Products related to Process:
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Contextual Process Digitalization
This open access book presents an overview and step-by-step explanation of process management. It starts with the individual participants' perspectives on their work in a process and its structuring and harmonization, and then moves on to its specification in a model and how it is embedded in the organizational and IT environment of the company. Lastly, the book examines the joint processing of instances in the resulting socio-technical systems. A corresponding illustration, which expands with the overview, enables readers to gain a comprehensive understanding of business process management. The book presents various facets of business process management from the perspective of the participants, and introduces a selection of models that have proved useful in practice. The design of such models supports the transition from a more-or-less unstructured or unsatisfactory way of working to a structured process that corresponds to the ideas of the company and its customers. The book is intended for professionals in industry as well as students in the field of business information systems who are looking for guidelines on how to discover, create and implement real-world processes.This work was published by Saint Philip Street Press pursuant to a Creative Commons license permitting commercial use. All rights not granted by the work's license are retained by the author or authors.
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Handbook of 3D Integration, Volume 3 : 3D Process Technology
Edited by key figures in 3D integration and written by top authors from high-tech companies and renowned research institutions, this book covers the intricate details of 3D process technology.As such, the main focus is on silicon via formation, bonding and debonding, thinning, via reveal and backside processing, both from a technological and a materials science perspective.The last part of the book is concerned with assessing and enhancing the reliability of the 3D integrated devices, which is a prerequisite for the large-scale implementation of this emerging technology.Invaluable reading for materials scientists, semiconductor physicists, and those working in the semiconductor industry, as well as IT and electrical engineers.
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Practical Process Automation : Orchestration and Integration in Microservices and Cloud Native Architectures
In today's IT architectures, microservices and serverless functions play increasingly important roles in process automation.But how do you create meaningful, comprehensive, and connected business solutions when the individual components are decoupled and independent by design?Targeted at developers and architects, this book presents a framework through examples, practical advice, and use cases to help you design and automate complex processes. As systems are more distributed, asynchronous, and reactive, process automation requires state handling to deal with long-running interactions.Author Bernd Ruecker demonstrates how to leverage process automation technology like workflow engines to orchestrate software, humans, decisions, or bots. Learn how modern process automation compares to business process management, service-oriented architecture, batch processing, event streaming, and data pipeline solutionsUnderstand how to use workflow engines and executable process models with BPMNUnderstand the difference between orchestration and choreography and how to balance both
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Process Integration for Resource Conservation
To achieve environmental sustainability in industrial plants, resource conservation activities such as material recovery have begun incorporating process integration techniques for reusing and recycling water, utility gases, solvents, and solid waste.Process Integration for Resource Conservation presents state-of-the-art, cost-effective techniques, including pinch analysis and mathematical optimization, for numerous conservation problems.The second edition of this best-seller adds new chapters on heat integration and retrofitting of resource conservation networks and features multiple optimization examples via downloadable MS Excel spreadsheets. • Emphasizes the goal of setting performance targets ahead of detailed design following the holistic philosophy of process integration• Explains various industrial examples step by step and offers demo software and other materials online• Features a wealth of industrial case studies• Adds chapters on heat integration, combined heat and power, heat-integrated water network, and retrofit of resource conservation network• Adds new optimization examples and downloadable MS Excel files on superstructural approaches and automated targeting models for direct reuse, recycle, and regenerationIdeal for students preparing for real-world work as well as industrial practitioners in chemical processing, the text provides a systematic guide to the latest process integration techniques for performing material recovery in process plants.The book features a solutions manual, lecture slides, and figure slides for adopting professors to use in their courses.
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How is industrial communication, MQTT, etc. used in process digitalization?
Industrial communication protocols like MQTT are used in process digitalization to enable real-time data exchange and communication between various industrial devices and systems. MQTT allows for efficient and reliable data transmission, which is crucial for monitoring and controlling industrial processes. By using MQTT, organizations can collect and analyze data from sensors, machines, and other equipment, leading to improved operational efficiency, predictive maintenance, and better decision-making. Overall, industrial communication protocols like MQTT play a key role in the digitalization of processes by facilitating seamless connectivity and data exchange in industrial environments.
