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ヒューリンクス

EstablishmentSeptember 25, 1986
capital9500Ten thousand
addressTokyo/Chuo-ku/5-14 Hakozaki-cho, Nihonbashi
phone03-5642-8380
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last updated:Jul 22, 2025
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ヒューリンクス List of Products and Services

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Document Management / Quality Management Document Management / Quality Management
Numerical data analysis/visualization Numerical data analysis/visualization
Statistical analysis/graph analysis Statistical analysis/graph analysis
Mathematical processing / modeling and simulation Mathematical processing / modeling and simulation
Earth Science Earth Science
Chemistry / Drug Discovery / Computational Chemistry / Crystallography Chemistry / Drug Discovery / Computational Chemistry / Crystallography
Case study Case study
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Five advantages of a cloud-native electronic lab notebook system.

Explaining the benefits of using cloud-based electronic lab notebooks (ELN) for research and development organizations and individual users.

The percentage of companies using cloud services has been increasing year by year, and the use of cloud services in the research and development field is also accelerating. With cloud-native ELN, researchers in all fields can easily record their work and collaborate within and between organizations, while the IT department can leverage more efficient and cost-effective storage and performance, enabling integration with other informatics platforms. This white paper explains five advantages and also presents a future vision to expand those advantages.

  • Other research software
  • File Management
  • Other IT tools

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Cloud-based digital asset management solution "Canto"

Consolidate all content into one and enrich the brand experience.

Canto's digital asset management platform is a next-generation content hub equipped with AI. It consolidates content management, collaboration, and distribution to maximize your team's creativity. With Canto connecting people, tools, and workflows, managing digital assets becomes smarter and safer. It centralizes the content lifecycle, making your brand shine at every touchpoint. Quickly access the assets you need and effortlessly optimize content that fits your brand. Expand your reach, gain insights that evolve your strategy, and infinitely enhance your brand's potential.

  • Other information systems
  • Data Search Software

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Refining powder diffraction data with "CrystalDiffract"

Refinement of powder diffraction data using the Rietveld method "CrystalDiffract"

The long-awaited Rietveld refinement feature for powder diffraction data has been implemented in CrystalDiffract 7. Observed powder diffraction data can be read in xy data format or Rigaku ASC format, and refined using the Rietveld method based on an initial structure. The initial structure used as a reference for the Rietveld method can be selected from approximately 1,000 libraries included in CrystalDiffract or imported from an external CIF file. Additionally, diffraction patterns of mixtures consisting of multiple phases can also be refined while calculating the weight fractions of each component. CrystalDiffract is a self-contained powder diffraction program. It is equipped with optimal graphing tools, advanced simulations, interactive real-time parameter control, and intuitive measurement functions all in one program. The new features include not only Rietveld refinement but also automatic background removal, phase identification, and various other functions that assist in data analysis in the fields of crystallography and materials science.

  • crystal
  • X-ray Diffraction Equipment

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DNA sequence analysis software "CodonCode Aligner"

DNA sequence assembly and alignment

This is a program for Windows and macOS that helps with DNA barcoding, sequence assembly, contig editing, and mutation detection. It features a user-friendly and easy-to-understand interface, while also fully supporting quality scores for sequences compatible with Phred-Phrap.

  • Other analysis and sequence
  • Genetic Analysis Software
  • Other research software

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Digital Asset Management Solution 'NetX'

Building an on-premises digital asset management infrastructure.

We provide comprehensive support for the implementation of on-premises digital asset management NetX, including technical support, customization, and integration with other systems. We also offer consulting on building and optimizing workflows prior to implementation.

  • Database
  • Data Search Software
  • Document and Data Management

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A complete platform for successfully leading drug discovery: 'StarDrop'

Achieving improvements in the speed, efficiency, and productivity of the drug discovery process! We quickly provide optimally balanced compounds.

By quickly extracting diverse and excellent compounds, StarDrop operates while evaluating complex data, dramatically reducing the time required for effective lead compound exploration. In evaluating this data, it provides confidence and intuitive clarity for decision-making, guiding and validating the direction of research and which compounds to prioritize. This interactive tool enables you to efficiently open pathways to enhance your chosen chemical properties. 〇 Advantages of StarDrop - Development of more effective drugs By highlighting excellent chemical properties, it leads you to target areas with the greatest potential for multifaceted optimization and success in your research. - Confident decision-making It assists in managing uncertain data specific to drug discovery that arises from experimental variability and predictive errors. - Speeding up compound selection It significantly reduces the time needed to navigate the maze of possibilities and identify excellent lead compounds and candidate drugs. - More results from your research It helps you get the best from all your resources, delivering true value.

