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1

American Society of Heating, Refrigerating and Air-Conditioning Engineers, ed. Load calculation applications manual. Atlanta: ASHRAE, 2014.

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2

Spitler, Jeffrey D. Load calculation applications manual. Atlanta, GA: American Society of Heating, Refrigerating, and Air-Conditioning Engineers, 2010.

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3

Load calculation applications manual. Atlanta, GA: American Society of Heating, Refrigerating, and Air-Conditioning Engineers, 2008.

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4

Load calculation applications manual. Atlanta, GA: American Society of Heating, Refrigerating, and Air-Conditioning Engineers, 2010.

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5

Spitler, Jeffrey D. Load calculation applications manual. Atlanta, GA: American Society of Heating, Refrigerating, and Air-Conditioning Engineers, 2010.

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6

Air Conditioning Contractors of America., ed. Residential load calculation: Manual J. 8th ed. Arlington,, VA: [Air Conditioning Contractors of America], 2002.

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7

Rutkowski, Hank. Residential load calculation: Manual J. 7th ed. Washington, DC: Air Conditioning Contractors of America, 1986.

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8

American Society of Heating, Refrigerating and Air-Conditioning Engineers. Cooling and heating load calculation manual. 2nd ed. Atlanta, GA: American Society of Heating, Refrigerating and Air-Conditioning Engineers., 1992.

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9

American Society of Heating, Refrigerating, and Air-Conditioning Engineers., ed. Annotated guide to load calculation models and algorithms. Atlanta: American Society of Heating, Refrigeratin and Air-Conditioning Engineers, Inc., 1996.

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10

D, Spitler Jeffrey, and American Society of Heating, Refrigerating, and Air-Conditioning Engineers., eds. Cooling and heating load calculation manual. 2nd ed. New York: ASHRAE, 1994.

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11

Hendry, A. W. The calculation of eccentricities in load bearing walls. Windsor: Brick Development Association, 1986.

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12

Rutkowski, Hank. Load calculation for commercial summer and winter air conditioningd: Manual N. 4th ed. Washington, D.C: ACCA, 1988.

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13

SetkovSerbin, Evgeniy. Building structures. Calculation and design. ru: INFRA-M Academic Publishing LLC., 2021. http://dx.doi.org/10.12737/1030129.

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The textbook outlines the basics of designing and calculating the simplest and most widely used load-bearing structures in construction practice. Meets the requirements of the federal state educational standards of secondary vocational education of the latest generation. It is intended for students and teachers of construction colleges and technical schools, as well as other secondary vocational educational institutions that train specialists in construction specialties, primarily in the specialty 08.02.01 "Construction and operation of buildings and structures" with all its specializations of the basic level. It may be of interest to students of higher education, where the discipline "Building structures" is included in the curriculum, but is not a profile. It can be useful for construction technicians engaged in production activities or design work in the field of new construction or reconstruction in the housing and communal complex, especially in small businesses.
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14

author, Ni Baoshan, ed. Line loss analysis and calculation of electrical power system. Singapore: John Wiley & Sons Singapore, 2015.

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15

Jung, F. W. Direct calculation of maximum curvature and strain in AC layers of pavements from load deflection basin measurements. Downsview, Ont: Research and Development Branch, Ontario Ministry of Transportation, 1989.

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16

Ramberger, Günter. Structural bearings and expansion joints for bridges. Zurich, Switzerland: International Association for Bridge and Structural Engineering (IABSE), 2002. http://dx.doi.org/10.2749/sed006.

