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  • SOLUTIONS TO THREEDIMENSIONAL THINLAYER

    2013830&ensp·&enspthe equations in a rotating cylindrical coordinate system to simulate viscous flow through turbines. Although unsteady computations are very important in turbomachinery simulation, many ofthe problems canbeviewed assteadystate problems in the rotating frame, e.g.an isolated rotor. Consequently, local time

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  • A charged rotating cylindrical shell CERN

    2009712&ensp·&enspA charged rotating cylindrical shell 2 the gravitational eld. Afterwards, in section 4, we disscuss some attributes of the solution, in particular a question of the chronology violation in the spacetime and the energy conditions. Finally in section 5 the question is addressed what is a qualitative

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  • Uniformity Control for Rotating Cylindrical Magnetrons

    2013424&ensp·&enspMagnet Array Optimization for Rotating Cylindrical Magnetrons Throughput Considerations –Flux Distribution Substrate Cylindrical Magnetron Flux Distribution Chamber / Zone Shielding Cylindrical Magnetron Flux Distribution Because the target surface is round, deposition is now "offnormal". As the distance between racetracks increases, rate

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  • Original Line® NonRotating Bimba

    2018125&ensp·&enspAll Products Actuators Pneumatic Round Line Compact NFPA ISO Guided Rodless Cylindrical Inline Variable Vacuum/Flow VDF Series Adjustable Air Amplifiers FlatII® NonRotating Square FlatII® NonRotating

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  • Rotation Moment of inertia of a rotating body

    20081020&ensp·&enspThe moment of inertia of a body rotating around an arbitrary axis is equal to the moment of inertia of a body rotating around a parallel axis through the center of mass plus the mass times the perpendicular distance between the axes h squared.

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  • Rotating Coordinate Systems IU B

    2013913&ensp·&enspRotating Coordinate Systems based on FW6,7,8 Sometimes it is useful to analyze motion in a non inertial reference frame, e.g. when the observer is moving (accelerating).

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  • Cylindrical Rotating Triboelectric Nanogenerator ACS

    2013625&ensp·&enspWe demonstrate a cylindrical rotating triboelectric nanogenerator (TENG) based on sliding electrifiion for harvesting mechanical energy from rotational motion. The rotating TENG is based on a core–shell structure that is made of distinctly different triboelectric materials with alternative

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  • Propagation of rotating parabolic cylindrical beams in

    201243&ensp·&enspI introduce a class of rotating parabolic cylindrical beams in nonlocal nonlinear media. The rotating speed keeps fixed in the case of strong nonlocality and

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  • Abaqus Users Rotating a cylindrical rod

    20181125&ensp·&enspRe: Rotating a cylindrical rod In continuation to previous message, I should tell you that I am using 'Static, General' step for which it shows "Time period: NOT APPLICABLE". Hence whether I run the step for 1 sec or 10 sec, the cylinder is rotating only for 4550 degrees.

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  • filled horizontal rotating cylinder Phys. Rev.

    2018116&ensp·&enspWe report on the pattern formation in a horizontal rotating cylinder fully filled with bidispersed suspension composed of nonBrownian settling and floating

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  • [Solved] A nonrotating cylindrical disk of moment of

    A uniform disk turns at 2.4 rev/s around a frictionless spindle. A nonrotating rod, of the same mass as the disk and length equal to the disk's diameter is dropped onto the freely spinning disk, Fig. 849.

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  • Analytical solution for free vibrations of rotating

    20161123&ensp·&enspIn this paper free vibrations of rotating cylindrical shells with both ends free are studied. The model used also allows for considering a flexible foundation supporting the shell in the sense of a radial and circumferential distributed stiffness. Furthermore,

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  • Chapter VII. Rotating Coordinate Systems

    2000126&ensp·&enspChapter VII. Rotating Coordinate Systems 7.1. Frames of References In order to really look at particle dynamics in the context of the atmosphere, we must now deal with the fact that we live and observe the weather in a noninertial reference frame. Specially, we will look at a rotating coordinate system and introduce the Coriolis

