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  • Book cover of Quantum Genius: Awaken Your Sleeping Genius
    R. A. Benson

     · 2018

    "Quantum Genius: Awaken Your Sleeping Genius," is a testament to enhanced human potential focused on activating, educating, motivating and re-calibrating the reader in every possible way. This book delivers on an ambitious title and contains an arsenal of mind-expanding content. Quantum Genius gives the reader an opportunity to make good on any intentions to be a better individual, by offering lessons on: increased memory, mental math, speed reading, communication skills, self-confidence, creativity and much more. This book is the closest thing to a genius-level brain transplant that you can get. While we all feel that we know what genius is when asked to describe genius most people will be at a loss for words. This is solely based on the fact that the concept of genius is generally not properly explained nor understood. You are getting ready to learn secrets and techniques that will not only amaze and astound everyone you know, including yourself.

  • Book cover of NEXUS; a Linguistic Technique for Precoordination
    R. A. Benson

     · 1968

    NEXUS is a research project which is concerned with input processing of natural language for information retrieval. The computer program used to do this task consists of linguistic rules that operate on the suffix portions of printed words, and the order of these words as they appear in a sentence. NEXUS accepts lists of index terms that have resulted from the application of an auto-indexer program to titles and abstracts. These term lists are processed by NEXUS in order to form combinations of terms which are stored as subject headings. Such subject headings or precoordinations aid the searcher in finding information when they are used in a bibliographic printout. As opposed to coordinate-indexed printouts, consisting of lists of individual terms and the accession numbers of the source documents, those printouts of NEXUS processed terms contain word combinations that have been precoordinated, saving time and increasing accuracy for the searcher. Comparison tests have been run using the full NEXUS program, a partial application of the program using sequence rules (SEQS) and human analysis of the same data. Although falling short of human analysis in some respects (except for consistency), the NEXUS approach is more effective than SEQS in producing effective combinations. The chief value of this effort has been to further study those aspects of language that are amenable to computerized analysis for the purpose of improving input and output functions in information retrieval. (Author).

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  • Book cover of Master Student
    R. A. Benson

     · 2020

    Whether you are preparing for college or looking to advance your career, this book is perfect for your advancement. The creator of the Quantum Genius learning system has written this learning guide designed to help higher education students and people in general, boost their mental abilities to a genius-level degree. The Quantum Genius learning system is arguably the most powerful and comprehensive learning system available today. You will gain learning and thinking abilities that you never thought possible. With the skills you obtain from Master Student, you will be more than prepared for anything college throws your way.

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    As part of an overall effort to develop durability and damage tolerance methodology for graphite-epoxy composites, coupon specimens have been developed to measure the fundamental static fracture and subcritical growth behavior of delaminations. Two basic designs, one for the tensile opening mode (Mode I) and one for the forward shear mode (Mode II), are described. These specimens were used to characterize the behavior of two types of interfaces (0/0 and 0/90) for static fracture, constant amplitude fatigue, and spectrum fatigue. Fracture mechanics technology was applied through the principles of strain-energy release rate. Three-dimensional finite-element analyses were employed to interpret the experimental results. A simple growth law was shown to correlate the constant-amplitude and spectrum-growth data. It was found that the applied cyclic load must be nearly equal to the critical static load to obtain observable growth in the tensile opening mode. On the other hand, the graphite-epoxy delamination growth rate in the forward shear mode is comparable to the aluminum growth rate in tension, which suggests that shear is the chief subcritical growth mode for graphite-epoxy.

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