Books on the topic 'Lateral loads Mathematical models'

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1

F, Van Impe W., ed. Single piles and pile groups under lateral loading. Rotterdam: Balkema, 2001.

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2

Stephens, Jerry E. Performance of steel pipe pile-to-concrete bent cap connections subject to seismic or high transverse loading, phase II: Project summary report. Helena, Mont: Montana Dept. of Transportation, 2005.

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3

Stephens, Jerry E. Performance of steel pipe pile-to-concrete bent cap connections subject to seismic or high transverse loading, phase II: Final report. Helena]: Montana Dept. of Transportation, 2005.

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4

1937-, Shen Jinwei, and Song Jingzheng 1945-, eds. Chuan bo bo lang zai he: Ship wave loads. Beijing: Guo fang gong ye chu ban she, 2007.

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5

Askari, Abid Hasan. Finite element prediction of bin loads. Edmonton, Alta., Canada: Dept. of Civil Engineering, University of Alberta, 1986.

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6

Schroeder, P. R. Verification of the lateral drainage component of the (HELP) model using physical models. Cincinnati, OH: U.S. Environmental Protection Agency, Hazardous Waste Engineering Research Laboratory, 1988.

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7

McKee, Paul W. Computed and estimated pollutant loads, West Fork Trinity River, Forth Worth, Texas, 1997. Austin, Tex: U.S. Dept. of the Interior, U.S. Geological Survey, 2001.

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8

Turkiyyah, George M. Feasibility of backcalculation procedures based on dynamic FWD response data. [Olympia, Wash.]: Washington State Dept. of Transportation, 2005.

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9

McMaster, Hal C. FAR 23 loads: Computer aided engineering for airplane loads to federal air regulations. [Wichita, Kan.] (7415 Tanglewood Ct., Wichita 67206): Aero Science Software, 1991.

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10

Kulisiewicz, Maciej. Modeling and identification of nonlinear mechanical systems under dynamic complex loads. Wrocław: Oficyna Wydawnicza Politechniki Wrocławskiej, 2005.

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11

Ockerman, Darwin J. Simulation of runoff and recharge and estimation of constituent loads in runoff, Edwards Aquifer recharge zone (outcrop) and catchment area, Bexar County, Texas, 1997-2000. Austin, Texas: U.S. Dept. of the Interior, U.S. Geological Survey, 2002.

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12

Szmidla, Janusz. Drgania swobodne i stateczność układów smukłych poddanych obciążeniu swoistemu. Częstochowa: Wydawn. Politechniki Częstochowskiej, 2000.

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13

Crum, Douglas A. Rotational failure mechanisms using multiple friction circles for stablility analysis. Washington, D.C. (2401 E St., N.W., Washington 20241-0001): U.S. Dept. of the Interior, Bureau of Mines, 1991.

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14

Szmidla, Janusz. Drgania swobodne i stateczność układów smukłych poddanych obciążeniu swoistemu. Częstochowa: Wydawn. Politechniki Częstochowskiej, 2000.

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15

Reutter, David C. Simulation of streamflow and water quality to determine fecal coliform and nitrate concentrations and loads in the Mad River Basin, Ohio. Reston, Va: U.S. Department of the Interior, U.S. Geological Survey, 2006.

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16

Barr, Paul. Live load distribution factors for Washington State SR 18/SR 516 overcrossing. [Olympia, Wash.]: Washington State Dept. of Transportation, 2000.

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17

Quintus, H. L. Von. Design pamphlet for the determination of design subgrade in support of the 1993 AASHTO guide for the design of pavement structures. McLean, VA: U.S. Dept. of Transportation, Federal Highway Administration, Research and Development, Turner-Fairbank Highway Research Center, 1997.

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18

Brewe, David E. Study of journal bearing dynamics using three-dimensional motion picture graphics. [Cleveland, Ohio: National Aeronautics and Space Administration, Lewis Research Center, 1986.

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19

Melis, Matthew E. COMGEN, a computer program for generating finite element models of composite materials at the micro level. [Washington, D.C.]: National Aeronautics and Space Administration, 1990.

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20

Admire, J. R. A transient response method for linear coupled substructures. [Washington, D.C.]: National Aeronautics and Space Administration, Office of Management, Scientific and Technical Information Division, 1989.

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21

Mrad, Nezih. Effects of wheel-load spatial repeatability on road damage: A literature review. McLean, VA: Federal Highway Administration, Turner-Fairbank Highway Research Center, 1998.

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22

Mrad, Nezih. Effects of wheel-load spatial repeatability on road damage: A literature review. McLean, VA: U.S. Dept. of Transportation, Federal Highway Administration, Research and Development, Turner-Fairbank Highway Research Center, 1998.

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23

Mrad, Nezih. Effects of wheel-load spatial repeatability on road damage: A literature review. McLean, VA: U.S. Dept. of Transportation, Federal Highway Administration, Research and Development, Turner-Fairbank Highway Research Center, 1998.

