{"title":"Taku Onishi","description":"\u003cp\u003eTaku Onishi is a Japanese quantum scientist. He graduated from Faculty of Science, Osaka University, Japan in 1998, and gained his Ph.D. from Department of Chemistry, Osaka University, Japan in 2003. He got a permanent position at Faculty of Engineering, Mie University, Japan in 2003. He has been a guest researcher for Department of Chemistry, University of Oslo, Norway since 2010. He was entitled to a visiting professor at University of the Ryukyus, Japan in 2021. His research covers a variety of research fields such as quantum chemistry, quantum physics, material science and applied mathematics. He has experiences of publishing four Springer books: (1) Quantum Computational Chemistry- Modelling and Calculation for Functional Materials (Monograph, 2018), (2) Theoretical Chemistry for Advanced Nanomaterials- Functional Analysis by Computation and Experiment (Editor, 2020), (3) Ferroelectric Perovskites for High-Speed Memory-A Mechanism Revealed by Quantum Bonding Motion (Monograph,2022), (4) Quantum Science-The Frontier of Physics and Chemistry (Editor,2022). He is a chair of Quantum Science symposium in renowned ICCMSE conference.\u003c\/p\u003e","products":[{"product_id":"advances-in-quantum-science-ii-taku-onishi-ebook","title":"Advances in Quantum Science II","description":"\u003cp class=\"MsoNormal\" style=\"text-align: justify;\"\u003ePart I Machine Learning and Artificial Intelligence.- Chapter 1 Statistical Optimisation of Hartree-Fock Exchange Coefficient in Hybrid Density Functional Theory: Supervised Machine Learning by Python Programming.- Chapter 2 Molecular Curvature in Polyethylene Molecules –Mathematical Modelling by Python Programming.- Chapter 3 Study on New Quantum Artificial Intelligence Method Predicting Pharmaceutical and Molecular Properties with Machine Learning Models Using Molecular Orbital Energies as Explanatory Variables.- Part II Quantum Calculations for Advance Materials - Collaboration with Experimental Studies.- Chapter 4 On The Mutual Synergy of 57Fe Mössbauer Spectroscopy Methods and Modern Quantum Chemistry Approaches in The Studies of Iron-Based Superconductors.- Chapter 5 Exploring the Adsorption Mechanisms of Heavy Metals and Chemicals on Two-Dimensional Carbon-Based Nanomaterials: Density Functional Theory and Experimental Perspectives.- Chapter 6 Computational and Experimental Insights into Carbyne and Graphene Nanoribbons Confined in Carbon Nanotubes.- Chapter 7 Computer Simulation of Thermal Storage Materials.- Part III Quantum Calculations for Molecules.- Chapter 8 Theoretical Study on Photodissociations of Palladium Chloride Complexes.- Chapter 9 Complementary Approaches to the Study of Non-Covalent Interactions in Van der Waals Clusters: Theory and Experiments.- Part IV Computational Biology.- Chapter 10 Encouragement of Canonical Molecular Orbital Calculations for Proteins.- Chapter 11 Advances in Force Field Development and Molecular Dynamics Simulations Driven by Quantum Chemistry.- Part V Applied Physics and Physical Chemistry.- Chapter 12 Efficient Spin-Charge Conversion in Two-Dimensional Electron-Gas Systems in Oxides for Future Energy-Efficient Data Processing Technology.- Chapter 13 Nuclear Quantum Effects of Hydrogen in Metals.- Chapter 14 Porphyrin Organization — Assembly Processes and Photophysics.- Chapter 15 Chirality at Metal Surfaces through Scanning Tunneling Microscopy and Tip-Enhanced Raman Spectroscopy.- Chapter 16 Trends in Photocatalytic Properties of Three-Dimensionally Ordered Macroporous Metal Oxynitride Inverse Opals.- Chapter 17 Computational and Experimental Approaches for Protein‒Metal Complex Hybrid Materials.- Chapter 18 Basic Technique for Oriented Molecular Beam.\u003c\/p\u003e","brand":"Taku Onishi","offers":[{"title":"Default Title","offer_id":55097568133447,"sku":"9789819597215","price":192.59,"currency_code":"EUR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0920\/5455\/2903\/files\/advances-in-quantum-science-ii-ebook-cover.webp?v=1789888336"},{"product_id":"advances-in-quantum-science-i-taku-onishi-ebook","title":"Advances in Quantum Science I","description":"\u003cp\u003ePart I Quantum Physics.- Chapter 1 From the Relativistic Field Theory of Quantum Electrodynamics to a Hamiltonian for Electrons and Positrons as Point Particles with Attributes Mass, Charge and Spin.- Chapter 2 Obtaining Schwinger’s Magnetic Moment Anomaly and the Lamb Shift Terms from a Particle Number Conserving Hamiltonian ˆ𝓗𝑼 being Unitary Equivalent to the Hamiltonian of Quantum Electrodynamics.- Chapter 3 Derivation of a Nonrelativistic Hamiltonian for Interacting Electrons and\/or Positrons from Quantum Electrodynamics.- Chapter  4 The Theory of the Density Matrix and Its Applications.- Chapter 5 The Baderian approach \"quantum topological analysis.- Part II Computational Procedures.- Chapter 6 Relativistic coupled-cluster theory for atomic and molecular properties.- Chapter 7 Resonance effects in symmetry-breaking charge transfer in excited electron-donor-acceptor aggregates.- Chapter 8 Electrical insulation: a case for quantum chemistry.- Chapter 9 Exciton storage in open quantum batteries.-Chapter 10 Introducing mathematical curvature in quantum chemistry.\u003c\/p\u003e","brand":"Taku Onishi","offers":[{"title":"Default Title","offer_id":55097570853191,"sku":"9789819597178","price":149.79,"currency_code":"EUR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0920\/5455\/2903\/files\/advances-in-quantum-science-i-ebook-cover.webp?v=1789888355"}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0920\/5455\/2903\/collections\/taku-onishi-autor-kollektion.webp?v=1789888334","url":"https:\/\/www.cinebuch.de\/collections\/taku-onishi.oembed","provider":"CineBuch","version":"1.0","type":"link"}