Here are 100 books that Little Science, Big Science fans have personally recommended if you like
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I’m a historian of science fascinated by how scientists cope with uncertainty. I’m drawn to books that identify and try to explain the gaps in scientific knowledge and describe ways of knowing that might not be called scientific. I love to read stories about how ordinary people discover extraordinary things about their environments. I’m always curious about what happens when savvy locals are visited by scientific experts. Will they join forces? Admit what they don’t know? Or is a struggle brewing?
I was captivated by an insight that came to Firestein while he was teaching college biology. Science courses typically teach what scientists know about their disciplines, but what’s most exciting to scientists is what they don’t know.
So Firestein had the brilliant idea to design a course where scientists would share their “ignorance”—the questions that keep them up at night and propel new research. It helps that the author used to work as a stand-up comic!
Knowledge is a big subject, says Stuart Firestein, but ignorance is a bigger one. And it is ignorance-not knowledge-that is the true engine of science.
Most of us have a false impression of science as a surefire, deliberate, step-by-step method for finding things out and getting things done. In fact, says Firestein, more often than not, science is like looking for a black cat in a dark room, and there may not be a cat in the room. The process is more hit-or-miss than you might imagine, with much stumbling and groping after phantoms. But it is exactly this "not…
The Victorian mansion, Evenmere, is the mechanism that runs the universe.
The lamps must be lit, or the stars die. The clocks must be wound, or Time ceases. The Balance between Order and Chaos must be preserved, or Existence crumbles.
Appointed the Steward of Evenmere, Carter Anderson must learn the…
I’m a Scientist in Residence at Lux Capital, a venture capital firm that invests in startups at the frontiers of science and technology. I have a PhD in computational biology and focused my academic research on the nature of complex systems, but I soon became fascinated by the ways in which science grows and changes over time (itself a type of complex system!): what it is that scientists do, where scientific knowledge comes from, and even how the facts in our textbooks become out-of-date. As a result of this fascination, I ended up writing two books about scientific and technological change.
I remember reading this book probably about twenty years ago, and it has a great deal of insight into how to understand the scientific process, both in how it is carried out as well as how scientists can get better at discovery. Written primarily in the form of a dialogue between a set of archetypical characters and informed by a huge amount of work into the history and sociology of science, it takes the reader through how to understand creativity in science.
Root-Bernstein (natural science and physiology, Michigan State) attempts to understand how scientists invent through an imaginary reconstruction of the arguments, reflections, and games of six fictional characters. The index is of names only. TheRoot-Bernstein (natural science and physiology, Michigan State) attempts to understand how scientists invent through an imaginary reconstruction of the arguments, reflections, and games of six fictional characters. The index is of names only. The bibliography is extensive but would be more useful to general readers if it were classified or annotated. Annotation copyright Book News, Inc. Portland, Or. bibliography is extensive but would be more useful to…
I’m a Scientist in Residence at Lux Capital, a venture capital firm that invests in startups at the frontiers of science and technology. I have a PhD in computational biology and focused my academic research on the nature of complex systems, but I soon became fascinated by the ways in which science grows and changes over time (itself a type of complex system!): what it is that scientists do, where scientific knowledge comes from, and even how the facts in our textbooks become out-of-date. As a result of this fascination, I ended up writing two books about scientific and technological change.
Primarily a historical work, this book explores how curiosity went from a kind of strange and disreputable act to something that became celebrated and tamed as part of the scientific process. With a focus on the early days of modern science, it is filled with a huge number of delightful examples of what passed for curiosity in previous centuries.
There was a time when curiosity was condemned. To be curious was to delve into matters that didn't concern you - after all, the original sin stemmed from a desire for forbidden knowledge. Through curiosity our innocence was lost.
Yet this hasn't deterred us. Today we spend vast sums trying to recreate the first instants of creation in particle accelerators, out of pure desire to know. There seems now to be no question too vast or too trivial to be ruled out of bounds: Why can fleas jump so high? What is gravity? What shape are clouds? Today curiosity is…
Magical realism meets the magic of Christmas in this mix of Jewish, New Testament, and Santa stories–all reenacted in an urban psychiatric hospital!
On locked ward 5C4, Josh, a patient with many similarities to Jesus, is hospitalized concurrently with Nick, a patient with many similarities to Santa. The two argue…
I’m a Scientist in Residence at Lux Capital, a venture capital firm that invests in startups at the frontiers of science and technology. I have a PhD in computational biology and focused my academic research on the nature of complex systems, but I soon became fascinated by the ways in which science grows and changes over time (itself a type of complex system!): what it is that scientists do, where scientific knowledge comes from, and even how the facts in our textbooks become out-of-date. As a result of this fascination, I ended up writing two books about scientific and technological change.