  • Data Mining
  • Other research software
  • Bioinformatics

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FMEA of secondary batteries

FMEA - Application Example for Cylindrical Lithium-Ion Secondary Batteries

Lithium-ion batteries are high-energy-density secondary batteries used in various fields such as onboard applications for HEVs and EVs, backup for power systems, and storage for renewable energy. As their range of use expands, safety has also become a focus of attention. Particularly, due to the high energy density of the batteries, caution is necessary as internal short circuits and thermal runaway can lead to major accidents. Against this backdrop, the quality of onboard batteries is regulated by the automotive-related standard IATF16949, and when exporting, the submission of documents (FMEA sheets) in accordance with the IATF16949 standard is mandatory. Additionally, for stationary secondary batteries, the safety standard IEC 62619 has been established. There are several shapes of lithium-ion batteries, but here we will explain cylindrical lithium-ion secondary batteries. The components of cylindrical lithium-ion secondary batteries can be broadly classified into eight elements.

  • Other production management systems

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Introduction to FMEA Using APIS IQ

FMEA - Introduction of Case Studies Using Automated Driving Monitoring Systems

[Steps in APIS IQ] FMEA consists of seven steps. Here, we will focus on the three most important and fundamental steps for conducting FMEA: structural analysis, functional analysis, and failure analysis. 1. Planning and Preparation: FMEA Scope Analysis 2. Structural Analysis: Create a structure tree from the selected system elements 3. Functional Analysis: Describe the "functions" of the system elements and create a function network 4. Failure Analysis: Describe the "failures" corresponding to the functions of the system elements and create a failure network 5. Risk Analysis: Management responsibilities, failure ranking: AIAG/VDA form / AP correspondence 6. Optimization: Measures to mitigate risks: AIAG/VDA form / AP correspondence 7. Documentation: Output and communication of results: AIAG/VDA form For more details, please check below. https://www.hulinks.co.jp/support/apis/gs/index.html

  • Other production management systems
  • Process Control System

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Streamlining Failure Analysis: Quality Management Software 'APIS IQ'

Integrated FMEA software that supports the promotion of quality management and functional safety.

APIS IQ is a standard product in the field of FMEA and risk analysis, having met the high demands of over 2,000 companies worldwide for many years. APIS IQ addresses issues that were difficult to achieve with traditional spreadsheet procedures. Unlike conventional tabular forms of FMEA, it enhances efficiency by clearly defining the relationships between components and processes in a tree structure. [Features] - Fully compliant with the international standard for the automotive industry, AIAG&VDA FMEA - Visualizes causal relationships through a network representation of structure, function, and failure - Mutual synchronization between the network and FMEA sheets - Management and support of documents in 31 languages - Supports automotive international safety standards ISO26262 and IATF16949 - Output functionality for FMEA sheets in AIAG/VDA and DRBFM formats - Statistical functions capable of outputting various statistical graphs - Ability to generate and synchronize process flow diagrams and control plans from PFMEA trees *Product names and other terms are trademarks or registered trademarks of APIS Informationstechnologien GmbH.

  • Other production management systems

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Generation of a comparison table that clearly shows the results of old and new documents - 'Old and New Document Word Version'

Generate a comparison table that clearly shows the results of the Word document comparison.

The New and Old Document Word version operates as a plugin for Microsoft Word. It mainly assists with the following two tasks: ■ Load new and old documents to generate a comparison table ■ Load the original document to create a new document while generating a comparison table * A server version that operates via command line for integration with other systems is also available.

  • Catalog and manual creation
  • Document and Data Management

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Calculation of the properties of optical thin film coatings "TFCalc"

Adopts an easy-to-use Win standard interface! All calculations are performed using 16-digit floating-point arithmetic.

