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Simulation Software(cnc) - List of Manufacturers, Suppliers, Companies and Products | IPROS GMS

Last Updated: Aggregation Period:Jan 21, 2026~Feb 17, 2026
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Simulation Software Product List

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Improving reliability with high-precision CNC simulation software.

Companies engaged in CNC machining around the world have chosen Vericut for over 35 years, making their machining operations more efficient.

Would you like to solve the problems of CNC machining? Non-functioning machines, damaged tools, expensive collision issues, discarded parts, prolonged test runs, wasted materials... These problems take away valuable time and costs. Vericut ensures machining accuracy by simulating the entire CNC machining process. It derives the "correct" result in a single machining operation.

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PRO-CNC NC Machine Tool Operation Training Simulation Software

PRO-CNC NC Machine Tool Operation Training Simulation Software

"PRO-CNC" is a NC machine simulation software that fulfills the wishes of training personnel who are struggling with "how to provide machine operation education to acquire professional skills in a short time." It offers an environment where users can learn machining operations on a PC by simulating real CNC machines. Notably, the unique feature of PRO-CNC is that it allows the connection and operation of a real handle MPG to the PC, which is not available in other software. It enables efficient and effective human resource development utilizing IT, and proposes educational methods that are suited to the times and environment.

  • simulator
  • Virtual Reality Related
  • Other CAM related software
  • Simulation Software

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CNC machine simulation software 'Vericut 9.5'

Connect the CNC machine to Vericut.

CGTech has released the latest version 9.5 of the Vericut software in Japanese! Vericut is the industry leader in machine simulation, verification, and optimization for various types of CNC machining, additive, and hybrid manufacturing processes. While Vericut operates as a standalone application, it supports integration with major CAM and tool management systems. In addition to improvements in the core aspects of the product, 'Vericut V9.5' focuses on enhancing connectivity across the entire manufacturing workflow, enabling organizations to do more with the resources they already have. 【Vericut V9.5 Highlights】 ■ Efficient optimization ■ Improvements to VERICUT Reviewer files ■ Enhanced tool data ■ New ToolsUnited interface *For more details, please refer to the PDF materials or feel free to contact us.

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  • Other CAM related software
  • Simulation Software

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CNC simulation software『Vericut 9.6』

AI MEETS PRECISION

CGTech Releases the Latest Japanese Version of Vericut Software – Version 9.6! Vericut is the industry leader in machine simulation, verification, and optimization for various types of CNC machining, additive, and hybrid manufacturing processes. While Vericut operates as a standalone application, it also supports integration with major CAM and tool management systems. In addition to core product enhancements, Vericut V9.6 introduces two groundbreaking AI-powered features: ・ Vericut Assistant provides integrated AI support within the Vericut software. ・ Vericut Intelligence offers an easily accessible and user-friendly intelligent knowledge hub for Vericut. Highlights of Vericut V9.6: ・ AI Integration Features ・ Enhanced Reviewer Functionality ・ Support for PMI (Product Manufacturing Information) For more details, please refer to the PDF document or feel free to contact us.

  • Milling machine
  • lathe
  • Other machine tools
  • Simulation Software

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NCSIMUL User Case

We would like to introduce examples of customers who use NCSIMUL.

NCSIMUL is an all-in-one solution software that can simulate 5-axis CNC machines. It virtually reproduces the environment of actual CNC machines in the software, allowing for the early detection of issues that may arise during machining, such as error avoidance.

  • 3D CAD
  • simulator
  • Simulation Software

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[Visual Components Case Study] Visualization of CNC Machining

Introducing a case where the speed and efficiency of proposal creation have dramatically improved!

We would like to introduce a case study on the implementation of "Visual Components" at Mazak UK, a company specializing in CNC machine tools. The company faced challenges in conveying the complexity of the PALLETECH system using traditional 2D drawings, which hindered smooth communication with customers and prolonged the time taken to make proposals. However, the introduction of our product dramatically changed the situation. It not only significantly reduced project planning and execution time, improving efficiency, but also strengthened engagement with customers, leading to new achievements. 【Case Overview】 ■Challenges - It was difficult to explain and incorporate the advanced and flexible modular production system "PALLETECH system" into planning. ■Results - Previously, it took about 4 days to create a proposal, but now it can be done in about 30 minutes. *For more details, please download the PDF or feel free to contact us.

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Efficient additive manufacturing with Vericut.