This is a trilogy of historical fiction about, among many other things, the invention of the modern monetary system and the Scientific Revolution. Yes, it’s a heavy lift, as it’s nearly three thousand pages long, but it’s an incredible read. And if you want to get a sense of the sheer weirdness of the early days of science—both the people involved in it, as well as the ideas that they were playing with—these books are absolutely fantastic.
Get all three novels in Neal Stephenson's New York Times bestselling "Baroque Cycle" in one e-book, including: Quicksilver, The Confusion, and The System of the World. This three-volume historical epic delivers intrigue, adventure, and excitement set against the political upheaval of the early 18th century.
Three events in my life have had a profound effect on the narratives created within my novels. After receiving a chemistry set for my 10th Christmas, I succeeded in causing an explosion, resulting in my extended hospitalization. While in the hospital, I had a near-death experience (NDE). During an amateur telescopic outing with a friend during our teenage years, we experienced a UFO sighting. While doing my doctoral thesis in experimental quantum physics, I began to sense a strong link between elements of quantum physics and consciousness. These events occasionally entered my thinking over the next decades. I developed a passion for writing novels to explore links between quantum physics and consciousness.
Tyson Klein, a quantum physicist at CERN, analyzes data from the world’s most powerful particle accelerator. He discovers a highly intelligent pattern in data broadcast over what he terms a “Quantum Radio.” The data has the potential to answer the deepest questions about human existence and the cosmos itself, a Theory of Everything. Because the data accurately describes history and alternate histories and projects their future outcome, he first questions whether it’s from another universe or from the future.
As he closes in on how to control the quantum radio, he finds that someone else is after it and will stop at nothing to get it. The first one to uncover its operation will control the world and probably more.
Riddle seamlessly weaves grandiose ideas in science, psychology, history, and time travel throughout the fabric of the personal relationships of several individuals who “coincidentally” enter Tyson’s life to help in…
FROM THE SUNDAY TIMES BESTSELLING AUTHOR OF LOST IN TIME
At CERN, a scientist has just made an incredible discovery - a breakthrough that may answer the deepest questions about human existence.
But what he's found is far more dangerous than he ever imagined.
Dr. Tyson Klein is a quantum physicist who has dedicated his entire life to his research. At CERN, he analyses data generated by the Large Hadron Collider, the world's biggest and most powerful particle accelerator. Now, Ty believes he's found a pattern in its output. It looks like an organised data stream, being broadcast over what…
Don Lincoln is both a research scientist and a masterful science communicator. On the science side, he participated in the discovery of both the top quark and the Higgs boson. On the communicator side, he has written books, made hundreds of YouTube videos, and written for such visible venues as Scientific American and CNN. He has both the scientific chops and writer expertise to tell an exciting story about why the universe is the way it is.
It is perhaps unfair to pick this book, as it is one I wrote, but it really is an unparalled book on the subject of the Large Hadron Collider (or LHC), currently the most powerful particle accelerator on the planet. The book contains some physics and technical information on the LHC and the detectors arrayed around it. It tells the stories of the startup, including the catastrophic damage that took two years to repair, and the accelerator’s triumphant return to operations. It tells insider tales of the assembly of the detectors and also gives an insider’s view of the discovery of the Higgs boson. No other book gives the reader such an intimate window seat to see how this amazing technical leviathan came into being.
An insider's history of the world's largest particle accelerator, the Large Hadron Collider: why it was built, how it works, and the importance of what it has revealed.
Since 2008 scientists have conducted experiments in a hyperenergized, 17-mile supercollider beneath the border of France and Switzerland. The Large Hadron Collider (or what scientists call "the LHC") is one of the wonders of the modern world-a highly sophisticated scientific instrument designed to re-create in miniature the conditions of the universe as they existed in the microseconds following the big bang. Among many notable LHC discoveries, one led to the 2013 Nobel…
A Duke with rigid opinions, a Lady whose beliefs conflict with his, a long disputed parcel of land, a conniving neighbour, a desperate collaboration, a failure of trust, a love found despite it all.
Alexander Cavendish, Duke of Ravensworth, returned from war to find that his father and brother had…
I’ve been an astronomer since I was young and lucky enough to make a living at it. I ventured into space mining when I found Mining the Sky. I started doing some calculations using the newest research. What I found was surprising and ignited a new passion in me that has led me from asteroids to the Moon to the ends of the Solar System and from pure astrophysics into questions of law, government, and ethics. Now, I write almost entirely about our future in space.
It’s an oldie (originally published in 1976!) but still in print. O’Neill offers us an optimistic vision of the giant “space cities” we may be able to build when we master space mining based on solid numbers.
I have my reservations, and Nesvold’s cautions still apply, but just maybe we can do better this time around.