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<p>Bridge superstructures have to be designed to permit thermal and live load strains to occur without unintended restraints. Bridge bearings have to transfer forces from the superstructure to the substructure, allowing all movements in directions defined by the designer. The two functions -transfer the loads and allow movements only in the required directions for a long service time with little maintenance - are not so easy to fulfil. Differ­ent bearings for different purposes and requirements have been developed so, that the bridge designer can choose the most suitable bearing.</p> <p>By the movement of a bridge, gaps are necessary between superstructure and substructure. Expansion joints fill the gaps, allowing traffic loads tobe carried and allowing all expected displacements with low resistance. Ex­pansion joints should provide a smooth transition, avoid noise emission as far as possible and withstand all mechanical actions and chemical attacks (de-icing) for a long time. A simple exchange of all wearing parts and of the entire expansion joint should be possible.</p> <p>The present volume provides a comprehensive survey of arrangement, construction and installation of bearings and expansion joints for bridges including calculation of bearing reactions and movements, analysis and design, inspection and maintenance. A long list of references deals with the subjects but also with aspects in the vicinity of bearings and expansion joints.</p> <p>This book is aimed at both students and practising engineers, working in the field of bridge design, construction, analysis, inspection, maintenance and repair.</p>
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17

Tekkotsu tekkin konkurīto kōzō keisan kijun, dō kaisetsu: Kyoyō ōryokudo sekkei to hoyū suihei tairyoku = AIJ Standard for structural calculation of steel reinforced concrete structures : allowable stress design, horizontal load-carrying capacity. 5th ed. Tōkyō: Nihon Kenchiku Gakkai, 2001.

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18

Electricity cost modeling calculations. Burlington, MA: Academic Press/Elsevier, 2011.

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19

Noback, R. Statistical properties of atmospheric turbulence relevant to the calculation of airplane loads. Amsterdam: National Aerospace Laboratory, 1988.

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20

Evans, James W. Censoring data for resistance factor calculations in load and resistance factor design: A preliminary study. Madison, WI: United States Dept. of Agriculture, Forest Service, Forest Products Laboratory, 2007.

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21

Evans, James W. Censoring data for resistance factor calculations in load and resistance factor design: A preliminary study. Madison, WI: United States Dept. of Agriculture, Forest Service, Forest Products Laboratory, 2007.

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22

United States. General Accounting Office. Accounting and Information Management Division. [Review of Rural Telephone Bank 1995 loan interest rate calculation]. Washington, D.C: The Office, 1995.

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23

Office, General Accounting. [RTB: Review of Rural Telephone Bank's 1993 loan interest rate calculation]. Washington, D.C: The Office, 1993.

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24

Office, General Accounting. [Rural Telephone Bank--review of RTB's 1991 loan interest rate calculation]. Washington, D.C: The Office, 1992.

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25

Modzelewski, Stephen A. Computer program for calculating in-flight aircraft-store interface reaction loads. Monterey, Calif: Naval Postgraduate School, 1991.

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26

Practical calculations for electricians: Step-by-step calculations & formulas for : branch circuits, conductors, boxes & raceways, voltage drop, AC motors, dwelling loads, commercial loads : based on the 2005 National Electrical Code. Carson City, Nev: Nevada Tech Publishers, 2006.

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27

Thomas, Robert Bailey. Old farmer's almanac 2014: Calculated on a new and improved plan for the year of our Lord 2014 : fitted for Boston and the New England states with special corrections and calculations to answer for all the United States. Dublin, NH: Old Farmer's Almanac, 2013.

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28

Manual J Residential Load Calculation. 8th ed. Air Conditioning Contractors of America, 2002.

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29

Commercial Load Calculation, Manual N. 4th ed. ACCA, 1988.

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30

Manual J: Residential Load Calculation. Air Conditioning Contractors of America, 2001.

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31

Cooling and Heating Load Calculation Principles. American Society of Heating, Refrigerating &, 1998.

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32

Residential Load Calculation Manual J®, Abridged Edition. Air Conditioning Contractors of America, 2016.

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33

Comparison of load calculation procedures: A joint project. London: CIBSE, 1998.

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34

LOAD CALCULATION APPLICATIONS MANUAL, 2ND ED. -- I-P. 2014.

