Nisizima Kunisuke | Department Of Applied Physics Faculty Of Engineering Osaka University
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概要
関連著者
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Nisizima Kunisuke
Department Of Applied Physics Faculty Of Engineering Osaka University
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Ikeda Kazuyosi
Department Of Applied Physics Faculty Of Engineering Osaka University
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NISIZIMA Kunisuke
Department of Applied Physics,Osaka University
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Nisizima Kunisuke
Department Of Applied Physics Osaka University
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Ikeda Kazuyosi
Department Of Methematical Sciences Faculty Of Engineering Osaka University
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Nisizima K
Osaka Univ. Suita
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Nisizima Kunisuke
Department Of Methematical Sciences Faculty Of Engineering Osaka University
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Nisizima Kunisuke
Department Of Mathematical Sciences Faculty Of Engineering Osaka University
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Nisizima Kunisuke
Department Of Applied Pysics Faculty Of Engineering Osaka University
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Ichiyanagi Masakazu
Department of Applied Physics,Osaka University
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Ichiyanagi Masakazu
Department Of Applied Physics Osaka University
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Ichiyanagi Masakazu
Department Of Applied Physics Faculty Of Engineering Osaka University
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IKEDA Kazuyoshi
Department of Applied Physics, Faculty of Engineering Osaka University
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Ikeda Kazuyosi
Department of Applied Physics,Osaka University
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NISIZIMA Kunisuke
Department of Applied Physics, Faculty of Engineering, Osaka University
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IKEDA Kazuyosi
Department of Applied Physics, Faculty of Engineering, Osaka University
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Nisizima Kunisuke
Department of Applied Physics, Faculty of Engineering Osaka University
著作論文
- Formal Diagrams Derived from the Prototypes of Eight or Less Points
- Cluster Sums for Lattice Gases with Second Nearest Neighbour Interactions.II.One-Dimensional Lattice
- Volume-Dependent Cluster Sums for Lattice Gases. I : Calculation of the Temperley Coefficients
- Volume-Dependent Cluster Sums for Lattice Gases. IV : Behaviour of the Cluster Sums
- Irreducible Cluster Sums and the Virial Coefficients for Lattice Gases
- Cluster Sums for Lattice Gases with Second Nearest Neighbour Interactions.III.Three-Dimensional Simple Cubic Lattice
- Volume-Dependent Cluster Sums and Phase Transition of the Two-Dimensional Triangular Lattice Gas
- Negative Thermal Expansion of the One-Dimensional Lattice Gas with Hard-Core Nearest-Neighbor and Next-Nearest-Neighbor Interactions : Condensed Matter and Statistical Physics
- Phase Transitions of Lattice Gases : Satisfaction of the G-Condition : Condensed Matter and Statistical Physics
- A Generalized Evolution Criterion in Nonequilibrium Convective Systems
- Cluster Sums for Lattice Gases with Second Nearest Neighbour Interactions.I.Two-Dimensional Square Lattice
- Volume-Dependent Irreducible Cluster Sums and Phase Transition of Lattice Gases
- Volume-Dependent Cluster Sums for Lattice Gases. III : Patterns of Seven or Eight Particles and Expressions for the Cluster Sums
- Volume-Dependent Cluster Sums for Lattice Gases. II : Prototypes of Seven or Eight Points
- Negative Thermal Expansion of the One-Dimensional Lattice Gas with Next-Nearest-Neighbor Interaction