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Solutions Manual for Fundamentals of Advanced Accounting 6th Hoyle
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Product description
Fundamentals of Advanced Accounting, 6th edition, is ideal for those schools wanting to cover 12 chapters in their advanced accounting course. This brief yet concise text allows students to think critically about accounting, just as they will do preparing for the CPA exam. The text continues to show the development of financial reporting as a product of intense and considered debate that continues today and into the future as it originates from Hoyle’s big text Advanced Accounting. Buy it Online now at best deal. We deliver New Books and Text books cheap via DHL Worldwide such as Australia, US, Ireland, UK, India, NZ, Germany, China, Pakistan, Turkey, UAE, Jordan, Saudi Arabia and Middle East
Table of Contents
Chapter 1: The Equity Method of Accounting for Investments
Chapter 2: Consolidation of Financial Information
Chapter 3: Consolidations—Subsequent to the Date of Acquisition
Chapter 4: Consolidated Financial Statements and Outside Ownership
Chapter 5: Consolidated Financial Statements—Intra-Entity Asset Transactions
Chapter 6: Variable Interest Entities, Intra-Entity Debt, Consolidated Cash Flows, and Other Issues
Chapter 7: Foreign Currency Transactions and Hedging Foreign Exchange Risk
Chapter 8: Translation of Foreign Currency Financial Statements
Chapter 9: Partnerships: Formation and Operation
Chapter 10: Partnerships: Termination and Liquidation
Chapter 11: Accounting for State and Local Governments, Part I
Chapter 12: Accounting for State and Local Governments, Part II
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ISBN-13: 9780077862237 ISBN-10: 0077862236 You will be guided to the product download page immediately once you complete the payment. If you have any questions, or would like a receive a sample chapter before your purchase, please contact us via email :
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Created through a “student-tested, faculty-approved” review process with more than 250 learners and instructors, CB4 offers a visually appealing, succinct printed approach with tear-out review cards and online CourseMate study tools and interactive eBook. The CB4 book and learning resources are all offered at a value-based price with a unique approach that’s proven to increase retention and strengthen learning outcomes. CB4 streamlines an engaging introduction to the core concepts and applications of contemporary consumer behavior as it is practiced today with the latest consumer behavior statistics, examples and trends. This magazine-style book emphasizes how the recent recession, green marketing, and natural disasters all impact contemporary consumer behavior. CB4’s captivating approach promises to bring the most recent consumer behavior information to life in a presentation focused on the needs of today’s learner.
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1. What Is CB and Why Should I Care? 2. Value and the Consumer Behavior Value Framework. 3. Consumer Learning Starts Here: Perception. 4. Comprehension, Memory, and Cognitive Learning. 5. Motivations and Emotion: Driving Consumer Behavior. 6. Personality, Lifestyles, and the Self-Concept. 7. Attitudes and Attitude Change. 8. Consumer Culture. 9. Micro-cultures. 10. Group Influence. 11. Consumers in Situations. 12. Decision Making I: Need Recognition and Search. 13. Decision Making II: Alternative Evaluation and Choice. . 14. Consumption to Satisfaction. 15. Consumer Relationships. 16. Consumer and Marketing Misbehavior.
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Download Introduction to Critical Care Nursing 6th edition by Sole, Klein and Moseley Test Bank
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User-friendly and easy to understand, Introduction to Critical Care Nursing, 6th Edition offers clear, concise coverage of essential critical care concepts, technology, and procedures. Completely updated, evidence-based content addresses the latest advances in high-acuity care and emphasizes patient safety and optimum patient outcomes. Plus, an abundance of active learning resources and realistic case studies enables you to apply your knowledge and strengthen your critical thinking and clinical decision-making skills.
