Products related to Sensory:
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Teaching, Tutoring and Training in the Lifelong Learning Sector
This core text provides comprehensive support for pre-service and in-service trainee teachers in the Lifelong Learning Sector covering all they need to know to achieve QTLS status. Supporting trainees through all stages of their professional development, the text takes the reader through the theoretical background underpinning teaching and learning and offers practical guidance on day-to-day challenges. This fourth edition has been fully revised and updated and includes a new chapter on teaching practice with notes on observation and lesson planning.New information on behaviour management has been added to support trainees in an aspect of teaching that many find challenging.
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Sensory Affect, Learning Spaces, and Design Education : Strategies for Reflective Teaching and Student Engagement in Higher Education
Through the lens of sensory affect, this book offers a new way of thinking about day-to-day teaching and student engagement within learning spaces in design education. The book examines the definitions, concepts, ideas, and overlaps of a repertoire of learning spaces prevalent in higher education and addresses the pedagogical gap that exists between broader learning structures and spaces, and the requirements of specialist design education.Recognising that mainstream teaching environments impact upon design studio learning and student engagement, the book positions creative learning spaces at the heart of practice-based learning.It defines the underlying pedagogical philosophy of a creative learning space in design education and reports on how practical strategies incorporating sensory affect may be implemented by educators to foster better student engagement in these spaces within higher education. Bringing much-needed attention to specialist design teaching and learning spaces in higher education, this book will be of interest to educators, researchers, and post-graduate students immersed in design education, pedagogy, and learning spaces more broadly.
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Colorful Montessori Locks Keys Set Children Early Learning Education Sensory Toy
100% brand new and high quality Features: Made of very stable and environmentally friendly material. Visualize tasks and solve them easily. Perfect educational toy for you and your child. Helps children to increase attention and concentration. Promotion of fine and gross motor skills The eye-hand coordination is performed. Warning: Not suitable for children under 3 years. Use under the supervision of adults. Montessori Locks Keys only,other accessories demo in the picture is not included. Specification: Material: Plastic Lock Size: app.3.4x2.2cm/1.34x0.87in Color: As the pictures shown(8 Colors) Quantity: 1 Set Note: No retail package. Please allow 0-1cm error due to manual measurement. pls make sure you do not mind before you bid. Due to the difference between different monitors, the picture may not reflect the actual color of the item. Thank you! Package Contents: 8Pcs/Set x Montessori Locks Keys
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Sensory Square from Hope Education
This fabulous Sensory Square, is a great addition to your outdoor space, creating a tactile and multi-sensory experience for children, on their hands and feet. The strong, durable wooden frame is made of Scandinavian Redwood from sustainable sources.
Price: 703.40 £ | Shipping*: 0.00 £
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What are sensory cells, sensory organs, and senses?
Sensory cells are specialized cells that detect and respond to specific stimuli, such as light, sound, touch, taste, and smell. These cells are found in sensory organs, which are structures in the body that contain sensory cells and are responsible for detecting and transmitting sensory information to the brain. The senses, on the other hand, are the physiological capacities of organisms that provide data for perception. They include sight, hearing, touch, taste, and smell, and are essential for experiencing and interacting with the environment.
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What is the difference between a primary sensory cell, a secondary sensory cell, and a sensory nerve cell?
Primary sensory cells are specialized cells that directly detect stimuli from the environment, such as light, sound, or touch. Secondary sensory cells receive signals from primary sensory cells and transmit them to the central nervous system. Sensory nerve cells, also known as sensory neurons, are responsible for transmitting the signals from secondary sensory cells to the brain, where they are processed and interpreted. In summary, primary sensory cells detect stimuli, secondary sensory cells relay the signals, and sensory nerve cells transmit the signals to the brain for processing.
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What is sensory perception?
Sensory perception refers to the process of receiving and interpreting information from the environment through the senses. This includes the five main senses of sight, hearing, touch, taste, and smell, as well as other sensory experiences such as balance, proprioception, and temperature. The brain then processes this sensory information to create a perception of the world around us, allowing us to interact with and understand our surroundings. Sensory perception is essential for everyday functioning and plays a crucial role in how we experience and navigate the world.
