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Showing 99,121 - 99,138 results of 99,138 for search '(("experiment" OR (((("experimentsal" OR "experimentsal") OR "experimentellelysssal") OR (("experimentalal" OR "experimentalalal") OR "experimentsally")) OR "experience")) OR ((("experimentalalalsumsals" OR ("experimentsum" OR "experimentum")) OR ("experimentss" OR "experimentsals")) OR (((("experimentalssally" OR "experimentssally") OR "experimentallyalalsally") OR ("experimentssally" OR "experientially")) OR ("experimentsly" OR ("experiencessalsly" OR ("experimentelleally" OR "experimentselle"))))))', query time: 1.15s Refine Results
  1. 99121

    The Hammer horror series. by Williamson, Malcolm, Frankel, Benjamin, Astley, Edwin, Lutyens, Elisabeth, 1906-1983, Bernard, James, 1925-2001, Banks, Don, 1923-1980

    Universal City, CA : Universal, 2005
    Format: Video

    This item is not available through FLO. Please contact your home library for further assistance.
  2. 99122

    Encyclopedia of Islam in the United States

    Westport, Conn. : Greenwood Press, 2007
    Format: Book

    This item is not available through FLO. Please contact your home library for further assistance.
  3. 99123
  4. 99124
  5. 99125

    The water cries

    Honolulu, HI : Asia Pacific Films, 2009
    Format: Electronic Video
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  6. 99126

    Upscaling of single-and two-phase flow in reservoir engineering by Bruining, Hans

    Leiden, The Netherlands : CRC Press, 2022
    Table of Contents: “…Sheet I contains the permeabilities 2.A.5 The sheet for the well flow potential <BR>2.A.6 The sheet for Productivity/Injectivity indexes 2.A.7 The sheet for the wells 2.A.8 The sheet for flow calculations 2.B Finite element calculations 2.C Sketch of proof of the effective medium approximation formula 2.D Homogenization 3 Time dependent problems in porous media flow 3.1 Transient Pressure Equation 3.1.1 Boundary conditions 3.1.2 The averaged problem in two space dimensions 3.1.3 The problem in radial symmetry 3.1.4 Boundary conditions for radial diffusivity equation 3.1.5 Dimensional analysis for the radial pressure equation; adapted from lecture notes of Larry Lake 3.1.6 Solution of the radial diffusivity equation with the help of Laplace transformation 3.1.7 Laplace transformation 3.1.8 Self similar solution 3.1.9 The dimensional draw-down pressure <BR>3.2 Pressure build up 3.2.2 Time derivatives of pressure response 3.2.3 Practical limitations of pressure build up testing 3.3 Formulation in a bounded reservoir 3.4 Non-Darcy flow 3.A About Boundary condition at r = reD 3.A.1 Exercise, Stehfest algorithm 3.B Rock compressibility 3.B.1 Physical model 3.B.2 Mass balance in constant control volume 3.C Equations disregarding the grain velocity in Darcy's law 3.D Superposition principle 3.E Laplace inversion with the Stehfest algorithm [223] 3.F EXCEL numerical Laplace inversion programme 3.F.1 Alternative inversion techniques 4 Multi-Phase Flow 4.1 Capillary Pressure function 4.1.1 Interfacial tension and capillary rise 4.1.2 Exercise, Laplace formula 4.1.3 Exercise, Young's law 4.1.4 Application to conical tube; Relation between capillary pressure and saturation 4.1.5 Relation between the pore radius and the square root of the permeability divided by the porosity. 4.1.6 Non-dimensionalizing the capillary pressure 4.1.7 Exercise, Ratio grain diameter / pore throat diameter 4.1.8 Three phase capillary pressures 4.1.9 Experimental set up and measurements of capillary pressure 4.1.10 Cross-dip capillary equilibrium 4.1.11 Exercise, Capillary desaturation curve 4.2 Relative permeabilities 4.2.1 Exercise, Brooks-Corey rel-perms 4.2.2 LET relative permeability model 4.2.3 Estimate of the LET parameters 4.2.4 Exercise, Residual oil and Rel-perm 4.3 Theory of Buckley-Leverett 4.3.1 Exercise, Vertical upscaling relative permeability 4.4 Material balance 4.4.1 Solutions of the theory of Buckley-Leverett 4.4.2 Equation of motion (Darcy's Law) and the fractional flow function 4.4.3 Analytical solution of the equations <BR>4.4.4 Construction of the analytical solution; requirement of the entropy condition 4.4.5 Exercise, Buckley Leverett profile with EXCEL 4.4.6 Derivation of the shock condition 4.4.7 Analytical calculation of the production behavior 4.4.8 Exercise, Buckley Leverett production file 4.4.9 Exercise, Analytical Buckley Leverett production curve 4.4.10 Determination of relative permeabilities from production data and pressure measurements 4.4.11 Determination of the relative permeabilities by additional measurement of the pressure drop 4.5 Finite volume approach to obtain the finite difference equations for the Buckley Leverett problem 4.5.1 Exercise, Numerical solution of Buckley Leverett problem 4.6 Vertical equilibrium as a basis for upscaling of relative permeabilities and fractional flow functions 4.6.1 Dake's Upscaling procedure for relative permeabilities 4.6.2 Exercise, Sorting factor dependence 4.6.3 Hopmans's formulation 4.7 Physical Theory of Interface Models 4.7.1 Derivation of interface equation of motion and productions for segregated flow 4.7.2 Stationary interface (Mobility number < Gravity number +1) 4.7.3 Exercise, Interface angle calculations 4.7.4 Production behavior for stationary solution, i.e., M < G + 1 4.8 Non-stationary interface 4.8.1 The volume balance in the form of an interface equation 4.8.2 Dietz-Dupuit-approximation 4.8.3 Approximate Equilibrium Equation 4.8.4 Derivation of flow rate Qwx from Darcy's law 4.8.5 Quasi Stationary Solution of the Dietz-Dupuit Equation for M < G + 1 4.8.6 Exercise, Shock solution versus interface angle solution 4.8.7 Analytical Solutions 4.8.8 Analytical expressions for the interface as a function of position in the reservoir 4.8.9 Analytical expressions for the production behavior 4.8.10 Summary of analytical procedure for interface models 4.8.11 Exercise, Advantage of M G + 1 4.A Numerical approach for interface models 4.A.1 Exercise. …”
    Format: Electronic eBook
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  7. 99127
  8. 99128

