Products related to Science:
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Science And Technology : Lessons For Development Policy
This book presents several general theoretical notions about the process of science and technology as it relates to development.It develops the international dimension of science and technology in terms of the international exchange processes and the appropriateness and modification of technology.
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Science And Technology : Lessons For Development Policy
This book presents several general theoretical notions about the process of science and technology as it relates to development.It develops the international dimension of science and technology in terms of the international exchange processes and the appropriateness and modification of technology.
Price: 36.99 £ | Shipping*: 0.00 £ -
Study Skills for Science, Engineering and Technology Students
An accessible, student-friendly handbook that covers all of the essential study skills that will ensure that Science, Engineering or Technology students get the most out of their course. Study Skills for Science, Engineering & Technology Students has been developed specifically to provide tried & tested guidance on the most important academic and study skills that students require throughout their time at university and beyond.Presented in a practical and easy-to-use style it demonstrates the immediate benefits to be gained by developing and improving these skills during each stage of their course.
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Engineering Science
Engineering Science is a comprehensive textbook suitable for all vocational and pre-degree courses in engineering, being fully in line with the latest vocational courses at Level 2 and leading into Level 3.Taking a subject-led approach, engineering students will find the essential scientific principles necessary for their studies, developed topic by topic.Unlike most textbooks available for this field, it goes beyond the core science to include applications in the real world and the mechanical and electrical principles required for the majority of courses.It is supported by numerous worked examples and problems, with a complete set of answers.This new edition gives a detailed consideration of the basic arithmetic, algebraic and graphical methods needed in engineering courses so that it conforms completely with sections A and B of the BTEC Level 2 unit, and it provides the basic tools for the science that follows.A new chapter introduces the basic principles of calculus and more material is given on applications.This includes typical properties of materials and a discussion on the way properties of materials over the ages have changed the basic structures of bridges, weightlessness, snooker, thermal insulation and LEDs, as well as buildings, with a particular look at the engineering behind the collapse of the World Trade Centre.
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What is the difference between electrical engineering, computer science, and network technology?
Electrical engineering focuses on the study and application of electricity, electromagnetism, and electronics to design and develop electrical systems and devices. Computer science, on the other hand, deals with the theory, design, development, and application of computer systems and software. Network technology involves the design, implementation, and management of computer networks to facilitate communication and data exchange between devices. While electrical engineering and computer science have some overlap in areas like digital systems and hardware design, network technology specifically focuses on the networking aspects of computer systems.
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What is the difference between the courses Applied Computer Science - Software Engineering and Applied Computer Science - Engineering Computer Science?
The main difference between the courses Applied Computer Science - Software Engineering and Applied Computer Science - Engineering Computer Science lies in their focus areas. Applied Computer Science - Software Engineering typically emphasizes the design, development, and maintenance of software systems, while Applied Computer Science - Engineering Computer Science focuses more on the broader aspects of computer science, including hardware, networking, and system architecture. Students in Software Engineering may delve deeper into programming languages, software testing, and project management, whereas students in Engineering Computer Science may explore topics like computer organization, algorithms, and data structures. Ultimately, the choice between the two courses depends on whether one's interests lie more in software development or a broader understanding of computer science principles.
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Is computer science or engineering computer science, where is math harder?
Computer science and engineering both require a strong foundation in math, but the level of difficulty may vary depending on the specific focus of the program. In computer science, the math requirements often include discrete mathematics, algorithms, and probability theory, which can be challenging for some students. On the other hand, engineering computer science may involve more applied mathematics, such as calculus, differential equations, and linear algebra, which can also be quite demanding. Ultimately, the level of difficulty in math will depend on the individual's strengths and interests in the specific areas of computer science or engineering.
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Could science fiction technology become real?
Yes, science fiction technology could become real in the future. Many of the technological advancements that were once considered science fiction, such as video calling, self-driving cars, and virtual reality, have already become a reality. With continued advancements in science and technology, it is possible that other futuristic technologies, such as teleportation or advanced artificial intelligence, could also become a reality in the future. While some science fiction technologies may still be far-fetched, it is important to remember that many of today's realities were once considered impossible in the past.
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How to Be Good at Science, Technology, and Engineering
Science is sorted, technology is untangled, and engineering is explained with this incredible home reference for children. In our modern world dominated by science, technology, engineering, and maths (STEM), now is the time to make tricky topics and challenging concepts completely crystal clear. From tiny atoms and minute microchips to monster tractors and jumbo jets, this brilliant home-study companion comes packed with eye-catching illustrations to showcase science and technology in action today.You'll see whizzing waves, zooming rockets, and mighty magnets on this epic journey of discovery.Jump in the basket to see how a hot-air balloon rises, scale a mountaintop to see the impact of erosion, and venture inside Earth to reveal its multi-layered structure.Dramatic visuals, concise explanations, and step-by-step graphics keep young readers engaged and entertained from start to finish.Hands-on projects are included to put learning into practise.Imagine making old coins shine bright with vinegar or triggering a volcanic eruption with baking soda.Impress your friends and family with these experiments and much, much more at home or at school. Ideal for home learning and revision, this essential homework helper covers the core curriculum of school science and supports STEM education initiatives. Budding scientists and engineers, the future starts here!