Simulation of both additive manufacturing and conventional subtractive machining (cutting).

With Vericut's additive module, you can simulate hybrid composite processing. The Vericut additive module accurately simulates additive manufacturing (layered construction) and traditional subtractive processing (machining) in hybrid composite processing.

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CNC Machine Simulation Vericut

CNC manufacturers around the world have chosen Vericut for over 35 years, making their machining processes more efficient.

By using the CNC simulation software Vericut, you can simulate machining parts on your PC before actually processing them with a machine. This helps prevent errors, mistakes, and human errors that could lead to damage to machines, parts (workpieces), jigs, and tools, as well as accidents with machine tools. Additionally, not only does it prevent errors and mistakes, but by using the NC program optimization module (feed rate optimization), you can shorten the machining cycle time and improve machining efficiency. Furthermore, Vericut offers many convenient features, such as precise part measurement using the cutting model after simulation and support for creating various reports like inspection sheets and machining instructions. Vericut has a modular licensing management system, providing flexibility for implementation. You can purchase the necessary functions (modules) in the required quantities. Even after implementing Vericut, you can easily add modules by purchasing the necessary modules and simply adding the license file.

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Achieving amazing automation! Offline teaching software

An operation that anyone can do! Offline teaching software that achieves overwhelming process automation.

"RobotWorks" is a simulation and robot file creation software that operates on SolidWorks. It allows for easy operation and automation of processes. Creating thousands of path points takes less than 5 minutes. It has a wide variety of features, including robotics capabilities that support 6 axes + 2 external axes + 2 linear axes. [Features] ■ Easy operation for anyone ■ Overwhelming process automation ■ Amazingly low price ■ Diverse range of functions *For more details, please refer to the PDF document or feel free to contact us.

  • Other industrial robots
  • Simulation Software

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NC machining simulation software 'VERICUT ver9.1'

Further evolved simulation

VERICUT's CNC machine simulation, verification, and optimization software simulates all types of CNC machining, additive manufacturing, and hybrid manufacturing processes. The software operates as a standalone application but can also integrate with major CAM systems. VERICUT 9.1 is an even more advanced simulation that enhances efficiency with several new cutting-edge features, allowing users to accomplish more in a shorter time. In addition to new visibility options, tool path optimization, additive manufacturing, tooling and multi-tool stations, and enhanced measurement and inspection/reporting capabilities are just a few of the notable features in this latest release. This latest version also incorporates hundreds of customer-driven improvements and software requests.

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  • Other CAM related software
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Machine Motion Cutting Simulator 【NCSIMUL】

A high-precision NC simulator that can accurately visualize blade edges down to the micron order. It fully simulates the movements of special machine tools, such as composite machining centers.

NCSIMUL is an all-in-one solution software that can simulate 5-axis CNC machines. It virtually reproduces the environment of actual CNC machines in software, allowing for the early detection of issues that may arise during machining, such as error avoidance. ◆ It is a simulator based on G-code that allows for the verification of cutting and layering operations. ◆ It can integrate with various CAD/CAM systems, allowing you to use the same environment from CAM directly in NCSIMUL. ◆ Without returning to CAM, you can import G-code or APT files to rearrange or add to the sequence of machining processes.

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  • Other CAM related software
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hyperMILL VIRTUAL Machining

High-efficiency and highly reliable simulation based on NC code! Everything is for the purpose of utilization in analysis.

The simulation feature 'VIRTUAL Machining' of 'hyperMILL' reproduces the operation of machine tools on a PC and checks the program. Users can grasp all processes and analyze them in detail. In real-time, it allows users to confirm the actual machining situation within the simulation environment, with machining and simulation completely synchronized, and it enables easy control of the machine from a laptop PC. 【Features】 ■ Checking, evaluating, and optimizing machining processes ■ Job matching to available machine tools ■ Easy transfer of job tasks between available machine tools ■ Support for considering the purchase of new machine tools ■ Accurate cost estimation for competitive projects *For more details, please refer to the PDF document or feel free to contact us.

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G-code NC program simulation 'NC2Check'

We will conduct simulations to detect interference and collisions based on G-code. By verifying movements similar to those of actual machines, we can prevent accidents before they occur. *Demonstrations available.

