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[Mathematica Case Study] Research on Electron-Positron Colliders

Introduction of examples utilized in research and education of particle physics.

We would like to introduce a case where 'Mathematica' was utilized in the research of electron-positron colliders by Professor Hitoshi Yamamoto, an emeritus professor at Tohoku University and a visiting professor at the University of Valencia. It has been used for various purposes in research and education, such as calculating the reaction cross-sections and decay rates of elementary particles, creating diagrams and videos for lectures, and verifying mathematical formulas. With color 3D displays, impactful diagrams can be easily created, and we have received feedback that the ability to perform calculus symbolically is also appreciated. 【Product Appeal】 ■ Symbolic manipulation and numerical calculations, as well as the creation of diagrams and videos, can all be done in an integrated manner in the same place. ■ Calculus can be performed symbolically. *For more details, please download the PDF or feel free to contact us.

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Emeritus Professor at Tohoku University / Visiting Professor at the University of Valencia

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"Mathematica" Powerful Computational System

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[Mathematica Case Study] Research on Electron-Positron Colliders (Symbolic Manipulation, Numerical Computation, 3D Visualization, etc.)

TECHNICAL

[Mathematica Introduction Case] Widely used in universities to support intellectual activities related to mathematics (providing hints when thinking independently).

TECHNICAL

[Mathematica Introduction Case] "As a help to unravel the phase transitions of the universe" It is attractive because it can be used intuitively and contains a very large number of high-quality functions.

TECHNICAL

[Mathematica Introduction Case Study] Application to Quantitative Analysis of Biological Shapes (Support for Various Data Formats / Diverse Analysis Functions)

TECHNICAL

[Mathematica Introduction Case] Implementation in Reliability Engineering (not only the implementation of probability distributions but also a wealth of functions for engineering analysis such as reliability analysis)

TECHNICAL

[Mathematica Case Study] Expanding Research Possibilities with Mathematica – Data Analysis in the Field of Medical Radiation Technology –

TECHNICAL

[Mathematica Introduction Case Study] Utilization of Algorithm and Application Research in Mathematical Formula Processing for Computer Exercises in the Mathematics Department.

TECHNICAL

[Mathematica Introduction Case Study] Research and Education in Particle Physics (Factoring complex equations / Calculating eigenvalues and eigenvectors of matrices, etc.)

TECHNICAL

[Mathematica Introduction Case] Creation of Teaching Materials - From Analysis to Research (Even the transfer of small programs is very smooth)

TECHNICAL

[Mathematica Introduction Case] Meiji University, Faculty of Advanced Mathematical Sciences

TECHNICAL

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Even in a rapidly changing world, the philosophy of HuLinks has not changed since its founding. The greatness of humanity lies in our ability to think, create, and carve out a new tomorrow. We aim to contribute to society by providing carefully selected solutions that support this remarkable human ability—intellectual creation—while also offering a more comfortable environment and enhancing productivity.