Table of Contents
PART I. FUNDAMENTAL CONCEPTS Chapter 1: Overview of Critical Care Nursing Chapter 2: Patient and Family Response to the Critical Care Experience Chapter 3: Ethical and Legal Issues in Critical Care Nursing Chapter 4: End-of-Life Care in the Critical Care Unit PART II. TOOLS FOR THE CRITICAL CARE NURSE Chapter 5: Comfort and Sedation Chapter 6: Nutritional Support Chapter 7: Dysrhythmia Interpretation and Management Chapter 8: Hemodynamic Monitoring Chapter 9: Ventilatory Assistance Chapter 10: Rapid Response Teams and Code Management PART III. NURSING CARE DURING CRITICAL ILLNESS Chapter 11: Shock, Sepsis, and Multiple Organ Dysfunction Syndrome Chapter 12: Cardiovascular Alterations Chapter 13: Nervous System Alterations Chapter 14: Acute Respiratory Failure Chapter 15: Acute Kidney Injury Chapter 16: Hematological and Immune Disorders Chapter 17: Gastrointestinal Alterations Chapter 18: Endocrine Alterations Chapter 19: Trauma and Surgical Management Chapter 20: Burns Chapter 21: Solid Organ Transplantation NEW!
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Solution Manual for Design of Fluid Thermal Systems SI Edition 4th Edition by Janna
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This book is designed to serve senior-level engineering students taking a capstone design course in fluid and thermal systems design. It is built from the ground up with the needs and interests of practicing engineers in mind; the emphasis is on practical applications. The book begins with a discussion of design methodology, including the process of bidding to obtain a project, and project management techniques. The text continues with an introductory overview of fluid thermal systems (a pump and pumping system, a household air conditioner, a baseboard heater, a water slide, and a vacuum cleaner are among the examples given), and a review of the properties of fluids and the equations of fluid mechanics. The text then offers an in-depth discussion of piping systems, including the economics of pipe size selection. Janna examines pumps (including net positive suction head considerations) and piping systems. He provides the reader with the ability to design an entire system for moving fluids that is efficient and cost-effective. Next, the book provides a review of basic heat transfer principles, and the analysis of heat exchangers, including double pipe, shell and tube, plate and frame cross flow heat exchangers. Design considerations for these exchangers are also discussed. The text concludes with a chapter of term projects that may be undertaken by teams of students.
Table of Contents
1. INTRODUCTION. 2. FLUID PROPERTIES AND BASIC EQUATIONS. 3. PIPING SYSTEMS I. 4. PIPING SYSTEMS II. 5. SELECTED TOPICS IN FLUID MECHANICS. 6. PUMPS AND PIPING SYSTEMS. 7. SOME HEAT TRANSFER FUNDAMENTALS. 8. DOUBLE-PIPE HEAT EXCHANGERS. 9. SHELL-AND-TUBE HEAT EXCHANGERS. 10. PLATE-AND-FRAME HEAT EXCHANGERS AND CROSS-FLOW HEAT EXCHANGERS. 11. PROJECT DESCRIPTIONS.
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Download Solution Manual for Fundamentals of Fluid Mechanics 7th Edition by Munson PDF
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Fundamentals of Fluid Mechanics 7th Edition solutions included:
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Excel Data for Laboratory Problems
Appendices
Fundamentals of Fluid Mechanics, 7th Edition offers comprehensive topical coverage, with varied examples and problems, application of visual component of fluid mechanics, and strong focus on effective learning. The text enables the gradual development of confidence in problem solving. The authors’ have designed their presentation to enable the gradual development of reader confidence in problem solving. Each important concept is introduced in easy-to-understand terms before more complicated examples are discussed. Continuing this book’s tradition of extensive real-world applications, the 7th edition includes more Fluid in the News case study boxes in each chapter, new problem types, an increased number of real-world photos, and additional videos to augment the text material and help generate student interest in the topic. Example problems have been updated and numerous new photographs, figures, and graphs have been included. In addition, there are more videos designed to aid and enhance comprehension, support visualization skill building and engage students more deeply with the material and concepts.