"NC2Check" is a simulation that protects CNC machine tools from damage caused by interference and collisions during G-code NC program simulation. [Features] ■ Reproduces G-code NC programs It fully expresses machine-specific movements that could not be represented with CL data. Since the simulation is performed using G-code that actually moves the machine, accurate verification can be conducted. ■ Detects interference and collisions with jigs and clamps In addition to detecting collisions between the workpiece and tools, it also verifies all structures within the machine, detecting collisions with jigs and clamps. ■ High-fidelity machine simulation It allows for mapping the entire interior of the machine tool. It supports a variety of manufacturers' machine tools, enabling you to build a verification environment suited to your own equipment. *For more details, please request a catalog or view the PDF data from the download button above.

  • 3D CAM
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  • Other CAM related software
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NC data verification/simulation software "VERICUT"

Verification of NC data / Optimization of NC data / Machine simulation

"VERICUT" is software that can rapidly simulate machining based on the actual operation of machine tools from NC programs.

  • Other CAM related software
  • simulator
  • 3D CAM
  • Simulation Software

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Case Studies of Industrial Robot Implementation Available! "Solving Your Company's Challenges with ICT"

Introducing examples of efficient implementation of industrial robots! We support an optimal manufacturing environment with ICT! [Concept design, production, installation testing, operation]

At CE Company, we are developing a solution business in partnership with robot manufacturers to achieve the efficient introduction and utilization of industrial robots together with our customers. We provide comprehensive solutions that assist from conceptual design, manufacturing, and installation testing of industrial robots to operational phase condition monitoring and preventive maintenance, supporting our customers' production sites with ICT that helps reduce introduction costs, lead times, and improve operational rates. [Overview] ■ Conceptual Design - Layout design, feasibility verification ■ Manufacturing - Robot program creation, mechanical adjustments, standalone operation ■ Installation Testing - Connection to upper systems, virtual trial operation adjustments (Sub/Total-Assy), abnormal system testing ■ Operation (Maintenance) - Condition monitoring, preventive maintenance (failure prediction) For more details, please refer to our catalog or feel free to contact us.

  • Embedded system design service
  • Mechanical Design
  • Other industrial robots
  • Simulation Software

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Improving Processing Safety with Vericut for Medical Devices

We will enhance the safety of CNC machining in medical device manufacturing with Vericut.

In the medical device industry, the safety and reliability of products are the top priorities. The precision of CNC machining directly affects the performance of medical devices and patient safety. Machining defects and tool breakage can lead to product defects and unexpected accidents. Vericut reduces these risks through CNC machining simulation. 【Usage Scenarios】 * CNC machining of medical device parts * Manufacturing of complex-shaped parts * Production of parts requiring high precision 【Benefits of Implementation】 * Improvement in machining accuracy * Reduction of tool breakage and collision risks * Enhanced product reliability

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Yield Improvement with Vericut for Semiconductors

Improving semiconductor manufacturing yield with CNC simulation.

In the semiconductor manufacturing industry, there is a demand for the efficient production of high-quality products. In particular, high-precision processing is essential, as even slight errors can significantly affect yield. Issues in CNC machining, such as tool breakage, processing defects, and material waste, are major factors contributing to yield reduction. Vericut ensures processing accuracy by simulating the entire CNC machining process, preventing these problems before they occur. 【Usage Scenarios】 * CNC machining processes in semiconductor manufacturing * Processing verification during the prototyping stage * Optimization of NC programs before mass production 【Benefits of Implementation】 * Improved yield through reduced processing defects * Extended tool life * Reduced material waste * Shortened test run times

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Lightweighting and Reliability Improvement with Vericut for Aerospace Applications

Vericut streamlines CNC machining in the aerospace industry and supports lightweight design.

In the aerospace industry, lightweight components and high reliability are required. In particular, improving machining accuracy is essential for enhancing aircraft fuel efficiency and ensuring safety. Even slight errors in CNC machining or tool damage can lead to a decline in component quality and increased costs. Vericut supports machining accuracy and lightweight design by simulating the entire CNC machining process. It derives the "correct" result in a single machining operation, reducing unnecessary material and rework. 【Use Cases】 - Manufacturing of aircraft components - Manufacturing of rocket components - Manufacturing of drone components 【Benefits of Implementation】 - Reduced machining time - Minimized material waste - Extended tool life - Stable supply of high-quality components

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Improving Machining Accuracy with Vericut for the Automotive Industry

Improving the quality and efficiency of automotive parts processing with CNC simulation.

