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  • McCracken's Removable Partial Prosthodontics
    McCracken's Removable Partial Prosthodontics

    The standard in prosthodontics for nearly 50 years, McCracken's Removable Partial Prosthodontics, 13th Edition walks readers through all the principles and concepts surrounding removable partial denture treatment planning and design that today's practitioners need to know.Using an evidence-based approach, this full-color text incorporates the latest information on new techniques, procedures, and equipment, including expanded information on dynamic communication and the use of implants with removable partial dentures.From initial contact with the patient to post-treatment care, McCracken's is the complete foundation today's dentists need to successfully practice prosthodontic care. A variety of philosophies and techniques are featured throughout the text, so readers can select and incorporate applicable techniques on a case-by-case basis. Full-color drawings and photographs give readers a detailed view of techniques, materials, and anatomic detail. Evidence-based approach uses current research to help readers diagnose, design, develop, and sequence a treatment plan. Expert guidance from both authors walks readers through the latest techniques as well as technological advances specific to removable partial dentures. NEW! Standardized removable partial denture designs offered for application to the major categories of patients seen in practice. NEW! Expanded information on the use of implants with removable partial dentures highlights considerations in treatment planning including the selection of implants and provision of care utilizing dental implants. NEW! More information on dynamic communication which incorporates the progress being made in shared decision making with patients, especially regarding decisions made in light of patient values and 'trade-off' considerations.

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  • An Introduction to Partial Differential Equations
    An Introduction to Partial Differential Equations

    This textbook is an introduction to the methods needed to solve partial differential equations (PDEs).Readers are introduced to PDEs that come from a variety of fields in engineering and the natural sciences.The chapters include the following topics: First Order PDEs, Second Order PDEs, Fourier Series, Separation of Variables, the Fourier Transform, and higher dimensional problems.Readers are guided through these chapters where techniques for solving first and second order PDEs are introduced.Each chapter ends with series of exercises to facilitate learning as well as illustrate the material presented in each chapter.

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  • Select Ideas in Partial Differential Equations
    Select Ideas in Partial Differential Equations

    This book provides a concise but thorough introduction to partial differential equations which model phenomena that vary in both space and time.The author begins with a full explanation of the fundamental linear partial differential equations of physics. The text continues with methods to understand and solve these equations leading ultimately to the solutions of Maxwell’s equations.The author then addresses nonlinearity and provides examples of separation of variables, linearizing change of variables, inverse scattering transform, and numerical methods for select nonlinear equations.Next, the book presents rich sources of advanced techniques and strategies for the study of nonlinear partial differential equations.This second edition includes updates, additional examples, and a new chapter on reaction–diffusion equations.Ultimately, this book is an essential resource for readers in applied mathematics, physics, chemistry, biology, and engineering who are interested in learning about the myriad techniques that have been developed to model and solve linear and nonlinear partial differential equations.

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  • Partial Genealogy Of The Ferris Family
    Partial Genealogy Of The Ferris Family

    This book has been considered by academicians and scholars of great significance and value to literature.This forms a part of the knowledge base for future generations.So that the book is never forgotten we have represented this book in a print format as the same form as it was originally first published.Hence any marks or annotations seen are left intentionally to preserve its true nature.

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  • What are partial currents and partial voltages?

    Partial currents and partial voltages refer to the individual contributions of different components in an electrical circuit. In a complex circuit, there may be multiple sources of current and voltage, and partial currents and partial voltages help to analyze the behavior of each component separately. By breaking down the total current and voltage into their partial components, it becomes easier to understand the interactions and effects of individual elements within the circuit. This analysis is crucial for designing and troubleshooting electrical systems.

  • How do you calculate partial voltages and partial currents?

    To calculate partial voltages and partial currents in a circuit, you can use Kirchhoff's laws. Kirchhoff's voltage law states that the sum of the voltages around any closed loop in a circuit is zero. By applying this law to different loops in the circuit, you can calculate the partial voltages across specific components. Similarly, Kirchhoff's current law states that the sum of currents entering a node is equal to the sum of currents leaving the node. By applying this law to different nodes in the circuit, you can calculate the partial currents flowing through specific branches. These calculations allow you to analyze the behavior of individual components within a larger circuit.

  • How do you calculate partial currents and partial voltages?

    To calculate partial currents and partial voltages in a circuit, you can use Kirchhoff's current law (KCL) and Kirchhoff's voltage law (KVL). KCL states that the sum of currents entering a node is equal to the sum of currents leaving the node. By applying KCL at a specific node, you can determine the partial currents flowing through different branches. Similarly, KVL states that the sum of voltage rises in a closed loop is equal to the sum of voltage drops. By applying KVL in a loop, you can determine the partial voltages across different components in the circuit.

  • Does anyone know of any community colleges that offer partial scholarships?