Table of Contents
1 Introduction 1
Learning Objectives 1
1.1 Some Characteristics of Fluids 3
1.2 Dimensions, Dimensional Homogeneity, and Units 4
1.3 Analysis of Fluid Behavior 11
1.4 Measures of Fluid Mass and Weight 11
1.5 Ideal Gas Law 12
1.6 Viscosity 14
1.7 Compressibility of Fluids 20
1.8 Vapor Pressure 23
1.9 Surface Tension 24
1.10 A Brief Look Back in History 27
1.11 Chapter Summary and Study Guide 29
2 Fluid Statics 40
Learning Objectives 40
2.1 Pressure at a Point 40
2.2 Basic Equation for Pressure Field 42
2.3 Pressure Variation in a Fluid at Rest 43
2.4 Standard Atmosphere 49
2.5 Measurement of Pressure 50
2.6 Manometry 52
2.7 Mechanical and Electronic Pressure-Measuring Devices 57
2.8 Hydrostatic Force on a Plane Surface 59
2.9 Pressure Prism 65
2.10 Hydrostatic Force on a Curved Surface 68
2.11 Buoyancy, Flotation, and Stability 70
2.12 Pressure Variation in a Fluid with Rigid-Body Motion 74
2.13 Chapter Summary and Study Guide 79
3 Elementary Fluid Dynamics—The Bernoulli Equation 101
Learning Objectives 101
3.1 Newton’s Second Law 101
3.2 F ma along a Streamline 104
3.3 F ma Normal to a Streamline 108
3.4 Physical Interpretation 110
3.5 Static, Stagnation, Dynamic, and Total Pressure 113
3.6 Examples of Use of the Bernoulli Equation 117
3.7 The Energy Line and the Hydraulic Grade Line 131
3.8 Restrictions on Use of the Bernoulli Equation 134
3.9 Chapter Summary and Study Guide 139
4 Fluid Kinematics 157
Learning Objectives 157
4.1 The Velocity Field 157
4.2 The Acceleration Field 166
4.3 Control Volume and System Representations 175
4.4 The Reynolds Transport Theorem 176
4.5 Chapter Summary and Study Guide 188
5 Finite Control Volume Analysis 199
Learning Objectives 199
5.1 Conservation of Mass—The Continuity Equation 200
5.2 Newton’s Second Law—The Linear Momentum and Moment-of-Momentum Equations 213
5.3 First Law of Thermodynamics—The Energy Equation 236
5.4 Second Law of Thermodynamics—Irreversible Flow 253
5.5 Chapter Summary and Study Guide 253
6 Differential Analysis of Fluid Flow 276
Learning Objectives 276
6.1 Fluid Element Kinematics 277
6.2 Conservation of Mass 282
6.3 Conservation of Linear Momentum 288
6.4 Inviscid Flow 292
6.5 Some Basic, Plane Potential Flows 286
6.6 Superposition of Basic, Plane Potential Flows 308
6.7 Other Aspects of Potential Flow Analysis 318
6.8 Viscous Flow 319
6.9 Some Simple Solutions for Viscous, Incompressible Fluids 321
6.10 Other Aspects of Differential Analysis 331
6.11 Chapter Summary and Study Guide 332
7 Dimensional Analysis, Similitude, and Modeling 346
Learning Objectives 346
7.1 Dimensional Analysis 347
7.2 Buckingham Pi Theorem 349
7.3 Determination of Pi Terms 350
7.4 Some Additional Comments about Dimensional Analysis 355
7.5 Determination of Pi Terms by Inspection 359
7.6 Common Dimensionless Groups in Fluid Mechanics 360
7.7 Correlation of Experimental Data 364
7.8 Modeling and Similitude 368
7.9 Some Typical Model Studies 374
7.10 Similitude Based on Governing Differential Equations 384
7.11 Chapter Summary and Study Guide 387
8 Viscous Flow in Pipes 400
Learning Objectives 400
8.1 General Characteristics of Pipe Flow 401
8.2 Fully Developed Laminar Flow 407
8.3 Fully Developed Turbulent Flow 416
8.4 Dimensional Analysis of Pipe Flow 426
8.5 Pipe Flow Examples 445
8.6 Pipe Flowrate Measurement 459
8.7 Chapter Summary and Study Guide 465
9 Flow Over Immersed Bodies 480
Learning Objectives 480
9.1 General External Flow Characteristics 481
9.2 Boundary Layer Characteristics 489
9.3 Drag 512
9.4 Lift 528
9.5 Chapter Summary and Study Guide 541