In the automotive industry, there is a demand for high-quality parts and efficient manufacturing processes. Particularly for parts related to safety, high machining precision is essential. However, machining defects and tool breakage can lead to losses in time and costs. Vericut ensures machining accuracy by simulating the entire CNC machining process, deriving the "correct" result in a single operation. 【Usage Scenarios】 * Prototyping and mass production of automotive parts * 5-axis machining, complex machining, multi-surface machining * Quality control, process improvement 【Benefits of Implementation】 * Improved machining precision * Reduction of defective products * Cost reduction

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Improving Reliability with Vericut for the Energy Industry

Over 35 years of experience. Vericut streamlines CNC machining for energy-related companies.

In the energy industry, the durability of components used in harsh environments, such as plants and power generation equipment, is crucial. To withstand high loads and maintain stable performance over long periods, high precision in CNC machining is essential. Issues such as non-operational machines, damaged tools, costly collision troubles, discarded parts, prolonged test runs, and wasted materials can drain valuable time and costs. Vericut ensures machining accuracy by simulating the entire CNC machining process, leading to the "correct" result in a single operation. 【Application Scenarios】 * Machining of turbine blades * Machining of generator components * Machining of plant equipment parts 【Benefits of Implementation】 * Improved component durability through enhanced machining accuracy * Cost reduction by minimizing defective products * Shortened test run times

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Maximizing Mold Life with Vericut for Molds

Vericut achieves efficiency and quality improvement in mold processing.

In the mold industry, the lifespan of molds is a crucial factor directly linked to productivity and cost. Early wear or damage to molds can lead to production interruptions, increased repair costs, and a decline in the quality of the final product. Vericut aims to prevent these issues through CNC machining simulation and extend the lifespan of molds. 【Usage Scenarios】 * Verification of machinability during the mold design phase * Extension of tool life through optimization of NC programs * Prevention of mold damage through anomaly detection during machining 【Benefits of Implementation】 * Reduction of mold manufacturing costs * Improvement of production efficiency * Achievement of high-quality molds

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Vericut 9.6 for Medical Devices

Improving the safety of medical device manufacturing with AI and precision machining.

In the medical device industry, the safety and reliability of products are the top priorities. CNC-machined medical device parts require high precision and quality, as they directly impact patient safety. Even a slight mistake in machining can lead to product malfunction or risks to patients. Vericut 9.6 reduces these risks by simulating G-code NC programs at the stage of machining to verify accuracy. 【Usage Scenarios】 - Safety verification in CNC machining of medical device parts - Interference checks in machining complex-shaped parts - Cost reduction through optimization of machining time 【Benefits of Implementation】 - Improved product reliability by reducing machining errors - Shortened development time by reducing the number of prototypes - Mitigation of cost increases due to machining defects

  • Milling machine
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  • Other machine tools
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Vericut 9.6 for Electronic Devices

Supporting the miniaturization of electronic devices with AI and precision machining.

In the electronics industry, there is a demand for miniaturization of products and high-precision processing. In particular, optimizing processing is essential to achieve complex shapes within limited space. If processing precision is low, it may lead to a decline in product performance and a deterioration in yield. Vericut 9.6 supports high-precision product manufacturing by optimizing processing steps through AI-driven simulation. 【Use Cases】 - Processing of enclosures for small electronic devices - Manufacturing of precision parts - Achieving complex shapes through multi-axis processing 【Benefits of Implementation】 - Reduction in processing time - Decrease in defective products - Improvement in product accuracy

  • Milling machine
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  • Other machine tools
  • Simulation Software

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Vericut 9.6 for the Energy Industry

Improving energy efficiency through the fusion of AI and precision machining.

In the energy industry, there is a demand for the optimization of manufacturing processes and improvement of quality. Particularly in the precision machining of components such as turbines and generators, high accuracy and reliability are essential. Vericut 9.6 performs simulations with G-code NC programs, achieving optimization and efficiency in machining. With AI support features and an intelligent knowledge hub, it streamlines the machining process and contributes to improved energy efficiency. 【Use Cases】 * Machining of turbine blades * Manufacturing of generator components * Multi-axis machining of high-precision parts 【Benefits of Implementation】 * Reduction in machining time * Extension of tool life * Improvement in quality

  • Milling machine
  • lathe
  • Other machine tools
  • Simulation Software

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Vericut 9.6 for Shipbuilding

Pioneering the future of shipbuilding with AI and precision machining.

