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  • Introduction to Development Engineering : A Framework with Applications from the Field
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    This open access textbook introduces the emerging field of Development Engineering and its constituent theories, methods, and applications.It is both a teaching text for students and a resource for researchers and practitioners engaged in the design and scaling of technologies for low-resource communities.The scope is broad, ranging from the development of mobile applications for low-literacy users to hardware and software solutions for providing electricity and water in remote settings.It is also highly interdisciplinary, drawing on methods and theory from the social sciences as well as engineering and the natural sciences. The opening section reviews the history of “technology-for-development” research, and presents a framework that formalizes this body of work and begins its transformation into an academic discipline.It identifies common challenges in development and explains the book’s iterative approach of “innovation, implementation, evaluation, adaptation.” Each ofthe next six thematic sections focuses on a different sector: energy and environment; market performance; education and labor; water, sanitation and health; digital governance; and connectivity.These thematic sections contain case studies from landmark research that directly integrates engineering innovation with technically rigorous methods from the social sciences.Each case study describes the design, evaluation, and/or scaling of a technology in the field and follows a single form, with common elements and discussion questions, to create continuity and pedagogical consistency.Together, they highlight successful solutions to development challenges, while also analyzing the rarely discussed failures.The book concludes by reiterating the core principles of development engineering illustrated in the case studies, highlighting common challenges that engineers and scientists will face in designing technology interventions that sustainably accelerate economic development. Development Engineering provides, for the first time, a coherent intellectual framework for attacking the challenges of poverty and global climate change through the design of better technologies.It offers the rigorous discipline needed to channel the energy of a new generation of scientists and engineers toward advancing social justice and improved living conditions in low-resource communities around the world.

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  • Introduction to Development Engineering : A Framework with Applications from the Field
    Introduction to Development Engineering : A Framework with Applications from the Field

    This open access textbook introduces the emerging field of Development Engineering and its constituent theories, methods, and applications.It is both a teaching text for students and a resource for researchers and practitioners engaged in the design and scaling of technologies for low-resource communities.The scope is broad, ranging from the development of mobile applications for low-literacy users to hardware and software solutions for providing electricity and water in remote settings.It is also highly interdisciplinary, drawing on methods and theory from the social sciences as well as engineering and the natural sciences. The opening section reviews the history of “technology-for-development” research, and presents a framework that formalizes this body of work and begins its transformation into an academic discipline.It identifies common challenges in development and explains the book’s iterative approach of “innovation, implementation, evaluation, adaptation.” Each ofthe next six thematic sections focuses on a different sector: energy and environment; market performance; education and labor; water, sanitation and health; digital governance; and connectivity.These thematic sections contain case studies from landmark research that directly integrates engineering innovation with technically rigorous methods from the social sciences.Each case study describes the design, evaluation, and/or scaling of a technology in the field and follows a single form, with common elements and discussion questions, to create continuity and pedagogical consistency.Together, they highlight successful solutions to development challenges, while also analyzing the rarely discussed failures.The book concludes by reiterating the core principles of development engineering illustrated in the case studies, highlighting common challenges that engineers and scientists will face in designing technology interventions that sustainably accelerate economic development. Development Engineering provides, for the first time, a coherent intellectual framework for attacking the challenges of poverty and global climate change through the design of better technologies.It offers the rigorous discipline needed to channel the energy of a new generation of scientists and engineers toward advancing social justice and improved living conditions in low-resource communities around the world.

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  • Project Management for Construction : Fundamental Aspects from Conception to Completion
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    Construction project management is an integrated activity which requires professionals to have an understanding of the whole building process and to think across the many interconnected functions of a building.In light of the exponentially growing need for specialists in construction project management to lead the design and construction stage effectively, this textbook has been designed for those who are able to manage both design and construction stages of complex buildings.Construction professionals will need to understand how and when to intervene as decision makers who can change the consequences of building activities.In addition, construction industry practitioners need to be better equipped with the necessary knowledge and skills to rethink design processes using value management principles with a huge focus on sustainable design as the vehicle during design and construction stage.The textbook also provides a unique overview and insight into the design, management, and operation of construction projects.

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  • Can you study civil engineering with a degree from a technical college, specializing in construction technology?

    Yes, it is possible to study civil engineering with a degree from a technical college specializing in construction technology. Many technical colleges offer programs that provide a strong foundation in construction technology, which can be a valuable asset for pursuing a civil engineering degree. However, it is important to research the specific requirements of the civil engineering program you are interested in to ensure that your technical college degree meets the necessary prerequisites. Additionally, some universities may offer transfer programs or pathways for students with technical college degrees to transition into a civil engineering program.

  • Where has technology learned from nature in bridge construction?

    Technology has learned from nature in bridge construction by studying the structural integrity and efficiency of natural formations such as tree roots and spider webs. For example, the design of the Millau Viaduct in France was inspired by the way tree roots interlock to create stability in soil. Additionally, the use of biomimicry in bridge construction has led to the development of stronger and more flexible materials that can withstand environmental factors such as wind and earthquakes, ultimately leading to more sustainable and resilient bridge designs.

  • What is the difference between civil engineering and construction engineering with a focus on project management?

    Civil engineering focuses on the design and construction of infrastructure such as roads, bridges, and buildings, while construction engineering focuses on the actual construction process and management of construction projects. Project management in civil engineering involves overseeing the planning, budgeting, and scheduling of civil engineering projects, while project management in construction engineering involves coordinating the construction process, managing resources, and ensuring that projects are completed on time and within budget. Both fields require a strong understanding of engineering principles and construction techniques, but civil engineering focuses more on the design and planning phase, while construction engineering focuses on the execution and management of construction projects.