"TFCalc" is a product that calculates the properties of optical thin film coatings formed on insulators and metals. It can simulate reflectance, transmittance, absorbance, electric field, and color. It can handle coating layers of up to 5000 layers, allowing for the design of coatings suitable for special applications. Please feel free to contact us when you need assistance. 【Main Features (Partial)】 ■ Thin Films - Up to 5000 layers can be set on the front and back of the substrate. ■ Analysis - Calculation of reflectance, transmittance, absorbance, optical density, loss, phase difference, psi, and electric field intensity. ■ Optimization - Supports three methods: variable metric method, gradient method, and simplex method. *For more details, please download the PDF or feel free to contact us.

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Topographic map creation software "Surfer"

Industry-standard mapping software supported by experts.

Surfer is a flexible and user-friendly tool for creating contour and 3D surface maps. Collected data can be displayed as high-quality 2D and 3D maps or models while maintaining accuracy and precision by utilizing a wealth of tools. It interprets complex geospatial datasets and transforms them into clear and understandable models. 【Features】 ■ Equipped with advanced data interpolation algorithms, including Kriging, CoKriging, Inverse Distance to a Power, and Polynomial Regression. ■ A wide variety of map types, including Base Map, Contour, Post/Classed Post, 3D Surface, and Vector. ■ 3D display of 2D/3D grid data. ■ Overlaying aerial photos and planning maps on surfaces, taking geographic information into account. ■ Creation, editing, and recording of fly-through videos. ■ Exporting models to 3D PDF and VRML files.

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Chemical/Bio Electronic Laboratory Notebook "Signals Notebook"

Cloud-based electronic lab notebook system with ChemDraw integrated.

Signals Notebook is a comprehensive cloud-based collaboration platform utilized across a wide range of research fields such as biology, chemistry, pharmaceuticals, materials, analysis, and food. It is designed to be the only electronic lab notebook (ELN) solution that can be used for a long time in the future. With just a web browser and an internet connection, you can connect with colleagues and collaborators from anywhere in the world at any time, sharing experimental notes and data. Signals Notebook is central to advancing the digital transformation (DX) of research activities, optimizing data reuse, and supporting informed decision-making.

  • Database
  • Data Search Software
  • Other research software

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Industry-standard chemical structure drawing and advanced analysis tool 'ChemDraw'

Science software that supports the research activities of chemists and biologists.

By using ChemDraw, you can quickly transform ideas and drawings into impressive publications. Signals ChemDraw is an evolved version of ChemDraw and is the latest intuitive cloud-native chemical communication suite. It streamlines the management of molecular and reaction data, providing a consistent experience from drawing to collaboration and reporting.

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DNA sequence assembly "CodonCode Aligner"

DNA sequence assembly and alignment

CodonCode Aligner is a program that helps with DNA barcoding, sequence assembly and contig editing, and mutation detection. The Aligner has a user-friendly and easy-to-understand interface while fully supporting quality scores of sequences compatible with Phred-Phrap.

  • Bioinformatics

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Cloning Tool Gene Construction Kit

Construction and editing of DNA sequences and creation of plasmid maps.

This is a desktop cloning tool that has dramatically simplified the handling of DNA sequences with its graphical operation system and advanced drawing features. You can customize various formatting options for nucleotide sequence strings, features, annotations, and graphic elements as you wish. With the Gene Construction Kit, you can obtain electrophoresis patterns simply by selecting enzymes on the restriction enzyme map.

  • DNA analysis

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Chemical calculation software / General-purpose quantum chemistry calculation program 'Gaussian'

Providing cutting-edge methods and technologies for electronic state calculations and computational chemistry models across a wide range of fields, including chemistry, biochemistry, and physics.

Gaussian 16 is the latest version of the Gaussian series of electronic structure programs. It provides cutting-edge methods and techniques for electronic state calculations and computational chemistry models for researchers in a wide range of scientific fields, including chemistry, biochemistry, and physics. There is a diverse range of available platforms, and all computational chemistry functionalities can be used on any of these platforms. 【Features】 ■ GPU-based parallel computing ■ New DFT functionals (M08HX, MN15, MN15L, PW6B95, PW6B95D3) ■ Non-harmonic vibrational analysis methods such as DCPT2 and HDCPT2 ■ Supports NBO7 ■ Python interface

  • Computational Chemistry
  • Other research software
  • Other Software

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Spin Quantum Bit Finite Element Method Simulator "QTCAD"

Chemical calculation software / Finite element method simulator for predicting the performance of spin qubits before manufacturing.

