A solution having 75 mEq Na + , 35 mEq K + , 95 mEq Cl − , and 5 mEq NO 3 − is whether possible to prepare has to be determined considering charge-balance. Concept-Introduction: Charge balance takes place when the sum of concentrations of negative ion and the sum of concentrations of positive ion becomes equal in mEq/L or Eq/L concentration units.
A solution having 75 mEq Na + , 35 mEq K + , 95 mEq Cl − , and 5 mEq NO 3 − is whether possible to prepare has to be determined considering charge-balance. Concept-Introduction: Charge balance takes place when the sum of concentrations of negative ion and the sum of concentrations of positive ion becomes equal in mEq/L or Eq/L concentration units.
A solution having 75 mEq Na+, 35 mEq K+, 95 mEq Cl−, and 5 mEq NO3− is whether possible to prepare has to be determined considering charge-balance.
Concept-Introduction:
Charge balance takes place when the sum of concentrations of negative ion and the sum of concentrations of positive ion becomes equal in mEq/L or Eq/L concentration units.
(a)
Expert Solution
Answer to Problem 10.146EP
A solution having 75 mEq Na+, 35 mEq K+, 95 mEq Cl−, and 5 mEq NO3−is not possible to prepare.
Explanation of Solution
Given data is shown below:
Concentration of Na+ = 75 mEqConcentration of K+ = 25 mEqConcentration of NO3− = 5 mEqConcentration of Cl− = 95 mEq
A charge balance exists between the ions in the given electrolyte solution when the sum of Eq/L of positive ions is equal to the sum of Eq/L of negative ions.
Sum of mEq of negative ions is calculated as shown,
Here, the sum of mEq/L of positive ions is not equal to the sum of mEq/L of negative ions
Therefore,
A solution having 75 mEq Na+, 35 mEq K+, 95 mEq Cl−, and 5 mEq NO3−is not possible to prepare.
(b)
Interpretation Introduction
Interpretation:
A solution having 73 Eq K+, 55 Eq Cl−, and 18 Eq C2H3O2− is whether possible to prepare has to be determined considering charge-balance.
Concept-Introduction:
Charge balance takes place when the sum of concentrations of negative ion and the sum of concentrations of positive ion becomes equal in mEq/L or Eq/L concentration units.
(b)
Expert Solution
Answer to Problem 10.146EP
A solution having 73 Eq K+, 55 Eq Cl−, and 18 Eq C2H3O2−is possible to prepare.
Explanation of Solution
Given data is shown below:
Conc of K+= 73 Eq Conc of Cl− = 55 EqConc of C2H3O2− = 18 Eq
A charge balance exists between the ions in the given electrolyte solution when the sum of Eq/L of positive ions is equal to the sum of Eq/L of negative ions.
Sum of Eq of negative ions is calculated as shown,
Hence, the sum of Eq of positive ions is equal to the sum of Eq of negative ions
Therefore,
A solution having 73 Eq K+, 55 Eq Cl−, and 18 Eq C2H3O2−is possible to prepare.
(c)
Interpretation Introduction
Interpretation:
A solution having 750 mEq Na+ and 0.0750 Eq Cl− is whether possible to prepare has to be determined considering charge-balance.
Concept-Introduction:
Charge balance takes place when the sum of concentrations of negative ion and the sum of concentrations of positive ion becomes equal in mEq/L or Eq/L concentration units.
Unit Conversion:
1 Eq = 103 mEq
(c)
Expert Solution
Answer to Problem 10.146EP
A solution having 750 mEq Na+ and 0.0750 Eq Cl−is not possible to prepare.
Explanation of Solution
Given data is shown below:
Concentration of Na+ = 750 mEq Concentration of Cl− = 0.0750 Eq
A charge balance exists between the ions in the given electrolyte solution when the sum of Eq/L of positive ions is equal to the sum of Eq/L of negative ions.
Here, the sum of mEq/L of positive ions is not equal to the sum of mEq/L of negative ions
Therefore,
A solution having 750 mEq Na+ and 0.0750 Eq Cl−is not possible to prepare.
(d)
Interpretation Introduction
Interpretation:
A solution having 0.050 mole Na+, 0.025 mole Ca2+ and 0.075 mole Cl− is whether possible to prepare has to be determined considering charge-balance.
Concept-Introduction:
Charge balance takes place when the sum of concentrations of negative ion and the sum of concentrations of positive ion becomes equal in mEq/L or Eq/L concentration units.
Unit Conversion:
1 Eq = 103 mEq
(d)
Expert Solution
Answer to Problem 10.146EP
A solution having 0.050 mole Na+, 0.025 mole Ca2+ and 0.075 mole Cl−is not possible to prepare.
Explanation of Solution
Given data is shown below:
No. of moles of Na+ = 0.050 moleNo. of moles of Ca2+ = 0.025 moleNo. of moles of Cl− = 0.075 mole
A charge balance exists between the ions in the given electrolyte solution when the sum of Eq/L of positive ions is equal to the sum of Eq/L of negative ions.
2. Drug quantification from plasma is commonly performed by using techniques such as HPLC or LC/MS. However, these methods do have limitations, and investigators may choose to use a radiolabeled analog of a drug instead. Radioligands are molecules that contain radioactive isotopes, commonly 3H or 14C. This technique allows investigators to quantify drug concentration from radiation measurements. The following measurements were made in 250 g rats following oral administration of 18.2 µCi of a 14C-labeled drug of interest: Time (min) Plasma Radiation Levels (µCi/L) 0 0.0 2 9.7 4 19.2 7 25.3 9 37.8 12 39.6 14 45.8 17 48.8 20 52.0 25 56.4 30 59.2 35 60.1 40 61.1 45 62.1 50 62.8 60 63.1 70 62.1 80 60.1 90 57.3 100 55.5 110 53.7 120 52.2 150 48.0 180 45.0 240 39.0
Note that a µCi is a measure of the amount of radioactivity and hence is a measure of the amount of drug present. Given that the oral bioavailability of this drug is known to be essentially 100%, estimate the following from this…
The current nutrition labelling regulation in Hong Kong requires food manufacturer to list E+7 information on the package of pre-packaged food products. Do you think that more nutrients, such as calcium and cholesterol, shall be included?
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Chapter 10 Solutions
General, Organic, and Biological Chemistry Seventh Edition
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Author:Kelly A. Young, James A. Wise, Peter DeSaix, Dean H. Kruse, Brandon Poe, Eddie Johnson, Jody E. Johnson, Oksana Korol, J. Gordon Betts, Mark Womble
Author:Kelly A. Young, James A. Wise, Peter DeSaix, Dean H. Kruse, Brandon Poe, Eddie Johnson, Jody E. Johnson, Oksana Korol, J. Gordon Betts, Mark Womble