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Showing 1 to 15 of 22 results Save | Export
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Agliolo Gallitto, Aurelio; Zingales, Roberto; Battaglia, Onofrio Rosario; Fazio, Claudio – Physics Education, 2021
Student understanding of the laws that describe the flow of a fluid is often hampered by a defective knowledge of basic classical mechanics (kinematics, statics, dynamics, and conservation laws) and by wrong common-sense ideas about quantities related to fluids, such as velocity and pressure. A pedagogical discussion about the Venturi effect,…
Descriptors: Mechanics (Physics), Scientific Principles, Scientific Concepts, Science Equipment
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Liuta, Anastasiia V.; Perig, Alexander V.; Afanasieva, Marharyta A.; Skyrtach, Violetta M. – Industry and Higher Education, 2019
This article reports research into the didactic processes of a creative gamified learning process for hydraulics in an undergraduate technical university curriculum, enhanced by industry collaboration. It is based on the use of educational theories of didactic transposition, competency building, learning gamification and emotional intelligence. It…
Descriptors: Educational Games, Learning Strategies, Learning Processes, Hydraulics
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Guseinova, Elena E. – European Journal of Contemporary Education, 2018
The urgency of the given problem is caused by the necessity to develop an innovative education system capable of producing highly qualified specialists with a wide range of social and professional activities and broad-based abilities ready for individual operating innovative activities. The article is intended to searching for the ways of…
Descriptors: Competency Based Education, Hydraulics, Mechanics (Physics), Student Projects
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Dell, Timothy W. – Tech Directions, 2012
The two-stage hydraulic pump is commonly used in many high school and college courses to demonstrate hydraulic systems. Unfortunately, many textbooks do not provide a good explanation of how the technology works. Another challenge that instructors run into with teaching hydraulic systems is the cost of procuring an expensive real-world machine…
Descriptors: Hydraulics, Science Activities, Scientific Principles, Teaching Methods
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Bohren, Craig F. – Physics Teacher, 2011
An Internet search for why objects, especially humans, cool more rapidly in water than in air, both at the same temperature, and by how much, yields off-the-cuff answers unsupported by experiment or analysis. To answer these questions in depth requires a smattering of engineering heat transfer, including radiative transfer, and the different…
Descriptors: Heat, Thermodynamics, Spectroscopy, Hydraulics
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Denny, Mark – European Journal of Physics, 2012
Trees transport water from roots to crown--a height that can exceed 100 m. The physics of tree hydraulics can be conveyed with simple fluid dynamics based upon the Hagen-Poiseuille equation and Murray's law. Here the conduit structure is modelled as conical pipes and as branching pipes. The force required to lift sap is generated mostly by…
Descriptors: Mechanics (Physics), Hydraulics, Science Instruction, College Science
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Rogers, Stephen – Technology and Engineering Teacher, 2013
In a middle school classroom, the science of fluidics was introduced using the rig. Afterwards the students were able to make informed choices about using air or water as the medium inside their syringes. The three kits available through the NFPA were explored, reverse-engineered, discussed, and analyzed as a lead-in to the in-house culminating…
Descriptors: Portfolios (Background Materials), STEM Education, Middle Schools, Design
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Moore, Pam – Tech Directions, 2008
Fluid power technicians, sometimes called hydraulic and pneumatic technicians, work with equipment that utilizes the pressure of a liquid or gas in a closed container to transmit, multiply, or control power. Working under the supervision of an engineer or engineering staff, they assemble, install, maintain, and test fluid power equipment.…
Descriptors: Hydraulics, Job Skills, Mechanics (Physics), Skilled Workers
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Thompson, Frank; Elamari, Matouk – Physics Education, 2008
Measurement of the level of a liquid is needed in many hydrodynamic situations. In the present article, this has been achieved with a conductivity sensor for the specific case of water levels. The use of this system is illustrated by the automation of a gasometer in which the gas is collected in an inverted measuring cylinder resting in a water…
Descriptors: Physics, Science Experiments, Science Process Skills, Measurement
Parker, Richard Green – A.S. Barnes & Company, 1852
This textbook presents elementary principles of mechanics, hydrostatics, hydraulics, pneumatics, acoustics, pyronomics [sic], optics, electricity, galvanism, magnetism, electromagnetism, magneto-electricity, and astronomy. Among topics covered are descriptions and illustrations of McCormick's reaper, Sharps' Rifle, printing presses, House's…
Descriptors: Science Education, Mechanics (Physics), Hydraulics, Acoustics
Technical Education Research Center, Waco, TX. – 1979
This concept module on force transformers is one of thirteen modules that provide a flexible, laboratory-based physics instructional package designed to meet the specialized needs of students in two-year, postsecondary technical schools. Each of the thirteen concept modules discusses a single physics concept and how it is applied to each energy…
Descriptors: Electricity, Energy, Force, Hydraulics
Walker, Jearl – Scientific American, 1981
Examines hydraulic jumps and suggests several simple experiments which can be carried out with limited equipment. (DS)
Descriptors: College Science, Fluid Mechanics, Higher Education, Hydraulics
Bureau of Naval Personnel, Washington, DC. – 1965
This document is a reference for the enlisted men in the Navy whose duties require knowledge of the fundamentals of machinery. Beginning with the simplest of machines--the lever--the book proceeds with the discussion of block and tackle, wheel and axle, inclined plane, screw and gears. It explains the concepts of work and power, and differentiates…
Descriptors: Basic Skills, Equipment, Fluid Mechanics, Force
Sworder, Steven C. – 1989
This paper presents an application of integration to the field of hydraulics. An integral relation for the time required to drop the fluid contained in a cylindrical tank from one level to another using a hole in the tank wall is derived. Procedures for constructing the experimental equipment and procedures for determining the coefficient of…
Descriptors: Calculus, College Mathematics, Higher Education, Hydraulics
Reihman, Thomas C. – 1973
This learning module is concerned with the temperature field, the heat transfer rates, and the coolant pressure drop in typical high temperature gas-cooled reactor (HTGR) fuel assemblies. As in all of the modules of this series, emphasis is placed on developing the theory and demonstrating its use with a simplified model. The heart of the module…
Descriptors: College Science, Computer Programs, Engineering, Engineering Education
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