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Create 12 different models that actually fly: space shuttle, futuristic shuttle, flying wing, delta-wing jet, fighter plane, interceptor, double tail fighter, dart plane, fighter plane with engines, futuristic fighter, and two jets.
Make the best paper airplanes around with this easy-to-follow origami book. Enthralled with origami from a young age, world renowned origami and paper crafter Michael LaFosse has used those skills to design and perfect paper airplanes for decades. In Planes for Brains, LaFosse presents 28 original paper origami models that incorporate innovative functional and aesthetic details like faceted flaps, ailerons, canards and spoilers that really work. The sense of proportion and balance, and an ingenious nose and fuselage locking system, define these signature models, which are instant classics. Readers accustomed to folding simple darts and wings will bet thrilled and challenged by the folding maneuvers in these pages. Planes for Brians comes with great value—included are: 28 fun-to-do projects Step-by-step instructions Expert tips on techniques and folds Downloadable video tutorial Great for paper airplane enthusiasts as well as fans of unique origami works and parents with kids. Scissors, tape, glue are not required! Paper airplane models include: Lock Nose Dart Flying Fox Shuttle Dart F-102 Delta Jet Nifty Fifty And many more…
Contains instructions for creating accurate paper replicas of twelve historically important planes.
This book has a collection of the 10 best paper planes originally designed by Tri Dang, a person who is running a famous paper airplane YouTube channel TriKdanG. Each plane has been carefully selected by his fans, true paper plane lovers. There are 10 practice sheets with free logo designs.This book will show you how to make paper airplanes that can loop and turn, fly straight and fast, return nicely on your hands, float in the air, and flap its wings like an eagle. Each paper plane in this book is folded using a clean sheet of 8.5 in. x 11 in. (letter size) paper with no cuts, tears, or tape.If you want to make perfect paper airplanes, have a ruler and pencil handy.
A collection of easy-to-fold paper airplane designs and innovative theories of flight, including the author's Guinness World Record-breaking airplane. Features 16 tear-out model planes. Will YOU be the next to break the WORLD RECORD? Anything is possible with The New World Champion Paper Airplane Book, the newest collection of designs and theories of flight from John M. Collins, the man behind the Guinness World Record–breaking distance plane. Featuring twenty-two unique airplane designs with step-by-step instructional photos, plus tear-out models printed on regulation-weight paper stock, this entertaining and informative guide promises hours of flying fun. Take your paper airplane–making to the next level with features such as: · Instructions for folding “Suzanne,” the plane that shattered the previous world record by flying an unprecedented 226 feet, 10 inches, and garnered more than three million views on YouTube · Four “Follow Foil” aircraft that can stay aloft for minutes at a time · A pioneering cambered-wing plane · A primer on flight theory, and how it applies to paper airplanes · Tips for improving the accuracy and distance of your throws · The adjusting technique that helped break the record · And more!
The director of the Climate Outreach and Information Network explores the psychological mechanism that enables people to ignore the dangers of climate change, using sidebars, cartoons and engaging stories from his years of research to reveal how humans are wired to primarily respond to visible threats.
It's Not Rocket Surgery, It's Brain Science! If you have a brain (spoiler alert: if you're reading this, you do!), you've probably wondered how and why it works the way it does (and why it sometimes...doesn't). What do dreams mean? Why do we fall in love? Can doing brain-teasers make us smarter? What about "smart drugs"? Dr. Alison Caldwell, a neuroscientist and Micah Caldwell, a licensed clinical therapist (and, together, the hosts of the popular YouTube series Neuro Transmissions) are here to answer those questions, and hundreds more you never thought to ask, such as...does your cat really love you? What can therapists learn from TRON? Can my diet make me smarter? Why do some people really like feet? And much, much more. Book jacket.
We are profoundly social creatures--more than we know. In Social, renowned psychologist Matthew Lieberman explores groundbreaking research in social neuroscience revealing that our need to connect with other people is even more fundamental, more basic, than our need for food or shelter. Because of this, our brain uses its spare time to learn about the social world--other people and our relation to them. It is believed that we must commit 10,000 hours to master a skill. According to Lieberman, each of us has spent 10,000 hours learning to make sense of people and groups by the time we are ten. Social argues that our need to reach out to and connect with others is a primary driver behind our behavior. We believe that pain and pleasure alone guide our actions. Yet, new research using fMRI--including a great deal of original research conducted by Lieberman and his UCLA lab--shows that our brains react to social pain and pleasure in much the same way as they do to physical pain and pleasure. Fortunately, the brain has evolved sophisticated mechanisms for securing our place in the social world. We have a unique ability to read other people’s minds, to figure out their hopes, fears, and motivations, allowing us to effectively coordinate our lives with one another. And our most private sense of who we are is intimately linked to the important people and groups in our lives. This wiring often leads us to restrain our selfish impulses for the greater good. These mechanisms lead to behavior that might seem irrational, but is really just the result of our deep social wiring and necessary for our success as a species. Based on the latest cutting edge research, the findings in Social have important real-world implications. Our schools and businesses, for example, attempt to minimalize social distractions. But this is exactly the wrong thing to do to encourage engagement and learning, and literally shuts down the social brain, leaving powerful neuro-cognitive resources untapped. The insights revealed in this pioneering book suggest ways to improve learning in schools, make the workplace more productive, and improve our overall well-being.
Peep inside a plane to discover how it works. Peep into the cockpit, push the throttle and flap down the wheels as you follow the plane on a journey around the world. With lots of flaps to peep under and holes to look through, little ones will enjoy discovering the topic in a hands-on way. There is so much to look at and talk about, from the pilot's controls to the secret bedroom below the cockpit. The first in an exciting new series peeping inside things that go and how they work.
The Rat Brain in Stereotaxic Coordinates provides an atlas of the rat brain. The main features of this atlas are: (1) It is based on the flat-skull position, and bregma, lambda, or the midpoint of the interaural line can be used as a reference point. (2) The atlas is based on the study of 130 adult male Wistar rats (with a weight range of 270-310 g). It is suitable for brains of 250-350 g male rats. (3) It represents all areas of the brain and spinal cord, and brain areas are shown in coronal, sagittal, and horizontal planes. The brain sections shown were taken at 0.5 mm intervals and were stained with either cresyl violet or for the demonstration of acetylcholinesterase (AChE). (4) It is based on fresh brains frozen in the skull (using deeply anaesthetized rats) in order to overcome distortion produced by fixation and to enhance staining contrast. (5) Structures are delineated on the basis of data on cytoarchitecture, connectivity, histochemistry, and development. The book is intended for researchers and graduate students in the neurosciences. Senior undergraduates should also find the atlas a useful adjunct to readings and lectures in brain anatomy and function.