The molecular formula of digitoxin needs to be calculated if 0.6617digitoxin was dissolved in 0.800 L of solvent at 298 K and the osmotic pressure is 0.02644 atm. Also, when 3.0078 g of sample combusted and 7.0950 g CO 2 and 2.2668 g H 2 O are formed as products. Concept introduction: Colligative properties are the properties that depend on the number of particles present in the solution. Elevation in boiling point, depression in freezing point, lowering in vapor pressure and osmotic pressure are some common examples of colligative properties. Vapor pressure is the pressure at which is exerted by vapor on the liquid surface in a closed system when the system is in thermodynamic equilibrium.
The molecular formula of digitoxin needs to be calculated if 0.6617digitoxin was dissolved in 0.800 L of solvent at 298 K and the osmotic pressure is 0.02644 atm. Also, when 3.0078 g of sample combusted and 7.0950 g CO 2 and 2.2668 g H 2 O are formed as products. Concept introduction: Colligative properties are the properties that depend on the number of particles present in the solution. Elevation in boiling point, depression in freezing point, lowering in vapor pressure and osmotic pressure are some common examples of colligative properties. Vapor pressure is the pressure at which is exerted by vapor on the liquid surface in a closed system when the system is in thermodynamic equilibrium.
Solution Summary: The author explains that the molecular formula of digitoxin needs to be calculated using the following relation: osmotic pressure is 0.02644 atm. Elevation in boiling point, depression in freezing point
Science that deals with the amount of energy transferred from one equilibrium state to another equilibrium state.
Chapter 13, Problem 13.153MP
Interpretation Introduction
Interpretation:
The molecular formula of digitoxin needs to be calculated if 0.6617digitoxin was dissolved in 0.800 L of solvent at 298 K and the osmotic pressure is 0.02644 atm. Also, when 3.0078 g of sample combusted and 7.0950 g CO2 and 2.2668 g H2O are formed as products.
Concept introduction:
Colligative properties are the properties that depend on the number of particles present in the solution. Elevation in boiling point, depression in freezing point, lowering in vapor pressure and osmotic pressure are some common examples of colligative properties. Vapor pressure is the pressure at which is exerted by vapor on the liquid surface in a closed system when the system is in thermodynamic equilibrium.
Construct a molecular orbital energy-level diagram for BeH2. Sketch the MO pictures (schematic
representation) for the HOMO and LUMO of BeH2 [Orbital Potential Energies, H (1s): -13.6 eV; Be (2s):
-9.3 eV, Be (2p): -6.0 eV]
Indicate the isomers of the A(H2O)6Cl3 complex. State the type of isomerism they exhibit and explain it briefly.
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