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35

Institute, Hydronics. Cooling Load Calculation Guide: C-30 for Residences. Hydronics Inst, 1991.

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36

I=B=R cooling load calculation guide for residences. 4th ed. The Hydronics Institute, 1989.

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37

Sediment transport in open channels: Calculation procedures for the engineering practice. Hamburg: Paul Parey, 1990.

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38

E, P., Hank Rutkowski, and Air Conditioning Contractors of America. Residential Load Calculation Manual J®, Eighth Edition, Version 2.50. Air Conditioning Contractors of America, 2016.

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39

executive, Health and safety. Sensitivity of Jack-up Reliability to Wave-in-Deck Load Calculation. Health and Safety Executive (HSE), 2003.

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40

Load calculation for residential winter and summer air conditioning, manual J. 7th ed. Air Conditioning Contractors of America, 1986.

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41

Wu, Anguan, and Baoshan Ni. Line Loss Analysis and Calculation of Electric Power Systems. Wiley & Sons, Incorporated, John, 2015.

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42

Wu, Anguan, and Baoshan Ni. Line Loss Analysis and Calculation of Electric Power Systems. Wiley & Sons, Incorporated, John, 2015.

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43

International Conference on Gears 2017. VDI Verlag, 2017. http://dx.doi.org/10.51202/9783181022948.

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Talking about the design of modern high-performance power train applications, one of the essential components to focus on are the gears. Gears convert torque and speed in a very wide power range, at low cost and with minimal losses and noise emission. However, the demands regarding cost, power density, NVH-behavior and efficiency are steadily increasing. Demands, which can only be met using modern gearing technologies that allow combining individual materials, heat treatment and manufacturing processes. Particularly in the industrial sector, the requirements for the reliability and service life of the gear units have increased. Therefore, more and more accurate calculation methods are required for the load bearing capacity, life expectancy and failure probability as well as better test methods. This aspect is also becoming more important with regard to Industry 4.0 and Predictive Maintenance. In addition, the potentials of innovative production methods like powder metal sintering, plas...
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44

American Society of Heating, Refrigerating and Air-Conditioning Engineers., Air Conditioning Contractors of America., and American National Standards Institute, eds. Peak cooling and heating load calculations in buildings except low-rise residential buildings. Atlanta, GA: American Society of Heating, Refrigerating and Air-Conditioning Engineers, Inc., 2007.

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45

J, Brandemuehl Michael, and American Society of Heating, Refrigerating and Air-Conditioning Engineers., eds. HVAC 2 toolkit: A toolkit for secondary HVAC system energy calculations. Atlanta, Ga: American Society of Heating, Refrigerating and Air-Conditioning Engineers, 1993.

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46

United States. National Aeronautics and Space Administration., ed. A characteristic method for calculating the generalized flat flutter aerodynamic forces. Washington, DC: National Aeronautics and Space Administration, 1988.

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47

NCCER. 26401-08 Load Calculations - Feeders and Services TG. Pearson Education, Limited, 2008.

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48

Greer, Monica. Electricity Cost Modeling Calculations. Academic Press, 2016.

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49

Gelman, Andrew, and Deborah Nolan. Probability. Oxford University Press, 2017. http://dx.doi.org/10.1093/oso/9780198785699.003.0008.

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This chapter contains many classroom activities and demonstrations to help students understand basic probability calculations, including conditional probability and Bayes rule. Many of the activities alert students to misconceptions about randomness. They create dramatic settings where the instructor discerns real coin flips from fake ones, students modify dice and coins in order to load them, students “accused” of lying based on the outcome of an inaccurate simulated lie detector face their classmates. Additionally, probability models of real outcomes offer good value: first we can do the probability calculations, and then can go back and discuss the potential flaws of the model.
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50

Efficient load balancing and data remapping for adaptive grid calculations. [Moffett Field, Calif.]: Research Institute for Advanced Computer Science, NASA Ames Research Center, 1997.

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