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An eccentric comic about the central mystery of quantum mechanics Totally Random is a comic for the serious reader who wants to really understand the central mystery of quantum mechanics--entanglement: what it is, what it means, and what you can do with it. Measure two entangled particles separately, and the outcomes are totally random. But compare the outcomes, and the particles seem as if they are instantaneously influencing each other at a distance—even if they are light-years apart. This, in a nutshell, is entanglement, and if it seems weird, then this book is for you. Totally Random is a graphic experiential narrative that unpacks the deep and insidious significance of the curious cor...
A quirky, funny, and accessible blend of science and art that delves into the heart of Einstein's theory of relativity It was a link to his 1905 paper--an early attempt at explaining his revolutionary ideas on space, time, and matter--that drew Tanya Bub into Albert Einstein's imaginative vision of the world. What particularly struck her was how Einstein interwove words and math to create clear visuals illustrating his theories. As an artist, she naturally started doodling as she worked her way through his concepts, creating drawings that intuitively demonstrated Einstein's core principles. In Reimagining Time Tanya Bub teams up with her father, the distinguished physicist Jeffrey Bub, to create a quirky and accessible take on one of science's most revolutionary discoveries. Blending original art and text, they guide readers through Einstein's theory of special relativity to expose truths about our universe: time is relative, lengths get shorter with motion, energy and mass are interchangeable, and the Universe has a speed limit.
This outrageous graphic novel investigates key concepts in mathematics by taking readers on a voyage of forensic discovery, exploring some of the most fundamental ideas in mathematics within a thrilling murder mystery.
This book offers a thorough technical elaboration and philosophical defense of an objectivist informational interpretation of quantum mechanics according to which its novel content is located in its kinematical framework, that is, in how the theory describes systems independently of the specifics of their dynamics. It will be of interest to researchers and students in the philosophy of physics and in theoretical physics with an interest in the foundations of quantum mechanics. Additionally, parts of the book may be used as the basis for courses introducing non-physics majors to quantum mechanics, or for self-study by those outside of the university with an interest in quantum mechanics. With...
In the letters contained in this book, David Bohm argues that the dominant formal, mathematical approach in physics is seriously flawed. In the 1950s and 60s, Bohm took a direction unheard of for a professor of theoretical physics: while still researching in physics, working among others with Yakir Aharanov and later Jeffrey Bub, he also spent time studying “metaphysics”—such as Hegel’s dialectics and Indian panpsychism. 50 years on, questions raised about the direction and philosophical assumptions of theoretical physics show that Bohm’s arguments still have contemporary relevance.
Information theory is essentially about correlations, and the novel approach of Bananaworld is to get at what's counterintuitive about quantum information by considering correlations between normally mundane experiences that every reader can relate to.
"A thoughtful, otherworldly story about loss, hope, and the risks we take for the ones we love."—Dustin Thao, New York Times bestselling author of You’ve Reached Sam When a new girl arrives in town, seemingly from the future, three teens' lives are turned upside down in this speculative YA novel full of love and loss, and the power of the unknown. Seventeen-year-old Nell knows two things for sure—she’s never going to get out of her rural, dead-end hometown of Clawson, NY and her best friend Stevie B and longtime boyfriend Cole are never going to leave her. That is until Charlotte, a new girl, arrives at their school and their lopsided friend triangle is turned on its axis. While Nell...
An influential thinker distills years of work on the philosophy of movement into one accessible account Why are city dwellers worldwide walking on average ten percent faster than they were a decade ago? Why are newcomer immigrant groups so often maligned when migration has always constituted civilization? To analyze and understand the depth of the reasons, Thomas Nail suggests that it serves us well to turn to a philosophy of movement. Synthesizing and extending many years of his influential work, The Philosophy of Movement is a comprehensive argument for how motion is the primary force in human and natural history. Nail critiques the bias toward stasis at the core of Western thought, asking...
An enchanting and evocative look at the unique relationship between a solitary, island-dwelling wolf and a renowned wildlife photographer. A lone wild wolf lives on a small group of uninhabited islands in British Columbia's Salish Sea, surrounded by freighter, oil tanker and other boat traffic and in close proximity to a large urban area. His name is Takaya, which is the Coast Salish First Nations people's word for wolf. Cheryl Alexander studied and documented this unique wolf for years, unravelling the many mysteries surrounding his life. Her documentation of Takaya's journey, his life on the islands and the development of their deep connection is presented alongside a stunning collection of her photography. Through journal entries, interviews, and a stunning collection of photography, Takaya: Lone Wolf addresses a number of profound questions and tells a story that is certain to inspire, enlighten, and touch the heart. It is the story of a wild animal, alone yet at peace.
"^IQuantum Computing: From Alice to Bob^R provides a distinctive and accessible introduction to the rapidly growing fields of quantum information science and quantum computing. The textbook is designed for undergraduate students and upper-level secondary school students with little or no background in physics, computer science, or mathematics beyond secondary school algebra and a bit of trigonometry. While broadly accessible, the book does not dodge providing a solid conceptual and formal understanding of quantum states and entanglement-the key ingredients in quantum computing. The book includes ^ITry It^Rs, brief exercises that engage the readers in problem solving (both with and without mathematics) and help them digest the many counter-intuitive quantum information science and quantum computing concepts. "This is a much needed bridge between popular and technical texts that provides easy access to the topic of quantum computing for curious readers who aim to go further and deeper in their understanding.""--