ME101: Engineering Mechanics ( )

Similar documents
ME 101: Engineering Mechanics

STATICS Chapter 1 Introductory Concepts

Bergen Community College Division of Math, Science and Technology Department of Physical Sciences. Course Syllabus PHY 294 Engineering Mechanics

STATE UNIVERSITY OF NEW YORK COLLEGE OF TECHNOLOGY CANTON, NEW YORK COURSE OUTLINE ENGS STATICS

STATICS AND DYNAMICS

STATICS & DYNAMICS. Engineering Mechanics. Gary L. Gray. Francesco Costanzo. Michael E. Plesha. University of Wisconsin-Madison

CENTRAL TEXAS COLLEGE SYLLABUS FOR ENGR 2301 Engineering Mechanics - Statics. Semester Hours Credit: 3

ENGINEERING MECHANICS: STATICS AND DYNAMICS

A. Objective of the Course: Objectives of introducing this subject at second year level in civil branches are: 1. Introduction 02

MECHANICS OF SOLIDS Credit Hours: 6

where G is called the universal gravitational constant.

University of Macau Department of Electromechanical Engineering MECH102 - Applied Mechanics Syllabus 1 st Semester 2011/2012 Part A Course Outline

VALLIAMMAI ENGINEERING COLLEGE SRM NAGAR, KATTANKULATHUR DEPARTMENT OF MECHANICAL ENGINEERING

2. a) Explain the equilibrium of i) Concurrent force system, and ii) General force system.

HOUSTON COMMUNITY COLLEGE COURSE OUTLINE FOR Engineering Statics (ENGR 2301) Fall 2012 Class Number: 24432

Mechanics of Material 11/29/2017. General Information

PLANAR KINETIC EQUATIONS OF MOTION (Section 17.2)

ENGINEERING MECHANICS

Physical Science and Engineering. Course Information. Course Number: ME 100

Appendix. Vectors, Systems of Equations

Bachelor of Technology Civil Engineering. 01CI0301: Mechanics of Solids

Course syllabus Engineering Mechanics - Dynamics

PLANAR KINETICS OF A RIGID BODY FORCE AND ACCELERATION

INSTITUTE OF AERONAUTICAL ENGINEERING (Autonomous) Dundigal, Hyderabad

TABLE OF CONTENTS. Preface...

COLLEGE OF THE DESERT

K.GNANASEKARAN. M.E.,M.B.A.,(Ph.D)

MECHANICS OF MATERIALS

Bachelor of Technology Civil Engineering. 01CI0301: Mechanics of Solids

KINGS COLLEGE OF ENGINEERING ENGINEERING MECHANICS QUESTION BANK UNIT I - PART-A

CE261 ENGINEERING MECHANICS - DYNAMICS

Course Syllabus for CIVL 2110 STATICS Spring

STATICS SECOND EDITION

Academic Course Description. BHARATH UNIVERSITY Faculty of Engineering and Technology Department of Mechanical Engineering

ISBN :

PHYSICS. Course Structure. Unit Topics Marks. Physical World and Measurement. 1 Physical World. 2 Units and Measurements.

DIVIDED SYLLABUS ( ) - CLASS XI PHYSICS (CODE 042) COURSE STRUCTURE APRIL

SPRING SEMESTER AE 262 DYNAMICS. (02) Dr. Yavuz YAMAN

Video 2.1a Vijay Kumar and Ani Hsieh

Table of Contents Lecture Topic Slides

3-D Kinetics of Rigid Bodies

Introduction to Engineering Mechanics

Rigid Body Kinetics :: Force/Mass/Acc

Moment Of Inertia Solutions Meriam File Type

MTE 119 STATICS FINAL HELP SESSION REVIEW PROBLEMS PAGE 1 9 NAME & ID DATE. Example Problem P.1

E 490 FE Exam Prep. Engineering Mechanics

AP Physics C Syllabus

Set No - 1 I B. Tech I Semester Regular Examinations Jan./Feb ENGINEERING MECHANICS

ENGINEERING MECHANICS STATIC. Mechanic s is the oldest of the physical sciences which deals with the effects of forces on objects.

