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04338namaa2201381ui 4500 |
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003028136 |
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20221228154428.0 |
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DE-2553 |
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m o d |
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cr|mn|---annan |
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20220111s2021 xx |||||o ||| 0|eng d |
020 |
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|a books978-3-0365-2291-3
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020 |
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|a 9783036522920
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020 |
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|a 9783036522913
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040 |
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|a oapen
|c oapen
|b eng
|d DE-2553
|e rda
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024 |
7 |
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|a 10.3390/books978-3-0365-2291-3
|c doi
|
041 |
0 |
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|a eng
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042 |
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|a dc
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072 |
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7 |
|a TB
|2 bicssc
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100 |
1 |
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|a Lacidogna, Giuseppe
|e editor
|
264 |
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|b MDPI - Multidisciplinary Digital Publishing Institute,
|c 2021.
|
700 |
1 |
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|a Lacidogna, Giuseppe
|e other
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245 |
1 |
0 |
|a Nondestructive Testing (NDT)
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300 |
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|a 1 online resource (266 pages).
|
336 |
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|a text
|b txt
|2 rdacontent
|
337 |
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|a computer
|b c
|2 rdamedia
|
338 |
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|a online resource
|b cr
|2 rdacarrier
|
506 |
0 |
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|a Open Access
|2 star
|f Unrestricted online access
|
540 |
|
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|a Creative Commons
|f https://creativecommons.org/licenses/by/4.0/
|2 cc
|4 https://creativecommons.org/licenses/by/4.0/
|
546 |
|
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|a English
|
650 |
|
7 |
|a Technology: general issues
|2 bicssc
|
653 |
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|a pulsed eddy current
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653 |
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|a ferromagnetic sample
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653 |
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|a conductivity
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653 |
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|a permeability
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653 |
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|a non-destructive test
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653 |
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|a impact-echo method
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653 |
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|a tunnel void
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653 |
|
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|a experimental model
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653 |
|
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|a numerical simulation
|
653 |
|
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|a signal analysis
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653 |
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|a transfer learning
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653 |
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|a spectrogram analysis
|
653 |
|
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|a selecting samples
|
653 |
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|a non-destructive testing
|
653 |
|
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|a hammering sound
|
653 |
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|a regression algorithm
|
653 |
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|a Lamb wave
|
653 |
|
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|a microcracks testing
|
653 |
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|a multi-channel detection
|
653 |
|
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|a signal-to-noise ratio
|
653 |
|
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|a thin-walled tube
|
653 |
|
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|a damage detection
|
653 |
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|a cepstral analysis
|
653 |
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|a Structural Health Monitoring
|
653 |
|
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|a Machine Learning
|
653 |
|
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|a Teager-Kaiser Energy
|
653 |
|
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|a gammatone filter
|
653 |
|
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|a acoustic emission
|
653 |
|
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|a melting ice
|
653 |
|
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|a aviation
|
653 |
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|a fuel system
|
653 |
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|a acoustoelastic effect
|
653 |
|
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|a stress estimation
|
653 |
|
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|a surface waves
|
653 |
|
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|a weak anisotropy material
|
653 |
|
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|a damage assessment
|
653 |
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|a smart sensor
|
653 |
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|a magnetoelastic strip
|
653 |
|
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|a 3D printing
|
653 |
|
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|a additive manufacturing
|
653 |
|
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|a stress-strain relation
|
653 |
|
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|a nondestructive testing
|
653 |
|
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|a optical-radiation
|
653 |
|
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|a photoacoustic
|
653 |
|
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|a photothermal
|
653 |
|
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|a acoustic energy
|
653 |
|
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|a acoustic counts
|
653 |
|
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|a CFRP
|
653 |
|
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|a single lap joint
|
653 |
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|a joggled lap joints
|
653 |
|
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|a fractography
|
653 |
|
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|a classical acoustic nonlinearity
|
653 |
|
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|a constitutive behavior
|
653 |
|
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|a ultrasonic testing
|
653 |
|
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|a existing buildings
|
653 |
|
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|a seismic vulnerability assessment
|
653 |
|
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|a non-invasive experimental technics
|
653 |
|
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|a BIM models
|
653 |
|
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|a non-destructive techniques (NDT)
|
653 |
|
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|a historical buildings
|
653 |
|
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|a maintenance
|
653 |
|
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|a stone columns
|
653 |
|
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|a ultrasonic test
|
653 |
|
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|a impact test
|
653 |
|
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|a concrete
|
653 |
|
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|a impact-echo
|
653 |
|
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|a elastic wave
|
653 |
|
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|a SIBIE
|
653 |
|
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|a 3D visualization
|
653 |
|
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|a accelerometer
|
653 |
|
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|a laser doppler vibrometer
|
653 |
|
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|a remote sensing
|
653 |
|
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|a reinforced concrete
|
653 |
|
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|a four-point bending test
|
653 |
|
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|a structural health monitoring
|
653 |
|
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|a nondestructive testing techniques
|
653 |
|
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|a fiber optic sensors
|
653 |
|
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|a acoustic emission monitoring
|
653 |
|
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|a digital image correlation
|
856 |
4 |
0 |
|a www.oapen.org
|u https://mdpi.com/books/pdfview/book/4526
|7 0
|z DOAB: download the publication
|
856 |
4 |
0 |
|a www.oapen.org
|u https://directory.doabooks.org/handle/20.500.12854/76935
|7 0
|z DOAB: description of the publication
|
590 |
|
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|a Online publication
|
590 |
|
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|a ebookoa1222
|
590 |
|
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|a doab
|
942 |
|
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|2 z
|c EB
|
999 |
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|c 3028136
|d 1431891
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|0 0
|1 0
|2 z
|4 0
|6 ONLINE
|7 1
|9 973775
|R 2022-12-28 14:44:28
|a DAIG
|b DAIG
|l 0
|o Online
|r 2022-12-28
|y EB
|