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  • A charged rotating cylindrical shell arXiv

    20161123&ensp·&enspA charged rotating cylindrical shell 2 the gravitational field. Afterwards, in section 4, we disscuss some attributes of the solution, in particular a question of the chronology violation in the spacetime and the energy conditions. Finally in section 5 the question is addressed what is a qualitative

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  • Design parameters for rotating cylindrical filtration

    2013910&ensp·&enspRotating cylindrical filtration offers a means of dynamic filtration that minimizes the plugging of the filter pores with particles and the buildup of a cake layer. The essence of a rotating filter is a porous inner cylinder rotating concentrically within an outer nonporous cylinder. The suspension enters the annular gap at one end of the

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  • Rotating reference frame Wikipedia

    20181118&ensp·&enspA rotating frame of reference is a special case of a noninertial reference frame that is rotating relative to an inertial reference frame. An everyday example of a rotating reference frame is the surface of the Earth .

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  • (Solved) A nonrotating cylindrical disk of moment of

    A nonrotating cylindrical disk of moment of inertia l is 2 answers below » A nonrotating cylindrical disk of moment of inertia l is dropped onto an identical disk rotating at angular speed w.

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  • (Solved) A nonrotating cylindrical disk of moment of

    A nonrotating cylindrical disk of moment of inertia l is 2 answers below » A nonrotating cylindrical disk of moment of inertia l is dropped onto an identical disk rotating at angular speed w.

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  • Gravitational collapse and fragmentation of isothermal

    The results of calculations for finite elongated clouds cannot be extended to an asymptotic limit allowing comparison with analytical work on infinite cylinders. The two subcondensations that form in the case of elongated cylindrical clouds may be identified as an 'end effect'.

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  • Simulation of cylindrical Couette flow

    2017720&ensp·&enspthe viscous, three dimensional flow between two differentially rotating cylinders (cylindrical Couette flow). In this paper we describe the methods that we have used to apply efficiently pseudospectral techniques to a complied (i.e. non

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  • Angularresolved energy flux measurements of a dc and

    A rotating cylindrical magnetron equipped with a titanium target was sputtered in dc and in HIPIMS mode, both in metallic and in the oxide regime. For all sputter modes, the same process conditions and the same average sputtering power of 300 W were used.

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  • Angularresolved energy flux measurements of a dc and

    201131&ensp·&enspA rotating cylindrical magnetron equipped with a titanium target was sputtered in dc and in HIPIMS mode, both in metallic and in the oxide regime. For all sputter modes, the same process conditions and the same average sputtering power of 300 W were used.

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  • Rotatingsurfacedriven nonNewtonian flow in a

    201114&ensp·&enspRotatingsurfacedriven nonNewtonian flow in a cylindrical enclosure KoreaAustralia Rheology Journal December 2010 Vol. 22, No. 4267 (8) (9) (10) Here J is the Jacobian matrix, Mk is the diagonal scaling matrix and s(k) is the linear step solution in the kth step and η is the inexact Newton parameter. For the solution of this system, Inexact

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  • US5171411A Rotating cylindrical magnetron structure with

    It is also an object of the present invention to provide an improved rotating cylindrical magnetron structure wherein the target material is selfsupporting. It is a further object of the present invention to provide a rotating cylindrical magnetron structure especially adapted for sputtering dielectric and metal films.

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  • Lift of a Rotating Cylinder Glenn Research Center

    201845&ensp·&enspLet's investigate the lift of a rotating cylinder by using a Java simulator. Due to IT security concerns, many users are currently experiencing problems running NASA Glenn eduional applets. The applets are slowly being updated, but it is a lengthy process.

