a
Interpretation Introduction
(b)
Interpretation:
For the given reaction, the percent of reactants remaining if the value K is equal to 10−10 is 99.999% needs to be proved.
Concept introduction:
For the given equilibrium reaction,
A+B⇌C+D
The expression for equilibrium constant can be represented as follows:
K=[C][D][A][B]
Here, [A], [B], [C] and [D] is equilibrium concentration of A, B, C and D in the reaction.
For an equilibrium reaction, the equilibrium concentration of all the species can be obtained from ICE table. A general quadratic equation is written as follows:
ax2+bx+c=0
To solve a quadratic equation, following formula is used:
we were assigned to dilute 900ppm
in to 18ppm by using only 250ml vol
flask. firstly we did calc and convert
900ppm to 0.9 ppm to dilute in 1 liter.
to begin the experiment we took
0,225g of kmno4 and dissolved in to
250 vol flask. then further we took 10
ml sample sol and dissolved in to 100
ml vol flask and put it in to a
spectrometer and got value of 0.145A
.
upon further calc we got v2 as 50ml
. need to find DF, % error (expval and
accptVal), molarity, molality. please
write the whole report. thank you
The format, tables, introduction,
procedure and observation, result,
calculations, discussion and
conclusion
Q5. Predict the organic product(s) for the following transformations. If no reaction will take place
(or the reaction is not synthetically useful), write "N.R.". Determine what type of transition state
is present for each reaction (think Hammond Postulate).
I
Br₂
CH3
F2, light
CH3
Heat
CH3
F₂
Heat
Br2, light
12, light
CH3
Cl2, light
No
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