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What is included in the curriculum of the electrical engineer for automation and process control technology?
The curriculum for an electrical engineer specializing in automation and process control technology typically includes courses in control systems, industrial automation, PLC programming, instrumentation, robotics, and process control. Students learn about sensors, actuators, data acquisition systems, and how to design and implement control systems for various industrial processes. They also study topics like industrial communication protocols, human-machine interfaces, and safety systems to prepare them for careers in industries such as manufacturing, energy, and transportation. Hands-on experience with industry-standard software and hardware is often a key component of the curriculum.
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What is included in the curriculum for the electrical engineer specializing in automation and process control technology?
The curriculum for an electrical engineer specializing in automation and process control technology typically includes a combination of electrical engineering fundamentals, automation systems, control theory, and industrial process control. Students may study topics such as digital control systems, PLC programming, industrial instrumentation, robotics, and human-machine interface design. Additionally, they may learn about industrial communication protocols, data acquisition, and system integration. The curriculum may also include hands-on experience with industrial automation equipment and software, as well as opportunities for internships or co-op experiences in relevant industries.
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What is the efficiency of a polytropic-isentropic process?
The efficiency of a polytropic-isentropic process is determined by comparing the work output of the process to the maximum possible work output if the process were completely isentropic. The efficiency is calculated as the ratio of the actual work output to the maximum possible work output. A higher efficiency indicates that the process is closer to being isentropic, meaning it is more efficient at converting energy.
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Chemical Process Design and Integration
Written by a highly regarded author with industrial and academic experience, this new edition of an established bestselling book provides practical guidance for students, researchers, and those in chemical engineering.The book includes a new section on sustainable energy, with sections on carbon capture and sequestration, as a result of increasing environmental awareness; and a companion website that includes problems, worked solutions, and Excel spreadsheets to enable students to carry out complex calculations.
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Chemical Process Technology
With a focus on actual industrial processes, e.g. the production of light alkenes, synthesis gas, fine chemicals, polyethene, it encourages the reader to think “out of the box” and invent and develop novel unit operations and processes.Reflecting today’s emphasis on sustainability, this edition contains new coverage of biomass as an alternative to fossil fuels, and process intensification. The second edition includes: New chapters on Process Intensification and Processes for the Conversion of BiomassUpdated and expanded chapters throughout with 35% new material overallText boxes containing case studies and examples from various different industries, e.g. synthesis loop designs, Sasol I Plant, Kaminsky catalysts, production of Ibuprofen, click chemistry, ammonia synthesis, fluid catalytic crackingQuestions throughout to stimulate debate and keep students awake!Richly illustrated chapters with improved figures and flow diagrams Chemical Process Technology, Second Edition is a comprehensive introduction, linking the fundamental theory and concepts to the applied nature of the subject.It will be invaluable to students of chemical engineering, biotechnology and industrial chemistry, as well as practising chemical engineers. From reviews of the first edition: “The authors have blended process technology, chemistry and thermodynamics in an elegant manner… Overall this is a welcome addition to books on chemical technology.” – The Chemist “Impressively wide-ranging and comprehensive… an excellent textbook for students, with a combination of fundamental knowledge and technology.” – Chemistry in Britain (now Chemistry World)
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Becoming Strategic with Robotic Process Automation
Robotic Process Automation will continue its exponential growth over the next five years. With more than 54 vendors, different kinds of tools, generic applicability and as a cognitive and AI platform, RPA has fast become an opportunity that is too good to miss.So, how do you leverage the massive potential business value? Based on four years of research into over 420 business deployments, this book identifies the distinctive leading practices of front-runners, and a Total Value of Ownership (TVO) framework to drive out value across the RPA life-cycle.This book brings a new focus on RPA's strategic potential: the innovations made possible and how to deliver through effective sourcing stakeholder-buy-in, governance, change management, and capability development practices. RPA as a platform, linking with cognitive and AI technologies as part of digital transformation is highlighted.The central messages - think and behave strategically, start right, institutionalize fast, and innovate continuously - are demonstrated, with multiple client experiences, trials and lessons. From dealing with old world process and IT challenges, RPA is now being applied towards building the new digital world and becoming strategic in its application. * Based on extensive new research by world renowned authors* Comprehensive market overview* A systematic set of action principles across the RPA life-cycle* Challenges, and where value is being left on the table* A focus on metrics and Total Value of Ownership* Multiple client case studies * RPA as a foundation for cognitive and AI