    The global cable industry : materials, markets, products

    Weinheim, Germany : Wiley-VCH, 2021
    Format: Electronic eBook
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  9. 99129

    The golden age of television

    [United States] : Criterion Collection, 2009
    Fullscreen.
    Format: Video

    This item is not available through FLO. Please contact your home library for further assistance.
  10. 99130

    The golden age of television

    [United States] : Criterion Collection, 2009
    Fullscreen.
    Format: Video

    This item is not available through FLO. Please contact your home library for further assistance.
  11. 99131

    Virtual reality technology by Burdea, Grigore, Coiffet, Philippe

    Hoboken, New Jersey : Wiley, 2024
    Third edition.
    Table of Contents: “…6.5.1.2 Continuous Level- of- Detail Management -- 6.5.1.3 Adaptive Level- of- Detail Management Using Foveated Rendering -- 6.5.1.4 Adaptive Level- of- Detail Management Guaranteeing Frame Time -- 6.5.2 Cell Segmentation -- 6.5.2.1 Automatic Cell Segmentation -- 6.5.2.2 3D Cell Segmentation -- 6.6 Conclusions -- 6.7 Review Questions -- References -- Chapter 7 Virtual Reality Programming -- 7.1 Scene Graphs and Toolkits -- 7.1.1 Scene Graphs -- 7.1.1.1 Internal Scene Graphs -- 7.1.1.2 Distributed Scene Graphs -- 7.2 Toolkits -- 7.2.1 Java3D -- 7.2.1.1 Java 3D Model Geometry and Appearance -- 7.2.1.2 Java3D Scene Graph -- 7.2.1.3 Java3D Sensors and Behaviors -- 7.2.1.4 Java3D Networking -- 7.2.2 The Vizard Toolkit -- 7.2.2.1 Vizard Model Geometry and Appearance -- 7.2.2.2 Vizard Scene Graph -- 7.2.2.3 Vizard Sensors and Behaviors -- 7.2.2.4 Vizard Physics Engine -- 7.2.2.5 Vizard OpenHaptics Plug- in -- 7.2.2.6 Vizard Networking -- 7.2.3 The OpenHaptics Toolkit -- 7.2.3.1 OpenHaptics Integration with the Graphics Pipeline -- 7.2.3.2 OpenHaptics QuickHaptics Micro API -- 7.2.3.3 OpenHaptics Haptic Device to Screen Mapping -- 7.2.3.4 OpenHaptics Unity Plugin -- 7.3 Unity 3D Game Engine -- 7.3.1 The Game Engine -- 7.3.2 Game Production Pipeline -- 7.3.2.1 The Pre- production Pipeline Stage -- 7.3.2.2 The Production Pipeline Stage -- 7.3.2.3 The Post- production Pipeline Stage -- 7.3.3 Unity 3D Game Programming -- 7.3.3.1 Creating a New Project in Unity -- 7.3.3.2 The Unity Editor -- 7.3.3.3 Unity Game Objects -- 7.3.3.4 Physics Programming in Unity -- 7.3.3.5 Scripting in Unity -- 7.3.3.6 Artificial Intelligence in Unity Gaming -- 7.4 Conclusions -- 7.5 Review Questions -- References -- Chapter 8 Human Factors in Virtual Reality -- 8.1 Methodology and Technology -- 8.1.1 The Experimental Protocol -- 8.1.2 Institutional Review and Participant Consent.…”
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  12. 99132

