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Calculate the enthalpy change (calmol–1) when 36 g of water is heated from 27°C to 37°C at 1 atm pressure. The molar heat capacity of water (18.1 cal K–1mol–1) remains constant in this temperature range: [rounded up to two decimal places]
    Correct answer is between '360.00,364.00'. Can you explain this answer?
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    Calculate the enthalpy change (calmol–1) when 36 g of water is h...
    I'm sorry, but you need to provide more information for me to calculate the enthalpy change. Can you please provide the initial and final states of the system, as well as any relevant reaction or process?
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    Calculate the enthalpy change (calmol–1) when 36 g of water is heated from 27°C to 37°C at 1 atm pressure. The molar heat capacity of water (18.1 cal K–1mol–1) remains constant in this temperature range: [rounded up to two decimal places]Correct answer is between '360.00,364.00'. Can you explain this answer?
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    Calculate the enthalpy change (calmol–1) when 36 g of water is heated from 27°C to 37°C at 1 atm pressure. The molar heat capacity of water (18.1 cal K–1mol–1) remains constant in this temperature range: [rounded up to two decimal places]Correct answer is between '360.00,364.00'. Can you explain this answer? for Chemistry 2024 is part of Chemistry preparation. The Question and answers have been prepared according to the Chemistry exam syllabus. Information about Calculate the enthalpy change (calmol–1) when 36 g of water is heated from 27°C to 37°C at 1 atm pressure. The molar heat capacity of water (18.1 cal K–1mol–1) remains constant in this temperature range: [rounded up to two decimal places]Correct answer is between '360.00,364.00'. Can you explain this answer? covers all topics & solutions for Chemistry 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for Calculate the enthalpy change (calmol–1) when 36 g of water is heated from 27°C to 37°C at 1 atm pressure. The molar heat capacity of water (18.1 cal K–1mol–1) remains constant in this temperature range: [rounded up to two decimal places]Correct answer is between '360.00,364.00'. Can you explain this answer?.
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