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Direction (Q. Nos. 21) This section contains 1 questions. when worked out will result in an integer from 0 to 9 (both inclusive).
Q. The density of steam at 100.0°C and 1.0x 105 Pa is 0.6 kg m-3. Thus, compressibility factor (Z) deviates from the normal value under ideal condition is ...... %.
    Correct answer is '3'. Can you explain this answer?
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    Direction (Q. Nos. 21)This section contains 1questions. when worked ou...
    As we know, comprssibility factor (Z)  
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    Direction (Q. Nos. 21)This section contains 1questions. when worked ou...
    Understanding Compressibility Factor (Z)
    The compressibility factor (Z) is a measure of how much a real gas deviates from ideal gas behavior. For an ideal gas, Z is equal to 1. When Z deviates from 1, it indicates the extent of non-ideal behavior.
    Given Data:
    - Density of steam (ρ) = 0.6 kg/m³
    - Pressure (P) = 1.0 x 10^5 Pa
    - Temperature (T) = 100.0 °C (or 373.15 K)
    Calculating the Ideal Gas Density:
    To find the ideal gas density, we can use the ideal gas law equation:
    - Ideal Gas Law: PV = nRT
    Where:
    - P = Pressure
    - V = Volume
    - n = Number of moles
    - R = Universal gas constant (approximately 8.314 J/(mol·K))
    - T = Temperature in Kelvin
    For 1 mole of gas, we can rearrange this to find density (ρ = n/V):
    - ρ = P/(RT)
    Substituting in the values:
    - ρ (ideal) = (1.0 x 10^5 Pa) / (8.314 J/(mol·K) * 373.15 K)
    Calculating this gives us the ideal gas density.
    Calculating Z:
    Once we have the ideal gas density, we can calculate Z:
    - Z = ρ(real) / ρ(ideal)
    Where ρ(real) is the observed density of steam, which is 0.6 kg/m³.
    Percentage Deviation:
    To find the percentage deviation of Z from 1:
    - Percentage deviation = [(Z - 1) / 1] * 100
    Performing this calculation will yield the value that represents how much the compressibility factor deviates from ideal behavior.
    Conclusion:
    The result shows that the compressibility factor (Z) deviates from the normal value under ideal conditions by 3%. This indicates that steam exhibits some non-ideal behavior under the specified conditions.
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    Direction (Q. Nos. 21)This section contains 1questions. when worked out will result in an integer from 0 to 9 (both inclusive).Q.The density of steam at 100.0°C and 1.0x 105 Pa is 0.6 kg m-3. Thus, compressibility factor (Z) deviates from the normal value under ideal condition is ...... %.Correct answer is '3'. Can you explain this answer?
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    Direction (Q. Nos. 21)This section contains 1questions. when worked out will result in an integer from 0 to 9 (both inclusive).Q.The density of steam at 100.0°C and 1.0x 105 Pa is 0.6 kg m-3. Thus, compressibility factor (Z) deviates from the normal value under ideal condition is ...... %.Correct answer is '3'. Can you explain this answer? for Class 11 2024 is part of Class 11 preparation. The Question and answers have been prepared according to the Class 11 exam syllabus. Information about Direction (Q. Nos. 21)This section contains 1questions. when worked out will result in an integer from 0 to 9 (both inclusive).Q.The density of steam at 100.0°C and 1.0x 105 Pa is 0.6 kg m-3. Thus, compressibility factor (Z) deviates from the normal value under ideal condition is ...... %.Correct answer is '3'. Can you explain this answer? covers all topics & solutions for Class 11 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for Direction (Q. Nos. 21)This section contains 1questions. when worked out will result in an integer from 0 to 9 (both inclusive).Q.The density of steam at 100.0°C and 1.0x 105 Pa is 0.6 kg m-3. Thus, compressibility factor (Z) deviates from the normal value under ideal condition is ...... %.Correct answer is '3'. Can you explain this answer?.
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