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1

Koohgilani, Mehran. Advanced composites: Non-destructive testing. Bournemouth University, 2001.

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2

Blitz, Jack. Ultrasonic methods of non-destructive testing. Chapman & Hall, 1996.

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3

Woodward, R. J. Non destructive testing methods for concrete bridges. Bridges Division, Structures Group, Transport and Road Research Laboratory, 1989.

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4

Woodward, R. J. Non destructive testing methods for concrete bridges. Transport and Road Research Laboratory, Structures Group, Bridges Division, 1989.

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5

Blitz, Jack. Electrical and magnetic methods of non-destructive testing. 2nd ed. Chapman & Hall, 1997.

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6

Billson, Duncan Robert. Advanced non-contacting ultrasonic techniques for non-destructive testing. typescript, 1994.

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7

Blitz, Jack. Electrical and Magnetic Methods of Non-destructive Testing. Springer Netherlands, 1997. http://dx.doi.org/10.1007/978-94-011-5818-3.

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8

Blitz, Jack. Electrical and Magnetic Methods of Non-destructive Testing. Springer Netherlands, 1997.

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9

S, Kupperman D., U.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory Research. Division of Engineering Technology., and Argonne National Laboratory, eds. Advanced NDE for steam generator tubing. Division of Engineering Technology, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 2000.

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10

G, Bøving Knud, and Danske vedligeholdsforening, eds. NDE handbook: Non-destructive examination methods for condition monitoring. Butterworths, 1989.

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11

ASNT Spring Conference (1991 Oakland, Calif.). Nondestructive characterization for advanced technologies: 1991 ASNT Spring Conference, Hyatt Regency Oakland, Oakland, California, March 18-22. American Society for Nondestructive Testing, 1991.

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12

W, Yan, U.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory Research. Division of Engineering., and University of Tennessee, Knoxville. Dept. of Nuclear Engineering., eds. Hybrid digital signal processing and neural networks for automated diagnostics using NDE methods. Division of Engineering, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1993.

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13

W, Yan, U.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory Research. Division of Engineering., and University of Tennessee, Knoxville. Dept. of Nuclear Engineering., eds. Hybrid digital signal processing and neural networks for automated diagnostics using NDE methods. Division of Engineering, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1993.

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14

Istituto centrale per il restauro (Italy) and Associazione italiana prove non distruttive monitoraggio diagnostica, eds. 3a Conferenza internazionale sulle prove non distruttive, metodi microanalitici e indagini ambientali per lo studio e la conservazione delle opere d'arte: 3rd International Conference on Non-Destructive Testing, Microanalytical Methods and Environment Evaluation for Study and Conservation of Works of Art. Beta Gamma editrice, 1992.

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15

Peruń, Grzegorz, Tangbin Xia, and Bogusław Łazarz, eds. Advances in Non-Destructive Testing Methods. MDPI, 2024. http://dx.doi.org/10.3390/books978-3-7258-1082-6.

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16

Peruń, Grzegorz, and Tangbin Xia, eds. Advances in Non-Destructive Testing Methods, 2nd Edition. MDPI, 2025. https://doi.org/10.3390/books978-3-7258-4294-0.

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17

Blitz, J., and G. Simpson. Ultrasonic Methods of Non-destructive Testing (Non-Destructive Evaluation Series). Springer, 1996.

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18

Reinhardt, Hans-Wolf, Christiane Maierhofer, and Gerd Dobmann. Non-Destructive Evaluation of Reinforced Concrete Structures: Non-Destructive Testing Methods. Elsevier Science & Technology, 2010.

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19

Non-destructive evaluation of reinforced concrete structures: Non-destructive testing methods. CRC Press, 2010.

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20

Blitz, J. Electrical and Magnetic Methods of Non-destructive Testing (Non-Destructive Evaluation Series). Springer, 1997.

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21

Blitz, J. Electrical and Magnetic Methods of Non-destructive Testing. Springer, 2012.

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22

Electrical and Magnetic Methods of Non-Destructive Testing. Island Press, 1997.

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23

Khaira, Ashish. Evaluation and Applications for Ultrasonic Methods of Non-Destructive Testing. IGI Global, 2021.

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24

Matsumoto, T. Advanced Materials '93: Computations, Glassy Materials, Microgravity and Non-Destructive Testing. Elsevier, 2012.

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25

Reinhardt, Hans-Wolf, Christiane Maierhofer, and Gerd Dobmann. Non-Destructive Evaluation of Reinforced Concrete Structures: Deterioration Processes and Standard Test Methods. Elsevier Science & Technology, 2010.

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26

Reinhardt, Hans-Wolf, Christiane Maierhofer, and Gerd Dobmann. Non-Destructive Evaluation of Reinforced Concrete Structures: Deterioration Processes and Standard Test Methods. Woodhead Publishing, 2016.

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27

Eisenbl<132>tter, J. Non-nuclear Non-destructive Testing Methods to Determine Free Water, Gas Pressure and Matrix Level in Waste Drums: Nuclear Science and Technology: Nuclear Science and Technology [series]. European Communities / Union (EUR-OP/OOPEC/OPOCE), 1995.

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28

Matsumoto, T. Computations, Glassy Materials, and Non-Destructive Testing: Proceedings of a Symposia ... of the 3rd International Conference on Advanced Materials (Transactions ... of the Materials Research Society of Japan). Elsevier Publishing Company, 1995.

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29

Hasníková, Hana. Proceedings of the SHATIS 2022 – 6th International conference on structural health assessment of timber structures. Edited by Jiří Kunecký. Institute of Theoretical and Applied Mechanics, Czech Academy of Sciences, v. v. i., 2022. http://dx.doi.org/10.21495/54-3.

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Structural health assessment of timber structures associates various procedures in order to evaluate the safety and serviceability of structures. Also, it helps to assure or extend the predicted service life of structures. Service life sustainability can be promoted by the incorporation of monitoring systems or by providing tools and methods that deliver accurate reports about the structural condition. Conservation and assessment of timber structures is based on a multidisciplinary approach. The conference topics cover the wide spectrum, from wood properties, through performance of joints and
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30

Chen, C. Julian. Introduction to Scanning Tunneling Microscopy. 3rd ed. Oxford University Press, 2021. http://dx.doi.org/10.1093/oso/9780198856559.001.0001.

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The scanning tunnelling microscope (STM) was invented by Binnig and Rohrer and received a Nobel Prize of Physics in 1986. Together with the atomic force microscope (AFM), it enables non-destructive observing and mapping atoms and molecules on solid surfaces down to a picometer resolution. A recent development is the non-destructive observation of wavefunctions in individual atoms and molecules, including nodal structures inside the wavefunctions. STM and AFM have become indespensible instruments for scientists of various disciplines, including physicists, chemists, engineers, and biologists to
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