Case In Point 9 1
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The Wall Street Journal calls Case in Point the MBA Bible! Cosentino demystifies the consulting case interview. He takes you inside a typical interview by exploring the various types of case questions and he shares with you the acclaimed Ivy Case System which will give you the confidence to answer even the most sophisticated cases.
The use of complex graphs in case interviews has exploded. You have a very short time to look at the graph, analyze it, extract what s important and apply it to your answer. This book was designed to help you understand the role of graphs in consulting (both during an interview and on the job). The authors introduce the Ivy Graph Framework, which will allow you to analyze 11 of the most popular graphs quickly, completely, and with great confidence. In addition the book provides ten sophisticated cases with numerous graphs per case and allows you to see how these cases unfold. There is nothing else out there like it!
Case interviews come in all formats. The key, as an interviewee, is being prepared. Know what the interviewer is looking for, know the industry/sector, the jargon, the constraints and stakeholders, and how people in the industry operate. Government and nonprofit cases span a wide variety of problems, issues, stakeholders, and politics, which makes them trickier than private sector case interviews.
What is grace? And more important, what difference do the comfortable words of grace make in the lives of everyday people? These are the questions to which Paul F. M. Zahl has devoted his life, and this book is a collection of essays written in honor of him that seeks to answer these great questions. From literary theory to exegesis to systematic theology, these essays are representative of the breadth and depth of the influence Dr. Zahl has had on a variety of scholars, and reflect his emphasis on the relationship between theology as an academic discipline and the pastoral impact of one-way love on everyday people. Contributors include: C. FitzSimons Allison, Todd Brewer, George Carey, James D. G. Dunn, Susan G. Eastman, Mark Mattes, Geiko Muller-Farenholz, Justin S. Holcomb, John D. Koch Jr., Lauren Larkin, Jonathan A. Linebaugh, Jurgen Moltmann, Heinz-Dieter Neef, J. Ashley Null, Raymond C. Ortlund Jr., Dylan D. Potter, Justyn Terry, Tullian Tchividjian, Jonathan K. M. Wong, Paul F. M. Zahl, and Simeon Zahl.
Elastohydrodynamic Lubrication for Line and Point Contacts: Asymptotic and Numerical Approaches describes a coherent asymptotic approach to the analysis of lubrication problems for heavily loaded line and point contacts. This approach leads to unified asymptotic equations for line and point contacts as well as stable numerical algorithms for the solution of these elastohydrodynamic lubrication (EHL) problems. A Unique Approach to Analyzing Lubrication Problems for Heavily Loaded Line and Point Contacts The book presents a robust combination of asymptotic and numerical techniques to solve EHL problems for lightly and heavily loaded line and point contacts. It also proposes a reasonably simple and naturally based regularization approach that produces stable solutions in heavily loaded EHL contacts. The book offers a clear understanding of the processes taking place in heavily loaded line and point EHL contacts as well as of the proper solution structure for EHL problems. It outlines concrete ways to determine important design parameters such as lubrication film thickness and frictional stresses and forces. The book establishes a close link between EHL problems for heavily loaded point and line contacts. Fine Tune Your Methods for Solving Elastohydrodynamic Lubrication Problems In most cases, the equations in the book are derived from first principles. The author describes each of the asymptotic and numerical methods in detail, making it easier for readers to apply them to various problems. The problem solutions are presented in the form of simple analytical formulas, graphs, and tables. Almost all the chapters include exercises that highlight key points and skills. Suitable for engineering and applied mathematics students, this is also a unique resource for researchers and practitioners who want to fine tune their solution methods and design better numerical methods to tackle elastohydrodynamic lubrication problems.