UNITS AND MEASUREMENTS

Similar documents
UNIT & DIMENSIONS AND MEASUREMENT STRAIGHT LINES

Standard physical units

SI base units. SI : Système International d'unités (International System of Units)

SI UNITS AND SOME CONVERSION FACTORS. A. Woldai, B. Makkawi, and D. Al-Gobaisi International Center for Water and Energy Systems, Abu Dhabi, UAE

GHANA CIVIL AVIATION (AIR NAVIGATION SERVICES) DIRECTIVES PART 22 - UNITS OF MEASUREMENTS TO BE USED IN AIR AND GROUND OPERATIONS

The SI (mks) Unit System

1) The unit of the coefficient of viscosity in SI system is: a) m/kg-s b) m-s/kg 2 c) kg/m-s 2 d) kg/m-s

General Physics. Prefixes. Aims: The Greek Alphabet Units. Provided Data

Table of Information and Equation Tables for AP Physics Exams

State Legislation, Regulation or Document Reference CAR Civil Aviation Rule (CAR) Annex 5 is incorporated by reference in this rule.

Tute UV1 : MEASUREMENT 1

UNITS AND DEFINITIONS RELATED TO BIOMECHANICAL AND ELECTROMYOGRAPHICAL MEASUREMENTS

N5 H AH Physical Quantity Symbol Unit Unit Abbrev. 5 absorbed dose D gray Gy

DIMENSIONS AND MEASUREMENT

APPENDIX D UNIT CONVERSION TABLES. Sl SYMBOLS AND PREFIXES

SI units are divided into 2 classes: base units (7) and derived units. Athens Programme Course CTU 1 - Metrology of Electrical Quantities.

MEASUREMENTS. Dimensions of physical quantities

A P P E N D I X C Units and Dimensions 795

Exact and Measured Numbers

READ ONLY. Adopting Agency BSC SFM. Adopt Entire Chapter X X X X X X X X X Adopt Entire Chapter as amended (amended sections listed below)

S I. A concise summary of the International System of Units, SI

For More info visit

Representation of SI Units and Prefixes

PHYSICS. Complete Study Material and 1000 Objective bits Useful for all SSC, RRB & Group Exams METRE

PHY Tables & Formulas. You may refer to this handout on quizzes & exams. Do not add additional information. m

The SI Metric System LE SYSTÈME INTERNATIONAL D'UNITÉS ( I N T ERNATI ONA L SYST E M O F U N I T S)

Lecture notes on * Measurement and Error * Least Square Fitting

Cosmological Ouroboros. Sheldon Lee Glashow (Nobel prize in Physics 1979)

Units of Measurements to be used in air and ground operations.

US Customary System (USC) Systeme Internationale (SI) Prefixes. Units & Significant Figures

16 19 Study Guide. Pocket physics. a handy guide for bright stars

PHYSICS 1 (LIFE SCIENCES) ELECTRICITY

10. The State 11. FIRST SCHEDULE SECOND SCHEDULE THIRD SCHEDULE FOURTH SCHEDULE FIFTH SCHEDULE SIXTH SCHEDULE

16 19 Study Guide. Pocket physics. a handy guide for bright stars

T m / A. Table C2 Submicroscopic Masses [2] Symbol Meaning Best Value Approximate Value

LECTURE 4 - Units Used in Measurements

US Customary System (USC)

Dimensional Analysis

wave speed (metre/second, m/s) = frequency (hertz, Hz) x wavelength (metre, m)

Matter and Laws of Chemical Combinations

1.1 - Scientific Theory

Topic 1: Dimension, Measurement and error

Dimension, Measurement and error

Equation Sheet For Quizzes and Tests

THE INTERNATIONAL SYSTEM OF UNITS (SI) SI Base Units. Quantity Name of unit Symbol

8/17/2016. Summary. Summary. Summary. Chapter 1 Quantities and Units. Passive Components. SI Fundamental Units. Some Important Electrical Units

AP Physics 1: Algebra-Based

288 MODERN SEWER DESIGN. Versatility of steel in sewer construction is typified by application of large diameter structural plate pipe.