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24

Mrad, Nezih. Effects of wheel-load spatial repeatability on road damage: A literature review. McLean, VA: U.S. Dept. of Transportation, Federal Highway Administration, Research and Development, Turner-Fairbank Highway Research Center, 1998.

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25

Halicka, Anna. Studium stanu naprężeń i odkształceń w płaszczyźnie styku i strefie przypodporowej elementów zespolonych z udziałem betonów skurczowych i ekspansywnych: A study of the stress-strain state in the interface and support zones of composite structures with shrinking and expansive concretes. Lublin: Wydawnictwo Politechniki Lubelskiej, 2007.

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26

Dynamics of pavement structures. London: E & FN Spon, 1994.

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27

Stoner, James W. Estimating pavement damage from longer and heavier combination vehicles. [Ames, Iowa]: Midwest Transportation Center, 1994.

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28

American Institute of Steel Construction. Load and resistance factor design specification for single-angle members. Chicago, IL: American Institute of Steel Construction, 2001.

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29

Quantify!: A crash course in smart thinking. Baltimore: Johns Hopkins University Press, 2010.

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30

Allen, David H. Analysis of static contact in laminated composite plates using damage mechanics: Final technical report. Hampton, VA: NASA Langley Research Center, 1995.

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31

M, Robertson Dale. Use of frequency-volume analyses to estimate regionalized yields and loads of sediment, phosphorus, and polychlorinated biphenyls to lakes Michigan and Superior. Madison, Wis: U.S. Dept. of the Interior, U.S. Geological Survey, 1996.

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32

Robertson, Dale M. Use of frequency-volume analyses to estimate regionalized yields and loads of sediment, phosphorus, and polychlorinated biphenyls to lakes Michigan and Superior. Madison, Wis: U.S. Dept. of the Interior, U.S. Geological Survey, 1996.

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33

M, Robertson Dale. Use of frequency-volume analyses to estimate regionalized yields and loads of sediment, phosphorus, and polychlorinated biphenyls to lakes Michigan and Superior. Madison, Wis: U.S. Dept. of the Interior, U.S. Geological Survey, 1996.

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34

M, Robertson Dale. Use of frequency-volume analyses to estimate regionalized yields and loads of sediment, phosphorus, and polychlorinated biphenyls to lakes Michigan and Superior. Madison, Wis: U.S. Dept. of the Interior, U.S. Geological Survey, 1996.

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35

Verderaime, V. Plate and butt-weld stresses beyond elastic limit, material and structural modeling. Marshall Space Flight Center, Ala: George C. Marshall Space Flight Center, 1991.

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36

Reese, L. C., and William F. van Impe. Single piles and pile groups under lateral loading (HBK). Taylor & Francis, 2000.

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37

Weber, Timothy L. Turbulance induced loads on a teetered rotor. 1991.

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38

Angelov, Vasil Georgiev. Method for Analysis of Transmission Lines Terminated by Nonlinear Loads. Nova Science Publishers, Incorporated, 2013.

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39

S, Pototzky Anthony, and Langley Research Center, eds. On the relationship between matched filter theory as applied to gust loads and phased design loads analysis. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1989.

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40

Wave Mechanics and Wave Loads on Marine Structures. Elsevier Science & Technology Books, 2014.

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41

Boccotti, Paolo. Wave Mechanics and Wave Loads on Marine Structures. Butterworth-Heinemann Limited, 2016.

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42

Boccotti, Paolo. Wave Mechanics and Wave Loads on Marine Structures. Elsevier Science & Technology Books, 2014.

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43

D, Tasker Gary, and Geological Survey (U.S.), eds. Techniques for estimation of storm-runoff loads, volumes, and selected constituent concentrations in urban watersheds in the United States. Denver, Colo: U.S. Dept. of the Interior, U.S. Geological Survey, 1988.

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44

Hartin, John R. Evaluation of horizontal axis wind turbine blade loads using unsteady aerodynamics. 1989.

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45

Peter, Allerup, and Danske meteorologiske institut, eds. Snow pack maximum water equivalent in Denmark: Evaluated by a simulation model. København: Danish Meteorological Institute, 1985.

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46

Prediction of loads on the lumbar spine during hammer throwing utilizing mathematical modeling. 1986.

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47

Li, Wenchang. Linear and nonlinear finite strip analysis of bridges. 1991.

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48

Effect of truck weight on bridge network costs. Washington, D.C: Transportation Research Board, 2003.

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49

Experimental investigation of truck tire inflation pressure on pavement-tire contact area and pressure distribution. [Austin]: Center for Transportation Research, the University of Texas at Austin, 1985.

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50

Chung, Yeonbae. A physically based predictive lateral DMOS transistor model and circuit simulator for intelligent power IC design. 1995.

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