Write the equilibrium‑constant expression for the reaction shown in terms of [A],
[B],
[C],
and [D].
A(g)+B(g)↽−
−⇀
2C(g)+D(g)
Note that 𝐾
c
,
which is sometimes symbolized as 𝐾
or 𝐾
eq
,
denotes that the equilibrium constant is expressed using molar concentrations. For this question, 𝐾
c
means the same thing as 𝐾
and 𝐾
eq
.
Calculate the rate constant k from the gradient of the graph, drawn for part (c). All calculations must be shown
Plot a ‘rate against concentration of OH-‘graph from your results in part (b). Label the vertical and horizontal axes of the graph and include the units. The graph MUST be hand-drawn or plotted by hand.
1-Bromobutane was hydrolysed by an aqueous sodium hydroxide (NaOH) solution.
CH3CH2CH2CH2Br + NaOH → CH3CH2CH2CH2OH + NaCl
1-Bromobutane Butan-1-ol
During the reaction, the reactant sodium hydroxide is used up. Samples of the reaction mixture were drawn off at regular time intervals and analysed by titration with standard sulfuric acid to find out the concentration of sodium hydroxide.
The results are given in the table below:
Time / s Concentration of OH- / mol dm-3
0 0.500
100 0.350
200 0.250
300 0.180
400 0.125
500 0.090
600 0.063
700 0.040
800 0.030
Select 4 suitable points along your graph [see part (a)] and draw tangents to find the rates. Construct a table of “Rate” against “Concentration” (2 marks). The rates need to be calculated and the calculations shown
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We are asked to compare its specific gravity using hydrometer. My readings are 0.820 SG for ethanol and 0.795 SG for isopropanol.
In a 1-L volumetric flask, 20 mL of a 5-M solution was introduced and then filled with water to the mark. What is the new concentration of the diluted solution?
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Get a glass of water and another glass with oil. Fill in equal amounts of water and oil.
e. Using 2 marbles, drop each marble on both liquids.
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