Class XI Physics Syllabus One Paper Three Hours Max Marks: 70

DEPARTMENT OF MECHANICAL ENGINEERING COURSE DESCRIPTION

ENGINEERING MECHANICS - Question Bank

Department of Mechanical Engineering Course plan

DETAILED SYLLABUS FOR DISTANCE EDUCATION. Diploma. (Three Years Semester Scheme) Diploma in Architecture (DARC)

Introduction Aim To introduce the basic concepts in mechanics, especially as they apply to civil engineering.

PHY131H1S - Class 20. Pre-class reading quiz on Chapter 12

2015 ENGINEERING MECHANICS

2015 ENGINEERING MECHANICS

PESIT-BSC Department of Science & Humanities

Introduction to Engineering Analysis - ENGR1100 Course Description and Syllabus Tuesday / Friday Sections. Spring '13.

Karadeniz Technical University

inertia of a body, principal axes of inertia, invariants of an inertia tensor, and inertia triangle inequalities are illustrated and discussed.

ENGI 1313 Mechanics I

COURSE DELIVERY PLAN. Engineering Statics Semester 1

WEEK 1 Dynamics of Machinery

Axis Balanced Forces Centripetal force. Change in velocity Circular Motion Circular orbit Collision. Conservation of Energy

APPLIED MATHEMATICS AM 02

ENGINEERING MECHANICS

Modesto Junior College Course Outline of Record PHYS 101

SYLLABUS FORM WESTCHESTER COMMUNITY COLLEGE Valhalla, NY lo595. l. Course #: PHYSC NAME OF ORIGINATOR /REVISOR: ALENA O CONNOR

Lecture 15 Strain and stress in beams

Physical Dynamics (PHY-304)

= o + t = ot + ½ t 2 = o + 2

D.A.V. PUBLIC SCHOOL, UPPAL S SOUTHEND, SECTOR 49, GURUGRAM CLASS XI (PHYSICS) Academic plan for

ME101 (Division III) webpage

Physics. TOPIC : Rotational motion. 1. A shell (at rest) explodes in to smalll fragment. The C.M. of mass of fragment will move with:

Mechanics Topic B (Momentum) - 1 David Apsley

D : SOLID MECHANICS. Q. 1 Q. 9 carry one mark each. Q.1 Find the force (in kn) in the member BH of the truss shown.

STATICS. FE Review. Statics, Fourteenth Edition R.C. Hibbeler. Copyright 2016 by Pearson Education, Inc. All rights reserved.

GOPALAN COLLEGE OF ENGINEERING AND MANAGEMENT Department of Civil Engineering COURSE PLAN

2007 Problem Topic Comment 1 Kinematics Position-time equation Kinematics 7 2 Kinematics Velocity-time graph Dynamics 6 3 Kinematics Average velocity

ME 230 Kinematics and Dynamics

.VALLIAMMAI ENGINEERING COLLEGE

PART-A. a. 60 N b. -60 N. c. 30 N d. 120 N. b. How you can get direction of Resultant R when number of forces acting on a particle in plane.

Physics for Scientists and Engineers 4th Edition, 2017

Physics. Assignment-1(UNITS AND MEASUREMENT)

Physics Revision Guide Volume 1

An Overview of Mechanics

202 Index. failure, 26 field equation, 122 force, 1

Torque and Rotation Lecture 7

COURSE CODE: GEE 212 COURSE TITLE: ENGINEERING MECHANICS NUMBER OF UNITS: 3 Units COURSE DURATION: Three hours per week

STATICS. Bodies VECTOR MECHANICS FOR ENGINEERS: Ninth Edition CHAPTER. Ferdinand P. Beer E. Russell Johnston, Jr.

