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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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STEM in Early Childhood Education : How Science, Technology, Engineering, and Mathematics Strengthen Learning
Bringing together a diverse cohort of experts, STEM in Early Childhood Education explores the ways STEM can be integrated into early childhood curricula, highlighting recent research and innovations in the field, and implications for both practice and policy. Based on the argument that high-quality STEM education needs to start early, this book emphasizes that early childhood education must include science, technology, engineering, and mathematics in developmentally appropriate ways based on the latest research and theories.Experienced chapter authors address the theoretical underpinnings of teaching STEM in the early years, while contextualizing these ideas for the real world using illustrative examples from the classroom.This cutting-edge collection also looks beyond the classroom to how STEM learning can be facilitated in museums, nature-based learning outdoors, and after-school programs.STEM in Early Childhood Education is an excellent resource for aspiring and veteran educators alike, exploring the latest research, providing inspiration, and advancing best practices for teaching STEM in the early years.
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Early Years - Science
Early Years Themes (Ages 35) is a series of comprehensive teacher resource books designed to support teachers as they impart skills, concepts and knowledge about commonly taught themes in early childhood classrooms.The books in this series and the themes each contain are: Places (The ocean, The circus, The zoo, The rainforest, The farm); People (Me, Families, Friends, Community helpers, People from other countries); Animals (Pets, Bears, Frogs, Mini beasts, Dinosaurs); Science (The senses, The seasons, Space, Our bodies, Water); Fantasy (Dragons, Fairies, Giants/Ogres, Mermaids, Elves and Pixies); Fairytales (The three billy goats gruff, Jack and the beanstalk, The gingerbread man, The ugly duckling, Little red riding hood); and, Special Days and Celebrations (Birthdays, Christmas, Easter, Mothers day, Fathers day, Valentines day, Eid al Fitr/Diwali/Chinese New Year/Hanukkah). Features: comprehensive teacher resource; icons to enable teachers to locate activities quickly; cross curricular learning activities; art and craft activities; teacher background information; resource sheets; early literacy and numeracy activities; age appropriate, useful artwork; display ideas; suggested books, songs, rhymes, poems; recipes; curriculum links.
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Teaching Science and Technology in the Early Years (3–7)
Teaching Science and Technology in the Early Years (3–7) celebrates young children’s amazing capabilities as scientists, designers and technologists.Research-based yet practical and accessible, it demonstrates how scientific designing and making activities are natural to young children, and have the potential for contributing to all aspects of their learning. By identifying the scientific and technological concepts, skills and activities being developed, the book enables the reader to make more focused diagnostic observations of young children and plan for how they can help move them forward in their learning.This third edition has been thoroughly updated and features: fresh insights into young children’s learning from neuroscience and ‘new-materialist’ perspectives; a UK-wide perspective on Early Years curricula and how they support the inclusion of science and technology as an entitlement for young children; new case studies of successful, evidence-based Early Years practice, alongside new examples of practical planning for learning, and advice on documenting children’s learning stories; an updated chapter on assessing and documenting children’s learning, drawing upon findings from the Teacher Assessment in Primary Science (TAPS) project at Bath Spa University. Based on the latest research and first-hand experience, this practical and accessible book is essential reading for Early Years and Primary students on undergraduate, PGCE and Masters-level courses.
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Does market research hinder innovation in business administration?
Market research does not necessarily hinder innovation in business administration. In fact, it can provide valuable insights into consumer needs and preferences, helping businesses to develop innovative products and services that meet market demands. By understanding market trends and customer behavior, businesses can identify opportunities for innovation and stay ahead of competitors. However, relying too heavily on market research without allowing room for creativity and risk-taking can limit the potential for groundbreaking innovations. It is important for businesses to strike a balance between leveraging market research and fostering a culture of innovation to drive success in business administration.
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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 an early Christian symbol in early Christianity?
One early Christian symbol in early Christianity is the fish, known as the Ichthys. The fish was used as a secret symbol by early Christians to identify themselves to one another without drawing attention from Roman authorities. The Greek word for fish, "Ichthys," was used as an acronym for "Jesus Christ, Son of God, Savior." The fish symbolized the belief in Jesus as the Messiah and was often used in early Christian art and on tombs.
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'Why so early?'
Starting early allows me to have a head start on the day and accomplish more tasks before any potential distractions or interruptions arise. It also gives me the opportunity to have some quiet time for myself, whether it's for exercise, meditation, or simply enjoying a peaceful morning. Additionally, I find that I am more productive and focused in the early hours, which sets a positive tone for the rest of the day.
