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m o d |
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cr cnu|||unuuu |
| 008 |
190213s2019 sz a ob 001 0 eng d |
| 005 |
20250816212340.2 |
| 020 |
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|a 9783030005726
|q (electronic bk.)
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| 020 |
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|a 3030005720
|q (electronic bk.)
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|z 9783030005719
|q (print)
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|z 3030005712
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|a 99980154143
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| 035 |
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|a (NhCcYBP)ebc5683099
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| 037 |
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|a com.springer.onix.9783030005726
|b Springer Nature
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|a NhCcYBP
|c NhCcYBP
|d UtOrBLW
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| 050 |
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|a TA654
|b .S84 2019
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| 082 |
0 |
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|a 624.1/71
|2 23
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| 100 |
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|a Sugiyama, Yoshihiko,
|e author.
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| 245 |
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|a Dynamic stability of columns under nonconservative forces :
|b theory and experiment /
|c Yoshihiko Sugiyama, Mikael A. Langthjem, Kazuo Katayama.
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| 264 |
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1 |
|a Cham, Switzerland :
|b Springer,
|c 2019.
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| 300 |
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|a 1 online resource.
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| 336 |
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|a text
|b txt
|2 rdacontent
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| 337 |
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|a computer
|b c
|2 rdamedia
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| 338 |
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|a online resource
|b cr
|2 rdacarrier
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| 490 |
1 |
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|a Solid mechanics and its applications,
|x 0925-0042 ;
|v volume 255
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| 504 |
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|a Includes bibliographical references and index.
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| 588 |
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|a Online resource; title from PDF title page (SpringerLink, viewed February 13, 2019).
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|a Intro; Preface; Contents; 1 Fundamentals; 1.1 Beam and Column; 1.2 Stability and Stability Criteria; 1.3 Experiments with Columns; 1.4 Preliminary Tests; 1.4.1 Deflection Test; 1.4.2 Vibration Test; 1.4.3 Decaying Pendulum Motion Test; 1.4.4 Decaying Beam Motion Test; 1.5 Influence of Support Conditions; 1.6 Nonconservative Forces; 1.7 Discussion; References; 2 Columns under Conservative Forces; 2.1 Cantilevered Columns; 2.2 Pinned-Pinned Columns; 2.3 Standing Cantilevered Columns; 2.4 Discussion; References; 3 Columns under a Follower Force; 3.1 Beck's Column; 3.2 Vibrations of Beck's Column
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| 505 |
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|a 3.3 Stability in a Finite Time Interval3.4 Character of Beck's Column; 3.5 Nonconservative Nature of a Follower Force; 3.6 Discussion; References; 4 Columns with Damping; 4.1 Cantilevered Columns with Damping; 4.2 Stability Analysis; 4.3 Beck's Column with Damping Introduced; 4.3.1 Internal Damping Only; 4.3.2 External Damping Only; 4.3.3 Both Internal and External Damping; 4.4 Pflüger's Column with Internal Damping; 4.5 Dynamic Responses; 4.6 Discussion; References; 5 Energy Consideration on the Role of Damping; 5.1 Energy Considerations; 5.2 Equation of Motion and Stability Analysis
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| 505 |
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|a 5.3 Energy Expressions5.3.1 Energy Balance Equations; 5.3.2 Energy Balance at the Critical Force; 5.3.3 Discretized Energy Equations; 5.4 Flutter Configurations and Phase Angle Functions; 5.5 Energy Balance with Small Internal Damping; 5.6 Energy Balance with Both Internal and External Damping; 5.7 Energy Growth Rate; 5.8 Introduction of Small Internal Damping at the Undamped Flutter Bound; 5.9 Discussion; References; 6 Cantilevered Pipes Conveying Fluid; 6.1 Basic Equations of Motion; 6.2 Finite Element Formulation; 6.3 Eigenvalue Branches Related to Flutter; 6.4 Flutter Configurations
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| 505 |
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|a 6.5 Effect of Internal Damping6.6 Discussion; References; 7 Cantilevered Pipes with a Mechanical Element; 7.1 Pipes with an Elastic Spring; 7.2 Pipes with a Lumped Mass; 7.3 Pipes with a Damper; 7.4 Coefficient of Damping of a Dashpot Damper; 7.5 Discussion; References; 8 Columns under a Follower Force with a Constant Line of Action; 8.1 Reut's Column; 8.2 Stability Analysis of a Generalized Reut's Column; 8.3 Approximate Solution by the Galerkin Method; 8.4 Non-Self-Adjointness of Boundary Value Problems; 8.5 Discussion; References; 9 Generalized Reut's Column; 9.1 Stability Analysis
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| 505 |
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|a 9.2 Realization of Reut Force9.3 Experimental Setup; 9.4 Experimental Results; 9.5 Reut's Column with a Damper; 9.6 Discussion; References; 10 Columns under a Rocket-Based Follower Force; 10.1 Equation of Motion and Stability Analysis; 10.2 Rocket Motors; 10.3 Test Columns; 10.4 Preliminary Tests; 10.4.1 Test for Bending Stiffness; 10.4.2 Test for Damping Coefficients; 10.4.3 Buckling Test; 10.5 Flutter Test; 10.5.1 Outline of the Test; 10.5.2 Test Runs; 10.5.3 Test Results; 10.5.4 Effect of the Size of the Motor; 10.5.5 Stability in a Finite Time Interval; 10.6 Discussion; References
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| 500 |
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|a Electronic resource.
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| 650 |
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0 |
|a Structural dynamics.
|0 http://id.loc.gov/authorities/subjects/sh85129197
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| 650 |
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0 |
|a Columns.
|0 http://id.loc.gov/authorities/subjects/sh85028763
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| 655 |
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7 |
|a Electronic books.
|2 local
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| 700 |
1 |
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|a Langthjem, Mikael A.,
|e author.
|0 http://id.loc.gov/authorities/names/no2014038390
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| 700 |
1 |
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|a Katayama, Kazuo,
|e author.
|
| 710 |
2 |
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|a ProQuest (Firm)
|0 http://id.loc.gov/authorities/names/n2007068018
|
| 776 |
1 |
8 |
|c Original
|z 3030005712
|z 9783030005719
|
| 830 |
|
0 |
|a Solid mechanics and its applications ;
|v v. 255.
|x 0925-0042
|0 http://id.loc.gov/authorities/names/n90638234
|
| 856 |
4 |
0 |
|u https://ebookcentral.proquest.com/lib/tamucs/detail.action?docID=5683099
|z Connect to the full text of this electronic book
|t 0
|
| 955 |
|
|
|a YBP purchased firm e-records
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| 980 |
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|b 159.00
|g 1
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|a ybp16044704
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|i 16cd7c79-c56c-3773-84b1-f8de1859648a
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| 952 |
f |
f |
|a Texas A&M University
|b College Station
|c Electronic Resources
|d Available Online
|t 0
|e TA654 .S84 2019
|h Library of Congress classification
|
| 998 |
f |
f |
|a TA654 .S84 2019
|t 0
|l Available Online
|