Rigid bodies - general theory

COWLEY COLLEGE & Area Vocational Technical School

SECTION A. 8 kn/m. C 3 m 3m

Rotational & Rigid-Body Mechanics. Lectures 3+4

SECOND ENGINEER REG. III/2 APPLIED MECHANICS

*Definition of Mechanics *Basic Concepts *Newton s Laws *Units

Montgomery County Community College EGR 203 Engineering Statics 3-2-2

Description Subject Teaching Methodology L T P C

Transcription:

ME101: Engineering Mechanics (3 1 0 8) 2016-2017 (II Semester); Division IV Budhaditya Hazra Room N-307 Department of Civil Engineering budhaditya.hazra@iitg.ernet.in Phone: 258 3334/5334 Web: www.iitg.ernet.in/budhaditya.hazra 1

LECTURE-1 2

ME101: Division IV (3 1 0 8) Students of: CL, CT & DD Lecture Schedule: Venue L3 Tue: 9:00-9:55 am Wed : 10:00-10:55 am Thurs : 11:00-11:55 am Tutorial Schedule: Mon: 8:00-8:55 am ME101 - Division IV Dr. B Hazra 3

ME101: Division IV Tutorial Groups Tutor TG Students Venue Dr. Sandip Das (CE) (sandip.das, 2404) Dr. K. Dasgupta (CE) (kd, 2432) Dr. Suresh Kartha (CE) (kartha, 2422) MT 13 CL 4G4 MT 14 CL & CT 4005 MT 15 CT & DD 4201 Dr. PSG. Pattader (CL) (psgp, 3531) MT 16 DD 3202 ME101 - Division IV 4

ME101: Syllabus Rigid body statics: Equivalent force system. Equations of equilibrium, Free body diagram, Reaction, Static indeterminacy and partial constraints, Two and three force systems. Structures: 2D truss, Method of joints, Method of section. Frame, Beam, types of loading and supports, Shear Force and Bending Moment diagram, relation among load-shear force-bending moment. Friction: Dry friction (static and kinematics), wedge friction, disk friction (thrust bearing), belt friction, square threaded screw, journal bearings (Axle friction), Wheel friction, Rolling resistance. Center of Gravity and Moment of Inertia: First and second moment of area and mass, radius of gyration, parallel axis theorem, product of inertia, rotation of axes and principal M. I., Thin plates, M.I. by direct method (integration), composite bodies. Virtual work and Energy method: Virtual Displacement, principle of virtual work, mechanical efficiency, work of a force/couple (springs etc.), Potential Energy and equilibrium, stability. Kinematics of Particles: Rectilinear motion, curvilinear motion rectangular, normal tangential, polar, cylindrical, spherical (coordinates), relative and constrained motion, space curvilinear motion. Kinetics of Particles: Force, mass and acceleration, work and energy, impulse and momentum, impact. Kinetics of Rigid Bodies: Translation, fixed axis rotation, general planner motion, work -energy, power, potential energy, impulse-momentum and associated conservation principles, Euler equations of motion and its application. ME101 - Division IV 5

ME101: Text/Reference Books J. L. Meriam and L. G. Kraige, Engineering Mechanics, Vol I Statics, Vol II Dynamics, 6 th Ed, John Wiley, 2008. F. P. Beer and E. R. Johnston, Vector Mechanics for Engineers, Vol I - Statics, Vol II Dynamics, 9 th Ed, Tata McGraw Hill, 2011. I. H. Shames, Engineering Mechanics: Statics and dynamics, 4 th Ed, PHI, 2002. R. C. Hibbler, Engineering Mechanics: Principles of Statics and Dynamics, Pearson Press, 2006. ME101 - Division IV 6

ME101: Evaluation Tutorials : 15% Quizzes (28 Jan & 3 Apr) : 15% Class Room Participation : 05% Attendance : 05% Mid-Semester Examination: 20% End Semester Examination: 40% 75% Attendance Mandatory Tutorials: Solve and submit every Monday (1) 1-2 questions classwork (2) 3-4 questions homework ME101 - Division IV 7

ME101: Engineering Mechanics Why? ME101 - Division IV 8

ME101: Engineering Mechanics Why? ME101 - Division IV 9

ME101: Classification Mechanics :: concerned with state of rest or motion of bodies subjected to the action of forces Rigid Body mechanics To be covered in ME101 course Deformable Body mechanics Fluid mechanics 10

Rigid body mechanics :: Basics Rigid Body: No deformation under any load Change in distance between any two points negligible as compared to body dimensions Y A z x 11