Text book. Tenth edition. Walker, Halliday and Resnick. Principles of physics.

Read Sections 1.10 and Appendix A-1 before viewing this slide show.

What is Physics? It is a Science

The Metric System. The International System of Units

Chapter 1: The Science of Physics. Physics 1-2 Mr. Chumbley

GCE Physics Transition Work

Dimensions and Units. 1.1 The International System of Units

Harold s AP Physics Cheat Sheet 23 February Electricity / Magnetism

UNITS AND MEASUREMENTS

Future coaching Institute Tirupur

GLOSSARY OF PHYSICS TERMS. v-u t. a =

TY Physics Measurement Module 1

S. I. UNITS, STATICS

Basic concepts in Magnetism; Units

Phys 2401: Lecture 1 Chapt. 1: Measurement

1 Units, Dimensions and

AP Physics B 2014 Free-Response Questions

NAME SYMBOL QUANTITY

Advanced Metric Flashcards

Introduction to Engineering ENGR System of Units

100 Physics Facts. 1. The standard international unit (SI unit) for mass (m) is. kg (kilograms) s (seconds)

MATHEMATICAL PRELIMINARIES

1 Fundamental Constants, Elements, Units

Additional Formula Sheet for Final Exam

MYANMAR CIVIL AVIATION REQUIREMENTS

Fundamentals of Measurement Systems

CHAPTER TWO UNITS AND MEASUREMENT

Chapter 1. Basic Concepts. 1.1 Trajectories

Instructor: Zerefşan Kaymaz TABLE: SELECTED DIMENSIONAL EQUIVALENTS

Ch. 2 Notes: ANALYZING DATA MEASUREMENT NOTE: Vocabulary terms are in boldface and underlined. Supporting details are in italics.

Introduction. Chapter 1 : Introduction l 1

Technical English -I 3 rd week SYSTEMS OF UNITS

Year 12 Physics INDUCTION WORK XKCD. Student. Class 12 A / B / C / D / E Form

General and Inorganic Chemistry I.

ASSESSMENT UNIT PH5: FIELDS, FORCES AND NUCLEI. A.M. WEDNESDAY, 11 June hours

In recording measurements, it is necessary to understand 1. SIGNIFICANCE of numbers 2. importance of UNITS.

UNITS AND DIMENSIONS. M.Sathyanarayanan AP/CIvil-VCET

Unit 1. ET Unit 1. Quantities, Units, and Electrical Safety. Electronics Fundamentals Circuits, Devices and Applications - Floyd

2. Basic Components and Electrical Circuits

Beauchamp College Year 11/12 - A- Level Transition Work. Physics.

Physical Quantities and Units

The SI System: FRRB Guide to Scientific Units

CH. I ME2560 STATICS General Principles GENERAL PRINCIPLES. Rigid body mechanics. Fluid mechanics

EE-0001 PEEE Refresher Course. Week 1: Engineering Fundamentals

This document is meant purely as a documentation tool and the institutions do not assume any liability for its contents

St Olave s Grammar School. AS Physics Mock Revision Checklist

Worksheet 2 Units, Signifiant Figures, Dimensional Analysis, & Density

PHYS Brooks. Select the response that best answers the given statement.

Pre Comp Review Questions 7 th Grade

Worksheet 1 Units, Signifiant Figures, Dimensional Analysis, & Density

Physics Important Terms and their Definitions

Ch. 2 Notes: ANALYZING DATA MEASUREMENT NOTE: Vocabulary terms are in boldface and underlined. Supporting details are in italics.

