SlideShare une entreprise Scribd logo
1  sur  15
CHAPTER - 8
MOTION
CLASS :- IX
MADE BY :- SHIVA PRASAD
SCHOOL :- K.V. 2. SADRAS. KALPAKKAM
1) Describing motion :-
i) Motion :- is the change in position of a body with time.
Motion can be described in terms of the distance moved or the
displacement.
ii) Distance moved :- is the actual length of the path travelled by a
body.
iii) Displacement :- is the length of the shortest path travelled by a
body from its initial position to its final position.
Eg :- If a body starts moving in a straight line from origin O and
moves through C and B and reaches A and then moves back and
reaches C through B, then
Distance travelled = 60 + 35 = 95 km
Displacement = 25 km
O C B A
0 5 10 15 20 25 30 35 40 45 50 55 60 km
2) Uniform motion and Non uniform motion :-
i) Uniform motion :- If a body travels equal distances in equal intervals of
time, it is said to be in uniform motion.
ii) Non uniform motion :- If a body travels unequal distances in equal
intervals of time, it is said to be in non uniform motion.
iii) Speed :- of a body is the distance travelled by the body in unit time.
Distance
Speed =
Time
If a body travels a distance s in time t then its speed v is
s
v =
t
The SI unit of speed is metre per second m/s or ms -1
Since speed has only magnitude it is a scalar quantity.
iv) Average speed :- is the ratio of the total distance travelled to the total time
taken.
Total distance travelled
Average speed =
Total time taken
3) Speed with direction :-
The rate of motion of a body is more meaningful if we specify its direction of
motion along with speed. The quantity which specifies both the direction of
motion and speed is velocity.
i) Velocity :- of a body is the displacement of the body per unit time.
Displacement
Velocity =
Time taken
Since velocity has both magnitude and direction, it is a vector quantity.
ii) Average velocity :- is the ratio of the total displacement to the total
time taken.
Total displacement
Average velocity =
Total time taken
Average velocity is also the mean of the initial velocity u and final velocity v.
Initial velocity + Final velocity u + v
Average velocity = vav =
2 2
Speed and velocity have the same units m/s or ms -1
4) Rate of change of velocity :-
During uniform motion of a body in a straight line the velocity remains
constant with time. In this case the change in velocity at any time interval is
zero ( no change in velocity).
During non uniform motion the velocity changes with time. In this case the
change in velocity at any time interval is not zero. It may be positive (+ ve) or
negative (- ve).
The quantity which specifies changes in velocity is acceleration.
Acceleration :- is the change in velocity of a body per unit time.( or the rate
of change of velocity.)
Change in velocity
Acceleration =
Time
If the velocity of a body changes from initial value u to final value v in time t,
then acceleration a is
v - u
a =
t
The SI unit of acceleration is ms - 2
Uniform acceleration :- If the change in velocity is equal in equal intervals
of time it is uniform acceleration.
Non uniform acceleration :- If the change in velocity is unequal in equal
intervals of time it is non uniform acceleration.
5) Graphical representation of motion :-
a) Distance – Time graphs :-
The change in the position of a body with time can be represented on the
distance time graph. In this graph distance is taken on the y – axis and time is
taken on the x – axis.
i) The distance time graph for uniform speed is a straight line ( linear ). This is
because in uniform speed a body travels equal distances in equal intervals of
time.
We can determine the speed of the body from the distance – time graph.
For the speed of the body between the points A and B, distance is (s2 – s1)
and time is (t2 – t1).
s (s2 – s1)
v = ---- v = -----------
t (t2 – t1)
20 – 10 10
= --------- = ----
10 – 5 5
= 2 ms -1
A
B
10
20
30
t1 t2
s1
s2
C
Time (s)
Distance(m)
X
Y
5 10 15 20
Distance – time graph for a body moving with uniform speed
0
ii) The distance – time graph for non uniform motion is non linear. This is
because in non uniform speed a body travels unequal distances in equal
intervals of time.
20
40
Time (s)
Distance(m)
X
10
30
50 10 15 20
Distance – time graph for a body moving with non uniform speed
Y
b) Velocity – time graphs :-
The change in the velocity of a body with time can be represented on the
velocity time graph. In this graph velocity is taken on the y – axis and time is
taken on the x – axis.
i) If a body moves with uniform velocity, the graph will be a straight line