In 1969 America had proved its leadership in human spaceflight but among the nation’s youth an anti-technology mindset was growing. Princeton Physicist and Professor Dr. Gerard K. O’Neill, inventor of the revolutionary Colliding-Beam Storage Ring technology that is now the basis of all high energy particle accelerators, asked his students if they could come up with a working Space Colony system to permanently and happily house tens of thousands of regular people. They dug into the challenge. Soon his small band of students grew to scores of researchers both young and old, all united in the Big Dream of letting…
I am a professor of philosophy at New York University, but my interests have always fallen at the intersection of physics and philosophy. Unable to commit to just one side or the other, I got a joint degree in Physics and Philosophy from Yale and a PhD in History and Philosophy of Science at the University of Pittsburgh. My fascination with Bell’s Theorem began when I read an article in Scientific American in 1979, and I have been trying to get to the bottom of things ever since. My most recent large project is a Founder and Director of the John Bell Institute for the Foundations of Physics.
Ghirardi, together with Alberto Rimini and Tulio Weber, developed the first mathematically rigorous “objective collapse” interpretation of quantum formalism. This book is aimed at a popular audience, and includes discussion of quantum computation and quantum cryptography, which is absent from the other books on the list. The mathematics is slightly greater than in Albert’s book, but does not go beyond a high school level.
Quantum mechanics, which describes the behavior of subatomic particles, seems to challenge common sense. Waves behave like particles; particles behave like waves. You can tell where a particle is, but not how fast it is moving--or vice versa. An electron faced with two tiny holes will travel through both at the same time, rather than one or the other. And then there is the enigma of creation ex nihilo, in which small particles appear with their so-called antiparticles, only to disappear the next instant in a tiny puff of energy. Since its inception, physicists and philosophers have struggled to work…
I'm a PEN Award-winning historian of alternative spirituality and a writer-in-residence at the New York Public Library. I track the impact and substance of supernatural beliefs—a source of fascination since my Queens, NY, boyhood—in books including Occult America, The Miracle Club, and Uncertain Places. I often say that if you do not write your own history, it gets written for you—usually by people who may not care about or even understand the values that emanate from your work. Given my personal dedication to the spiritual search, I call myself a believing historian (which most historians of religion actually are). I labor to explore the lives, ideas, and practices behind esoteric spirituality.
The most controversial aspect of nearly a century of research in quantum mechanics is how the perspective of an observer, either sentient or mechanical, determines reality on the subatomic scale. What does this say—if anything—about life in our above-ground, macro world? With zero sensationalism and great rigor, not to mention witty and accessible writing, physicists Rosenblum and Kuttner sort out questions of particle mechanics, quantum theory, and consciousness in a manner that is understandable to the layperson yet faithful to the findings of this most confounding of the hard sciences.
In trying to understand the atom, physicists built quantum mechanics, the most successful theory in science and the basis of one-third of our economy. They found, to their embarrassment, that with their theory, physics encounters consciousness. Authors Bruce Rosenblum and Fred Kuttner explain all this in non-technical terms with help from some fanciful stories and anecdotes about the theory's developers. They present the quantum mystery honestly, emphasizing what is and what is not speculation. Quantum Enigma's description of the experimental quantum facts, and the quantum theory explaining them, is undisputed. Interpreting what it all means, however, is heatedly controversial. But…
It is April 1st, 2038. Day 60 of China's blockade of the rebel island of Taiwan.
The US government has agreed to provide Taiwan with a weapons system so advanced that it can disrupt the balance of power in the region. But what pilot would be crazy enough to run…
I’m a scientist at the University of Cambridge who’s worked on
environmental research topics such as jet streams and the Antarctic
ozone hole. I’ve also worked on solar physics and musical acoustics.
And other branches of science have always interested me. Toward the
end of my career, I became fascinated by cutting-edge issues in
biological evolution and natural selection. Evolution is far
richer and more complex than you’d think from its popular description
in terms of ‘selfish genes’. The complexities are central to
understanding deep connections between the sciences, the arts, and
human nature in general, and the profound differences between human
intelligence and artificial intelligence.
It achieves an important and unusual cross-fertilization between two
very different kinds of expertise. Both authors are highly
innovative, and creative, thinkers, Cohen in biology and Stewart in
mathematics.
Cohen is a biologist fascinated by the complexity
observed in the living world, and Stewart is an expert on the
mathematics of chaos and complexity. The result is a profound and
multifaceted view of many natural phenomena, and of evolution in
particular. It becomes very clear how selfish-gene theory fails to
take account of important evolutionary mechanisms.
Moving on from his books on chaos ("Does God Play Dice?") and symmetry ("Fearful Symmetry"), the author of this book deals with the wider field of complexity theory. The book tackles the question of how complexity arises in nature, of how life overcomes chaos and entropy to create developing order. Co-written with biologist Jack Cohen, the book will range across the central areas of modern science, from quantum mechanics and cosmology to evolution and intelligence, looking at the central questions of order, chaos, reductionism and complexity.