By predicting performance, significant savings in time and cost can be expected, allowing for the exploration of more designs compared to traditional methods. QTCAD uses nonlinear Poisson, Schrödinger, and many-body solvers to calculate the energy levels of electrons or holes confined in envelope functions and nanostructures within the framework of k·p theory. 【Main Features】 - Electrostatic tool for semiconductor quantum dot confinement potentials - Many-body Schrödinger solver for electrons and holes - Governing equation solver for quantum transport calculations in sequential tunneling (Coulomb blockade) - Nonequilibrium Green's function method solver for nonequilibrium quantum statistics and quantum transport in 2-probe devices - Efficient workflow for charge stability diagrams of small quantum dot systems, including cross-capacitance effects - Quantum mechanical treatment of magnetism (orbital and Zeeman effects) and spin-orbit coupling - Strain solver for calculating conduction band edge shifts and valence band mixing effects for electrons or holes

  • Other semiconductors

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All-atom simulation 'RESCU' using density functional theory.

Chemical calculation software / Optimized to obtain high-precision large-scale DFT solutions, covering all functionalities.

Ab initio simulations are achieved by discretizing the Kohn-Sham equations on real-space grids using plane waves or atomic orbitals. This high performance derives from numerical analysis, parallel design, and parallel implementation. Based on advanced numerical analysis and parallel implementation, a state-of-the-art general-purpose Kohn-Sham DFT package enables the prediction of material properties on small-scale computing clusters. In addition to standard electronic structure analysis, density functional perturbation theory is implemented, allowing for the calculation of various response functions such as polarizability, phonon band structures, and optical properties.

  • Other embedded systems (software and hardware)
  • Computational Chemistry

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Cutting-edge general-purpose first-principles quantum transport package 'NanoDCAL'

Chemical calculation software / Capable of predicting non-equilibrium quantum transport of nanostructures including current-voltage characteristics of nanoscale devices.

NanoDCAL (Nano DFT Calculator) is implemented using the linear combination of atomic orbitals (LCAO) approximation of NEGF-DFT. This product is a general-purpose tool for ab initio modeling of non-equilibrium quantum transport and has contributed to hundreds of scientific papers in various fields, including molecular electronics, nanotubes, topological insulators, batteries, magnetic tunnel junctions, and metallic grain boundaries.

  • Other embedded systems (software and hardware)
  • Computational Chemistry

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Mathematica: A Technical Computing System for Research and Education

Seamlessly from idea to result. It has countless built-in functions.

"Mathematica" is a processing system that incorporates countless functions available across a wide range of fields, from science, engineering, biotechnology, medicine, finance, art, and education to hobbies. It is undoubtedly a tool for users to materialize their ideas and a partner in their research and development, consistently providing surprises and discoveries. 【Features】 ■ An all-in-one integrated system ■ Powerful and user-friendly ■ Seamlessly integrated with the cloud ■ Instant access to real-world data ■ Over 150,000 examples *For more details, please refer to the PDF materials or feel free to contact us.

  • Other information systems

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1D simulation software "SystemModeler"

A Modelica-based 1D simulation software developed by Wolfram Research, famous for Mathematica.

Wolfram SystemModeler has all the tools necessary for physical modeling and simulation. Wolfram SystemModeler does not require any add-ons and fully supports the Modelica language. When integrated with Mathematica, it provides a comprehensive environment for rapid iteration of integrated analysis, understanding, and system development. It is truly a driving force for insights, innovation, and results.

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Measurement Data Analysis Software 'FlexPro'

Excellent performance and user convenience! Just click a button to execute analysis and display.

"FlexPro" is application software that allows for simple graphing, analysis, and documentation of various measurement data on a computer. It supports binary data from a variety of measurement devices and data collection software, including common software like Excel. 【Features】 - Excellent graph creation capabilities - Supports various logger data formats https://www.hulinks.co.jp/software/da_visual/flexpro/section03_format - Allows waveform verification with markers in an oscilloscope-like manner - Capable of various processing and analysis, including digital filters, spectral analysis, and order analysis https://www.hulinks.co.jp/software/da_visual/flexpro/section02/section02_compare - Enables scriptless execution of diverse analyses through various analysis modules - Quickly search for data to analyze using index-based search - VBA-based scripting capabilities - Automation through powerful template functions - Strong report creation capabilities

  • Other measurement, recording and measuring instruments

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Geochemical (Geochemistry) modeling software 'GWB'

Standard software for geochemical reaction simulation for environmental and geological analysis.

