Named a 2013 Doody's Core Title! "This is an excellent book for both students and current DNPs. The primary areas it addresses--leadership, healthcare policy, and information technology---are essential for the advanced practice nurse to function as a change agent in today's healthcare environment. The book challenges DNPs to engage in clinical practice to the full scope of their capabilities."--Score: 100, 5 Stars. Doody's Medical Reviews This is the only professional issues-oriented Doctor of Nursing Practice (DNP) text to fully integrate all eight American Association of Colleges of Nursing DNP competencies into one volume. It defines practice scholarship for the DNP role and facilitates the sound development of key leadership skills that enable DNP graduates to effectively influence politics and health care policy in order to improve patient and population health care outcomes. The text focuses on the educational requirements of DNPs engaged in the arenas of leadership, health care policy, and information technology. It covers the growth and development of the DNP role, particularly in the context of contemporary health care challenges. With a focus on the Capstone Project, the text addresses the relationship of the DNP role to ongoing scholarship. It covers three important essentials of the DNP curriculumóevidence-based practice, health information technology, and outcomes measurementóand how they can be used to transform health care in the 21st century. The textís challenging and thought-provoking content is of particular value not only to students, but also to professors who will welcome the clarity it offers to the highly complex DNP curriculum. Key Features: Simplifies the highly complex DNP curriculum and integrates DNP core competencies throughout Demonstrates the application of core competencies to practice and aggregate care Provides a well-organized supplement to all courses across the DNP curriculum Uses exemplars of students and practicing DNPs to illustrate effective implementation Offers concrete guidance for achieving a thorough understanding of how DNP graduates utilize core competencies
Proceedings of the 5th International Workshop on Chiral Dynamics, Theory and Experiment : Durham/Chapel Hill, North Carolina, USA, 18-22 September 2006
Proceedings of the 5th International Workshop on Chiral Dynamics, Theory and Experiment : Durham/Chapel Hill, North Carolina, USA, 18-22 September 2006
Chiral Dynamics 2006 is the 5th International Workshop which examines the implications and the development of an approximate low-energy solution to the QCD Lagrangian based upon Chiral Symmetry. Advances in theory and experiment are presented in 20 plenary session papers along with more than one-hundred papers, including summaries, from the three working groups. Sample Chapter(s). Part 1.1: Opening Remarks: Experimental Tests of Chiral Symmetry Breaking (311 KB). Contents: Some Recent Developments in Chiral Perturbation Theory (U-G Meiner); Recent Results from HAPPEX (R Michaels); Kaon Physics: Recent Experimental Progress (M Moulson); Recent KTeV Results on Radiative Kaon Decays (M C Ronquest); Partially Quenched CHPT Results to Two Loops (J Bijnens); Finite Volume Effects: Lattice Meets CHPT (G Schierholz); Quark Mass Dependence of LECs in the Two-Flavour Sector (M Schmid); Leading Chiral Logarithms from Unitarity, Analyticity and the Roy Equations (A Fuhrer); Power Counting in Nuclear Chiral Effective Field Theory (U van Kolck); The Challenge of Calculating Baryon-Baryon Scattering from Lattice QCD (S R Beane); Few-Body Studies at KVI (J G Messchendorp); Compton Scattering on HE-3 (D Choudhury); Lattice Discretization Errors in Chiral Effective Field Theories (B C Tiburzi); Uncertainty Bands for Chiral Extrapolations (B U Musch); and other papers. Readership: Graduate students and academics in nuclear physics.
Biomedical engineering involves the application of the principles and techniques of engineering to the enhancement of medical science as applied to humans or animals. It involves an interdisciplinary approach which combines the materials, mechanics, design, modelling and problem-solving skills employed in engineering with medical and biological sciences so as to improve the health, lifestyle and quality-of-life of individuals. Biomedical engineering is a relatively new field, and involves a whole spectrum of disciplines covering: bioinformatics, medical imaging, image processing, physiological signal processing, biomechanics, biomaterials and bioengineering, systems analysis, 3-D modelling, etc. Combining these disciplines, systematically and synergistically yields total benefits which are much greater than the sum of the individual components. Prime examples of the successful application of biomedical engineering include the development and manufacture of biocompatible prostheses, medical devices, diagnostic devices and imaging equipment and pharmaceutical drugs. The purpose of this book is to present the latest research and development carried out in the areas of biomedical engineering, biomaterials and nanomaterials science and to highlight the applications of such systems. Particular emphasis is given to the convergence of nano-scale effects, as related to the delivery of enhanced biofunctionality.
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