Books on the topic 'Structural solution'

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1

French, Samuel E. Instructor's solution manual to accompany Fundamentals of structural analysis. Minneapolis/St. Paul: West Pub. Co, 1995.

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2

Kurdo, R. The physical and structural properties of solution-spun tencelfibres. Manchester: UMIST, 1994.

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3

Haldane, Samuel Arthur Thomas. X-ray structural studies of nitrogenase proteins in solution. Leicester: De Montfort University, 1997.

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4

F, Doyle James. Modern experimental stress analysis: The solution of partially specified problems. Hoboken, NJ: Wiley, 2004.

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5

United States. National Aeronautics and Space Administration., ed. Application of finite-element-based solution technologies for viscoplastic structural analyses. [Washington, DC]: National Aeronautics and Space Administration, 1990.

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6

United States. National Aeronautics and Space Administration., ed. Application of finite-element-based solution technologies for viscoplastic structural analyses. [Washington, DC]: National Aeronautics and Space Administration, 1990.

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7

L, Lawson Charles, and Dryden Flight Research Facility, eds. Implementation of a block Lanczos algorithm for eigenproblem solution of gyroscopic systems. Edwards, Calif: National Aeronautics and Space Administration, Ames Research Center, Dryden Flight Research Facility, 1987.

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8

Frankel, Jeffrey A. A solution to fiscal procyclicality: The structural budget institutions pioneered by Chile. Cambridge, MA: National Bureau of Economic Research, 2011.

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9

Manolis, Papadrakakis, ed. Parallel solution methods in computational mathematics. Chichester: John Wiley & Sons, 1997.

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10

Manolis, Papadrakakis, ed. Solving large-scale problems in mechanics: The development and application of computational solution methods. Chichester, West Sussex, England: Wiley, 1993.

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11

Jin-Chern, Chiou, Downer Janice Diane, and United States. National Aeronautics and Space Administration., eds. Staggered solution procedures for multibody dynamics simulation. Boulder, Colo: Center for Space Structures and Controls, College of Engineering, University of Colorado, 1990.

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12

C, Chiou J., Downer J. D, and United States. National Aeronautics and Space Administration., eds. Staggered solution procedures for multibody dynamics simulation. Boulder, Colo: Center for Space Structures and Controls, College of Engineering, University of Colorado, 1990.

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13

Gossis, Kosmas. Using interior point algorithms for the solution of linear programs with special structural features. Birmingham: Aston University. Department of Computer Science and Applied Mathematics, 1995.

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14

Kinigstein, Eli Diego. Structural and Optical Characterization of Solution Processed Lead Iodide Ruddlesden-Popper Perovskite Thin Films. [New York, N.Y.?]: [publisher not identified], 2018.

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15

The future of hedge fund investing: A regulatory and structural solution for a fallen industry. Hoboken, N.J: Wiley, 2009.

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16

L, Overman Andrea, and United States. National Aeronautics and Space Administration. Scientific and Technical Information Division., eds. The solution of linear systems of equations with a structural analysis code on the NAS CRAY-2. [Washington, DC]: National Aeronautics and Space Administration, Scientific and Technical Information Division, 1988.

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17

Byrne, Daragh. Leaving school early, the difficult solution: An analysis of the structural and motivational factors influencing educational decision making. Dublin: University College Dublin, Graduate School of Business, 1998.

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18

D, Rogers Robin, Brennecke Joan F. 1962-, Seddon Kenneth R. 1950-, and American Chemical Society. Division of Industrial and Engineering Chemistry, eds. Ionic liquids IV: Not just solvents anymore. Washington, D.C: American Chemical Society, 2007.

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19

D, Rogers Robin, Seddon Kenneth R. 1950-, American Chemical Society. Division of Industrial and Engineering Chemistry, American Chemical Society. Division of Environmental Chemistry, and American Chemical Society. Division of Petroleum Chemistry, eds. Ionic liquids III: Fundamentals, progress, challenges, and opportunities. Washington, DC: American Chemical Society, 2005.

