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Principle of Immersion Interferometer For Measurement of Ultrasound Velocity In Solids With The Highest Possible Accuracy. / Borisov, B.F.; Nedbai, A.I.; Sarnatskii, V.M.; Lebedeva, E.L.; Mavlonazarov, I.O.

In: International Journal of Applied Engineering Research, Vol. 10, No. 1, 2015, p. 269-274.

Research output: Contribution to journalArticle

Harvard

Borisov, BF, Nedbai, AI, Sarnatskii, VM, Lebedeva, EL & Mavlonazarov, IO 2015, 'Principle of Immersion Interferometer For Measurement of Ultrasound Velocity In Solids With The Highest Possible Accuracy', International Journal of Applied Engineering Research, vol. 10, no. 1, pp. 269-274.

APA

Borisov, B. F., Nedbai, A. I., Sarnatskii, V. M., Lebedeva, E. L., & Mavlonazarov, I. O. (2015). Principle of Immersion Interferometer For Measurement of Ultrasound Velocity In Solids With The Highest Possible Accuracy. International Journal of Applied Engineering Research, 10(1), 269-274.

Vancouver

Author

Borisov, B.F. ; Nedbai, A.I. ; Sarnatskii, V.M. ; Lebedeva, E.L. ; Mavlonazarov, I.O. / Principle of Immersion Interferometer For Measurement of Ultrasound Velocity In Solids With The Highest Possible Accuracy. In: International Journal of Applied Engineering Research. 2015 ; Vol. 10, No. 1. pp. 269-274.

BibTeX

@article{a8543f6d2f664d3695adc66cffbe3844,
title = "Principle of Immersion Interferometer For Measurement of Ultrasound Velocity In Solids With The Highest Possible Accuracy",
author = "B.F. Borisov and A.I. Nedbai and V.M. Sarnatskii and E.L. Lebedeva and I.O. Mavlonazarov",
year = "2015",
language = "English",
volume = "10",
pages = "269--274",
journal = "International Journal of Applied Engineering Research",
issn = "0973-4562",
publisher = "Research India Publications",
number = "1",

}

RIS

TY - JOUR

T1 - Principle of Immersion Interferometer For Measurement of Ultrasound Velocity In Solids With The Highest Possible Accuracy

AU - Borisov, B.F.

AU - Nedbai, A.I.

AU - Sarnatskii, V.M.

AU - Lebedeva, E.L.

AU - Mavlonazarov, I.O.

PY - 2015

Y1 - 2015

M3 - Article

VL - 10

SP - 269

EP - 274

JO - International Journal of Applied Engineering Research

JF - International Journal of Applied Engineering Research

SN - 0973-4562

IS - 1

ER -

ID: 3927041