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  • Fluid Motion Between Rotating Concentric Cylinders

    2015115&ensp·&enspcylindrical surfaces. When the outer cylinder is rotating and the inner cylinder is fixed, then the BCs are: B.C. 1 at r = κR, vθ = 0 . B.C. 2 at r = R, vθ = Ω oR . Solving the θ component of the equation of motion given above using these BCs yields . Another operating mode occurs when the outer at Ω i. The BCs for this case then become

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  • The nonlinear vibrations of rotating functionally graded

    2017827&ensp·&enspThe nonlinear vibrations of rotating functionally graded cylindrical shells 1097 Fig. 1 Coordinate system of the rotating functionally graded cylindrical shell L h θ v z w x u Outer Surface Inner Surface z w direction, and rotations (ϕx,ϕθ) of the normals to the midsurface along x and θ axes, as follows u1 (x,θ,z,t) = u(x,θ,t)+zϕx(x

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  • Nonrotating antenna International Telephone and

    1977322&ensp·&enspIt is an object of the present invention to provide an electronically scanned nonrotating Tacan antenna having a cylindrical form in which the 135 Hz Tacan modulation component is produced by means of a stepwise rotation of binary current distribution around the cylindrical radiating array.

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  • Transparent conducting Al:ZnO thin films on

    2018524&ensp·&enspXMOL,Journal of Alloys and Compounds——Transparent conducting Al:ZnO thin films on large area by efficient cylindrical rotating DC

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  • Convection in a rotating cylindrical annulus. Part 2

    2006421&ensp·&enspConvection in a rotating cylindrical annulus. Part 2. Transitions to asymmetric and vacillating flow Volume 174 A. C. Or, F. H. Busse. Of special interest is the regime of nonsymmetric convection, which exhibits decreasing Nusselt number with increasing Rayleigh number, and the indiion of a period doubling sequence associated with

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  • Acoustic radiation of rotating and nonrotating finite

    Circular cylindrical shells are of great importance in the field of mechanical engineering as they have a very wide range of appliions. A short survey in the literature shows there are many published researches concerning dynamic behavior of rotating and nonrotating cylindrical shells and their interaction with surrounding media.

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  • Vibration Analysis of Thin Rotating Cylindrical Shell

    2012711&ensp·&enspROTATING CYLINDRICAL SHELL 4.1 Comparison of frequency parameter for nonrotating two layered cross ply [00/900] circular cylindrical shell with simply supported boundary conditionat both edges (h/R =0.01) 36 4.2 Comparison of lowest Nondimensional Frequency Parameter for a [0°/90°/0°] simply Supported non rotating Laminated

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  • Rotating cylindrical shell source for Lewis

    2011915&ensp·&enspRotating cylindrical shell source for Lewis spacetime_。 Rotating thinshelllike sources for the stationary cylindrically symmetric vacuum solutions (Lewis) are

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  • Nonlinear vibrations of rotating thin circular cylindrical

    20111117&ensp·&enspNonlinear vibrations of thin circular cylindrical shells are investigated in this paper. Based on Love thin shell theory, the governing partial differential equations of motion for the rotating circular cylindrical shell are formulated using Hamilton principle. Taking into account the clampedfree

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  • Drag and Lift Forces between a Rotating Conductive

    2017127&ensp·&enspof a uniform magnetic eld with a rapidly rotating solid sphere10, where the symmetry of the uniform magnetic eld prevents a lift force from occurring. This paper, describing the interaction of a nonuniform magnetic eld, such as that generated by a cylindrical magnet or current loop, with a solid sphere rotating at any speed, does yield lift

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  • Appliion of the Rotating Cylinder Hull Cell To the

    20181119&ensp·&enspThe Rotating Cylinder Hull (RCH) cell consists of a rotating cylindrical hode having nonuniform primary current distribution. It permits Hullcelltype experiments under uniform and wellcontrolled masstransport conditions. This study presents practi

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  • Solved: A Nonrotating Cylindrical Disk Of Moment Of Inerti

    A nonrotating cylindrical disk of moment of inertia I is dropped onto an identical disk rotating at angular speed w. Assuming no external torques, what is the final common angular speed of the two disks?

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  • Hydrodynamic structure of the boundary layers in a

    2018222&ensp·&enspA flow model is formulated to investigate the hydrodynamic structure of the boundary layers of incompressible fluid in a rotating cylindrical cavity with steady radial inflow. The model considers mass and momentum transfer coupled between boundary layers and an inviscid core region.

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