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Solution
Q.10 Correct
Q.10 In-correct
Q.10 Unattempt

Consider an isentropic flow of air (ratio of specific heats = 1.4) through a duct as shown in the figure.

The variations in the flow across the cross-section are negligible. The flow conditions at Location 1 are given as follows:

𝑃1 = 100 kPa, 𝜌1 = 1.2 kg/m3 , 𝑢1= 400 m/s

The duct cross-sectional area at Location 2 is given by A2 = 2A1, where A1 denotes the duct cross-sectional area at Location 1. Which one of the given statements about the velocity 𝑢2 and pressure 𝑃2 at Location 2 is TRUE?

जैसा कि चित्र में दिखाया गया है, एक वाहिनी के माध्यम से वायु के समतापीय प्रवाह (विशिष्ट ऊष्मा का अनुपात = 1.4) पर विचार करें।

अनुप्रस्थ काट में प्रवाह में भिन्नता नगण्य है। स्थिति 1 पर प्रवाह की स्थितियाँ इस प्रकार दी गई हैं:

𝑃1 = 100 kPa, 𝜌1 = 1.2 kg/m3 , 𝑢1= 400 m/s

स्थिति2 पर वाहिनी काअनुप्रस्थ काटक्षेत्रफलA2 = 2A1 द्वारा दिया गया है, जहां A1 स्थिति 1 पर वाहिनी का अनुप्रस्थ काट क्षेत्रफल को दर्शाता है। स्थिति 2 पर वेग 𝑢2 और दाब𝑃2 के बारे में दिए गए कथनों में से कौन सा सत्य है?

Q.32 Correct
Q.32 In-correct
Q.32 Unattempt

Consider a fully adiabatic piston-cylinder arrangement as shown in the figure. The piston is massless and cross-sectional area of the cylinder is 𝐴. The fluid inside the cylinder is air (considered as a perfect gas), with γ being the ratio of the specific heat at constant pressure to the specific heat at constant volume for air. The piston is initially located at a position 𝐿1. The initial pressure of the air inside the cylinder is 𝑃1 ≫ 𝑃0, where 𝑃0 is the atmospheric pressure. The stop S1 is instantaneously removed and the piston moves to the position 𝐿2, where the equilibrium pressure of air inside the cylinder is 𝑃2 ≫ 𝑃0.

What is the work done by the piston on the atmosphere during this process?

Consider a fully adiabatic piston-cylinder arrangement as shown in the figure. The piston is massless and cross-sectional area of the cylinder is 𝐴. The fluid inside the cylinder is air (considered as a perfect gas), with γ being the ratio of the specific heat at constant pressure to the specific heat at constant volume for air. The piston is initially located at a position 𝐿1. The initial pressure of the air inside the cylinder is 𝑃1 ≫ 𝑃0, where 𝑃0 is the atmospheric pressure. The stop S1 is instantaneously removed and the piston moves to the position 𝐿2, where the equilibrium pressure of air inside the cylinder is 𝑃2 ≫ 𝑃0.

What is the work done by the piston on the atmosphere during this process?

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