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Ch.7 - Thermochemistry
Tro - Chemistry: A Molecular Approach 5th Edition
Tro5th EditionChemistry: A Molecular ApproachISBN: 9780134874371Non è quello che usi tu?Cambia libro di testo
Capitolo 7, Problema 104

If 50.0 mL of ethanol (density = 0.789 g/mL) initially at 7.0 °C is mixed with 50.0 mL of water (density = 1.0 g/mL) initially at 28.4 °C in an insulated beaker, and assuming that no heat is lost, what is the final temperature of the mixture?

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Calculate the mass of ethanol using its volume and density: \( \text{mass of ethanol} = \text{volume} \times \text{density} \).
Calculate the mass of water using its volume and density: \( \text{mass of water} = \text{volume} \times \text{density} \).
Use the specific heat capacities of ethanol and water to set up the heat transfer equation: \( q_{\text{ethanol}} + q_{\text{water}} = 0 \), where \( q = m \cdot c \cdot \Delta T \).
Express the change in temperature (\( \Delta T \)) for each substance in terms of the final temperature \( T_f \): \( \Delta T_{\text{ethanol}} = T_f - 7.0 \) and \( \Delta T_{\text{water}} = T_f - 28.4 \).
Solve the equation for the final temperature \( T_f \) by substituting the expressions for \( q_{\text{ethanol}} \) and \( q_{\text{water}} \) and setting their sum to zero.

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Heat Transfer and Calorimetry

Calorimetry is the science of measuring the heat transfer during chemical reactions or physical changes. In this scenario, the heat lost by the warmer substance (water) will equal the heat gained by the cooler substance (ethanol) until thermal equilibrium is reached. This principle is essential for calculating the final temperature of the mixture.
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Constant-Pressure Calorimetry

Specific Heat Capacity

Specific heat capacity is the amount of heat required to raise the temperature of one gram of a substance by one degree Celsius. Different substances have different specific heat capacities, which affects how much their temperature changes when they absorb or release heat. In this problem, the specific heat capacities of ethanol and water will influence the final temperature of the mixture.
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Density and Volume Relationships

Density is defined as mass per unit volume and is crucial for converting between mass and volume in calculations. In this question, the densities of ethanol and water allow us to determine their respective masses from the given volumes. Understanding these relationships is vital for applying the principles of calorimetry accurately.
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Relationship of Volume and Moles Example
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