Books on the topic 'Lamb Wave'

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1

Lammering, Rolf, Ulrich Gabbert, Michael Sinapius, Thomas Schuster, and Peter Wierach, eds. Lamb-Wave Based Structural Health Monitoring in Polymer Composites. Cham: Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-319-49715-0.

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2

Su, Zhongqing, and Lin Ye. Identification of Damage Using Lamb Waves. London: Springer London, 2009. http://dx.doi.org/10.1007/978-1-84882-784-4.

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3

Center, NASA Glenn Research, ed. Acousto-ultrasonics to assess material and structural properties. [Cleveland, Ohio]: National Aeronautics and Space Administration, Glenn Research Center, 2002.

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4

Center, NASA Glenn Research, ed. Acousto-ultrasonics to assess material and structural properties. [Cleveland, Ohio]: National Aeronautics and Space Administration, Glenn Research Center, 2002.

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5

Center, NASA Glenn Research, ed. Acousto-ultrasonics to assess material and structural properties. [Cleveland, Ohio]: National Aeronautics and Space Administration, Glenn Research Center, 2002.

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6

Lin, Ye, and SpringerLink (Online service), eds. Identification of Damage Using Lamb Waves: From Fundamentals to Applications. London: Springer London, 2009.

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7

Wilcox, Anthony John. The condition monitoring of press-working systems using ultrasonic Lamb waves. Birmingham: University ofCentral England in Birmingham, 1994.

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8

Adriatico Conference (1987 Trieste, Italy). Vacuum in non-relativistic matter-radiation systems: Proceedings of the Adriatico Conference, Trieste, Italy, July 14-17, 1987. Edited by Persico F, Power E. A, and Kungl Svenska vetenskapsakademien. Stockholm, Sweden: Royal Swedish Academy of Sciences, 1988.

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9

Scandrett, Clyde. The propagation of time harmonic Rayleigh-Lamb waves in a bimaterial plate. Monterey, Calif: Naval Postgraduate School, 1989.

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10

Rupp, J. O. C. Development of two EMAT sensors for the detection of ultrasonic lamb waves. Manchester: UMIST, 1994.

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11

Noui, Louahab. Optical displacement and deflection techniques for the study of laser-generated ultrasonic lamb waves. Manchester: UMIST, 1991.

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12

Wierach, Peter, Ulrich Gabbert, Thomas Schuster, Rolf Lammering, and Michael Sinapius. Lamb-Wave Based Structural Health Monitoring in Polymer Composites. Springer, 2017.

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13

Wierach, Peter, Ulrich Gabbert, Thomas Schuster, Rolf Lammering, and Michael Sinapius. Lamb-Wave Based Structural Health Monitoring in Polymer Composites. Springer International Publishing AG, 2017.

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14

Wierach, Peter, Ulrich Gabbert, Thomas Schuster, Rolf Lammering, and Michael Sinapius. Lamb-Wave Based Structural Health Monitoring in Polymer Composites. Springer International Publishing AG, 2018.

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15

Vellekoop, Michael Johannes. A Smart Lamb-Wave Sensor System for the Determination of Fluid Properties. Delft Univ Pr, 1994.

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16

Yelve, Nitesh Prakash. Comprehensive Guide to Lamb Waves. Nova Science Publishers, Incorporated, 2021.

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17

Yelve, Nitesh Prakash. Comprehensive Guide to Lamb Waves. Nova Science Publishers, Incorporated, 2021.

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18

Detecting lamb waves with broad-band acousto-ultrasonic signals in composite structures. [Washington, DC]: National Aeronautics and Space Administration, 1992.

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19

Acousto-ultrasonics to assess material and structural properties. [Cleveland, Ohio]: National Aeronautics and Space Administration, Glenn Research Center, 2002.

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20

Viktorov, I. A. Rayleigh and Lamb Waves: Physical Theory and Applications. Springer, 2013.

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21

God, Lamb of. Lamb of God - Ashes of the Wake. Hal Leonard Corporation, 2006.

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22

Park, Heeyong. A study of laser generated Rayleigh and Lamb waves in graphite/epoxy composites. 1991.