Transcription:

UNITS AND MEASUEMENTS. Physics is a science of measurments. PHYSICAL QUANTITY: Any quantity which canbe measured directly (or) indirectly (or) in terms of which any laws of physics can be expressd is called physical quantity. 3. There are two types of physical quantities ) Fundamental quantity ) Derived quantity ) Fundamental Quantity : Physical Quantities which cannot be expressed in terms of any other physical quantites are called fundamental physical quantities. E.g. length, mass, time, temperature etc.. ) Derived Quantity :Physical Quantities which are derived from fundamental quantities are called derived quantities. E.g. Area, density, force etc... UNIT OF MEASUEMENT:. A fixed measurement chosen as a standard of measurement to measure a physical quantity is called a Unit.. To measure a physical quantity means to determine the number of times its standard unit contained in that physical quantity. 3. A standard Unit is necessary for the sake of. accuracy,. convenience, 3. unformity and 4. equal justice to all. 4. The standard unit chosen should have the following characteristics.. Consistency (or) invariability. Availability (or) reproducibility 3. Imperishability (Permanency) 4. Convenience and acceptability 5. The measure of a Physical Quantity is given by a numerical value and a unit. x nu where x is the measure of a physical quantity, n is numerical value and u is the unit. 6. The numerical value obtained on measuring a physical quantity is inversely proportional to the magnitude of the unit chosen. n U nu nu Where n and n are the numerical values and U and U are the units of same physical quantity in different systems. Fundemental unit :The unit used to measrue the fundamental quantity is called fundamental unit. e.g., Metre for length, kilogram for mass etc.. Derived unit : The unit used to measure the derived quantity is called derived unit. e.g., m for area, gm cm -3 for density etc... FUNDAMENTAL QUANTITIES AND THEI S.I. UNITS:. There are seven basic quantities and two supplementary quantities in S. I. system. The names and units with symbols are given below: S.No. Physical Quantity S.I.Unit Symbol. Length metre m. Mass kilogram kg 3. Time second s 4. Themro dynamic

temperature Kelvin K (or) 5. Luminous intensity candela Cd 6. Electric current ampere A 7. Amount of substance (or) quantity of matter mole mol Suplementary quantities. Plane angle radian rad. Solid angle steradian sr. DEFINITIONS FO S.I. UNITS:. meter: meter is in 99, 79, 458th part of the distance travelled by light in vaccum in second.. Kilogram:Kilogram is the mass of a platinum - irridium alloy cylinder proto type kept at Serves, near Paris. 3. second: One second is the time taken by 9, 9, 63, 770 cycles of the radiation from the hyperfine transition in ceasium - 33 atom, when unperturbed by external fields. 4. Kelvin: This is /73. 6 of the temperature at the triple point of water measured on thermodynamic scale. 5. Candela: Candela is the luminous intensity in a direction normal to the surface of 600000 m of a black body at the temperature of freezing platinum at a pressure of 0, 35 newton per square metre. 6. ampere: ampere is the current which when flowing in each of two parallel conductors of infinite length and negligible cross-section and placed one metre apart in vaccum causes each conductor to experience a force exactly x0-7 newton per metre length. 7. mole: mole is the amount of substance of a system that contains as many elementary entities as there are atoms in 0.0 kg of carbon -. 8. radian: radian is the angle subtended at the centre of a circle by an arc whose length is equal to the radius. radian = 360 0 : radian = 360 = 570 7' 44" 9. Steradian: The solid angle subtended at the centre of the sphere of radius metre by its surface of area square metre. Solid angle= normal area/r. Total solid angle that can be formed at any point in space or at the centre of a sphere is 4 steradian. 3. Other conventional units of fundamental quantities : Length : micron 6 0 m to express the size of bacteria, animal cells etc., Angstrom unit 0 0 m to express the wavelength of light X-ray unit 3 0 m for wavelength of x-rays Fermi 5 0 m to express the size of nucleus Light year 5 9.460 m to express astronomical distances per sec 3.6 light years 5 30.84 0 m to express astronomical distances Bohr radius 0 0.50 m Mass : Quintal = 00 Kg Metric ton = 000 Kg

