The questions based on the dependency of the equilibrium of oxidation of hemoglobin on the of the blood are to be determined. Concept introduction: Chlorine being more electronegative than carbon, withdraws the electron from carbon, this causes the molecule to pull the electrons from the bond formed with hydrogen and loses the proton without electron much easily. This is due to the inductive effect of chlorine. The of the solution is calculated by the formula, To determine: The explanation for the increase in the acidity by replacing the hydrogen on carbon with the chlorine atoms and the of each acid.
The questions based on the dependency of the equilibrium of oxidation of hemoglobin on the of the blood are to be determined. Concept introduction: Chlorine being more electronegative than carbon, withdraws the electron from carbon, this causes the molecule to pull the electrons from the bond formed with hydrogen and loses the proton without electron much easily. This is due to the inductive effect of chlorine. The of the solution is calculated by the formula, To determine: The explanation for the increase in the acidity by replacing the hydrogen on carbon with the chlorine atoms and the of each acid.
The questions based on the dependency of the equilibrium of oxidation of hemoglobin on the of the blood are to be determined.
Concept introduction: Chlorine being more electronegative than carbon, withdraws the electron from carbon, this causes the molecule to pull the electrons from the bond formed with hydrogen and loses the proton without electron much easily. This is due to the inductive effect of chlorine.
The of the solution is calculated by the formula,
To determine: The explanation for the increase in the acidity by replacing the hydrogen on carbon with the chlorine atoms and the of each acid.
A complete tensile test was performed on a magnesium
specimen of 12 mm diameter and 30 mm length, until breaking.
The specimen is assumed to maintain a constant volume.
Calculate the approximate value of the actual stress at breaking.
TABLE. The tensile force F and the length of the specimen are
represented for each L until breaking.
F/N
L/mm
0
30,0000
30,0296
5000
10000 30,0592
15000 30,0888
20000
30,15
25000 30,51
26500
30,90
27000
31,50
26500
32,10
25000 32,79
None
Chapter 16 Solutions
Chemistry: The Central Science, Books a la Carte Edition & Modified Mastering Chemistry with Pearson eText -- ValuePack Access Card Package
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