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Order from Force
  • Language: en
  • Pages: 152

Order from Force

The present theme concerns the forces of nature, and what investigations of these forces can tell us about the world we see about us. The story of these forces is long and complex, and contains many episodes that are not atypical of the bulk of scientific research, which could have achieved greater acclaim 'if only...'. The intention of this book is to introduce ideas of how the visible world, and those parts of it that we cannot observe, either because they are too small or too large for our scale of perception, can be understood by consideration of only a few fundamental forces. The subject in these pages will be the authority of the commonly termed, laws of physics, which arise from the forces of nature, and the corresponding constants of nature (for example, the speed of light, c, the charge of the electron, e, or the mass of the electron, me).

Quantifying Measurement
  • Language: en
  • Pages: 132

Quantifying Measurement

Measurements and experiments are made each and every day, in fields as disparate as particle physics, chemistry, economics and medicine, but have you ever wondered why it is that a particular experiment has been designed to be the way it is. Indeed, how do you design an experiment to measure something whose value is unknown, and what should your considerations be on deciding whether an experiment has yielded the sought after, or indeed any useful result? These are old questions, and they are the reason behind this volume. We will explore the origins of the methods of data analysis that are today routinely applied to all measurements, but which were unknown before the mid-19th Century. Anyone who is interested in the relationship between the precision and accuracy of measurements will find this volume useful. Whether you are a physicist, a chemist, a social scientist, or a student studying one of these subjects, you will discover that the basis of measurement is the struggle to identify the needle of useful data hidden in the haystack of obscuring background noise.

Defining and Measuring Nature
  • Language: en
  • Pages: 160

Defining and Measuring Nature

Weights and measures form an essential part of our ingrained view of the world. It is just about impossible to function effectively without some internalized system of measurement. In this volume, I outline a history of the science of measurement, and the

Defining and Measuring Nature (Second Edition)
  • Language: en
  • Pages: 185

Defining and Measuring Nature (Second Edition)

Measurement forms an essential part of our view of the world. Our world is measured and calibrated, and we are all subject to the tyranny of these numbers. In this updated and extended edition, Jeffrey Huw Williams outlines the history of measurement; particularly of the International System of units (SI). Since the previous edition, the base units of the SI have been redefined; realizing a 150-year-old dream for a measurement system based on unchanging, fundamental quantities of nature. This change has created a new SI, a Quantum SI, which will significantly change the way we look at nature in a quantitative manner, and greatly facilitate the advance of science. Key Features Significantly updated and extended new edition The first book to include the new Quantum SI base unit definitions Features wider societal and philosophical implications of a move away from physical standards Outlines the history of the science of measurement, and the origin of the Metric System More than a textbook of metrology, it is also a history of how we have arrived at the Quantum SI

Crystal Engineering
  • Language: en
  • Pages: 145

Crystal Engineering

There are more than 20 million chemicals in the literature, with new materials being synthesized each week. Most of these molecules are stable, and the 3-dimensional arrangement of the atoms in the molecules, in the various solids may be determined by routine x-ray crystallography. When this is done, it is found that this vast range of molecules, with varying sizes and shapes can be accommodated by only a handful of solid structures. This limited number of architectures for the packing of molecules of all shapes and sizes, to maximize attractive intermolecular forces and minimizing repulsive intermolecular forces, allows us to develop simple models of what holds the molecules together in the...

Modern Nonlinear Optics, Volume 85, Part 2
  • Language: en
  • Pages: 850

Modern Nonlinear Optics, Volume 85, Part 2

The Advances in Chemical Physics series provides the chemical physics and physical chemistry fields with a forum for critical, authoritative evaluations of advances in every area of the discipline. Filled with cutting-edge research reported in a cohesive manner not found elsewhere in the literature, each volume of the Advances in Chemical Physics series serves as the perfect supplement to any advanced graduate class devoted to the study of chemical physics.

The Molecule as Meme
  • Language: en
  • Pages: 146

The Molecule as Meme

It was not until 1971 that the authority for defining scientific units, the General Conference of Weights and Measures got around to defining the unit that is the basis of chemistry (the mole, or the quantity of something). Yet for all this tardiness in putting the chemical sciences on a sound quantitative basis, chemistry is an old and venerable subject and one naturally asks the question, why? Well, the truth is that up until the mid-1920s, many physicists did not believe in the reality of molecules. Indeed, it was not until after the physics community had accepted Ernest Rutherford's 1913 solar-system-like model of the atom, and the quantum mechanical model of the coupling of electron spins in atoms that physicists started to take seriously the necessity of explaining the chemical changes that chemists had been observing, investigating and recording since the days of the alchemists.

Supercontinent
  • Language: en
  • Pages: 190

Supercontinent

  • Type: Book
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  • Published: 2012-02-09
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  • Publisher: Granta Books

The shifting continents of the Earth are heading for inevitable collision: 250 million years from now, all the land masses on this planet will come together in a single, gigantic supercontinent which no human is ever likely to see. That future supercontinent will not be the first to form on Earth, nor will it be the last. Each cycle lasts half a billion years, making it the grandest of all the patterns in nature. It is scarcely a century since science first understood how Pangaea, the supercontinent which gave birth to dinosaurs, split apart, but scientists can now look back three-quarters of a billion years into the Earth's almost indecipherable past to reconstruct Pangaea's predecessor, an...

Nature-based Scientific Measurement Units
  • Language: en
  • Pages: 95

Nature-based Scientific Measurement Units

Nature-based scientific measurements just like Indian numerology were in the development of science. Regarding the natural decimal ratio hypothesis, the actual standard of maximum structure evolution limits is the maximum linear light amplitude relative to the fundamental unit of time. Within these parameters, all evolutionary creations reach perfection, which creates the basic dynamic hypothesis for the transmission of information that takes place in the brain, based on the evolution of science and science in relation to natural measurement parameters.

Causes in Common
  • Language: en
  • Pages: 266

Causes in Common

First monograph to detail fully the women’s movement in Wales, with an emphasis on the labour movement and social democratic values. Panoramic sweep detailing a range of nineteenth and twentieth century events and personalities, some for the first time. Clear, accessible style which will appeal to readers across a range of audiences – particularly non-specialists. Adds significantly to knowledge about Welsh women’s history, particularly as it relates to LGBTQ+ civil rights campaigns, women’s liberation, and the women’s labour movement.