7 Atomic mass unit (a.m.u) =.670 Kg Chandra Shekar Limit =.4 times mass of the sun Time : One day = 86400 seconds Shake = 8 0 sec PEFIXES: (or) Abbreviations for multiples andsub-multiples of 0. MACO Prefixes MICO Prefixes Kilo K 0 3 milli m 0-3 Mega M 0 6 micro 0-6 Giga G 0 9 nano n 0-9 Tera T 0 pico p 0 - Peta P 0 5 femto f 0-5 Exa E 0 8 atto a 0-8 Zetta Z 0 zepto z 0 - Yotta Y 0 4 yocto y 0-4 Note: The following are not used in SI system. deca 0 deci 0 - hecta 0 centi 0 - ULES FO WITING UNITS:. Symbols for a unit named after a scientist should have a capital letter. eg:n for newton, W for watt, A for ampere.. Full names of the units,even when they are named after a scientist should not be written with a capital letter. Eg: newton, watt, ampere, metre. 3. Units should be written either in full or in agreed symbols only. 4. Units do not take plural form. Eg: 0kg but not 0 kgs, 0W but not 0 Ws A but not As 5. No full stop or punctuation mark should be used within or at the end of symbols for units. Eg: 0W but not 0W. DIMENSIONS OF PHYSICAL QUANTITY:.Dimensions: Dimensions of a physical quantity are the powers to which the fundamental units are to be raised to obtain one unit of that quantity.dimensional Formula : An expression showing the powers to which the fundamental units are to be raised to obtain one unit of the derived quantity is called Dimensional formula of that quantity. 3. Dimensional Constants: The physical quantities which have dimensions and have a fixed value are called dimensional constants. Eg: Gravitational Constant (G), Planck's Constant (h), Universal gas constant (), Velocity of light in vacuum (c) etc., 4. Dimensionless constants: Dimensionless quantities are those which do not have dimensions but have a fixed value. (a): Dimensionless quantities without units. Eg: Pure numbers,, e, Sin, Cos, tan...etc., (b) Dimensionless quantities with units. Eg: Angular displacement - radian, Joule's constant- joule/calorie, etc., 5. Dimensional variables: Dimensional variables are those physical quantities which have dimensions and do not have fixed value. Eg: velocity, acceleration, force, work, power... etc.

6. Dimensionaless variables: Dimensionless variables are those physical quantities which do not have dimensions and do not have fixed value., Eg: Specific gravity, refractive index, Coefficient of friction, Poisson's atio etc., PHYSICAL QUANTITES HAVING SAME DIMENTIONAL FOMULAS. Distance, Displacement, radius light year wavelength, radius of gyration (L). Speed, Velocity, Velocity of light LT 3. acceleration,acceleration due to gravity, intensity of gravitational feild, centripetal acceleration LT 4. Impulse, Change in momentum MLT 5. Force, Weight, Tension, Thrust MLT 6. Work, Energy, Moment of force or Torque, Moment of couple ML T 7. Force constant, Surface Tension, Spring constant, Energy per unit area MT 8. Angular momentum, Angular impulse, Plank's constant ML T 9. Angular velocity, Frequency, Velocity gradient, Decay constant, rate of disintigration (T ) 0. Stress, Pressure, Modulus of Elasticity, Energy density ML T. Latent heat, Gravitational potential L T. Specific heat, Specific gas constant L T 3. Thermal capacity, Entropy, Boltzman constant, Molar thermal capacity, ML T 4. Wave number, Power of a lens, ydberg constant L 5. Time, C, L, LC T 6. Power, ate of dissipation of energy, ( 3 ML T ) 7. Intensity of sound, Intensity of radiation ( 3 MT ) 8. Expansion coefficient, Temperature coefficient of resistance ( K ) 9. Electric potential, potential difference, electromotive force ( 3 ML T I ) 0. Intensity of magnetic field, Intensity of magnetization IL Principle of homogenity: It states only quantities of same diemensions can be added subtracted and equated. Hence in a Physical equation every term should have same dimensions. USES OF DIMENSIONAL EQUATIONS: I. Use: To check the correctness of the given equation. This use is based on the principle of homogenity. II. Use: To convert one system of units into another system. Eg: The numerical value of 0 joule in a new system of units in which the unit of mass is 0gm, unit of length 0cm. and unit of time 0sec. is ---- using since. a b c a b c since n n M L T [ ] [ ]