    The water cries

    Honolulu, HI : Asia Pacific Films, 2009
    Format: Video

    This item is not available through FLO. Please contact your home library for further assistance.
  13. 99133
  14. 99134

    The Greenwood Library of American folktales

    Westport, Conn. : Greenwood Press, 2006
    Format: Book

    This item is not available through FLO. Please contact your home library for further assistance.
  15. 99135

    PID and predictive control of electrical drives and power supplies using MATLAB/Simulink by Wang, Liuping

    Solaris South Tower, Singapore : John Wiley & Sons, Inc., 2015
    Table of Contents: “…8.2.1 Augmented Model 269 -- 8.2.2 Design without Constraints 270 -- 8.2.3 Formulation of the Constraints 272 -- 8.2.4 On-line Solution for Constrained MPC 272 -- 8.3 Experimental Evaluation of DMPC of PMSM 274 -- 8.3.1 The MPC Parameters 274 -- 8.3.2 Constraints 275 -- 8.3.3 Response to Load Disturbances 275 -- 8.3.4 Response to a Staircase Reference 277 -- 8.3.5 Tuning of the MPC controller 278 -- 8.4 Power Converter Control Using DMPC with Experimental Validation 280 -- 8.5 Summary 281 -- 8.6 Further Reading 282 -- References 283 -- 9 Continuous-time Model Predictive Control (CMPC) of Electrical Drives and PowerConverter 285 -- 9.1 Continuous-time MPC Design 286 -- 9.1.1 Augmented Model 286 -- 9.1.2 Description of the Control Trajectories Using Laguerre Functions 287 -- 9.1.3 Continuous-time Predictive Control without Constraints 289 -- 9.1.4 Tuning of CMPC Control System Using Exponential Data Weighting and Prescribed Degree of Stability 292 -- 9.2 CMPC with Nonlinear Constraints 294 -- 9.2.1 Approximation of Nonlinear Constraint Using Four Linear Constraints 294 -- 9.2.2 Approximation of Nonlinear Constraint Using Sixteen Linear Constraints 294 -- 9.2.3 State Feedback Observer 297 -- 9.3 Simulation and Experimental Evaluation of CMPC of Induction Motor 298 -- 9.3.1 Simulation Results 298 -- 9.3.2 Experimental Results 300 -- 9.4 Continuous-time Model Predictive Control of Power Converter 301 -- 9.4.1 Use of Prescribed Degree of Stability in the Design 302 -- 9.4.2 Experimental Results for Rectification Mode 303 -- 9.4.3 Experimental Results for Regeneration Mode 303 -- 9.4.4 Experimental Results for Disturbance Rejection 304 -- 9.5 Gain Scheduled Predictive Controller 305 -- 9.5.1 The Weighting Parameters 305 -- 9.5.2 Gain Scheduled Predictive Control Law 307 -- 9.6 Experimental Results of Gain Scheduled Predictive Control of Induction Motor 309 -- 9.6.1 The First Set of Experimental Results 309 -- 9.6.2 The Second Set of Experimental Results 311 -- 9.6.3 The Third Set of Experimental Results 312.…”
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  16. 99136

    The water cries

    Honolulu, HI : Asia Pacific Films, 2009
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  17. 99137
  18. 99138

    1000 CEOs

    London [England] ; New York [N.Y.] : DK Pub., 2009
    1st American ed.
    Format: Electronic eBook
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