parallel to the x – axis . This is because the velocity does not change with
time.
To determine the distance travelled by the body between the points A and B
with velocity 20 km h-1
s
v = ---
t
s = v x t
v = 20 km h-1
= AC or BD
t = t2 – t1 = DC
= AC (t2 – t1)
s = AC X CD
s = area of the rectangle ABDC
20
40
Time (s)
Velocity(kmh-1
)
X
10
30
50 10 15 20
t1 t2
A B
C D
Velocity – time graph for a body moving with uniform velocity
Y
ii) If a body whose velocity is increasing with time, the graph is a straight line
having an increasing slope. This is because the velocity increases by equal
amounts with equal intervals of time.
The area under the velocity – time graph is the distance (magnitude of
displacement) of the body.
The distance travelled by a body between the points A and E is the area
ABCDE under the velocity – time graph.
s = area ABCDE
= area of rectangle ABCD
+ area of triangle ADE
1
s = AB X BC + --- ( AD X DE )
2
A
B
10
20
30
t1 t2 C
Time (s)
Velocity(ms-1
)
X
Y
10 20 30 40
Velocity – time graph for a body moving with uniform acceleration
D
E
0
iii) If a body whose velocity is decreasing with time, the graph is a straight
line having an decreasing slope. This is because the velocity decreases by
equal amounts with equal intervals of time.
iv) If a body whose velocity is non uniform, the graph shows different
variations. This is because the velocity changes by unequal amounts in equal
intervals of time.
20
40
Time (s)
Velocity(ms-1
)
X
10
30
50 10 15 20
20
40
Time (s)
Velocity(ms-1
)
X
10
30
50 10 15 20
Velocity – time graph for a uniformly
decelerated motion
Velocity – time graph for
non uniform acceleration
Y Y
6) Equations of motions by graphical method :-
The motion of a body moving with uniform acceleration can be
described with the help of three equations called equations of motion.
The equations of motion are :-
i) v = u + at
ii) s = ut + ½ at2
iii) 2as = v2
– u2
where u - is the initial velocity
v - is the final velocity
a - is acceleration
t - is the time
s - is the distance traveled
a) Equation for velocity – time relation ( v = u + at ) :-
Consider a velocity – time graph for a body moving with uniform acceleration
‘a’. The initial velocity is u at A and final velocity is v at B in time t.
Perpendicular lines BC and BE are drawn from point B to the time and
velocity axes so that the initial velocity is OA and final velocity is BC and time
interval is OC. Draw AD parallel to OC.
We observe that
BC = BD + DC = BD + OA
Substituting BC = v and OA = u
We get v = BD + u
or BD = v - u
Change in velocity
Acceleration = ---------------------------
Time
BD BD v - u
a = ----- = ----- or a = ---------
AD OC t
v – u = at or v = u + at Time (s)
Velocity(ms-1
)
XO
Velocity – time graph for a uniformly
accelerated motion
Y
t
u
v
A
B
C
D
E
b) Equation for position – time relation (s = ut + ½ at2
) :-
Consider a velocity – time graph for a body moving with uniform
acceleration ‘a’ travelled a distance s in time t.
The distance traveled by the body between the points A and B is the area
OABC.
s = area OABC ( which is a trapezium )
= area of rectangle OABC + area of triangle ABD
1
= OA X OC + --- ( AD X BD )
2
Substituting OA = u, OC = AD = t,
BD = v – u = at
We get
1
s = u x t + -- ( t x at )
2
or s = ut + ½ at2
Time (s)
Velocity(ms-1
)
O
Velocity – time graph for a uniformly
accelerated motion
t
u
v
A
B
C
D
E
c) Equation for position – velocity relation (2as = v2
–u2
) :-
Consider a velocity – time graph for a body moving with uniform acceleration
‘a’ travelled a distance s in time t.
The distance travelled by the body between the points A and B is the area
OABC.
s = area of trapezium OABC
(OA + BC) X OC
s = ----------------------
2
Substituting OA = u, BC = v and OC = t
( u + v ) X t
We get s = -----------------
2
From velocity – time relation
( v – u )
t = -----------
a
( v + u ) X ( v – u )
s = ----------------------- or 2as = v2
– u 2
2a
Time (s)
Velocity(ms-1
)
O
Velocity – time graph for a uniformly
accelerated motion
t
u
v
A
B
C
D
E
7) Circular motion :-
The motion of a body in a circular path is called circular motion.
Uniform circular motion :- If a body moves in a circular path with
uniform speed, its motion is called uniform circular motion.
Uniform circular motion is accelerated motion because in a circular motion a
body continuously changes its direction.
The circumference of a circle of radius r is given by 2лr. If a body takes time
t to go once around the circular path, then the velocity v is given by
2лr
v = ----
t