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23

Springer, Lin Ye, and Zhongqing Su. Identification of Damage Using Lamb Waves: From Fundamentals to Applications. Springer, 2012.

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24

Witkov, Carey, and Keith Zengel. Chi-Squared Data Analysis and Model Testing for Beginners. Oxford University Press, 2019. http://dx.doi.org/10.1093/oso/9780198847144.001.0001.

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This book is the first to make chi-squared model testing, one of the data analysis methods used to discover the Higgs boson and gravitational waves, accessible to undergraduate students in introductory physics laboratory courses. By including uncertainties in the curve fitting, chi-squared data analysis improves on the centuries old ordinary least squares and linear regression methods and combines best fit parameter estimation and model testing in one method. A toolkit of essential statistical and experimental concepts is developed from the ground up with novel features to interest even those familiar with the material. The presentation of one- and two-parameter chi-squared model testing, requiring only elementary probability and algebra, is followed by case studies that apply the methods to simple introductory physics lab experiments. More challenging topics, requiring calculus, are addressed in an advanced topics chapter. This self-contained and student-friendly introduction to chi-squared analysis and model testing includes a glossary, end-of-chapter problems with complete solutions, and software scripts written in several popular programming languages, that the reader can use for chi-squared model testing. In addition to introductory physics lab students, this accessible introduction to chi-squared analysis and model testing will be of interest to all who need to learn chi-squared model testing, e.g. beginning researchers in astrophysics and particle physics, beginners in data science, and lab students in other experimental sciences.
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25

Tadayuki, Sakimoto. Dots Lines Waves Swirls Diagonals Coloring Book: With Exclusive Images and Colouring the Spirographic Magic Spiro Lamp Spirograph Adults Books Ultimate. Independently Published, 2022.

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26

Delgado Martín, Jordi, Andrea Muñoz-Ibáñez, and Ismael Himar Falcón-Suárez. 6th International Workshop on Rock Physics: A Coruña, Spain 13 -17 June 2022: Book of Abstracts. 2022nd ed. Servizo de Publicacións da UDC, 2022. http://dx.doi.org/10.17979/spudc.000005.

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[Abstract] The 6th International Workshop on Rock Physics (6IWRP) was held A Coruña, Spain, between 13th and 17th of June, 2022. This meeting follows the track of the five successful encounters held in Golden (USA, 2011), Southampton (UK, 2013), Perth (Australia, 2015), Trondheim (Norway, 2017) and Hong Kong (China, 2019). The aim of the workshop was to bring together experiences allowing to illustrate, discuss and exchange recent advances in the wide realm of rock physics, including theoretical developments, in situ and laboratory scale experiments as well as digital analysis. While rock physics is at the core of the oil & gas industry applications, it is also essential to enable the energy transition challenge (e.g. CO2 and H2 storage, geothermal), ensure a safe and adequate use of natural resources and develop efficient waste management strategies. The topics of 6IWRP covered a broad spectrum of rock physics-related research activities, including: • Experimental rock physics. New techniques, approaches and applications; Characterization of the static and dynamic properties of rocks and fluids; Multiphysics measurements (NMR, electrical resistivity…); Deep/crustal scale rock physics. • Modelling and multiscale applications: from the lab to the field. Numerical analysis and model development; Data science applications; Upscaling; Microseismicity and earthquakes; Subsurface stresses and tectonic deformations. • Coupled phenomena and rock properties: exploring interactions. Anisotropy; Flow and fractures; Temperature effects; Rock-fluid interaction; Fluid and pressure effects on geophysical signatures. • The energy transition challenge. Applications to energy storage (hydrogen storage in porous media), geothermal resources, energy production (gas hydrates), geological utilization and storage of CO2, nuclear waste disposal. • Rock physics templates: advances and applications. Quantitative assessment; Applications to reser voir characterization (role of seismic wave anisotropy and fracture networks). • Advanced rock physics tools. Machine learning; application of imaging (X-ray CT, X-ray μCT, FIB-SEM…) to obtain rock proper ties. This book compiles more than 50 abstracts, summarizing the works presented in the 6IWRP by rock physicists from all over the world, belonging to both academia and industry. This book means an updated overview of the rock physics research worldwide.
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