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Higher Engineering Science
Higher Engineering Science aims to provide students with an understanding of the scientific principles that underpin the design and operation of modern engineering systems.It builds a sound scientific foundation for further study of electronics, electrical engineering and mechanical engineering. The text is ideal for students, including numerous features designed to aid student learning and put theory into practice:* Worked examples with step-by-step guidance and hints* Highlighted key points, applications and practical activities* Self-check questions included throughout the text* Problems sections with full answers suppliedFurther worked examples, applications, case studies and assignments have also been incorporated into this second edition. Assuming a minimum of prior knowledge, the book has been written to suit courses with an intake from a range of educational backgrounds.The new edition has been designed specifically to cater for the compulsory core Engineering Science unit for HNC and HND qualifications, and updated throughout to match the syllabus of the new BTEC Higher National Engineering schemes from Edexcel.It will also prove ideal for introductory science modules in degree courses.
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Engineering Science Experiments
Engineering combines applied science, math, and technology for the purpose of designing a wide variety of items, including structures, materials, processes, and machines.Engineers may choose to specialize in aerospace engineering, chemical engineering, civil engineering, electrical engineering, mechanical engineering, petroleum engineering, computer engineering, genetic engineering, software engineering, nanotechnology, and molecular engineering, with new fields emerging as technology advances.Engineering Science Experiments explores the different fields of engineering through experiments that allow students to build, explore, test, question, and design.From constructing a suspension bridge to creating a hovercraft, these easy-to-follow activities allow young engineers to discover this scientific discipline in a hands-on way.
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Science, Technology, Engineering, Arts, and Mathematics (STEAM) Education in the Early Years : Achieving the Sustainable Development Goals
This book provides a fresh perspective on recent debates around integrating STEAM (Science, Technology, Engineering, Arts, and Mathematics) education in early childhood. The book offers inspiration and practical advice for educators and researchers.It suggests concrete ways to engage young children in STEAM learning activities and promote their development.With contributions from international experts, the book discusses how to develop age-appropriate STEAM learning activities for young children.Divided into four parts, the book covers a wide range of topics, including the perceptions and practices of STEAM education among early childhood teachers in different countries, the use of new pedagogies and technologies to promote equitable and accessible STEAM education, the role of teacher education and policy in reducing inequality in STEAM education, and how early STEAM education can promote social change and achieve sustainable development goals.The book highlights the importance of STEAM education in providing young children with the necessary skills to create a more sustainable and equitable world.Overall, this book provides an important contribution to help critique and improve how early childhood educators view and practice STEAM education across cultures.It proposes ideas for achieving sustainable development goals through high-quality early STEAM education. The book appeals to early childhood educators and researchers, as it draws on cross-cultural viewpoints to critically examine how teachers understand and implement STEAM education across different cultures along with exploring how cultural values and goals shape early STEAM education.
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Is this computer science project feasible?
To determine if the computer science project is feasible, we need to consider factors such as the availability of resources, the expertise of the team, and the complexity of the project. We also need to assess the potential challenges and risks involved in the project. Additionally, we should evaluate the project's timeline and budget to ensure that it can be completed within the given constraints. By carefully analyzing these factors, we can determine if the computer science project is feasible and if it can be successfully executed.
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What are some project examples for computer science specialists in application development to practice?
Computer science specialists in application development can practice their skills by working on projects such as developing a mobile app for a specific purpose, creating a web application with a user-friendly interface, building a database management system for a small business, or designing a software solution for a specific industry problem. They can also work on projects involving artificial intelligence, machine learning, or data analysis to gain experience in cutting-edge technologies. Additionally, contributing to open-source projects or participating in hackathons can provide valuable hands-on experience and help build a strong portfolio.
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What is the difference between electrical engineering, electronics, information technology, and technical computer science?
Electrical engineering focuses on the generation, transmission, and distribution of electrical power, as well as the design of electrical systems. Electronics deals with the study of electronic components, circuits, and systems, including semiconductors and transistors. Information technology involves the use of computer systems to store, retrieve, transmit, and manipulate data. Technical computer science focuses on the design and development of software and hardware systems, including programming languages and algorithms. Each field has its own specialized focus within the broader realm of technology and engineering.
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What is Natural Science and Technology (NWT)?
Natural Science and Technology (NWT) is an interdisciplinary subject that combines elements of natural sciences, technology, and engineering. It focuses on understanding the natural world, how technology impacts our lives, and how we can use scientific knowledge to solve real-world problems. NWT encourages students to explore the connections between science and technology and how they influence each other in our daily lives. Through hands-on experiments, research projects, and critical thinking activities, students develop a deeper understanding of the world around them and the role of science and technology in shaping our future.
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