It is used in over 3,000 research sites in the fields of resource development and environmental studies worldwide. By introducing GWB, which features an immediately usable user interface, fully integrated graph functions, highly optimized algorithms, and advanced software architecture, you can efficiently handle all tasks in geochemical research, regardless of scale. It is also possible to generate phase diagrams and "true" activity diagrams, calculate stable isotope fractionation, set partial pressures, and model isotope transport. 【Three Editions】 ■ GWB Professional A package equipped with all the functions for earth science research. ■ GWB Standard An edition ideal for spreadsheets, diagrams, and multi-component reaction modeling. ■ GWB Essentials Performs basic tasks in geochemical modeling.

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Visualizing crystal structures and molecular structures: "CrystalMaker"

Standard software in crystallography

CrystalMaker is a tool for efficiently constructing and visualizing crystal structures. Through an interactively designed interface, you can manipulate specific parts while considering their relationship with the surroundings, and build models to understand complex material structures. 【Features】 ■ Go far beyond traditional crystallography software by dynamically manipulating visualized results and creating rotating animations. ■ The energy modeling tool allows you to minimize (relax) the energy of crystal structures, predict vibrational properties, and estimate various physical property values. ■ You can perform modeling of not only crystal structures but also molecular structures, as well as calculations for relaxation and vibrational modes. ■ The accompanying CrystalViewer is equipped with a carefully curated library of field-specific structures. ■ By using the powder diffraction software CrystalDiffract and the single crystal diffraction software SingleCrystal in conjunction, you can simulate powder diffraction patterns of crystal structures, as well as X-ray, neutron, and TEM diffraction patterns of single crystals.

  • crystal
  • X-ray Diffraction Equipment

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Experimental Design Software "Design-Expert"

A rich set of experimental design tools that meet all experimental needs.

We assist in screening important factors, identifying optimal product configurations, and arranging ideal processes. Using a rotatable 3D plot, response surfaces can be easily displayed from any angle. It is useful in various scenarios such as experimental design, parameter optimization, and process optimization. 【Main Features】 - Level factor screening plans - Investigation of general factors - Response Surface Methodology (RSM) - Mixture design techniques - Combinations of process factors, mixture components, and categorical factors - Design and analysis of split plots - Logistic regression for binary data analysis

  • Other analyses
  • Data Mining
  • Other research software

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Specialized graph creation software for scientific technology, 'SigmaPlot'.

Analysis and graph creation that elevates research results to the highest expression.

It is a cutting-edge graph creation program designed for the Windows platform, specifically for academic purposes. The software specializes in graphically representing research results and is particularly aimed at supporting the creation and publication of papers. Equipped with a wealth of tools for producing publication-quality clear graphs, data analysis, and presentations, it facilitates the accurate representation of research findings. It offers a variety of specialized options tailored for scientific and technical use, such as automatic error bars, regression lines, confidence intervals, axis breaks, special axis scales, and nonlinear curve fitting, along with a powerful worksheet that enables robust data manipulation.

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  • Graph Analysis

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Graph Creation and Data Analysis for Researchers: KaleidaGraph

Standard tools for graph creation and data analysis.

KaleidaGraph is a graph creation and data analysis application for people active in research fields. It creates scientifically accurate graphs and easily transforms complex data into functional displays. ■Graph Creation: Data Visualization You can directly open Excel files or import data from text files (such as CSV) to create graphs. Various types of graphs, including linear, statistical, bar, polar, circular, and functions, can be selected from the gallery menu to visualize the data. ■Data Analysis: Investigation, Analysis, Learning of Results You can analyze data by applying various types of curve fitting (creating regression curves). In addition to basic fitting, including least squares (linear) regression and smoothing, there is a specialized formula library with over 100 user-defined functions available. ■Graph Editing Features: Visualizing Results Clearly and Persuasively Every element of the graph, including axes, scales, grids, labels, markers, lines, and colors, is customizable. Use the layout window to arrange multiple plots on a single page.

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  • Graph Analysis

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[Mathematica Introduction Case Study] Helping to Unravel Phase Transitions in the Universe

Intuitively usable! Examples of how it is useful as a daily calculation notebook.