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Are receptors sensory cells?
Receptors are not sensory cells themselves, but they are specialized proteins located on the surface of sensory cells. These receptors are responsible for detecting and responding to specific stimuli, such as light, sound, taste, or smell. When a receptor is activated by a stimulus, it triggers a series of biochemical reactions within the sensory cell, ultimately leading to the generation of a sensory signal that can be transmitted to the brain for processing. Therefore, while receptors are not sensory cells, they play a crucial role in the sensory process by detecting and transducing stimuli into neural signals.
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children's sensory training equipment home vestibular physical kindergarten swivel chair teaching
children's sensory training equipment home vestibular physical kindergarten swivel chair teaching
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Linking Cubes Montessori Math Toys Number Blocks Learning Decimal Counter Teaching Aids Sensory
Linking Cubes Montessori Math Toys Number Blocks Learning Decimal Counter Teaching Aids Sensory
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Computer Science Education : Perspectives on Teaching and Learning in School
Drawing together the most up-to-date research from experts all across the world, the second edition of Computer Science Education offers the most up-to-date coverage available on this developing subject, ideal for building confidence of new pre-service and in-service educators teaching a new discipline.It provides an international overview of key concepts, pedagogical approaches and assessment practices. Highlights of the second edition include:- New sections on machine learning and data-driven (epistemic) programming- A new focus on equity and inclusion in computer science education- Chapters updated throughout, including a revised chapter on relating ethical and societal aspects to knowledge-rich aspects of computer science education- A new set of chapters on the learning of programming, including design, pedagogy and misconceptions- A chapter on the way we use language in the computer science classroom. The book is structured to support the reader with chapter outlines, synopses and key points.Explanations of key concepts, real-life examples and reflective points keep the theory grounded in classroom practice. The book is accompanied by a companion website, including online summaries for each chapter, 3-minute video summaries by each author and an archived chapter on taxonomies and competencies from the first edition.
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Kids Swivel Chair Sensory Integration Balance Training Toys Carousel Spin Sensory Chair Training
Kids Swivel Chair Sensory Integration Balance Training Toys Carousel Spin Sensory Chair Training
Price: 75.25 € | Shipping*: 0 €
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What are artificial sensory organs?
Artificial sensory organs are devices designed to mimic the functions of natural sensory organs, such as the eyes, ears, and skin. These devices use advanced technology to detect and process sensory information, allowing individuals to perceive and interact with their environment in a way that is similar to natural sensory organs. Artificial sensory organs have the potential to enhance or restore sensory capabilities for individuals with disabilities, as well as to provide new sensory experiences for people without impairments. These technologies have the potential to revolutionize healthcare and human-computer interaction.
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What are sensory nerve cells?
Sensory nerve cells, also known as sensory neurons, are specialized cells that transmit information from the body's sensory organs (such as the skin, eyes, ears, nose, and tongue) to the central nervous system. These cells are responsible for detecting various stimuli, such as touch, temperature, pain, and pressure, and converting these stimuli into electrical signals that can be interpreted by the brain. Sensory nerve cells play a crucial role in allowing us to perceive and respond to our environment.
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Why is sensory transduction necessary?
Sensory transduction is necessary because it allows the body to convert various forms of environmental stimuli, such as light, sound, touch, and chemical signals, into electrical signals that can be interpreted by the nervous system. This process is essential for the body to perceive and respond to its surroundings, allowing for the detection of potential dangers, the regulation of bodily functions, and the experience of sensations such as taste, smell, and touch. Without sensory transduction, the body would not be able to effectively interact with its environment and respond to changes in its surroundings.
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How does sensory development progress?
Sensory development progresses through a series of stages, beginning with basic sensory experiences such as touch, taste, and smell in infancy. As children grow, they develop more refined sensory abilities, such as improved vision and hearing, and begin to integrate sensory information to make sense of their environment. This process continues into adolescence and adulthood, with individuals becoming more adept at interpreting and responding to sensory stimuli. Overall, sensory development progresses from basic sensory experiences to more complex and integrated sensory abilities as individuals mature.
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