THE FOLLOWING IS THE LIST OF SOME PHYSICAL QUANTITIES WITH THEI FOMULAE AND DIMENSIONAL FOMULAE Sl.No. Physical Quantity Explanation or Formulae Dimensional C.G.S. Unit S.I.Unit Formulae. Distance : ( Length ) L Displacement ( S ) Wave Length ( ) adius of gyration () Circumference Perimeter Light year Par-sec S C P L.Y Par-sec. Mass Measure of inertia total time 3. Period of oscillation, T = N o. of oscillations Time, Time constant T = Capacity x esistance 4. Frequency eciprocal of time n T M L T 0 0 Cm m M L T 0 0 gm Kg 0 0 S S 0 0 S ( hz) hertz ( Hz) 5. Area A = l x b ( or) L 0 0 cm ( sq.cm) m ( sq.m) 6. Volume V = L.b. h. (or) L 3 0 3 0 cm 3 m 3 (cubic ( Cubic cm ) metre) Mass M 3 0 7. Density D Volume L 3 gm. cm -3 kg.m -3 8. Linear density 9. Speed (scalar) M m L ( Massper unit length) 0 gm.cm - kg.m - Velocity ( Vector) V = L T 0 cm s - m.s - dv Change in Velocity 0. Acceleration a = dt time 0 cm s - m.s -. Linear Momentum P M V. Impulse J F. t 3. Force F = M.a 4. Work W = F x S Energy P.E= mgh KE = M LT gm.cms - kg.m.s - M LT dyne-s N-S M LT dyne. newton ( gm cm s - ) = (kg.m.s - ) MV erg=dyne-cm Joule Strain energy =Newton-m = Stress Strain volume ( gm.cm s - ) ( kg.m s - )

5. Power 6. Pressure Stress P Work time 3 Force Area erg s - J.S -. (or) Watt 7. Strain Modulus of Elasticity Stress y Strain dyne - cm - N.m -. (or) y, n, k Pascal e l 0 0 0 No Units ------- 8. Strain energy density E = Work Volume erg.cm -3 J.m -3 9. Angular displacement 0. Angular Velocity. Anuglar acceleration l 0 0 0 r radian radian d 0 0 dt rad.s - rad.s - d d 0 0 dt dt rad s - rad.s -. Angular momentum L r p rmvsin gm.cm s - kg.m s - 3. Planck's constant h E erg-s J -S 4. Angular impulse Torque time erg-s J.s 5. Torque r F r M a Sin dyne-cm N-m 6. Acceleration due to gravity(g)= gravitational F g M 0 M LT cm.s - m.s - field strength = [dyne.gm - ] [N.kg - ] 7. Universal gravitational G F. d M. M 3 dyne.cm.gm - N.m kg - Constant or or [gm - cm 3 s - ] [kg -.m 3.s - ] 8. Moment of inertia 9. Velocity gradient I MK dv dx 0 gm.cm kg.m 0 0 S S 30. Surface Tension, F E S or L A 0 dyne.cm - N.m - Spring Constant ( Surface energy) = erg. cm - = J.m - Force Constant F K e