Contenu connexe

Tendances

atoms and molecules
atoms and moleculesatoms and molecules
atoms and moleculesshiva prasad
 
structure of the atom
 structure of the atom structure of the atom
structure of the atomshiva prasad
 
chapter sound for class 9 ppt
chapter sound for class 9 ppt chapter sound for class 9 ppt
chapter sound for class 9 ppt Arpit Meena
 
force and laws of motion class 9
force and laws of motion class 9force and laws of motion class 9
force and laws of motion class 9shashankgarg57
 
matter in our surroundings
matter in our surroundingsmatter in our surroundings
matter in our surroundingsshiva prasad
 
Light human eye and the colourful world
Light human eye and the colourful worldLight human eye and the colourful world
Light human eye and the colourful worldUtkarshIshwar
 
Chapter - 2, Is matter around us pure?, Science, Class 9
Chapter - 2, Is matter around us pure?, Science, Class 9Chapter - 2, Is matter around us pure?, Science, Class 9
Chapter - 2, Is matter around us pure?, Science, Class 9Shivam Parmar
 
Atoms and Molecules Ncert 9th
Atoms and Molecules Ncert 9thAtoms and Molecules Ncert 9th
Atoms and Molecules Ncert 9th01kumar
 
How do organisms reproduce.ppt
How do organisms reproduce.pptHow do organisms reproduce.ppt
How do organisms reproduce.pptVijaya Saran
 
Atoms and molecules class 9
Atoms and molecules class 9Atoms and molecules class 9
Atoms and molecules class 9RaxitGupta
 
Heredity and evolution
Heredity and evolutionHeredity and evolution
Heredity and evolutionAnupam_Rptile
 
Ncert class 10 - science - chapter 2 - acids, bases and salts
Ncert  class 10 - science - chapter 2 - acids, bases and saltsNcert  class 10 - science - chapter 2 - acids, bases and salts
Ncert class 10 - science - chapter 2 - acids, bases and saltsEswariKumaravel
 
Tissues Class 9 ppt
Tissues Class 9 pptTissues Class 9 ppt
Tissues Class 9 pptYash Chauhan
 
Ncert class 10 - science - chapter 1 - chemical reactions and equations
Ncert  class 10 - science - chapter 1 - chemical reactions and equationsNcert  class 10 - science - chapter 1 - chemical reactions and equations
Ncert class 10 - science - chapter 1 - chemical reactions and equationsEswariKumaravel
 
motion class 9 physics
 motion class 9 physics motion class 9 physics
motion class 9 physicsshashankgarg57
 
THE FUNDAMENTAL UNIT OF LIFE
THE FUNDAMENTAL UNIT OF LIFETHE FUNDAMENTAL UNIT OF LIFE
THE FUNDAMENTAL UNIT OF LIFEPaulomi Das
 

Tendances (20)

atoms and molecules
atoms and moleculesatoms and molecules
atoms and molecules
 
gravitation class 9
gravitation class 9gravitation class 9
gravitation class 9
 
structure of the atom
 structure of the atom structure of the atom
structure of the atom
 
chapter sound for class 9 ppt
chapter sound for class 9 ppt chapter sound for class 9 ppt
chapter sound for class 9 ppt
 
force and laws of motion class 9
force and laws of motion class 9force and laws of motion class 9
force and laws of motion class 9
 
tissues
tissuestissues
tissues
 
matter in our surroundings
matter in our surroundingsmatter in our surroundings
matter in our surroundings
 
Motion Class 9
Motion Class 9 Motion Class 9
Motion Class 9
 
Light human eye and the colourful world
Light human eye and the colourful worldLight human eye and the colourful world
Light human eye and the colourful world
 