Rigid body mechanics : Idealization Rigid Body A combination of large number of particles in which all particles remain at a fixed distance (practically) from one another before and after applying a load Material properties not required when analyzing the forces acting on the body design and analysis of many types of structural members, mechanical components, electrical devices, etc., encountered in engineering. 12

Rigid body mechanics :: Statics Statics equilibrium of rigid body under action of forces 13

Rigid body mechanics :: Dynamics Dynamics motion of bodies (acceleration/deceleration) 14

Mechanics: Fundamental Concepts Length (Space) Position of a point in space Coordinate system Cartesian (x, y, z) Spherical (r,, ) Cylindrical (ρ,, z) Describe size of the physical system Dimensions Distance, geometric properties Basic quantity/dimension 15

Mechanics: Spherical coordinate system Application Separation of variables in partial differential equations, e.g., Laplace eqn 16

Mechanics: Cylindrical coordinate system Application Physical phenomena with spherical symmetry, e.g., water flow in a circular pipe 17

Mechanics: Fundamental Concepts Time Measure of succession of events Basic quantity/dimension Mass Quantity of matter in a body Measure of inertia Basic quantity/dimension 18

Mechanics: Fundamental Concepts Force Tends to move a body along its direction Change in velocity Characterization Magnitude Vector Direction Point of application Derived quantity (MLT -2 ) Occurrence as interaction between bodies Gravitational, electromagnetic actions 19

Mechanics: Fundamental Concepts More about mass and weight No change in mass with change in location of body Weight refers to gravitational attraction on a body May change with location 20

Mechanics: Idealization as particle Particle A body with mass but with negligible dimensions : Size of earth insignificant compared to the size of its orbit : Earth can be modeled as a particle when studying its orbital motion : Simplified analysis - geometry of the body is not involved in the analysis. 21

Mechanics: Force idealization Concentrated Force Line of action of weight through the centre of gravity of the body Area over which the load is applied is very small compared to the overall size of the body Ex: Contact Force between a wheel and ground. 40 kn 160 kn 22

Mechanics: Newton s Three Laws of Motion Basis of rigid body statics First Law: A particle originally at rest, or moving in a straight line with constant velocity, tends to remain in this state provided the particle is not subjected to an unbalanced force Principle of force equilibrium Statics 23

Mechanics: Newton s Three Laws of Motion Basis of rigid body dynamics Second Law: A particle of mass m acted upon by an unbalanced force F experiences an acceleration a that has the same direction as the force and a magnitude that is directly proportional to the force m 24

Mechanics: Newton s Three Laws of Motion Application in both statics and dynamics Third Law: The mutual forces of action and reaction between two particles are equal, opposite and collinear 25

Mechanics: Units F ma N = kg.m/s 2 1 Newton is the force required to give a mass of 1 kg an accln of 1 m/s 2. W mg N = kg.m/s 2 26

Mechanics: Accuracy Significant Digits Number of significant digits in an answer should depend on the accuracy of measurement involved Length of the side of a square: 24 mm Area of square : 580 mm 2 Not 576 mm 2 Accuracy in industries Millimeters (10-3 ) in Civil Engineering construction Nanometer (10-9 ) in Integrated Circuits 27

Mechanics: Scalars and Vectors Scalar Only magnitude is associated with it Vector e.g., time, volume, density, speed, energy, mass etc. Possess direction as well as magnitude Parallelogram law of addition (and the triangle law) e.g., displacement, velocity, acceleration etc. Tensor e.g., stress (3 3 components) 28

Mechanics: Scalars and Vectors Laws of vector addition Equivalent vector V = V 1 + V 2 (Vector Sum) 29

Mechanics: Scalars and Vectors A Vector V can be written as: V = Vn V = magnitude of V n = unit vector whose magnitude is one and whose direction coincides with that of V Unit vector can be formed by dividing any vector, such as the geometric position vector, by its length or magnitude Vectors represented by Bold and Non-Italic letters (V) Magnitude of vectors represented by Non-Bold, Italic letters (V) y x j i z k 30