3. Coefficient of Viscosity F dv A. dx pressure x time POISE Pa-s dyne s cm Ns m 3. Gravitational Potential Work Mass 0 erg.gm - J.Kg - 33. Heat energy energy Calorie Joule 34. Temperature (or) Kelvin 0 0 0. 0 c Kelvin( K) dq 35. Thermal Capacity Mass Sp. ht d. Cal/ 0 c J. K - 36. Specific heat Capacity S (or) C 37. Latent heat (or) Calorific value L Q M Q M 0 0. Cal / gm / 0 c J kg - K - Cal.gm - J.kg - 38. Water Equivalent W MC grms 0 0 gm kg. 39. Coefficient of Thermal or or expansion 40. Universal gas constant ( for Mole) 4. Gas constant ( for gram) 4. Boltzman constant (for Molecule) 43. Mechanical equivalent of heat 44. Coefficient of Thermal Conductivity 45. Entropy l ; l. r k J PV nt A V ; A. V. Mol. wt 0 AvagadroNo. W H 0 0 0 K Q. d A. t dq d 0 c - K - M L: T mol erg.mol -. 0 c - J.mol -.K - M L: T mol erg.gm -.c - J.kg - K - M L : T erg.gm -.c - J.K - erg/cal ----- or J/cal molecule - 3 M LT Cal s - cm - 0 c - J.S - m - K -. erg 0 c - J.K - or w.m - K - 46. Stefan's Constant E 4 A. T. 0 3 4 k erg/scm / 0 c 4 J/sm /K 4 (or) W.m -.K -4

47. Thermal resistance d temp time dq Heat dt 3 K ---- KSJ - ( or) d K. A 48. Temperature gradient Change in t emp d L length dl 0 c. cm K.m - 49. Pressure gradient Change in pressure length dp dl dyne.cm - pascal.m - 50. Solar constant Energy E area time AT. 0 3 erg.s -.cm - J.S -.m - (W.m - ) 5. Enthalpy heat.( Q) Calorie Joule 5. Pole strength m I. L ( or) 0 0 M LT. A --- amp-metre Magnetic M omement Mag. Length 53. Magnetic Moment M l. m. 0 0 ---- A.m Current area pole m 54. Magnetic intensity (or) H 4 d Magnetising field strength x length of the Magnet 0 0 (A.m) Oersted A.m - 55. Intensity of Magnetisation M Magnetic Moment I V Volume 0 M L T 0 A ----- A.m - 56. Magnetic flux B A Maxwell Weber ( wb) =(magnetic induction x area) 57. Magnetic induction (or) Magnetic flux F B 0 A area il. A gauss tesla (or) field strength web. m - 58. Magnetic permeability of free space 59. Magnetic susceptibility N.A -.m - 4. Fd 0 m. m M LT. A e.m.u henry.m - K I H 0 0 0 No. Units ---- 60. Electric current elementary quantity 0 0 0. stat amp. ampere 6. Charge ( or) Electricity Q I T Current x time 0 0. A Stat coulomb Coulomb 6. Electric dipole moment P Q d Charg e dis tan ce 0 0. A Stat.coul-cm coulombmet 63. Electric field strength (or) Elec. Intensity F Force E Q Ch arg e M LT 3 A dyne/stat.coul. Nc -

64. Electrical flux ( E ) Electrical Intensity x area 3 3 ------ N.m C - 65. Electric potential (or) Potential difference 66. Electrical resistance 67. Electrical conductance 68. Specific resistance (or esistivity (or) s 69. Electrical conductivity V Work Ch arg e 3 Pot. diff Current 3 Stat Volt Volt.(V) Stat - Ohm Ohm-( ) C resis tan ce M L T 3 A ----- mho (or) Siemen (S). A l 3 3 A Ohm-m e sistivity 3 3 70. Current density ( Current per unit area J = Electrical Intensity x Conductivity Current of cross section) or area 7. Capacitance C= Q Ch arg e V Potential 4 de Voltage time 7. Self (or) Mutual Inductance L di Current dt 73. Electrical permitivity of free space q. q 4 fd 0 3 4 Ohm - -m -( (or) Siemen/ metre 0 0 A.m - farad henry (or) Weber/amp. farad/m 74. Surface density of Charge Ch arg e area 0 C.m - 75. Luminous flux Light energy time 3 Lumen 76. Intensity of illumination (or) Iluminance 77. Focal Power 78. Wave number (Propagation constant) 79. ydberg constnat E Lu minious flux I t. A area P v focal length 0 0 0 3 Luman.m - 0 0 4 Z e m 3 8 0ch M 0 L T 0 cm - m - cm - m - (or) Lux. Dioptre