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20

Sarwar, Shamsa. The structural nature of dihalodiorgano group 16 compounds, in solution and in the solid state and their subsequent reaction with metal powders. Manchester: UMIST, 1997.

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21

K, Kawasaki, Lindman Björn 1942-, Okabayashi H, Nagoya Kōgyō Daigaku, and International Symposium on Colloid and Polymer Science (1996 : Nagoya Institute of Technology), eds. Formation and dynamics of self-organized structures in surfactants and polymer solutions. Darmstadt: Steinkopff, 1997.

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22

Takserman-Krozer, Rachel. Phenomenological and structural rheology. [S.l: s.n., 1992.

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23

Stormark, Olle. Lie's structural approach to PDE systems. New York: Cambridge University Press, 2000.

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24

Laible, Jeffrey P. Solutions manual for 'Structural analysis'. New York: Holt, Rinehart and Winston, 1985.

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25

Structural engineer registration: Problems and solutions. San Jose, Calif: Engineering Press, 1992.

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26

Tartaglione, Louis C. Solutions manual to accompany structural analysis. New York: McGraw Hill, 1991.

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27

Borri, Claudio, and Claudio Mannini, eds. Aeroelastic Phenomena and Pedestrian-Structure Dynamic Interaction on Non-Conventional Bridges and Footbridges. Florence: Firenze University Press, 2010. http://dx.doi.org/10.36253/978-88-6453-202-8.

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Fluid-structure and pedestrian-structure interaction phenomena are extremely important for non-conventional bridges. The results presented in this volume concern: simplified formulas for flutter assessment; innovative structural solutions to increase the aeroelastic stability of long-span bridges; numerical simulations of the flow around a benchmark rectangular cylinder; examples of designs of large structures assisted by wind-tunnel tests; analytical, computational and experimental investigation of the synchronisation mechanisms between pedestrians and footbridge structures. The present book is addressed to a wide audience including professionals, doctoral students and researchers, aiming to increase their know-how in the field of wind engineering, bluff-body aerodynamics and bridge dynamics.
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28

G, Latouche, and Meini B, eds. Numerical methods for structured Markov chains. Oxford: Oxford University Press, 2005.

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29

Alan, Williams. Structural engineering: PE license review problems & solutions. Edited by Fanella David Anthony and Williams Alan 1930-. 7th ed. La Crosse, WI: Kaplan Engineering Education, 2011.

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30

Alan, Williams. Structural engineering: PE license review : problems & solutions. Edited by Fanella David Anthony. 8th ed. La Crosse, WI: Kaplan Engineering Education, 2011.

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31

Alan, Williams. Structural engineering: PE license review : problems & solutions. Edited by Fanella David Anthony. 8th ed. La Crosse, WI: Kaplan Engineering Education, 2011.

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32

M, Wang C., Wang C. Y. 1939-, and Reddy J. N. 1945-, eds. Exact solutions for buckling of structural members. Boca Raton, FL: CRC Press, 2005.

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33

Bakhoum, Mourad M., and Juan A. Sobrino, eds. Case Studies of Rehabilitation, Repair, Retrofitting, and Strengthening of Structures. Zurich, Switzerland: International Association for Bridge and Structural Engineering (IABSE), 2010. http://dx.doi.org/10.2749/sed012.

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<p>This document provides case studies of structural rehabilita-tion, repair, retrofitting, strengthening, and upgrading of structures, which might be encompassed – in short – by the convenient umbrella terms “Conservation / Upgrading of Existing Structures”. The selected studies presented in this SED cover a variety of structural types from different countries.</p> <p>Strengthening and rehabilitation of structures is usually a challenge because of uncertainties associated with old struc-tures and difficulties due to restrictions on the geometry and materials used, as well as other structural or functional con-straints. When repairing an existing structure the engineers involved have plenty of possibilities, lots of constraints, and in some cases there are no applicable codes. Strengthening and rehabilitating is sometimes a complex and exciting work; an art.</p> <p>The book is a summary of practices to help structural engineers. The reader of this book will discover different approaches to put forward strengthening or rehabilitation projects. Even identical technical problems could have very different efficient solutions, as discussed in the papers, considering structural, environmental, economic factors, as well as contractor and designer experience, materials, etc.</p>
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34

Structural engineer license review: Problems and solutions : for civil and structural engineers. 3rd ed. Austin, Tex: Engineering Press, 2000.