  • Can you study architecture with a degree from the technical college, specializing in construction technology?

    Yes, it is possible to study architecture with a degree from a technical college specializing in construction technology. Many technical colleges offer programs that provide a strong foundation in construction technology, which can be beneficial for a career in architecture. However, it is important to note that some architecture programs may have specific prerequisites or requirements, so it is advisable to research and confirm the specific admission criteria for the architecture program you are interested in. Additionally, gaining practical experience and developing a strong portfolio can also be important for pursuing a career in architecture.

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  • Project Management in the Construction Industry : From Concept to Completion
    Project Management in the Construction Industry : From Concept to Completion

    PROJECT MANAGEMENT IN THE CONSTRUCTION INDUSTRY Reader friendly guide to construction project management through the lens of PMI’s PMBOK® Guide, with management and leadership soft skills Comprehensive, up-to-date, and reader friendly, Project Management in the Construction Industry offers a construction-specific project management approach.This book focuses on project management in the construction industry, not just construction management—from project conception through to completion and even beyond.It includes guidance on project initiation in the private and public sector, real estate development, construction in the international environment, and key management and leadership soft skills for construction project management students entering the workforce. This book offers practical examples and exercises by chapter using a step-by-step approach and includes real-world case studies to further aid in practical application.The author’s well-known logical approach to the content allows readers to easily follow along and engage with the material.Instructors have access to an Instructor’s Manual with solutions to all exercises, sample quizzes and exams, and PowerPoint lecture slides through the book companion website.Written by a longtime professional and author with diversified and international experience in academia and industry, Project Management in the Construction Industry covers sample topics such as: Project life cycle and organization, covering why and how projects are initiated and pure project versus functional managementScope management, covering the decision making process, scope creep versus progressive elaboration, and cost of change versus timeThe planning phase, covering delivery methods and contract types, priorities, feasibility studies, and the “go” decisionProject budgeting, financing, and cost management, covering direct versus indirect cost, classes and purposes of estimates, bonds and insurance, and the CSI MasterFormat Using a project management approach customized to fit the construction industry specifically, Project Management in the Construction Industry is an essential learning resource on the subject for all students in project management courses and related programs of study.

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  • Project Management for Engineering, Business and Technology
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    Project Management for Engineering, Business and Technology is a highly regarded textbook that addresses project management across all industries.First covering the essential background, from origins and philosophy to methodology, the bulk of the book is dedicated to concepts and techniques for practical application.Coverage includes project initiation and proposals, scope and task definition, scheduling, budgeting, risk analysis, control, project selection and portfolio management, program management, project organization, and all-important "people" aspects—project leadership, team building, conflict resolution, and stress management. The systems development cycle is used as a framework to discuss project management in a variety of situations, making this the go-to book for managing virtually any kind of project, program, or task force.The authors focus on the ultimate purpose of project management—to unify and integrate the interests, resources and work efforts of many stakeholders, as well as the planning, scheduling, and budgeting needed to accomplish overall project goals. This sixth edition features: updates throughout to cover the latest developments in project management methodologies; a new chapter on project procurement management and contracts; an expansion of case study coverage throughout, including those on the topic of sustainability and climate change, as well as cases and examples from across the globe, including India, Africa, Asia, and Australia; and extensive instructor support materials, including an instructor’s manual, PowerPoint slides, answers to chapter review questions and a test bank of questions.Taking a technical yet accessible approach, this book is an ideal resource and reference for all advanced undergraduate and graduate students in project management courses, as well as for practicing project managers across all industry sectors.

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  • What is the construction project underground?

    The construction project underground is a tunnel being built for a new subway line. The tunnel will provide an underground route for the subway trains to travel through the city, reducing congestion on the roads and providing a faster and more efficient mode of transportation for commuters. The construction involves digging and reinforcing the tunnel, laying tracks, and building stations along the route. This project will greatly improve the city's public transportation system and contribute to the overall development of the urban infrastructure.

  • Will the development of technology ever stop?

    It is unlikely that the development of technology will ever stop. As long as there are new problems to solve and new opportunities to explore, there will be a need for technological innovation. Additionally, the pace of technological advancement has been accelerating in recent years, with new breakthroughs and discoveries constantly pushing the boundaries of what is possible. While the specific direction and focus of technological development may change over time, it is likely that the overall trend of progress will continue.

  • How can one retrain from an electronics technician for energy and building technology to industrial engineering?

    To retrain from an electronics technician for energy and building technology to industrial engineering, one could consider pursuing a bachelor's degree in industrial engineering. This would provide a comprehensive understanding of manufacturing processes, supply chain management, and optimization techniques. Additionally, gaining practical experience through internships or co-op programs in industrial engineering roles could help in transitioning to this field. It may also be beneficial to seek out professional development courses or certifications in areas such as project management, quality control, and lean manufacturing to enhance skills and knowledge relevant to industrial engineering.

  • What is the difference between the degree programs in Vehicle Engineering/Engine Technology and Electrical Engineering/Information Technology?

    The degree program in Vehicle Engineering/Engine Technology focuses on the design, development, and maintenance of vehicle systems, including engines, drivetrains, and vehicle dynamics. Students in this program learn about the mechanical and thermal aspects of vehicle engineering. On the other hand, the degree program in Electrical Engineering/Information Technology focuses on the design and development of electrical and electronic systems, as well as computer hardware and software. Students in this program learn about circuits, digital systems, communication networks, and computer programming. In summary, the Vehicle Engineering/Engine Technology program is more focused on mechanical and thermal aspects of vehicle systems, while the Electrical Engineering/Information Technology program is more focused on electrical and electronic systems, as well as computer technology.

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