Interpretation:
Three balls are given. It is to be identified which ball represents
Concept Introduction : An ion is formed by gaining or losing electrons by an atom. The number of electrons lost or gained by an atom becomes its charge. If an element loses electrons, it has a positive charge. In the symbol for an ion, the charge is represented as a superscript of the symbol of the atom for that element.
Answer to Problem 67A
Ball a represents
Explanation of Solution
Calcium and magnesium are in the same group. Calcium is placed below magnesium. Atomic size increases down the group. This is because when moving from top to bottom in the group, both the number of shells and nuclear charge increase. The effect of more shells, however, outweighs the effect of a higher nuclear charge which increases atomic radius.
Thus, the size of calcium is larger than magnesium.
Thus, ball a represents
Cation size is always smaller than the atomic size due to a decrease in the number of electrons and decreases in nuclear attraction.
Thus, ball b represents
Chapter 6 Solutions
Chemistry 2012 Student Edition (hard Cover) Grade 11
- Show work with explanation needed. don't give Ai generated solutionarrow_forwardGive detailed Solution with explanation needed with structures. don't give Ai generated solution. avoid handwritten Solutionarrow_forwardThe acid-base indicator HX undergoes the following reaction in a dilute aqueous solution: HX (color 1) H+ + X- (color 2). The following absorbance data were obtained for a 0.00035 M solution of HX in 0.1 M NaOH and 0.1 M HCI. Measurements were made at wavelengths of 450 nm and 620 nm using a 1.0 cm glass cuvette. 450 620 A(460 nm) A(630 nm) 0.1 M NaOH 0.1 M HCI 0.065 0.435 0.895 0.150 In the 0.1M NaOH solution, the indicator will be almost 100% in the X- form, while in 0.1M HCI, the indicator will be nearly 100% protonated (HX). Calculate the acid dissociation constant for the indicator if a pH=5 buffer solution containing a very small amount of indicator exhibits an absorbance of 0.567 at 450 nm and 0.395 at 620 nm (measured in a 1 cm glass cuvette).arrow_forward
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