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Sustainable Innovation : Strategy, Process and Impact
The most important theme of the discourse on sustainable development and sustainability challenges concerns the relationship between innovation and sustainability.This book represents a realistic critical overview of the state of affairs of sustainable innovations, offering an accessible and comprehensive diagnostic point of reference for both the academic and practitioner worlds.In order for sustainable innovation to truly become mainstream practice in business it is necessary to find out how organizations can strategically and efficiently accommodate sustainability and innovation in such a manner that they accomplish value capturing (for firms, stakeholders, and for society), not merely creating a return on the social responsibility agenda.Addressing this challenge, the book draws together research from a range of perspectives in order to understand the potential shifts and barriers, benefits, and outcomes from all angles: inception, strategic process, and impact for companies and society.The book also delivers insights of (open) innovation in public sector organizations, which is not so much a process of invention as it is one of adoption and diffusion.It examines how the environmental pillar of the triple bottom line in private firms is often a by-product of thinking about the economic pillar, where cost reductions may be achieved through process innovation in terms of eliminating waste and reducing energy consumption.The impact of open innovation on process innovation, and sustainable process innovation in particular, is an underexplored area but is examined in this book.It also considers the role of the individual entrepreneur in bringing about sustainable innovation; entrepreneurs, their small- and medium-sized enterprises (SMEs), as well as the innovation ecosystems they build play a significant role in generating sustainable innovations where these smaller organizations are much more flexible than large organizations in targeting societal needs and challenges.The readership will incorporate PhD students and postgraduate researchers, as well as practitioners from organizational advisory fields.
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What is the process of a job interview at Daimler for the training as an electronics technician for automation technology?
The job interview process at Daimler for the training as an electronics technician for automation technology typically involves several stages. Firstly, candidates may be required to submit an application and undergo an initial screening process. If successful, they may then be invited to an in-person interview, where they will have the opportunity to discuss their skills, experience, and motivation for the role. Depending on the position, candidates may also be required to complete technical assessments or practical exercises to demonstrate their abilities in automation technology. Finally, successful candidates may be offered the training position and provided with further details about the program.
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What is the efficiency η of the Stirling cycle process?
The efficiency η of the Stirling cycle process is given by the formula η = 1 - (Tc/Th), where Tc is the temperature of the cold reservoir and Th is the temperature of the hot reservoir. The Stirling cycle is known for its high efficiency compared to other thermodynamic cycles, as it can reach efficiencies close to the Carnot cycle. The efficiency of the Stirling cycle can be improved by increasing the temperature difference between the hot and cold reservoirs or by reducing the internal irreversibilities within the system.
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What is the efficiency n of the Stirling cycle process?
The efficiency n of the Stirling cycle process is given by the formula n = 1 - (Tc/Th), where Tc is the temperature of the cold reservoir and Th is the temperature of the hot reservoir. The Stirling cycle is known for its high efficiency compared to other thermodynamic cycles, as it can reach theoretical efficiencies of up to 50%. This high efficiency is due to the fact that the Stirling cycle operates on a closed loop system, allowing for better heat transfer and utilization of energy.
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What kind of component is used in process technology?
In process technology, various components are used to facilitate the manufacturing and production processes. These components can include pumps, valves, heat exchangers, reactors, and distillation columns, among others. Each of these components plays a crucial role in the overall process, such as transferring fluids, controlling flow rates, exchanging heat, and separating components. These components are designed and selected based on the specific requirements of the process, such as temperature, pressure, and the nature of the materials being processed.
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