Chapter - 2, Is matter around us pure?, Science, Class 9
Chapter - 2, Is matter around us pure?, Science, Class 9Chapter - 2, Is matter around us pure?, Science, Class 9
Chapter - 2, Is matter around us pure?, Science, Class 9
 
Atoms and Molecules Ncert 9th
Atoms and Molecules Ncert 9thAtoms and Molecules Ncert 9th
Atoms and Molecules Ncert 9th
 
How do organisms reproduce.ppt
How do organisms reproduce.pptHow do organisms reproduce.ppt
How do organisms reproduce.ppt
 
Atoms and molecules class 9
Atoms and molecules class 9Atoms and molecules class 9
Atoms and molecules class 9
 
Heredity and evolution
Heredity and evolutionHeredity and evolution
Heredity and evolution
 
sound
soundsound
sound
 
Ncert class 10 - science - chapter 2 - acids, bases and salts
Ncert  class 10 - science - chapter 2 - acids, bases and saltsNcert  class 10 - science - chapter 2 - acids, bases and salts
Ncert class 10 - science - chapter 2 - acids, bases and salts
 
Tissues Class 9 ppt
Tissues Class 9 pptTissues Class 9 ppt
Tissues Class 9 ppt
 
Ncert class 10 - science - chapter 1 - chemical reactions and equations
Ncert  class 10 - science - chapter 1 - chemical reactions and equationsNcert  class 10 - science - chapter 1 - chemical reactions and equations
Ncert class 10 - science - chapter 1 - chemical reactions and equations
 
motion class 9 physics
 motion class 9 physics motion class 9 physics
motion class 9 physics
 
THE FUNDAMENTAL UNIT OF LIFE
THE FUNDAMENTAL UNIT OF LIFETHE FUNDAMENTAL UNIT OF LIFE
THE FUNDAMENTAL UNIT OF LIFE
 

Similaire à motion

presentation_equation_of_motion_1663608809_139366.pptx
presentation_equation_of_motion_1663608809_139366.pptxpresentation_equation_of_motion_1663608809_139366.pptx
presentation_equation_of_motion_1663608809_139366.pptxharveenkaur64
 
presentation_equation_of_motion_1663608809_139366.pptx
presentation_equation_of_motion_1663608809_139366.pptxpresentation_equation_of_motion_1663608809_139366.pptx
presentation_equation_of_motion_1663608809_139366.pptxharveenkaur64
 
presentation_equation_of_motion_1663608809_139366.pptx
presentation_equation_of_motion_1663608809_139366.pptxpresentation_equation_of_motion_1663608809_139366.pptx
presentation_equation_of_motion_1663608809_139366.pptxLokeshT29
 
Karthikeyan ppt on motion class 9 (1)
Karthikeyan ppt on motion class 9 (1)Karthikeyan ppt on motion class 9 (1)
Karthikeyan ppt on motion class 9 (1)KarthiKeyan1512
 
8motion 140511012634-phpapp01
8motion 140511012634-phpapp018motion 140511012634-phpapp01
8motion 140511012634-phpapp01rashispdz
 
Chapter no. 6 linear mo
Chapter no. 6 linear moChapter no. 6 linear mo
Chapter no. 6 linear moPralhad Kore
 
CBSE Class 9&10th Sample eBook
CBSE Class 9&10th Sample eBookCBSE Class 9&10th Sample eBook
CBSE Class 9&10th Sample eBookMiso Study
 
CBSE Class 9th Sample eBook
CBSE Class 9th Sample eBookCBSE Class 9th Sample eBook
CBSE Class 9th Sample eBookMiso Study
 
Ch 8 Motion 2.pptx.pdf
Ch 8 Motion 2.pptx.pdfCh 8 Motion 2.pptx.pdf
Ch 8 Motion 2.pptx.pdfbablivashisht
 
CH-3Motion in a St Line.pdf
CH-3Motion in a St Line.pdfCH-3Motion in a St Line.pdf
CH-3Motion in a St Line.pdfAmitSing9
 
Motion notes by R K Chaudhari sir
Motion notes by R K Chaudhari sirMotion notes by R K Chaudhari sir
Motion notes by R K Chaudhari sirraghvendra0123
 