To the Yozhef Stefan Institute, we would like to introduce a case study on the implementation of "Mathematica." At the institute, it is utilized as a support tool for theoretical calculations such as symbolic processing (calculus, differential equations, infinite sums, series expansions, etc.), function calculators, and plotting functions and data. We have received feedback that it is extremely helpful not to have to open a reference book for various operations involving special functions. 【Product Appeal】 ■ A very large number of functions are supported from the start, and the quality is high. ■ The arguments and function names are standardized. ■ Mathematical definitions are clearly written. *For more details, please download the PDF or feel free to contact us.

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[Mathematica Introduction Case] Research and Education in Particle Physics

An example of experimental research utilizing particles called neutrinos.

At the Tohoku University Neutrino Science Research Center, we would like to introduce examples of how 'Mathematica' has been utilized in research and education in particle physics, as well as in writing reference books. It is mainly used for symbolic calculations of complex equations, checking for errors in manual calculations, and verifying propositions that cannot be mathematically proven by using random numbers. There are commands that intuitively simplify equations, and its stable performance is also one of its appealing features, as we have received feedback. 【Product Highlights】 ■ Capable of symbolic calculations for complex equations ■ Can perform various types of calculations, such as factoring and calculating eigenvalues and eigenvectors of matrices ■ Allows verification of the correctness of manual calculations by substituting random numbers for parameters ■ Enables easy creation of diagrams and graphs ■ Stable performance *For more details, please download the PDF or feel free to contact us.

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[Mathematica Introduction Case] Failure Prediction

An example where building and training a network model could be easily executed with a short program.

At Kanagawa University, Faculty of Engineering, Department of Management Engineering, we will introduce a case study on the implementation of 'Mathematica' in reliability engineering. This product is utilized for statistical analysis and numerical calculations. It is highly valued due to its extensive implementation of probability distributions such as CopulaDistribution, and it is used for solving equations and mathematical optimization functions when searching for the probability distribution that best fits the data. Additionally, it is noted that there are plans to consider its use in education in the future. [Results] - Not only is the implementation of probability distributions comprehensive, but the functions for engineering analysis, such as reliability analysis, are also well-developed and very useful. - The construction of network models and learning processes can be easily executed with short programs, which is very helpful. *For more details, please download the PDF or feel free to contact us.

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[IGOR Pro Case Study] Next-Generation Optical Device Research

Examples of applications in the analysis and editing of spectra and image images.

We would like to introduce a case where 'IGOR Pro' has been implemented at the Osaka Prefectural University 21st Century Science Research Institute, Nano Science and Materials Research Center. The introduction of our product was prompted by the need to create a program for batch processing and editing large amounts of spectral data. It is mainly utilized for the analysis and editing of spectra and image data. Users have expressed that it is convenient to manipulate data and graphs using command lines like gnuplot, and that it is useful for creating figures for papers due to the ability to finely adjust the appearance of graphs. [Reason for Implementation] ■ The need arose to create a program for batch processing and editing large amounts of spectral data. *For more details, please download the PDF or feel free to contact us.

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

Introducing examples that became powerful tools in the stage of deriving approximate equations.

At Meiji University, Faculty of Comprehensive Mathematical Sciences, Department of Phenomenological Mathematics, we would like to introduce examples of the use of 'Mathematica'. This product has been utilized in research such as the construction of pattern solutions in reaction-diffusion systems, applications of pattern functionality, and explosion problems and their applications. By visualizing, the image of mathematical formulas becomes concrete, and it has been helpful when considering the direction of proofs. 【Case Summary】 ■ The numerical calculation and drawing functions for ordinary differential equations are very simple, so they are used frequently. ■ When illustrating calculation results, the features of this product (such as using Manipulate[] to change parameters and draw graphs) are very useful. *For more details, please download the PDF or feel free to contact us.

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[Mathematica Introduction Case Study] Medical Radiation Technology Field

Examples of building unique analysis algorithms and utilizing them in research.

We would like to introduce a case where 'Mathematica' was utilized for data analysis in the field of medical radiation technology at Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences. It was used for complex data analysis, such as analyzing images from two different X-ray energies outputted from a CT device and processing time-series data from three detectors. We received feedback expressing a desire to conduct many studies using our product by mastering the List/Table functions, which hold infinite possibilities depending on the ideas. 【Product Appeal】 ■ A wealth of built-in functions and an interface that is easy for beginners to use. *For more details, please download the PDF or feel free to contact us.

