We have prepared 1 liter of solution for intravenous injection with: 4.5 mEq of CaCl2, 4 mEq of KCI, and 147mEq of NaCl. It has mEq of Chloride ion.

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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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We have prepared 1 liter of solution for intravenous injection with: 4.5 mEq of CaCl2, 4 mEq of KCI, and 147mEq
of NaCl. It has
mEq of Chloride ion.
2
We have prepared 1 liter of solution for intravenous injection with: 4.5 mEq of CaCl2, 4 mEq of KCI, and 147 mEq
of NaCl. The total osmolarity contributed by all salts is
mOsmol/L.
3
An aerosol propellant mixture contains Propellant 11/Propellant 12 at a molar ratio of 15:85. Calculate the total
vapor pressure of this mixture:
1 psi. (All parameters are at room temperature) Propellant 11:
CC13F; MW = 137.4; p0= 13.4 psi Propellant 12: CCI2F2; MW = 120.9, p0 = 84.9 psi
Transcribed Image Text:We have prepared 1 liter of solution for intravenous injection with: 4.5 mEq of CaCl2, 4 mEq of KCI, and 147mEq of NaCl. It has mEq of Chloride ion. 2 We have prepared 1 liter of solution for intravenous injection with: 4.5 mEq of CaCl2, 4 mEq of KCI, and 147 mEq of NaCl. The total osmolarity contributed by all salts is mOsmol/L. 3 An aerosol propellant mixture contains Propellant 11/Propellant 12 at a molar ratio of 15:85. Calculate the total vapor pressure of this mixture: 1 psi. (All parameters are at room temperature) Propellant 11: CC13F; MW = 137.4; p0= 13.4 psi Propellant 12: CCI2F2; MW = 120.9, p0 = 84.9 psi
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