NCERT class 9th science chapter 8
NCERT class 9th science chapter 8NCERT class 9th science chapter 8
NCERT class 9th science chapter 8Santosh Upadhyay
 
Chapter 2-student
Chapter 2-studentChapter 2-student
Chapter 2-studentTommy Moss
 

Similaire à motion (20)

IX-8-Motion.ppt
IX-8-Motion.pptIX-8-Motion.ppt
IX-8-Motion.ppt
 
Chapter 8 motion
Chapter 8 motionChapter 8 motion
Chapter 8 motion
 
presentation_equation_of_motion_1663608809_139366.pptx
presentation_equation_of_motion_1663608809_139366.pptxpresentation_equation_of_motion_1663608809_139366.pptx
presentation_equation_of_motion_1663608809_139366.pptx
 
presentation_equation_of_motion_1663608809_139366.pptx
presentation_equation_of_motion_1663608809_139366.pptxpresentation_equation_of_motion_1663608809_139366.pptx
presentation_equation_of_motion_1663608809_139366.pptx
 
presentation_equation_of_motion_1663608809_139366.pptx
presentation_equation_of_motion_1663608809_139366.pptxpresentation_equation_of_motion_1663608809_139366.pptx
presentation_equation_of_motion_1663608809_139366.pptx
 
Motion
MotionMotion
Motion
 
8motion [autosaved]
8motion [autosaved]8motion [autosaved]
8motion [autosaved]
 
Karthikeyan ppt on motion class 9 (1)
Karthikeyan ppt on motion class 9 (1)Karthikeyan ppt on motion class 9 (1)
Karthikeyan ppt on motion class 9 (1)
 
8motion 140511012634-phpapp01
8motion 140511012634-phpapp018motion 140511012634-phpapp01
8motion 140511012634-phpapp01
 
MOTION FOR CLASS 9
MOTION FOR CLASS 9MOTION FOR CLASS 9
MOTION FOR CLASS 9
 
Motion science ppt
Motion science pptMotion science ppt
Motion science ppt
 
Motion ppt
Motion pptMotion ppt
Motion ppt
 
Chapter no. 6 linear mo
Chapter no. 6 linear moChapter no. 6 linear mo
Chapter no. 6 linear mo
 
CBSE Class 9&10th Sample eBook
CBSE Class 9&10th Sample eBookCBSE Class 9&10th Sample eBook
CBSE Class 9&10th Sample eBook
 
CBSE Class 9th Sample eBook
CBSE Class 9th Sample eBookCBSE Class 9th Sample eBook
CBSE Class 9th Sample eBook
 
Ch 8 Motion 2.pptx.pdf
Ch 8 Motion 2.pptx.pdfCh 8 Motion 2.pptx.pdf
Ch 8 Motion 2.pptx.pdf
 
CH-3Motion in a St Line.pdf
CH-3Motion in a St Line.pdfCH-3Motion in a St Line.pdf
CH-3Motion in a St Line.pdf
 
Motion notes by R K Chaudhari sir
Motion notes by R K Chaudhari sirMotion notes by R K Chaudhari sir
Motion notes by R K Chaudhari sir
 
NCERT class 9th science chapter 8
NCERT class 9th science chapter 8NCERT class 9th science chapter 8
NCERT class 9th science chapter 8
 
Chapter 2-student
Chapter 2-studentChapter 2-student
Chapter 2-student
 

Plus de shiva prasad

Structure of atom ppt by shiva prasad class 9th a
Structure of atom ppt by shiva prasad class 9th aStructure of atom ppt by shiva prasad class 9th a
Structure of atom ppt by shiva prasad class 9th ashiva prasad
 
13 mysteries of nature and geological wonders
13 mysteries of nature  and geological wonders 13 mysteries of nature  and geological wonders
13 mysteries of nature and geological wonders shiva prasad
 
Strutcure of an atom
Strutcure of an atom Strutcure of an atom
Strutcure of an atom shiva prasad
 
