Deduce the equation that relates absorbance to concentration for these solutions, including the numerical value of the constant.
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Deduce the equation that relates absorbance to concentration for these solutions, including the numerical value of the constant.
Estimate the absorbance of a 0.400 solution of nickel(II) sulfate.
Predict the difference, if any, between the absorbance of the 0.400 solution read from the extrapolated line and the value calculated from the equation in 3d.
Each student used a different mass of the hydrated salt. The results of the whole class are shown below ( of = 18.02). Student Mass of / g Mass of / g Loss in mass / g Amount of / mol Amount of…
The student pipetted 25.00 of the potassium hydroxide solution into a conical flask and titrated it with nitric acid, , of concentration 0.1250 . The burette readings before and after the titration are…
Using the concentration determined in 1c and the intended concentration of 0.1500 , calculate the percentage error in the concentration of the potassium hydroxide solution. If you have no value from 1c, take the concentration to be…
Titanium is not included in the graph. Use sections 9 and 10 of the data booklet to find its atomic radius and first ionization energy, and annotate the graph with a cross (X) at the position of the data point for titanium.
The data show that the first ionization energy and the atomic radius are related. (i) State what kind of relationship links the two variables. (ii) Compare and contrast the trends observed for the three groups.
(i) Suggest one hazard to health or safety in Student A's procedure. (ii) Student A plotted the highest temperature of each mixture against the volume of nitric acid. With a ruler, draw two straight lines of best fit: one following the rising set of points and…
The forward reaction is first order with respect to cyclohexane. (i) Sketch a graph showing how the rate varies with the concentration of cyclohexane. (ii) Deduce the reaction's rate equation, and state the units of the…