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Video Description: Discover how fluids respond under pressure! 💡 In this video, we’ll explore Bulk Modulus and Fluid Compressibility — key properties that define how resistant a fluid is to compression. Learn how these concepts connect to acoustic velocity, Mach number, and compressible flow — with real-world examples and simple explanations that every civil and mechanical engineer should know. Hashtags: #fluidmechanics #bulkmodulus #compressibility #engineeringconcepts #civilengineering #mechanicalengineering #hydraulics #thermodynamics #compressor #engineeringeducation #engineeringstudents Remarks: “psi” stands for= 👉 Pounds per Square Inch (It’s a unit of pressure that measures how much force (in pounds) is applied on one square inch of area.) 📚 Sources: 1.“Bulk Modulus of Common Materials – Table.” Matmake. 2.“Bulk Modulus.” Wikipedia, The Free Encyclopedia. 3.“Compressibility.” Wikipedia, The Free Encyclopedia. 4.“Experimental Measurements of Bulk Modulus for Two Types of Hydraulic Oil at Pressures up to 140 MPa and Temperatures up to 180 °C.” Qucosa – TU Dresden. 5.“Fluid Bulk Modulus: A Literature Survey.” River Publishers. 6.“Hydraulic Oil Compressibility: What Is It and What Are the Risks?” Q8Oils Technical Article. 7.“The Compressibility of Fluids: Media for Hydraulic Pressure Calibration.” Mensor Engineering Blog. 8.“Why Is Water So Incompressible Compared to Air?” r/askscience, Reddit Discussion Thread. 9.“In the Isothermal Condition, the Isothermal Bulk Modulus of…” Testbook – Engineering Solutions Platform. 10.“IX. Compressible Flow.” Fluid Mechanics Study Reference.