10 Open-Channel Flow 554
Learning Objectives 554
10.1 General Characteristics of Open-Channel Flow 555
10.2 Surface Waves 556
10.3 Energy Considerations 561
10.4 Uniform Depth Channel Flow 566
10.5 Gradually Varied Flow 575
10.6 Rapidly Varied Flow 576
10.7 Chapter Summary and Study Guide 589
11 Compressible Flow 601
Learning Objectives 601
11.1 Ideal Gas Relationships 602
11.2 Mach Number and Speed of Sound 607
11.3 Categories of Compressible Flow 610
11.4 Isentropic Flow of an Ideal Gas 614
11.5 Nonisentropic Flow of an Ideal Gas 631
11.6 Analogy between Compressible and Open-Channel Flows 655
11.7 Two-Dimensional Compressible Flow 657
11.8 Chapter Summary and Study Guide 658
12 Turbomachines 667
Learning Objectives 667
12.1 Introduction 668
12.2 Basic Energy Considerations 669
12.3 Basic Angular Momentum Considerations 673
12.4 The Centrifugal Pump 675
12.5 Dimensionless Parameters and Similarity Laws 688
12.6 Axial-Flow and Mixed-Flow Pumps 693
12.7 Fans 695
12.8 Turbines 695
12.9 Compressible Flow Turbomachines 707
12.10 Chapter Summary and Study Guide 713
References 715
Review Problems 715
Conceptual Questions 715
ISBN-13: 978-1118116135ISBN-10: 1118116135 Instant access after you purchase is complete. 24/7 email support :
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Introduction to Flight blends history and biography with discussion of engineering concepts, and shows the development of flight through this perspective. Anderson covers new developments in flight, including unmanned aerial vehicles, uninhabited combat aerial vehicles, and applications of CFD in aircraft design. Many new and revised problems have been added in this edition. Chapter learning features help readers follow the text discussion while highlighting key engineering and industry applications.
Table of Contents
1) The First Aeronautical Engineers
2) Fundamental Thoughts
3) The Standard Atmosphere
4) Basic Aerodynamics
5) Airfoils, Wings, and Other Aerodynamics Shapes
6) Elements of Airplane Performance
7) Principles of Stability and Control
8) Space Flight (Astronautics)
9) Propulsion
10) Hypersonic Vehicles
Appendix A – Standard Atmosphere, SI Units
Appendix B – Standard Atmosphere, English Engineering Units
Appendix C – Symbols and Conversion Factors
Appendix D – Airfoil Data
Answer Key
Index
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Table of Contents
Part I – Solid State Electronics and Devices
1) Introduction to Electronics
2) Solid-State Electronics
3) Solid-State Diodes and Diode Circuits
4) Field-Effect Transistors
5) Bipolar Junction Transistors
Part II – Digital Electronics
6) Introduction to Digital Electronics
7) Complementary MOS (CMOS) Logic Design
8) MOS Memory and Storage Circuits
9) Bipolar Logic Circuits
Part III – Analog Electronics
10) Analog Systems and Ideal Operational Amplifiers
11) Non-ideal Operational Amplifiers and Feedback Amplifier Stability
12) Operational Amplifier Applications
13) Small-Signal Modeling and Linear Amplification
14) Single Transistor Amplifiers
15) Differential Amplifiers and Operational Amplifier Design
16) Analog Integrated Circuit Design Techniques
17) Amplifier Frequency Response
18) Transistor Feedback Amplifiers and Oscillators
Appendices
A – Standard Component Values
B – Device Models and SPICE
C – Two-Port Review
ISBN-13: 978-0073529608ISBN-10: 0073529605Author: Richard Jaeger, Travis BlalockYou will be guided to the product download page immediately once you complete the payment.
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