    Yes, many community colleges offer partial scholarships to help students with the cost of tuition and fees. These scholarships can be based on financial need, academic achievement, or specific areas of study. It's best to check with the financial aid office at the specific community college you are interested in attending to inquire about available scholarship opportunities and the application process. Additionally, some community colleges may have partnerships with local organizations or businesses that offer scholarship opportunities to their students.

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  • Partial Differential Equations in Engineering Problems
    Partial Differential Equations in Engineering Problems


    Price: 16.99 £ | Shipping*: 3.99 £
  • A Course on Partial Differential Equations
    A Course on Partial Differential Equations

    Does entropy really increase no matter what we do? Can light pass through a Big Bang? What is certain about the Heisenberg uncertainty principle?Many laws of physics are formulated in terms of differential equations, and the questions above are about the nature of their solutions.This book puts together the three main aspects of the topic of partial differential equations, namely theory, phenomenology, and applications, from a contemporary point of view.In addition to the three principal examples of the wave equation, the heat equation, and Laplace's equation, the book has chapters on dispersion and the Schrodinger equation, nonlinear hyperbolic conservation laws, and shock waves. The book covers material for an introductory course that is aimed at beginning graduate or advanced undergraduate level students.Readers should be conversant with multivariate calculus and linear algebra.They are also expected to have taken an introductory level course in analysis.Each chapter includes a comprehensive set of exercises, and most chapters have additional projects, which are intended to give students opportunities for more in-depth and open-ended study of solutions of partial differential equations and their properties.

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  • Partial Differential Equations with Numerical Methods
    Partial Differential Equations with Numerical Methods

    The main theme is the integration of the theory of linear PDE and the theory of finite difference and finite element methods.For each type of PDE, elliptic, parabolic, and hyperbolic, the text contains one chapter on the mathematical theory of the differential equation, followed by one chapter on finite difference methods and one on finite element methods.The chapters on elliptic equations are preceded by a chapter on the two-point boundary value problem for ordinary differential equations.Similarly, the chapters on time-dependent problems are preceded by a chapter on the initial-value problem for ordinary differential equations.There is also one chapter on the elliptic eigenvalue problem and eigenfunction expansion.The presentation does not presume a deep knowledge of mathematical and functional analysis.The required background on linear functional analysis and Sobolev spaces is reviewed in an appendix.The book is suitable for advanced undergraduate and beginning graduate students of applied mathematics and engineering.

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  • Schaum's Outline of Partial Differential Equations
    Schaum's Outline of Partial Differential Equations

    The ideal review for your partial differential equations courseMore than 40 million students have trusted Schaum’s Outlines for their expert knowledge and helpful solved problems.Written by renowned experts in their respective fields, Schaum’s Outlines cover everything from math to science, nursing to language.The main feature for all these books is the solved problems.Step-by-step, authors walk readers through coming up with solutions to exercises in their topic of choice. 290 fully worked problems of varying difficultyClear, concise explanations of differential and difference methods Help with variation formulation of boundary value problems and variation approximation methods Outline format supplies a concise guide to the standard college course in partial differential equationsAppropriate for the following courses: Partial Differential Equations I, Partial Differential Equations II, Applied Math I, Applied Math IIComplete course content in easy-to-follow outline form.Hundreds of solved problems

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  • What are partial charges?

    Partial charges are the charges that exist on atoms within a molecule due to differences in electronegativity. When atoms in a molecule have different electronegativities, they create an uneven distribution of electrons, resulting in partial positive and negative charges on the atoms. These partial charges play a crucial role in determining the overall polarity of a molecule and its interactions with other molecules.

  • What are partial volumes?

    Partial volumes refer to the amount of space occupied by a specific component within a mixture or solution. It represents the volume of a particular substance in relation to the total volume of the mixture. Partial volumes are important in understanding the behavior of mixtures, such as in the calculation of partial pressures in gas mixtures or in determining the concentration of a solute in a solution.

  • Full or partial fault?

    Determining whether an issue is full or partial fault depends on the specific circumstances and the level of responsibility of each party involved. Full fault implies that one party is entirely responsible for the issue, while partial fault suggests that multiple parties share some level of responsibility. It is important to carefully assess the situation and consider all relevant factors before assigning fault. In some cases, a combination of full and partial fault may be present, making it crucial to thoroughly analyze the situation to determine the appropriate level of responsibility for each party involved.

  • What are partial churches?

    Partial churches are churches that have been left incomplete or partially constructed. This can happen for a variety of reasons, such as lack of funding, changes in architectural plans, or natural disasters. These incomplete churches often have visible signs of construction, such as exposed beams or unfinished walls, and may be used for worship despite their incomplete state. In some cases, partial churches may remain unfinished for years or even centuries, becoming historical and architectural landmarks in their own right.

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