List of Symbols , xv 1 Introduction , 1-15 2 Statics of Particles , 16-55 3 Statics of Rigid Bodies in Two Dimensions , 56-105 4 Statics of Rigid Bodies in Three Dimensions , 106-137 5 Distributed Forces: Centroids & Centers of Gravity , 138-183 6 Analysis of Structures , 184-235 7 Forces in Beams & Cables , 236-273 8 Friction , 274-319 9 Distributed Forces: Moments o…
CONTENTS : 1 Statics , 1-36 2 Shear force and bending moment , 37-65 3 Stress and strain , 66-109 4 Bending of beams , 110-139 5 Torsion of circular shafts , 140-160 6 Materials testing , 161-173 7 Kinematics , 174-195 8 Kinetics - translatory motion , 196-235 9 Kinetics - angular motion , 236-257 10 Simple harmonic motion , 258-279 11 Fluids at rest , 280-299 …
1 Fundamental Principles of Mechanics 1-34 Resolution of forces, resultants, moments, couples 2 Equilibrium of Biaxial Forces 35-58 Free body diagrams 3 Simple Machines 59-71 Levers, Pulleys 4 Equilibrium & Internal Forces 72-93 Trusses, Frames 5 Screws & Threads …
Mengembangkan daya kemampuan dalam memperkirakan akibat-akibat dari gaya & gerakan dengan tujuan menghasilkan rancangan yang kreatif untuk keperluan teknik. Perkiraan yang benar memerlukan lebih dari sekedar pengetahuan akan prinsip fisis & matematis dari mekanika. Perkiraan tersebut juga memerlukan kemampuan membayangkan konfigurasi fisis dalam bentuk materi nyata, kendala nyata, dan pembatasa…
Bagian 1 Kinematika Mesin 1. Konsep-konsep Dasar 2. Sifat-sifat Gerakan Relatif, Metoda Perpindahan Gerak 3. Sistem Rangkaian Batang Penghubung 4. Pusat Sesaat 5. Menentukan Kecepatan dengan Menggunakan Pusat-pusat Sesaat dan Komponen-Komponennya 6. Menentukan Kecepatan dalam Suatu Mekanisme dengan Menggunak…
PART I Section by section, Chapter by chapter Summaries with Review Questions and Answers (3-70): 1 General Principles 3 2 Force Vectors 8 3 Equilibrium of a Particle 15 4 Force System Resultants 18 5 Equilibrium of a Rigid Body 26 6 Structural Analysis 31 7 Internal Forces 36 8 Friction 42 9 Center of Gravity and Centroid 49 10 Moments of Inertia 54 11…
1 Tegangan Tarik dan Tegangan Tekan , 1-56 2 Tegangan Geser , 57-68 3 Momen Inersia , 69-96 4 Tegangan Normal Akibat Momen Lentur (Tegangan Lentur) , 97-129 5 Tegangan Akibat Momen Puntir , 130-143 6 Tekanan Bidang , 144-155 7 Tegangan Gabungan , 156-173 8 Lendutan , 174-253 9 Struktur Statis Tak Tentu , 254-288 10 Buckling (Tekuk) , 289-308.
Through innovative ideas and professional skills, engineers can make the world a better place. In particular, fluid mechanics plays a very important role in the design, development, and analysis of systems from microscale appplications to giant hydroelectric power generation. For this reason, the study of fluid mechanics is essential to the background of an engineer. The approach in this text i…
Chapter 1 Introduction & Basic Concepts , 1-35 Chapter 2 Properties of Fluids , 37-72 Chapter 3 Pressure & Fluid Statics , 73-130 Chapter 4 Fluid Kinematics , 131-181 Chapter 5 Mass, Bernoulli, and Energy Equations , 183-238 Chapter 6 Momentum Analysis of Flow Systems , 239 Chapter 7 Dimensional Analysis & Modeling ,283-335 Chapter 8 Internal Flow , 337-417 C…