formulas for structural dynamics - karnovsky and lebed

494
Table of Contents Cover ----------------------------------------------------------------------------------------- 01 Transverse Vibration Equations --------------------------------------------------- 02 Analysis Methods --------------------------------------------------------------------- 03 Fundamental Equations of Classical Beam Theory -------------------------- 04 Special Functions for the Dynamical Calculation of Beams and Frames--------------------------------------------------------------------------------------- 05 Bernoulli-Euler Uniform Beams with Classical Boundary Conditions ---- 06 Bernoulli-Euler Uniform One-Span Beams with Elastic Supports -------- 07 Bernoulli-Euler Beams with Lumped and Rotational Masses-------------- 08 Bernoulli-Euler Beams on Elastic Linear Foundation ------------------------ 09 Bernoulli-Euler Multispan Beams ------------------------------------------------- 10 Prismatic Beams Under Compressive and Tensile Axial Loads ---------- 11 Bress-Timoshenko Uniform Prismatic Beams --------------------------------- 12 Non-Uniform One-Span Beams --------------------------------------------------- 13 Optimal Designed Beams----------------------------------------------------------- 14 Nonlinear Transverse Vibrations -------------------------------------------------- 15 Arches ----------------------------------------------------------------------------------- 16 Frames----------------------------------------------------------------------------------- 2 3 17 61 97 131 161 197 249 263 301 329 355 397 411 437 473

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04 Special Functions for the Dynamical Calculation of Beams and
Frames---------------------------------------------------------------------------------------
08 Bernoulli-Euler Beams on Elastic Linear Foundation ------------------------
09 Bernoulli-Euler Multispan Beams -------------------------------------------------
11 Bress-Timoshenko Uniform Prismatic Beams ---------------------------------
12 Non-Uniform One-Span Beams ---------------------------------------------------








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Source: Formulas for Structural Dynamics: Tables, Graphs and Solutions


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Source: Formulas for Structural Dynamics: Tables, Graphs and Solutions





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SPECIAL FUNCTIONS FOR THE DYNAMICAL CALCULATION OF BEAMS AND FRAMES
/ (6 +/ 6 4>::5 4>=, * *
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SPECIAL FUNCTIONS FOR THE DYNAMICAL CALCULATION OF BEAMS AND FRAMES
/ (6 * > / ( 6 =
. 2 D
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8) +4>?>, % ! , 4! % 3!" * ( +1 A G 1 8 ,
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SPECIAL FUNCTIONS FOR THE DYNAMICAL CALCULATION OF BEAMS AND FRAMES
Source: Formulas for Structural Dynamics: Tables, Graphs and Solutions




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BERNOULLI–EULER UNIFORM BEAMS WITH CLASSICAL BOUNDARY CONDITIONS

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BERNOULLI–EULER UNIFORM BEAMS WITH CLASSICAL BOUNDARY CONDITIONS
Source: Formulas for Structural Dynamics: Tables, Graphs and Solutions



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BERNOULLI–EULER UNIFORM ONE-SPAN BEAMS WITH ELASTIC SUPPORTS
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BERNOULLI–EULER UNIFORM ONE-SPAN BEAMS WITH ELASTIC SUPPORTS
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BERNOULLI–EULER UNIFORM ONE-SPAN BEAMS WITH ELASTIC SUPPORTS
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BERNOULLI–EULER UNIFORM ONE-SPAN BEAMS WITH ELASTIC SUPPORTS
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BERNOULLI–EULER UNIFORM ONE-SPAN BEAMS WITH ELASTIC SUPPORTS
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BERNOULLI–EULER UNIFORM ONE-SPAN BEAMS WITH ELASTIC SUPPORTS
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BERNOULLI–EULER UNIFORM ONE-SPAN BEAMS WITH ELASTIC SUPPORTS
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BERNOULLI–EULER UNIFORM ONE-SPAN BEAMS WITH ELASTIC SUPPORTS
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BERNOULLI–EULER UNIFORM ONE-SPAN BEAMS WITH ELASTIC SUPPORTS
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BERNOULLI–EULER UNIFORM ONE-SPAN BEAMS WITH ELASTIC SUPPORTS

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BERNOULLI–EULER UNIFORM ONE-SPAN BEAMS WITH ELASTIC SUPPORTS
Source: Formulas for Structural Dynamics: Tables, Graphs and Solutions





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BERNOULLI–EULER BEAMS WITH LUMPED AND ROTATIONAL MASSES
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0
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1.25
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BERNOULLI–EULER BEAMS WITH LUMPED AND ROTATIONAL MASSES
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53.935
48.502
32.247
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BERNOULLI–EULER BEAMS WITH LUMPED AND ROTATIONAL MASSES
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