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A liquid at 30°C is poured very slowly into a Calorimeter that is at temperature of 110°C. The boiling temperature of the liquid is 80°C. It is found that the first 5 gm of the liquid completely evaporates. After pouring another 80 gm of the liquid the equilibrium temperature is found to be 50°C. The ratio of the Latent heat of the liquid to its specific heat will be ______ °C.
[Neglect the heat exchange with surrounding]
    Correct answer is '270.00'. Can you explain this answer?
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    A liquid at 30°C is poured very slowly into a Calorimeter that is ...
    Let m = mass of calorimeter,
    x = specific heat of calorimeter
    s = specific heat of liquid
    L = latent heat of liquid
    First 5 g of liquid at 30° is poured to calorimeter at 110°C
    ∴ m × x × (110 – 80) = 5 × s × (80 × 30) + 5 L
    ⇒ mx × 30 = 250 s + 5 L ... (i)
    Now, 80 g of liquid at 30° is poured into calorimeter at 80°C, the equilibrium temperature reaches to 50°C.
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    A liquid at 30°C is poured very slowly into a Calorimeter that is ...
    °C will generally have a higher viscosity than the same liquid at 10°C. This is because at higher temperatures, the molecules of the liquid have more kinetic energy and move more quickly, which causes them to collide with each other more frequently and with greater force. This increased collision frequency and force can make it more difficult for the molecules to flow past each other, resulting in a higher viscosity. Additionally, some liquids may undergo changes in their chemical structure or intermolecular forces as they are heated, which can also contribute to higher viscosity at higher temperatures.
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    A liquid at 30°C is poured very slowly into a Calorimeter that is at temperature of 110°C. The boiling temperature of the liquid is 80°C. It is found that the first 5 gm of the liquid completely evaporates. After pouring another 80 gm of the liquid the equilibrium temperature is found to be 50°C. The ratio of the Latent heat of the liquid to its specific heat will be ______ °C.[Neglect the heat exchange with surrounding]Correct answer is '270.00'. Can you explain this answer?
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    A liquid at 30°C is poured very slowly into a Calorimeter that is at temperature of 110°C. The boiling temperature of the liquid is 80°C. It is found that the first 5 gm of the liquid completely evaporates. After pouring another 80 gm of the liquid the equilibrium temperature is found to be 50°C. The ratio of the Latent heat of the liquid to its specific heat will be ______ °C.[Neglect the heat exchange with surrounding]Correct answer is '270.00'. Can you explain this answer? for JEE 2024 is part of JEE preparation. The Question and answers have been prepared according to the JEE exam syllabus. Information about A liquid at 30°C is poured very slowly into a Calorimeter that is at temperature of 110°C. The boiling temperature of the liquid is 80°C. It is found that the first 5 gm of the liquid completely evaporates. After pouring another 80 gm of the liquid the equilibrium temperature is found to be 50°C. The ratio of the Latent heat of the liquid to its specific heat will be ______ °C.[Neglect the heat exchange with surrounding]Correct answer is '270.00'. Can you explain this answer? covers all topics & solutions for JEE 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for A liquid at 30°C is poured very slowly into a Calorimeter that is at temperature of 110°C. The boiling temperature of the liquid is 80°C. It is found that the first 5 gm of the liquid completely evaporates. After pouring another 80 gm of the liquid the equilibrium temperature is found to be 50°C. The ratio of the Latent heat of the liquid to its specific heat will be ______ °C.[Neglect the heat exchange with surrounding]Correct answer is '270.00'. Can you explain this answer?.
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