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Electricity Notes (Unit 8 Lesson 1)
Electricity Notes (Unit 8 Lesson 1)

... - any material that allows electric charges to move through it - Examples: metals, your body, electric wires, water Insulator - materials that resist the flow of electrical charges - Examples: wood, glass, rubber, plastic Ways Electricity is transferred Friction - occurs when two objects are rubbed ...
Project 1: Computational Modeling of Flow and Surfactant Transport
Project 1: Computational Modeling of Flow and Surfactant Transport

... University. In this project, we will explore mechanisms of deforming droplets using an external electric field. It is well known that an electric field can induce both normal and tangential forces on a fluid interface and thus induces deformation of droplet into a prolate or oblate shape depending o ...
MECHANISM CLUSTER First Year B.Eng/M.Eng 2007 Solutions to
MECHANISM CLUSTER First Year B.Eng/M.Eng 2007 Solutions to

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Voltage, Current, Resistance, Capacitance and Inductance

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... transfer and fluid flow problems. The system equation to be solved can be written in matrix form as: [K] {D} = {q} Where [K] is traditional known as the ‘stiffness’ or ‘coefficient’ matrix (conductance matrix for heat transfer, flow-resistance matrix for fluid flow), {D} is the displacement (or temp ...
HW4P1 - Ewp.rpi.edu
HW4P1 - Ewp.rpi.edu

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... which acts as a mirror. This optical system, which was developed by Hughes Aircraft, gives a much wider field of view than that on current Huds, which use a combination of lenses and mirrors. The instantaneous field of view of this Hud is 33° by 22°. Smiths claims that its DHUD is the first one for ...
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Rheology

Rheology (/riːˈɒlədʒi/; from Greek ῥέω rhéō, ""flow"" and -λoγία, -logia, ""study of"") is the study of the flow of matter, primarily in a liquid state, but also as 'soft solids' or solids under conditions in which they respond with plastic flow rather than deforming elastically in response to an applied force.It applies to substances which have a complex microstructure, such as muds, sludges, suspensions, polymers and other glass formers (e.g., silicates), as well as many foods and additives, bodily fluids (e.g., blood) and other biological materials or other materials which belong to the class of soft matter.Newtonian fluids can be characterized by a single coefficient of viscosity for a specific temperature. Although this viscosity will change with temperature, it does not change with the strain rate. Only a small group of fluids exhibit such constant viscosity. The large class of fluids whose viscosity changes with the strain rate (the relative flow velocity) are called non-Newtonian fluids.Rheology generally accounts for the behavior of non-Newtonian fluids, by characterizing the minimum number of functions that are needed to relate stresses with rate of change of strain or strain rates. For example, ketchup can have its viscosity reduced by shaking (or other forms of mechanical agitation, where the relative movement of different layers in the material actually causes the reduction in viscosity) but water cannot. Ketchup is a shear thinning material, like yoghurt and emulsion paint (US terminology latex paint or acrylic paint), exhibiting thixotropy, where an increase in relative flow velocity will cause a reduction in viscosity, for example, by stirring. Some other non-Newtonian materials show the opposite behavior: viscosity going up with relative deformation, which are called shear thickening or dilatant materials. Since Sir Isaac Newton originated the concept of viscosity, the study of liquids with strain rate dependent viscosity is also often called Non-Newtonian fluid mechanics.The term rheology was coined by Eugene C. Bingham, a professor at Lafayette College, in 1920, from a suggestion by a colleague, Markus Reiner. The term was inspired by the aphorism of Simplicius (often attributed to Heraclitus), panta rhei, ""everything flows""The experimental characterization of a material's rheological behaviour is known as rheometry, although the term rheology is frequently used synonymously with rheometry, particularly by experimentalists. Theoretical aspects of rheology are the relation of the flow/deformation behaviour of material and its internal structure (e.g., the orientation and elongation of polymer molecules), and the flow/deformation behaviour of materials that cannot be described by classical fluid mechanics or elasticity.
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