Water mission done by shiva prasad class9th
Water mission done by shiva prasad class9thWater mission done by shiva prasad class9th
Water mission done by shiva prasad class9thshiva prasad
 
improvement in food resources
 improvement in food resources improvement in food resources
improvement in food resourcesshiva prasad
 
diversity in living organisms
diversity in living organismsdiversity in living organisms
diversity in living organismsshiva prasad
 
History of computer technology
History of computer technology History of computer technology
History of computer technology shiva prasad
 
Presentation on tissues
Presentation on tissuesPresentation on tissues
Presentation on tissuesshiva prasad
 
Srinivasa ramanujam
Srinivasa ramanujam Srinivasa ramanujam
Srinivasa ramanujam shiva prasad
 
Presentation on solar system
Presentation on solar system  Presentation on solar system
Presentation on solar system shiva prasad
 
Presentation on stars and phases of the moon
Presentation on stars and phases of the moonPresentation on stars and phases of the moon
Presentation on stars and phases of the moonshiva prasad
 

Plus de shiva prasad (16)

Structure of atom ppt by shiva prasad class 9th a
Structure of atom ppt by shiva prasad class 9th aStructure of atom ppt by shiva prasad class 9th a
Structure of atom ppt by shiva prasad class 9th a
 
13 mysteries of nature and geological wonders
13 mysteries of nature  and geological wonders 13 mysteries of nature  and geological wonders
13 mysteries of nature and geological wonders
 
Strutcure of an atom
Strutcure of an atom Strutcure of an atom
Strutcure of an atom
 
Water mission done by shiva prasad class9th
Water mission done by shiva prasad class9thWater mission done by shiva prasad class9th
Water mission done by shiva prasad class9th
 
improvement in food resources
 improvement in food resources improvement in food resources
improvement in food resources
 
natural resources
natural resourcesnatural resources
natural resources
 
diversity in living organisms
diversity in living organismsdiversity in living organisms
diversity in living organisms
 
Natural resources
Natural resourcesNatural resources
Natural resources
 
Tissues
TissuesTissues
Tissues
 
disasters
disastersdisasters
disasters
 
History of computer technology
History of computer technology History of computer technology
History of computer technology
 
Presentation on tissues
Presentation on tissuesPresentation on tissues
Presentation on tissues
 
Srinivasa ramanujam
Srinivasa ramanujam Srinivasa ramanujam
Srinivasa ramanujam
 
Presentation on solar system
Presentation on solar system  Presentation on solar system
Presentation on solar system
 
Presentation on stars and phases of the moon
Presentation on stars and phases of the moonPresentation on stars and phases of the moon
Presentation on stars and phases of the moon
 
sound
 sound  sound
sound
 

Dernier

Call Girls In Nihal Vihar Delhi ❤️8860477959 Looking Escorts In 24/7 Delhi NCR
Call Girls In Nihal Vihar Delhi ❤️8860477959 Looking Escorts In 24/7 Delhi NCRCall Girls In Nihal Vihar Delhi ❤️8860477959 Looking Escorts In 24/7 Delhi NCR
Call Girls In Nihal Vihar Delhi ❤️8860477959 Looking Escorts In 24/7 Delhi NCRlizamodels9
 
REVISTA DE BIOLOGIA E CIÊNCIAS DA TERRA ISSN 1519-5228 - Artigo_Bioterra_V24_...
REVISTA DE BIOLOGIA E CIÊNCIAS DA TERRA ISSN 1519-5228 - Artigo_Bioterra_V24_...REVISTA DE BIOLOGIA E CIÊNCIAS DA TERRA ISSN 1519-5228 - Artigo_Bioterra_V24_...
REVISTA DE BIOLOGIA E CIÊNCIAS DA TERRA ISSN 1519-5228 - Artigo_Bioterra_V24_...Universidade Federal de Sergipe - UFS
 
User Guide: Magellan MX™ Weather Station
User Guide: Magellan MX™ Weather StationUser Guide: Magellan MX™ Weather Station
User Guide: Magellan MX™ Weather StationColumbia Weather Systems
 
User Guide: Capricorn FLX™ Weather Station
User Guide: Capricorn FLX™ Weather StationUser Guide: Capricorn FLX™ Weather Station
User Guide: Capricorn FLX™ Weather StationColumbia Weather Systems
 
