sing only the periodic table, predict the most stable ion for Na , Mg , Al , s , Cl , K , Ca , and Ga . Arrange these elements from largest to smallest radius and explain why the radius varies as it does.
sing only the periodic table, predict the most stable ion for Na , Mg , Al , s , Cl , K , Ca , and Ga . Arrange these elements from largest to smallest radius and explain why the radius varies as it does.
sing only the periodic table, predict the most stable ion for
Na
,
Mg
,
Al
,
s
,
Cl
,
K
,
Ca
,
and Ga
. Arrange these elements from largest to smallest radius and explain why the radius varies as it does.
Expert Solution & Answer
Interpretation Introduction
Interpretation:
The most stable ions of Na, Mg, Al, S, Cl, K, Ca, and Ga are to be predicted. The given elements are to be arranged in order of decreasing radii and the reason as to why the radius varies is to be stated.
Concept Introduction:
The gain or loss of electrons from an atom results in the formation of ionic species. The atoms bearing positive and negative charges combine to form an ionic compound. The radii of ions are different as compared to their parent atoms because ions either possess negative charge or positive charge on them.
Answer to Problem 1ALQ
The most stable ions for Na, Mg, Al, S, Cl, K, Ca, and Ga are Na+, Mg2+, Al3+, S2−, Cl−, K+, Ca2+ and Ga3+ respectively. The arrangement of elements in order of decreasing radii on the basis of position of elements in the periodic table is shown below.
K>Ca>Na>Mg>Ga>Al>S>Cl
The atomic radii increase down the group due to increase in the number of shells, whereas it decreases along the period from left to right due to the addition of electrons in the same valence shell.
Explanation of Solution
The ions become stable when they acquire complete octet. The positive and negative value of ion denotes the number of electrons gained or lost. Therefore, the most stable ions for Na, Mg, Al, S, Cl, K, Ca, and Ga are Na+, Mg2+, Al3+, S2−, Cl−, K+, Ca2+ and Ga3+ respectively.
The positively and negatively charged atom is referred to as a cation and an anion respectively.
The arrangement of elements in order of decreasing radii on the basis of position of elements in the periodic table is shown below.
K>Ca>Na>Mg>Ga>Al>S>Cl
The atomic radii increase down the group due to increase in the number of shells, whereas it decreases along the period from left to right due to the addition of electrons in the same valence shell.
Conclusion
The most stable ions for Na, Mg, Al, S, Cl, K, Ca, and Ga are Na+, Mg2+, Al3+, S2−, Cl−, K+, Ca2+ and Ga3+ respectively. The arrangement of elements in order of decreasing radii on the basis of the position of elements in the periodic table is shown below.
K>Ca>Na>Mg>Ga>Al>S>Cl
The atomic radii increase down the group due to increase in the number of shells, whereas it decreases along the period from left to right due to the addition of electrons in the same valence shell.
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A small artisanal cheesemaker is testing the acidity of their milk
before it coagulates. During fermentation, bacteria produce lactic
acid (K₁ = 1.4 x 104), a weak acid that helps to curdle the milk and
develop flavor. The cheesemaker has measured that the developing
mixture contains lactic acid at an initial concentration of 0.025 M.
Your task is to calculate the pH of this mixture and determine whether
it meets the required acidity for proper cheese development. To
achieve the best flavor, texture and reduce/control microbial growth,
the pH range needs to be between pH 4.6 and 5.0.
Assumptions:
Lactic acid is a monoprotic acid
H
H
:0:0:
H-C-C
H
:0:
O-H
Figure 1: Lewis Structure for Lactic Acid
For simplicity, you can use the generic formula HA to represent the acid
You can assume lactic acid dissociation is in water as milk is mostly water.
Temperature is 25°C
1. Write the K, expression for the dissociation of lactic acid in the space provided. Do not forget to
include state symbols.…
Curved arrows are used to illustrate the flow of electrons. Using the provided starting and product
structures, draw the curved electron-pushing arrows for the following reaction or mechanistic step(s).
Be sure to account for all bond-breaking and bond-making steps.
:0:
:0
H.
0:0
:0:
:6:
S:
:0:
Select to Edit Arrows
::0
Select to Edit Arrows
H
:0:
H
:CI:
Rotation
Select to Edit Arrows
H.
<
:0:
:0:
:0:
S:
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