Did you know why you face difficulty in breathing while climbing high-altitude mountains?
The reason is that pressure drops as we go up, here question comes in your mind that why pressure drops on climbing high altitude region, not any plain region? So, Bernoulli's Equation give the answer to this why question. Moreover, there are many more hydraulic devices are works on the theory of Bernoulli's principle and Pascal's Law. Fluid Kinematics with Bernoulli's Equation guided to deeper understanding of Fluid Kinematics. Fluid Kinematics is the study of Fluid Mechanics at microscopic level. For example, the pressure of air, the speed of ocean waves are few commonly known elements of Fluid Kinematics which are basis for happening of many natural activities. Fluid Mechanics has become an important part of the latest interdisciplinary subject related to technical and non-technical fields.
Next, Let's discuss the Bernoulli's Equation which is a very important equation in Fluid Mechanics and its applications are discussed in this book in detail. Bernoulli's Equation is the mathematical expression of the combination of Pressure energy, Potential energy, and Kinetic energy. In this view, this equation is also known as the Balance of Mechanical Energy. The specialty of this equation is its applicability in different forms of flows such as incompressible flow and compressible flow in isotropic conditions. In the study of the microscopic view of any fluid element of incompressible flow then Bernoulli's equation provide a mathematical expression which states that pressure and speed of the fluid are inversely proportional. Similarly, a few examples are mentioned whose working principle are based on the Bernoulli's Equation.
Precisely, this book will provide you all basic theory which needed for a thorough understanding of the "Fluid Kinematics" subject. Numerous illustrations and solved examples are useful to visualise the real-life situations more vividly. This book has been written in simple language so that readers adopt a deeper understanding of Fluid Kinematics.
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