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This textbook offers a unique introduction to hydraulics and fluid
mechanics through more than 100 exercises, with guided solutions,
which students will find valuable in preparation for their
preliminary or qualifying exams and for testing their grasp of the
subject. In some exercises two different solution methods are
proposed, to highlight the fact that the level of complexity of the
calculations is often linked to the choice of method, though in
most cases only the simplest method is presented. The exercises are
organized by subject, covering forces on planes and curved
surfaces; floating bodies; exercises that require the application
of linear and angular momentum balancing in inertial and
non-inertial references; pipeline systems, with particular
applications to industrial plants; hydraulic systems with machines
(pumps and turbines); transient phenomena in pipelines; and uniform
and gradually varied flows in open channels. The book also features
appendices that contain selected data and formulas of practical
interest. Instructors of courses that address one or all of the
above topics will find the exercises of great help in preparing
their courses, while researchers will find the book useful as an
accessible summary of the topics covered.
This textbook offers a unique introduction to hydraulics and fluid
mechanics through more than 100 exercises, with guided solutions,
which students will find valuable in preparation for their
preliminary or qualifying exams and for testing their grasp of the
subject. In some exercises two different solution methods are
proposed, to highlight the fact that the level of complexity of the
calculations is often linked to the choice of method, though in
most cases only the simplest method is presented. The exercises are
organized by subject, covering forces on planes and curved
surfaces; floating bodies; exercises that require the application
of linear and angular momentum balancing in inertial and
non-inertial references; pipeline systems, with particular
applications to industrial plants; hydraulic systems with machines
(pumps and turbines); transient phenomena in pipelines; and uniform
and gradually varied flows in open channels. The book also features
appendices that contain selected data and formulas of practical
interest. Instructors of courses that address one or all of the
above topics will find the exercises of great help in preparing
their courses, while researchers will find the book useful as an
accessible summary of the topics covered.
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