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35

1954-, Aït-Kaci Hassan, Nivat M, and Colloquium on Resolution of Equations in Algebraic Structures (1987 : Lakeway, Texas), eds. Resolution of equations in algebraic structures. Boston: Academic Press, 1989.

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36

Fleming, John F. Solutions manual toaccompany Computer analysis of structural systems. London: McGraw-Hill, 1989.

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37

Rodellar, José, Diego Alexander Tibaduiza Burgos, and Luis Eduardo Mujica. Emerging design solutions in structural health monitoring systems. Hershey, PA: Engineering Science Reference, 2015.

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38

Cheng, H. N. Structural Studies of Polymers by Solution NMR. Rapra Technology, 2001.

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39

W. F. Chen and D. J. Han. Solution Manual to Plasticity for Structural Engineers. Blurb, 2012.

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40

Crisfield, M. A. Finite Elements and Solution Procedures for Structural Analysis. Pineridge Press, 1986.

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41

Naumenko, Konstantin, and Holm Altenbach. Modeling High Temperature Materials Behavior for Structural Analysis: Part II. Solution Procedures and Structural Analysis Examples. Springer, 2020.

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42

Naumenko, Konstantin, and Holm Altenbach. Modeling High Temperature Materials Behavior for Structural Analysis: Part II. Solution Procedures and Structural Analysis Examples. Springer, 2019.

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43

Song, Hongjiang. Structural VLSI Analog Circuit Design - Principles, Problem Sets and Solution Hints. Lulu Press, Inc., 2015.

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44

Schmidt, Jan Henrik. An Efficient Solution Procedure for Elastohydrodynamic Contact Problems Considering Structural Dynamics. Saint Philip Street Press, 2020.

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45

Wetzel, Ronald, and Rakesh Mishra. Structural Biology. Oxford University Press, 2014. http://dx.doi.org/10.1093/med/9780199929146.003.0012.

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The 3,144–amino acid huntingtin protein (HTT) folds in water into a structure consisting of compact, organized domains interspersed with intrinsically disordered protein (IDP) elements. The IDPs function as sites of post-translational modifications and proteolysis as well as in targeting, binding, and aggregation. Although the dominant structural motif of HTT is the α‎-helix–rich HEAT repeat, the expanded polyglutamine (polyQ) toxicity responsible for Huntington’s disease is most likely played out within intrinsically disordered HTT exon 1–like fragments consisting of the 16– to 17–amino acid N-terminal HTTNT segment, the polyQ segment, and a proline-rich segment. The physical behavior of HTT exon 1 fragments is dominated by interactive, polyQ repeat length–dependent structural transitions responsible for membrane and protein–protein interactions and the formation of tetramers, higher oligomers, amyloid fibrils, and inclusions. Understanding the basis of this solution behavior may be the key to disease mechanisms and molecular therapeutic strategies.
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46

Jin, Guoyong, Tiangui Ye, and Zhu Su. Structural Vibration: A Uniform Accurate Solution for Laminated Beams, Plates and Shells with General Boundary Conditions. Springer, 2015.

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47

Jin, Guoyong, Tiangui Ye, and Zhu Su. Structural Vibration: A Uniform Accurate Solution for Laminated Beams, Plates and Shells with General Boundary Conditions. Springer Berlin / Heidelberg, 2016.

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48

Jin, Guoyong, Tiangui Ye, and Zhu Su. Structural Vibration: A Uniform Accurate Solution for Laminated Beams, Plates and Shells with General Boundary Conditions. Springer, 2015.

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49

Jin, Guoyong, Tiangui Ye, and Zhu Su. Structural Vibration: A Uniform Accurate Solution for Laminated Beams, Plates and Shells with General Boundary Conditions. Springer, 2015.

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50

Beni, Majid Davoody. Cognitive Structural Realism: A Radical Solution to the Problem of Scientific Representation. Springer, 2019.

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