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[Mathematica Introduction Case] Utilized for Supporting Intellectual Activities

Examples of the use of basic and applied mathematics education, as well as learning commons, as a learning support environment for students.

At Doshisha University, we would like to introduce examples of how "Mathematica," "Wolfram|Alpha," and "Wolfram|Alpha Notebook Edition" have been utilized to support intellectual activities related to numbers. The initiative began with awareness activities on the use of symbolic computation systems in collaboration with representatives from Wolfram Research, leading to the adoption of these products. They are being used in remedial education for first-year university students in partnership with high schools. Since their introduction, these tools have contributed to students' smooth learning by providing calculation results and processes in response to their inquiries. 【Future Prospects】 - Utilization courses for the entire university (verification of calculations, validation of theories, visualization) - Basic mathematics lectures - Effective use in exercises, etc. *For more details, please download the PDF or feel free to contact us.

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[Mathematica Introduction Case Study] Application to Quantitative Analysis of Biological Shapes

Introducing examples of seamless visualization in 2D and 3D.

To the Department of Biological Sciences, Graduate School of Science, Kyushu University, we would like to introduce a case study of the implementation of "Mathematica." We utilize this product for analyzing and processing formulas, as well as for visualization in the analysis of organized models that describe forms and shapes. Through formula processing, we are able to advance the analysis while maintaining versatility, and we have received feedback that it is convenient to confirm what kind of "shape" or growth pattern is actually demonstrated based on specific parameter values. 【Attractions of the Product】 ■ It supports a wide variety of data formats and allows for seamless visualization in both 2D and 3D. *For more details, please download the PDF or feel free to contact us.

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[Mathematica Introduction Case Study] Mathematical Processing Algorithms and Applied Research

Examples of applications used for solving mathematical problems and as an introduction to programming.

We would like to introduce examples of the use of 'Mathematica' in algorithm and applied research for symbolic computation, as well as in computational exercises in the mathematics department at Tsukuba University, Department of Mathematical Sciences / Center for Artificial Intelligence Science. The product is utilized for an introduction to symbolic computation systems, solving mathematical problems using symbolic computation systems, and an introduction to programming. In the context of program development and computer education, we have received feedback highlighting its many appealing features, such as effective method selection according to application, and flexibility that allows for easy construction of interactive UIs. 【Product Appeal】 ■ Versatility that supports advanced algorithms for computer algebra and various computational methods for scientific and technical calculations. ■ Flexibility to accommodate both procedural and functional programming, allowing for effective method selection based on computational goals and applications, as well as easy construction of interactive user interfaces. *For more details, please download the PDF or feel free to contact us.

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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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[SystemModeler Implementation Case] Tokyo University of Agriculture and Technology

A case where the suitable installation position of the device was determined through the use of simulation, without the need for repeated prototypes.

We would like to introduce a case where 'SystemModeler' was implemented in the research on constructing a component selection system for a robotic arm using simulations and evaluating the validity of the created simulation model by comparing it with the actual machine at the Department of Mechanical Systems Engineering, Faculty of Engineering, Tokyo University of Agriculture and Technology. By using the simulation model as a substitute for the prototype, we were able to utilize it in the design of the robotic arm by checking the load on the motor and other factors. Since it is component-based, we received feedback that the model can be easily assembled and is user-friendly. 【Research Results (Partial)】 ■ By using the simulation model, we were able to construct a component selection system that assumed the loads applied when the robot was actually operated. ■ By conducting investigations using the simulation model, we were able to derive suitable mounting positions without the need for repeated actual prototypes. *For more details, please download the PDF or feel free to contact us.

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[IGOR Pro Case Study] Semiconductor Quantum Dot Light Source for Quantum Cryptography Communication

Examples of applications used in a wide range of areas such as graph creation, matrix calculations, and numerical solutions of simultaneous differential equations.

We would like to introduce a case where 'IGOR Pro' has been implemented at the Research Institute for Electronic Science, Hokkaido University, in the field of Nano-Optical Functional Materials. The product is utilized for a wide range of applications including organizing experimental data, analysis, fitting, convolution integrals using instrumental functions, simulations (including custom programs), graph creation, matrix calculations, and numerical solutions of simultaneous differential equations. It integrates data organization, advanced analysis, graph plotting, and programming, which means that in most cases, there is no need to use other software, making it a very effective tool, as we have received feedback. 【Reason for Implementation】 ■ It can process everything from loading acquired data to extracting values through fitting, and instantly create high-quality graphs suitable for presentations at conferences. *For more details, please download the PDF or feel free to contact us.