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Science, Technology And Innovation Indicators : Lessons from the Development Experience in Africa
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Science in Early Childhood
Science exploration plays a vital role in children's lives as they make sense of the world around them.Now in its fifth edition, Science in Early Childhood complements the recently updated Early Years Learning Framework (EYLF) and the Australian Curriculum: Science.It offers a comprehensive introduction to the essential elements of science learning and teaching for pre-service teachers and early childhood professionals.This edition has been revised to closely align with the EYLF and Australian Curriculum: Science.It includes more content on sustainability – a rapidly growing area in early childhood science – and a stronger focus on Aboriginal and Torres Strait Islander perspectives.Each chapter includes case studies, reflection questions and practical tasks which help to bridge the gap between theory and practical applications of new concepts.Supplementary resources are available online for instructors.Science in Early Childhood is an invaluable resource for pre-service teachers and early childhood professionals.
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Evolution, Early Experience and Human Development : From Research to Practice and Policy
The field of cognitive psychology has expanded rapidly in recent years, with experts in affective and cognitive neuroscience revealing more about mammalian brain function than ever before.In contrast, psychological problems such as ADHD, autism, anxiety, and depression are on the rise, as are medical conditions such as diabetes, obesity, and autoimmune disorders.Why, in this era of unprecedented scientific self-knowledge, does there seem to be so much uncertainty about what human beings need for optimal development?Evolution, Early Experience and Human Development asserts that human development is being misshaped by government policies, social practices, and public beliefs that fail to consider basic human needs.In this pioneering volume, scientists from a range of disciplines theorize that the increase in conditions such as depression and obesity can be partially attributed to a disparity between the environments and conditions under which our mammalian brains currently develop and our evolutionary heritage.For example, healthy brain and emotional development depends to a significant extent upon caregiver availability and quality of care.These include practices such as breastfeeding, co-sleeping, and parental social support, which have waned in modern society, but nevertheless may be integral to healthy development.As the authors argue, without a more informed appreciation of the ideal conditions under which human brains/minds develop and function, human beings will continue to struggle with suboptimal mental and physical health, and as problems emerge psychological treatments alone will not be effective.The best approach is to recognize these needs at the outset so as to optimize child development.Evolution, Early Experience and Human Development puts forth a logical, empirically based argument regarding human mammalian needs for optimal development, based on research from anthropology, neurobiology, animal science, and human development.The result is a unique exploration of evolutionary approaches to human behavior that will support the advancement of new policies, new attitudes towards health, and alterations in childcare practices that will better promote healthy human development.
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Introducing Research in Early Childhood
"What a useful book for the beginner researcher! Offering a grounding in the different kinds of research conducted in the field of early childhood, this book’s inviting and accessible style will support the novice researcher, and the development of criticality in relation to research."Deborah Albon, Senior Lecturer in Early Childhood Studies, University of RoehamptonWhat does the term ‘research’ in early childhood actually mean?What does research involve, and how do you go about doing it?This book explains exactly what ‘research’ is; it explores key ideas, themes and terminology to provide you with a clear understanding of its importance to your early years or early childhood studies degree. It will help you: · Understand what it means to think critically, and unpick childhood research· Learn how to analyse, examine and understand the importance of others’ research· Get to know how research is designed and carried out· Appreciate the importance of ethics· Get to grips with translating research into real life in an early childhood setting. Laying the foundations to develop your confidence in talking about research and making links between theory and practice, this book will support you as you begin your research journey into the world of early years.Polly Bolshaw is a Senior Lecturer in Early Childhood Studies at Canterbury Christ Church University. Jo Josephidou is a Senior Lecturer in Early Childhood Studies at Canterbury Christ Church University. Polly Bolshaw and Jo Josephidou will be discussing ideas from Introducing Research in Early Childhood in Doing Your Early Years Research Project, a SAGE Masterclass for early years students and practitioners in collaboration with Kathy Brodie.Find out more here.
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"How early old?"
The phrase "How early old?" could be interpreted as asking about the age at which someone starts to feel or appear old. This can vary greatly from person to person, as factors such as genetics, lifestyle, and overall health can all play a role in how early someone may start to feel or appear old. It's important to remember that age is just a number and that feeling "old" is subjective and can be influenced by many different factors.
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Why do we say "early 20s" but not "early 10s"?
We say "early 20s" because the term "20s" refers to the decade of someone's life when they are in their twenties, typically between the ages of 20 and 29. The term "early" is used to specify the beginning part of that decade. In contrast, we do not say "early 10s" because the term "10s" does not refer to a specific decade of someone's life in the same way that "20s" does.
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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 the early bloomer in the science class of the 2nd grade?
The early bloomer in the science class of the 2nd grade is a sunflower. Sunflowers are known for their rapid growth and early blooming, making them a perfect example of a plant that exhibits this characteristic. In the classroom, students can observe and learn about the life cycle of a sunflower, from seed to blooming flower, and understand the factors that contribute to its early growth. This can be a great hands-on learning experience for young students to understand the concept of early blooming in the natural world.
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