(a)
Interpretation:
Which of the given triglycerides is expected to have high boiling point in the given sets need to be identified.
Concept introduction:
Melting point of a compound is the temperature at which the compound starts to change from solid state to liquid state when temperature is raised. The total number of carbon atoms determines the melting point of the compound. Higher the carbon atoms and no unsaturation means higher is the melting point.
To identify: which of the two given triglycerides will have higher melting point.
(b)
Interpretation:
Which of the given triglycerides is expected to have high boiling point in the given sets need to be identified.
Concept introduction:
Melting point of a compound is the temperature at which the compound starts to change from solid state to liquid state when temperature is raised. The total number of carbon atoms determines the melting point of the compound. Higher the carbon atoms and no unsaturation means higher is the melting point.
To identify: which of the two given triglycerides will have higher melting point.
(c)
Interpretation:
Which of the given triglycerides is expected to have high boiling point in the given sets need to be identified.
Concept introduction:
Melting point of a compound is the temperature at which the compound starts to change from solid state to liquid state when temperature is raised. The total number of carbon atoms determines the melting point of the compound. Higher the carbon atoms and no unsaturation means higher is the melting point.
To identify: which of the two given triglycerides will have higher melting point.
(d)
Interpretation:
Which of the given triglycerides is expected to have high boiling point in the given sets need to be identified.
Concept introduction:
Melting point of a compound is the temperature at which the compound starts to change from solid state to liquid state when temperature is raised. The total number of carbon atoms determines the melting point of the compound. Higher the carbon atoms and no unsaturation means higher is the melting point.
To identify: which of the two given triglycerides will have higher melting point.
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Chapter 26 Solutions
EBK ORGANIC CHEMISTRY AS A SECOND LANGU
- "Water gas" is an industrial fuel composed of a mixture of carbon monoxide and hydrogen gases. When this fuel is burned, carbon dioxide and water result. From the information given below, write a balanced equation and determine the enthalpy of this reaction: CO(g) + O2(g) → CO₂(g) + 282.8 kJ H2(g) + O2(g) → H₂O(g) + 241.8 kJ MacBook Airarrow_forwardPage of 3 4. Calculate AG for the following reaction at 25°C. Will the reaction occur (be spontaneous)? How do you know? NH3(g) + HCl(g) → NH4Cl(s) AH=-176.0 kJ AS-284.8 J-K-1arrow_forwardtrue or false The equilibrium constant for this reaction is 0.20. N2O4(g) ⇔ 2NO2(g) Based on the above, the equilibrium constant for the following reaction is 5. 4NO2(g) ⇔ 2N2O4(g)arrow_forward
- true or false The equilibrium constant for this reaction is 0.20. N2O4(g) ⇔ 2NO2(g) Based on the above, the equilibrium constant for the following reaction is 0.4. 2N2O4(g) ⇔ 4NO2(g)arrow_forwardtrue or false Using the following equilibrium, if heat is added the equilibrium will shift toward the reactants. N2(g) + 3H2(g) ⇔ 2NH3(g) + heatarrow_forwardTrue or False Using the following equilibrium, if heat is added the equilibrium will shift toward the products. N2O4(g) + heat ⇔ 2NO2(g)arrow_forward
- true or false Using the following equilibrium, if solid carbon is added the equilibrium will shift toward the products. C(s) + CO2(g) ⇔ 2CO(g)arrow_forwardProvide the complete mechanism for the reaction below. You must include appropriate arrows,intermediates, and formal charges. Please also provide a reason to explain why the 1,4-adduct is preferred over the 1,3-adduct.arrow_forwardWhich of the following pairs are resonance structures of one another? I. III. || III IV + II. :0: n P !༠ IV. EN: Narrow_forward
- Predict the major organic product(s) and byproducts (either organic or inorganic) for thefollowing reactions.arrow_forwardA 8.25 g sample of aluminum at 55°C released 2500 J of heat. The specific heat of aluminum is 0.900 J/g°C. The density of aluminum is 2.70 g/mL. Calculate the final temperature of the aluminum sample in °C.arrow_forwardPredict the major organic product(s) and byproducts (either organic or inorganic) for thefollowing reactions.arrow_forward
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