Products related to Electrical:
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On Learning, Volume 3 : Knowledge, Curriculum and Ethics
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On Learning, Volume 3 : Knowledge, Curriculum and Ethics
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Knowledge and the Future School : Curriculum and Social Justice
Written at a time of uncertainty about the implications of the English government’s curriculum policies, Knowledge and the Future School engages with the debate between the government and large sections of the educational community.It provides a forward-looking framework for head teachers, their staff and those involved in training teachers to use when developing the curriculum of individual schools in the context of a national curriculum.While explaining recent ideas in the sociology of educational knowledge, the authors draw on Michael Young’s earlier research with Johan Muller to distinguish three models of the curriculum in terms of their assumptions about knowledge, referred to in this book as Future 1, Future 2 and Future 3.They link Future 3 to the idea of 'powerful knowledge' for all pupils as a curriculum principle for any school, arguing that the question of knowledge is intimately linked to the issue of social justice and that access to 'powerful knowledge' is a necessary component of the education of all pupils.Knowledge and the Future School offers a new way of thinking about the problems that head teachers, their staff and curriculum designers face.In charting a course for schools that goes beyond current debates, it also provides a perspective that policy makers should not avoid.
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Supporting Multilingual Learners’ Academic Language Development : A Language-Based Approach to Content Instruction
A practical and comprehensive resource, Supporting Multilingual Learners’ Academic Language Development: A Language-Based Approach to Content Instruction introduces an accessible language-based approach to teaching academic language to multilingual learners across the content areas.Luciana C. de Oliveira provides elementary school teachers with everything they need to know to successfully teach grade-level content to multilingual learners.Chapters are organized by subject, addressing the specific language demands of teaching English language arts, social studies, mathematics, and science.Each chapter features examples of implementation in grades K-5, practical strategies, and a wealth of tables, figures, and other resources.The Language-Based Approach to Content Instruction (LACI) in this book provides teachers with a ready-to-use framework of six scaffolding elements that serves as a guide to enable multilingual learners to meet the grade-level standard of their peers without simplification.Aligned with WIDA and CCSS standards, this resource provides the tools and methods teachers need to support multilingual learners’ academic language development in the content area classroom.
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Can one study electrical engineering without knowledge of computer science?
While it is possible to study electrical engineering without prior knowledge of computer science, having a basic understanding of computer science can be beneficial. Many electrical engineering concepts and tools involve programming and working with software, so having some knowledge of computer science can help in understanding these aspects more easily. However, it is not a strict requirement, as electrical engineering programs typically provide the necessary foundational knowledge in computer science as part of the curriculum.
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Who has knowledge of electrical circuits?
Electrical engineers and technicians typically have knowledge of electrical circuits. They are trained to design, analyze, and troubleshoot electrical circuits in various systems and devices. Additionally, individuals with a background in physics or electronics may also have knowledge of electrical circuits.
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How can one study electrical engineering if they have no knowledge of electricity?
Studying electrical engineering without prior knowledge of electricity can be challenging, but it is not impossible. One approach is to start by learning the fundamentals of electricity, such as Ohm's law, voltage, current, and resistance. This can be done through online resources, textbooks, or introductory courses. Once a basic understanding of electricity is established, one can then progress to more advanced topics in electrical engineering, such as circuit analysis, electronics, and power systems. It may also be helpful to seek guidance from professors, tutors, or mentors in the field. With dedication and perseverance, it is possible to study electrical engineering and build a strong foundation in the subject.
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How can one study electrical engineering?
One can study electrical engineering by enrolling in a bachelor's degree program in electrical engineering at a university or college. This program typically covers courses in circuit theory, electronics, electromagnetics, and power systems. Additionally, gaining hands-on experience through internships, co-op programs, or research projects can provide valuable practical skills. Continuing education through workshops, seminars, and certifications can also help individuals stay updated on the latest advancements in the field.
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Stirring the Head, Heart, and Soul : Redefining Curriculum, Instruction, and Concept-Based Learning
"This book is a potent reminder of what it means when teachers teach whole human beings—their minds, hearts, and souls.Erickson helps us recall what all great teachers know: quality teaching is about building young lives."—Carol Ann Tomlinson, Professor, University of Virginia Author, The Parallel Curriculum"Erickson sets the standard for concept-based curriculum.Her work offers a theoretically rich and eminently practical approach for constructing curriculum around rich, transferable concepts.The third edition extends this seminal work for the benefit of educators and their students."—Jay McTighe, Educational Consultant, McTighe and Associates Author, Understanding by DesignHelp students analyze and synthesize information for a deeper understanding of big ideas!This updated edition of the classic bestseller on curriculum design for quality instruction provides practical structures, planning tools, and specific classroom examples of effective teaching strategies.The author focuses on the need for curriculum and instruction that allows students to move beyond factual learning to a level of understanding where knowledge transfers readily to new situations and thinking becomes integrated.The book's wide-ranging topics include:Aligning local curriculum with state and national content standards Using brain-based teaching methods Developing higher-order thinking skills Assessing and reporting student progress Creating a lifelong love of learning in studentsThis invaluable resource encourages teachers to create an educational environment that challenges students' personal intellect, engages their spirits, and fosters a greater understanding of the world around them.
