Right-Brained Addition and Subtraction Vol. 2

Right-Brained Addition and Subtraction Vol. 2 PDF

Author: Sarah Major

Publisher:

Published: 2019-09-27

Total Pages:

ISBN-13: 9781947484122

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Right-Brained Addition & Subtraction Vol. 2 is an effective way to teach addition & subtraction for numbers larger than 10 - no matter how much children have struggled to remember math facts before. Right-Brained Place Value strategically builds on Right-Brained Addition & Subtraction and all computation done in this book is based on the facts to ten, which the children already know!

Right-Brained Addition & Subtraction

Right-Brained Addition & Subtraction PDF

Author: Sarah Major

Publisher: Child1st Publications LLC

Published: 2013-03

Total Pages: 182

ISBN-13: 9781936981540

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Right-Brained Addition & Subtraction begins with number recognition and counting, and continues through single-digit computation, number patterns, number sense, and number families. Included are stylized numbers and a song that helps children relate number symbols with number names. Then there is the core of the Right-Brained series which is the visuals and patterns for the facts to 10. Most importantly, children don't do computation by counting, but rather by the "see and say" method. The visual background they receive with the games allows them this fluency with their facts. This detailed resource book is packed with 101 pages of handy blackline masters of worksheets, assessments, and overheads making lesson preparation a snap.

Right-Brained Place Value

Right-Brained Place Value PDF

Author: Sarah Major

Publisher: Child1st Publications LLC

Published: 2013-03

Total Pages: 224

ISBN-13: 9781936981557

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Right-Brained Place Value grows out of the work in Right-Brained Addition & Subtraction. Once the children know their facts to 10 on sight (very much like we want them to know their sight words) they are ready for multi-digit computation. The magic of this book and what sets it apart from other books is that all computation is based on the facts to 10. Students never have to add any facts larger than 1+9, 2+8, 3+7, 4+6, or 5+5, or subtract anything other than 10 minus numbers 1-9! Children love doing big problems using this method because they no longer have to tediously count on their fingers. Right-Brained Place Value takes basic addition and subtraction into multi-digit computation, and includes strategies for word problems. This detailed resource book is packed with 155 pages of handy reproducibles of worksheets, assessments and overheads, making lesson preparation a snap. Total page count: 223.

Right-Brained Time, Money, & Measurement

Right-Brained Time, Money, & Measurement PDF

Author: Sarah K Major

Publisher:

Published: 2017-06-19

Total Pages: 132

ISBN-13: 9781947484009

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This book is for children who are strongly visual, who learn all at once through pictures, are drawn to patterns, rely on body motions, and who need to understand the process behind each math problem they solve. In Time, Money, & Measurement, we start at the very beginning and increase in difficulty in each area. 1- We embed symbols in VISUALS so that the child can take a quick look, absorb the learning piece, and store it as an image to be retrieved intact later. 2- We use PERSONIFICATION which is a powerful element in teaching and learning. The use of personification makes for rapid learning because the very look and personality of the character conveys the substance of the learning. For example, Ollie Owl, Molly Mongoose, and Sammy Stork have personalities that help cement their function in children's memory. Ollie Hour is an owl who marks the hours and goes very slowly on his short legs. Molly Minute is a mongoose who ticks off the minutes, scuttling around the clock quickly. Sammy Second is a stork who swoops around the clock marking off the seconds. 3- We rely on PATTERN DISCOVERY as a way of making numbers come alive and as a means of conveying the amazing relationships between numbers. What results is number sense. Because the brain is a pattern seeking organ, it is drawn to material that follows patterns. 4- We use STORY to contain the meaning of what we are teaching in math. Stories, like visuals, make learning unforgettable. They explain the "why" behind math concepts and tie everything together, creating a vehicle for meaning and for recall. 5- We use BODY MOTION--both gesture and whole body movement that mirrors the symbol shape or the action in the math story (such as addition or subtraction). Again, body movement is a powerful agent for learning and remembering. For many people, body motion makes recall effortless if the learning piece is directly tied to a unique motion. 6- We employ VISUALIZATION--a powerful tool for right-brain-dominant learners. If these learmers are given time to transfer the image on the paper in front of them to their brains (prompt them to close their eyes and SEE it in their mind's eye), they will be able to retrieve that image later. If the image contains learning concepts, this is how they will remember what you want them to learn. So in this book, each time a visual is introduced, prompt the student(s) to "see" the image in their mind.

The Oxford Handbook of Cognitive Neuroscience, Volume 2

The Oxford Handbook of Cognitive Neuroscience, Volume 2 PDF

Author: Kevin Ochsner

Publisher: Oxford University Press

Published: 2013-12

Total Pages: 638

ISBN-13: 0199988706

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A rich source of authoritative information that supports reading and study in the field of cognitive neuroscience, this two-volume handbook reviews the current state-of-the-science in all major areas of the field.

The Neurocognition of Language Production

The Neurocognition of Language Production PDF

Author: Albert Costa

Publisher: Frontiers Media SA

Published: 2012-06-01

Total Pages: 123

ISBN-13: 2889190331

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Over the last decades neuroscience has passed beyond mere “phrenology” and “erpology” and has become an important tool for investigating the spatial, temporal and functional brain dynamics underlying human behavior. In this Special Issue we would like to give a broad overview of recent significant contributions that neuroscientific research has provided to one of the most practiced psychomotor skills unique to humans, namely language production. Physiological studies in language production have not been as extensive compared to many other areas of human cognition and have just currently begun to generate important evidence for uncovering the cognitive mechanisms behind our ability to produce fast and efficient speech. Nonetheless, these findings have already demonstrated their scientific value and interest in neuroscientific approaches for studying language production is increasing exponentially. Therefore, we believe that a topic specially dedicated to neurocognitive advances in language production is not just in its place, but even necessary. Rather than focusing on a specific topic, the idea is to cover many of the important aspects involved in producing speech (semantics, word retrieval, syntax, phonology, motor preparation and control) gathered from various paradigms (e.g., object naming, word naming, etc.) and various populations (monolinguals, bilinguals, patients). The goal is to provide readers with a comprehensive overview of the general questions being addressed in neuroscientific studies on language production, where the research stands, how these findings are of importance for understanding and constraining cognitive models and which future directions have to be taken. To this end we will invite experts in the field who have made significant contributions in the last several years to confer an important topic of language production, critically discuss neuroscientific findings on this topic, relate it to the actual behavior and cognitive models and, importantly, though novel questions which can be derived from their results and facilitate future research in the field. Hereby we hope this Research Topic will be a source of reference both for experts as novices who wish to explore the various mental operations involved in language production from a neurocognitive point of view.