• 673 Citations
  • 15 h-Index
1979 …2019
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Fingerprint Dive into the research topics where Hiroshi Takano is active. These topic labels come from the works of this person. Together they form a unique fingerprint.

polymers Physics & Astronomy
Ising model Physics & Astronomy
simulation Physics & Astronomy
relaxation time Physics & Astronomy
kinetics Physics & Astronomy
molecular dynamics Physics & Astronomy
exponents Physics & Astronomy
Polymers Chemical Compounds

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Research Output 1979 2019

  • 673 Citations
  • 15 h-Index
  • 45 Article
  • 1 Chapter
  • 1 Conference contribution
  • 1 Review article

Folding pathways of NuG2 - A designed mutant of protein G - Using relaxation mode analysis

Mitsutake, A. & Takano, H., 2019 Jul 28, In : Journal of Chemical Physics. 151, 4, 044117.

Research output: Contribution to journalArticle

Open Access
Mutant Proteins
folding
proteins
Dynamic analysis
Free energy
1 Citation (Scopus)

Identification of slow relaxation modes in a protein trimer via positive definite relaxation mode analysis

Karasawa, N., Mitsutake, A. & Takano, H., 2019 Feb 28, In : Journal of Chemical Physics. 150, 8, 084113.

Research output: Contribution to journalArticle

trimers
Signal processing
Biopolymers
Trajectories
proteins
1 Citation (Scopus)
brushes
dynamic characteristics
polymers
rings
drainage
3 Citations (Scopus)

Filler network model of filled rubber materials to estimate system size dependence of two-dimensional small-angle scattering patterns

Hagita, K., Tominaga, T., Hatazoe, T., Sone, T. & Takano, H., 2018 Jan 1, In : Journal of the Physical Society of Japan. 87, 1, 014802.

Research output: Contribution to journalArticle

fillers
rubber
nanoparticles
estimates
scattering
2 Citations (Scopus)

Multipoint segmental repulsive potential for entangled polymer simulations with dissipative particle dynamics

Iwaoka, N., Hagita, K. & Takano, H., 2018 Sep 21, In : Journal of Chemical Physics. 149, 11, 024835JCP.

Research output: Contribution to journalArticle

Polymers
polymers
simulation
dynamic models
Dynamic models