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Learning, Training, and Development in Organizations
This scholarly book in SIOP’s Organizational Frontier series looks at research on enhancing knowledge acquisition and its application in organizations.It concentrates on training, design and delivery given the changing nature of work and organizations.Now that work is increasingly complex, there is greater emphasis on expertise and cognitive skills.Advances in technology such as computer simulations and web-based training are necessitating a more active role for the learner in the training process.In the broad context of the organization systems, this book promotes learning and development as a continuous lifelong endeavor.
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Vocabulary Instruction for Academic Success
Based on current research, this user-friendly resource provides vocabulary development strategies that are grouped together according to purpose.Key features of the book include an explanation on how learners acquire and develop their vocabularies, the academic necessity of a wide vocabulary, and the best approaches to help learners build their vocabularies.Practical ideas, tips, and easy-to-implement strategies for vocabulary instruction include how to foster wide reading to build vocabulary; creating a word-friendly environment; selecting specific words to be taught; and the use of literature to teach specific words.
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Leading Curriculum Development
"A book that every practitioner should own. The author has managed to describe the complex process of curriculum development in plain English."—John Lundt, Professor of Educational LeadershipUniversity of MontanaDevelop a curriculum that can transform an ordinary school into a school of excellence!Curriculum development, an essential part of educational leadership, helps schools establish purpose, define activities, and guide decision making.This thought-provoking how-to resource helps leaders make sound choices and develop constructive policies as they guide a school team through this critical school improvement effort. Written by an expert in the field, this handbook introduces educational leaders to dynamic curriculum leadership and a curriculum development process that leads to highly successful school programs.The author demonstrates how administrators can adapt curriculum to meet their school's changing needs, incorporate emerging technologies, and reflect new and creative ways of thinking about education.The book walks educational leaders through the process, showing them how to:Move beyond maintenance and management to address short- and long-term school reformCreate a school curriculum teamEstablish a regular curriculum cycle of analysis, design, implementation, and evaluationDevelop a path for curriculum improvementFilled with case studies, sample challenges and solutions, planning sheets, and more, Leading Curriculum Development is a much-needed guide for designing academic programs that lead to excellence in student achievement.
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What can an electrical master study?
An electrical master can study a wide range of topics related to electrical systems and technology. This may include advanced courses in electrical engineering, power systems, control systems, renewable energy, and electronics. Additionally, they may also study topics such as project management, leadership, and business skills to enhance their overall expertise and career opportunities in the field. Overall, an electrical master can choose to specialize in various areas within the electrical industry to further their knowledge and skills.
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What mathematical knowledge is required for electrical engineering?
Electrical engineering requires a strong foundation in mathematics, including calculus, differential equations, linear algebra, and complex numbers. These mathematical concepts are essential for understanding and analyzing electrical circuits, electromagnetic fields, signal processing, and control systems. Additionally, knowledge of probability and statistics is important for analyzing and designing electrical systems. Overall, a solid understanding of mathematical principles is crucial for success in electrical engineering.
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Should I study electrical engineering or mechatronics?
The decision between studying electrical engineering or mechatronics depends on your interests and career goals. If you are more interested in working with electrical systems, circuits, and power generation, then electrical engineering may be the better choice for you. On the other hand, if you are interested in integrating electrical and mechanical systems to design and create complex machines and robots, then mechatronics may be a better fit. Consider your strengths, interests, and the specific career paths you are interested in before making a decision. Additionally, researching the curriculum and job opportunities for each field can help you make an informed decision.
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Which book would you recommend for learning electrical engineering?
I would recommend "Fundamentals of Electric Circuits" by Charles K. Alexander and Matthew N.O. Sadiku for learning electrical engineering. This book covers the basic principles of electric circuits in a clear and comprehensive manner, making it suitable for beginners. It also includes numerous examples and practice problems to help reinforce understanding of the material. Overall, it is a highly regarded textbook in the field of electrical engineering.
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