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It is said that humans have unknown power known as ki (bio-psychokinesis). Ki is also not unlike other forms of bio-energy, such as prana in ancient India or psi in modern parapsychology. Referred also as energy medicine, spiritual healing and prayer therapy, these practices have been executed throughout different points in history and countries all over the world. Moreover, energy medicine has been used in hospitals recently. However, there are many unresolved problems with such bio-energy. The focus of this book is the author's biophysical study on anomalous phenomena, which are claimed to be caused by bio-energy. In Chapter I, the author describes the concept of ki in modern Japan. He also describes the concept of bio-sensors to detect implicit anomalous weak energy. Bio-sensors are important in modern parapsychology, and many successful studies are done using bio-sensors. In Chapter II, the author summarises new findings obtained through his studies by using the pieces of a cucumber. Through his unique methods, various properties of ki (psi) are found. The most important finding is that the ki (psi) phenomenon follows simple laws in physics. The author measured the spatial distribution of ki-field, which is generated around a human body. The result of the world's first quantitative measurement of ki-field is shown in this book. In Chapters III & IV, the author explains the detail of how to use cucumbers as a bio-sensor for weak bio-energy; some examples of these are gas, biophoton, and fluorescence measurement methods. The author describes them for students and beginner studiers of ki (psi), and the readers will be able to understand and execute them by themselves completely. A brief touch on Japanese studies on ki (psi) is shown in Chapter V. Additionally, the author describes Chinese parapsychological study. These historic inheritances will help the readers to understand research senses of the modern study on ki and psi.
Sensor networks continue to grow in importance for modern communication networks. Communication protocols are at the core of these networks, determining their ability to function, their capabilities, and the environments in which they are able to operate. In chapters carefully selected from the popular Handbook of Sensor Networks, Sensor Network Protocols supplies a sharply focused reference on protocols, security, data processing, and energy management in communication sensor networks that is ideal for specialists in the field. Providing a succinct guide to the protocols currently used in advanced sensor networks, this book focuses on four main areas: routing protocols; data gathering and processing; security and reliability; and energy management. The book opens with a survey of the challenges and opportunities facing the field. Then, expert contributors authoritatively discuss routing technologies, next-generation enabling technologies, comparative study of energy-efficient protocols for wireless sensor networks, techniques to reduce computation and communication energy consumption, energy-aware routing, localized algorithms for sensor networks, and much more. Sensor Network Protocols details the techniques and technologies that are at the heart of modern sensor networks. It is an ideal reference for anyone interested in designing, planning, or building emerging sensor and communications networks.
As the field of communications networks continues to evolve, the challenging area of wireless sensor networks is rapidly coming of age. Recent advances have made it possible to make sensor components more compact, robust, and energy efficient than ever, earning the idiosyncratic alias ofSmart Dust. Production has also improved, yielding larger,
This title features chapters on machines to explain the mind Domer's 'blueprint for a mind', representation of and for mental processes, language and future avenues, from PSI to microPSI and much more.
Computational Physics is designed to provide direct experience in the computer modeling of physical systems. Its scope includes the essential numerical techniques needed to "do physics" on a computer. Each of these is developed heuristically in the text, with the aid of simple mathematical illustrations. However, the real value of the book is in the eight Examples and Projects, where the reader is guided in applying these techniques to substantial problems in classical, quantum, or statistical mechanics. These problems have been chosen to enrich the standard physics curriculum at the advanced undergraduate or beginning graduate level. The book will also be useful to physicists, engineers, and chemists interested in computer modeling and numerical techniques. Although the user-friendly and fully documented programs are written in FORTRAN, a casual familiarity with any other high-level language, such as BASIC, PASCAL, or C, is sufficient. The codes in BASIC and FORTRAN are available on the web at http://www.computationalphysics.info. They are available in zip format, which can be expanded on UNIX, Window, and Mac systems with the proper software. The codes are suitable for use (with minor changes) on any machine with a FORTRAN-77 compatible compiler or BASIC compiler. The FORTRAN graphics codes are available as well. However, as they were originally written to run on the VAX, major modifications must be made to make them run on other machines.
Gives all the formulas and calculations likely to be needed in drilling operations. Newly updated material includes conversion tables into metric. Separate chapters deal with calculations for drilling fluids, pressure control, and engineering. Example calculations are provided throughout. Includes formulas for pressure gradient, specific gravity, pump output, annular velocity, buoyancy factor, volume and stroke, slug weight, drill string design, cementing, depth of washout, bulk density of cuttings, and stuck pipe.
This volume was prepared, in part, from an Missionary effort to preach the Gospel to the Dakotas in their own language. It contains more than sixteen thousand words.