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[IGOR Pro Case Study] Evaluation and Verification of Transmission Characteristics

Examples of the execution of transmission simulations and the display and analysis of results.

We would like to introduce a case where "IGOR Pro" has been implemented at Koyama College of Technology. The product was introduced due to its convenient environment that allows for data loading, programming, and analysis all in one, as well as its robust graphing capabilities. It is utilized for analyzing frequency characteristic data of measured printed circuit board wiring, graphing, and executing transmission simulations based on the measured characteristics, along with displaying and analyzing the results. 【User Experience of the Product】 ■ Rich functions and graphing capabilities ■ The "File Save" feature allows for saving the workflow of previous tasks, enabling a return to the exact state at the time of saving for the next session ■ With basic knowledge of programming in C language, it is relatively easy to develop advanced analysis programs by applying the built-in functions ■ Compared to programming in C language, handling matrices and complex numbers is easier *For more details, please download the PDF or feel free to contact us.

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[Igor Pro Case Study] Experimental Research on Pressure Changes

A case where a series of experiments could be organized into a single experiment file.

We would like to introduce a case study of the implementation of "Igor Pro" at the Department of Engineering, Shibaura Institute of Technology. In this laboratory, the product is utilized for graphing and model fitting of almost all experimental results, including structural analysis using X-rays, electrical resistance measurements, magnetization measurements, impedance measurements, and μSR measurements. We received feedback that it is convenient to easily leave notes in the experiment file during the analysis process and to annotate graphs. 【Product Highlights】 - Capable of easy and fast function fitting even with large data sets - Can handle many waves within a single experiment file - Capable of creating figures for presentations and submitted papers using only this product *For more details, please download the PDF or feel free to contact us.

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[IGOR Pro Case Study] Research on the Physical Properties of Perovskite Oxides

Examples of how it is used to create graphs in class.

Ibaraki National College of Technology, Department of Natural Sciences, would like to introduce a case where 'IGOR Pro' has been implemented in the field of physics. The product is utilized for data analysis and graph creation, as well as for creating graphs used in classes. When creating graphs for magnetization and magnetostriction at various temperatures, it is appreciated that similar graphs can be quickly produced by slightly modifying the contents of the graph macro. 【User Experience with the Product】 - I have developed the habit of properly naming waves with the intention of using graph macros, which has improved my data organization. - Basic arithmetic operations between waves can be performed immediately in the command line. - Everything is recorded in history, making it easy to review data processing. *For more details, please download the PDF or feel free to contact us.

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[IGOR Pro Case Study] Powder X-ray Diffraction Experiment

An example of realizing that coding becomes very easy by using the IGOR macro language.

We would like to introduce a case where "IGOR Pro" was implemented at the Advanced Ceramics Research Center of Nagoya Institute of Technology. The ability to display the progress of nonlinear least squares fitting using user-defined functions in an animated format was a significant factor in the decision to adopt this product. The macro functionality has become more powerful with each version upgrade, and particularly the array operation features are well-developed, allowing for efficient creation of data processing programs, as we have received feedback. 【Reasons for Implementation】 - The progress of nonlinear least squares fitting using user-defined functions is displayed in an animated format. - Using the IGOR macro language makes coding significantly easier. *For more details, please download the PDF or feel free to contact us.

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[Mathematica Introduction Case Study] From Creating Teaching Materials to Analysis and Research

Examples of how to utilize methods for visualizing calculation results.

We would like to introduce a case where 'Mathematica' was utilized in creating teaching materials at Toyama University. This product was used when teaching simple programming and handling methods for visualizing calculation results. It was noted that the environment setup, such as application configuration and compiler, which is necessary for C language/Python, is very easy with this product, making the transfer of small programs very smooth. 【Product Appeal】 ■ Allows for precise evaluation as far as the computational memory permits ■ Even in approximate calculations, you can specify significant figures and precision, allowing you to know which digits in floating-point calculations are reliable ■ Operates the same way on any PC, making setup easy *For more details, please download the PDF or feel free to contact us.

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