In the shipbuilding industry, as the trend towards larger sizes continues, the precision of parts and processing efficiency are becoming increasingly important. Particularly in the manufacturing of massive structures, even slight errors can significantly impact the overall quality. Vericut 9.6 enhances processing accuracy by faithfully simulating G-code NC programs and reduces unnecessary processes. It also features AI support functions to assist in optimizing complex machining processes. 【Usage Scenarios】 - Machining of large ship parts - Machining of complex-shaped parts - Utilization of multi-axis machining machines 【Effects of Implementation】 - Reduction in processing time - Decrease in defective products - Cost reduction

  • Milling machine
  • lathe
  • Other machine tools
  • Simulation Software

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Vericut 9.6 for molds

Improving the precision of mold processing through the fusion of AI and precision machining.

In the mold industry, there is a constant demand for improving the precision of molds, which directly affects product quality. Particularly for molds that require complex shapes and high precision, reducing machining errors is crucial. Vericut 9.6 conducts machining simulations using G-code NC programs, contributing to the improvement of mold machining accuracy through pre-inspection of overcutting/undercutting by comparing cutting models with design models, and optimizing NC programs considering tool load. 【Usage Scenarios】 - High-precision mold machining - Complex shape mold machining - Multi-axis machining 【Benefits of Implementation】 - Improved machining accuracy - Reduction of defective products - Shortened machining time

  • Milling machine
  • lathe
  • Other machine tools
  • Simulation Software

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Speeding up with Vericut Optimizer for the automotive industry

We will optimize the NC program to improve the processing efficiency of automotive parts.

In the automotive industry, there is a constant demand for shortening product development cycles and reducing costs. In particular, optimizing NC programs during the prototyping and mass production stages is essential for reducing machining time, minimizing material waste, and enabling early market entry of parts. The Vericut Optimizer is an NC program optimization solution that can operate independently without using Vericut. This allows for the streamlining of NC programs without changing the existing CAM environment, contributing to enhanced competitiveness in automotive parts manufacturing. 【Usage Scenarios】 - Optimization of NC programs in the prototyping and mass production of automotive parts - Cost reduction through shortened machining time - Minimization of material waste 【Effects of Implementation】 - Reduction in machining time - Decrease in material costs - Shortened time to market for parts

  • simulator
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Optimization of Tool Life by Force for Molds

Extend tool life in mold processing with Vericut Force.

In the mold industry, high-precision machining and the longevity of tools are required simultaneously. Early wear and damage to tools can lead to decreased productivity and increased costs, making proper tool management essential. Vericut Force contributes to extending tool life by optimizing NC programs and reducing the load on tools. 【Usage Scenarios】 - Maximizing tool life in mold machining - Achieving high-precision mold machining - Reducing machining time 【Benefits of Implementation】 - Reduced frequency of tool changes - Increased productivity - Cost reduction

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  • Milling machine
  • Simulation Software

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Optimization of Micromachining by Force for Medical Devices

Optimizing NC programs for precision machining of medical devices with Vericut Force.

In the medical device industry, the precision of micro-machining is crucial for ensuring product quality and safety. Particularly for precision components such as implants and surgical instruments, there is a demand for reduced machining time and improved tool life. Inadequate NC programming can lead to machining defects and premature tool wear, potentially resulting in increased costs. Vericut Force addresses these challenges by optimizing NC programs and improving machining time and tool life. 【Application Scenarios】 - Micro-machining of medical device components - Implant manufacturing - Surgical instrument manufacturing 【Benefits of Implementation】 - Reduced machining time - Extended tool life - Improved machining accuracy

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  • Milling machine
  • Simulation Software

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Vericut 9.6 for Heavy Industry

Improving the durability of heavy industry through the fusion of AI and precision machining.

In the heavy industry sector, the durability and reliability of products are the most important issues. To manufacture products that can withstand use in harsh environments, improving machining accuracy is essential. Vericut 9.6 supports the optimization of machining and quality improvement by simulating machine tools using G-code NC programs. This contributes to enhancing product durability. 【Application Scenarios】 * Machining of large machine parts * Manufacturing of parts requiring high precision * Multi-axis machining and complex processing 【Effects of Implementation】 * Reduction in machining time * Extension of tool life * Improvement in product quality

  • Milling machine
  • lathe
  • Other machine tools
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