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Daigo Kosaka

ResearcherPublications, citations & collaboration network

Daigo Kosaka is a researcher indexed in ScholarIQ from OpenAlex & ORCID. ScholarIQ records 41 works, 80 citations, an h-index of 6 and an i10-index of 1.

41
Works
80
Citations
6
h-index
1
i10-index

How has Daigo Kosaka's publication output changed over time?

ScholarIQpublication output · 2001–2023

Output grew100% over the shown period — from 1 works in 2001 to 2 in 2023.

1
1
1
2
1
1
1
1
2
200120022010201420162018202020212023

What are the most-cited papers on Daigo Kosaka?

ScholarIQmost cited works
Effect of Tensile Stress on Hall Coefficients of Nickel-Base Superalloys
Daigo Kosaka, A. M. Frishman, N. Nakagawa
S189058672. 201612 Citations
Quantitative evaluation of wall thinning in pipe wall using electromagnetic acoustic transducer
Daigo Kosaka, Fumio Kojima, Hiroshi Yamaguchi
International Journal of Applied Electromagnetics and Mechanics. 20109 Citations
Reliability evaluation of pipe thickness measurement by electromagnetic acoustic transducer
Hiroyuki Nakamoto, Fumio Kojima, Hiroki Tabata, Daigo Kosaka
International Journal of Applied Electromagnetics and Mechanics. 20147 Citations
Demonstration of surface resistance mapping of large-area HTS films using the dielectric resonator method
Masanobu Kusünoki, Yoshihiko Takano, K Nakamura, M. Inadomaru, Daigo Kosaka, Aya Nozaki, Shin Abe, Masakazu Yokoo, Michael Lorenz, H. Hochmuth, M. Mukaida, Shigetoshi Ohshima
S139340696. 20026 Citations
Plating thickness evaluation with the radial basis functions
Daigo Kosaka, Kazuhiko Kakishita, Takaaki Nara
International Journal of Applied Electromagnetics and Mechanics. 20206 Citations

Related on ScholarIQ

Tokyo Polytechnic University
Institution
Effect of Tensile Stress on Hall Coefficients of Nickel-Base Superalloys
Paper
Quantitative evaluation of wall thinning in pipe wall using electromagnetic acoustic transducer
Paper
Reliability evaluation of pipe thickness measurement by electromagnetic acoustic transducer
Paper
Demonstration of surface resistance mapping of large-area HTS films using the dielectric resonator method
Paper
Plating thickness evaluation with the radial basis functions
Paper
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