ECG Graph Monitoring with AD8232 ECG Sensor & Arduino.pptx
ECG Graph Monitoring with AD8232 ECG Sensor & Arduino.pptxECG Graph Monitoring with AD8232 ECG Sensor & Arduino.pptx
ECG Graph Monitoring with AD8232 ECG Sensor & Arduino.pptxmaryFF1
 
User Guide: Pulsar™ Weather Station (Columbia Weather Systems)
User Guide: Pulsar™ Weather Station (Columbia Weather Systems)User Guide: Pulsar™ Weather Station (Columbia Weather Systems)
User Guide: Pulsar™ Weather Station (Columbia Weather Systems)Columbia Weather Systems
 
LIGHT-PHENOMENA-BY-CABUALDIONALDOPANOGANCADIENTE-CONDEZA (1).pptx
LIGHT-PHENOMENA-BY-CABUALDIONALDOPANOGANCADIENTE-CONDEZA (1).pptxLIGHT-PHENOMENA-BY-CABUALDIONALDOPANOGANCADIENTE-CONDEZA (1).pptx
LIGHT-PHENOMENA-BY-CABUALDIONALDOPANOGANCADIENTE-CONDEZA (1).pptxmalonesandreagweneth
 
Pests of safflower_Binomics_Identification_Dr.UPR.pdf
Pests of safflower_Binomics_Identification_Dr.UPR.pdfPests of safflower_Binomics_Identification_Dr.UPR.pdf
Pests of safflower_Binomics_Identification_Dr.UPR.pdfPirithiRaju
 
Citronella presentation SlideShare mani upadhyay
Citronella presentation SlideShare mani upadhyayCitronella presentation SlideShare mani upadhyay
Citronella presentation SlideShare mani upadhyayupadhyaymani499
 
Pests of Bengal gram_Identification_Dr.UPR.pdf
Pests of Bengal gram_Identification_Dr.UPR.pdfPests of Bengal gram_Identification_Dr.UPR.pdf
Pests of Bengal gram_Identification_Dr.UPR.pdfPirithiRaju
 
Pests of jatropha_Bionomics_identification_Dr.UPR.pdf
Pests of jatropha_Bionomics_identification_Dr.UPR.pdfPests of jatropha_Bionomics_identification_Dr.UPR.pdf
Pests of jatropha_Bionomics_identification_Dr.UPR.pdfPirithiRaju
 
Behavioral Disorder: Schizophrenia & it's Case Study.pdf
Behavioral Disorder: Schizophrenia & it's Case Study.pdfBehavioral Disorder: Schizophrenia & it's Case Study.pdf
Behavioral Disorder: Schizophrenia & it's Case Study.pdfSELF-EXPLANATORY
 
BIOETHICS IN RECOMBINANT DNA TECHNOLOGY.
BIOETHICS IN RECOMBINANT DNA TECHNOLOGY.BIOETHICS IN RECOMBINANT DNA TECHNOLOGY.
BIOETHICS IN RECOMBINANT DNA TECHNOLOGY.PraveenaKalaiselvan1
 
Environmental Biotechnology Topic:- Microbial Biosensor
Environmental Biotechnology Topic:- Microbial BiosensorEnvironmental Biotechnology Topic:- Microbial Biosensor
Environmental Biotechnology Topic:- Microbial Biosensorsonawaneprad
 
(9818099198) Call Girls In Noida Sector 14 (NOIDA ESCORTS)
(9818099198) Call Girls In Noida Sector 14 (NOIDA ESCORTS)(9818099198) Call Girls In Noida Sector 14 (NOIDA ESCORTS)
(9818099198) Call Girls In Noida Sector 14 (NOIDA ESCORTS)riyaescorts54
 
preservation, maintanence and improvement of industrial organism.pptx
preservation, maintanence and improvement of industrial organism.pptxpreservation, maintanence and improvement of industrial organism.pptx
preservation, maintanence and improvement of industrial organism.pptxnoordubaliya2003
 
Harmful and Useful Microorganisms Presentation
Harmful and Useful Microorganisms PresentationHarmful and Useful Microorganisms Presentation
Harmful and Useful Microorganisms Presentationtahreemzahra82
 
Pests of soyabean_Binomics_IdentificationDr.UPR.pdf
Pests of soyabean_Binomics_IdentificationDr.UPR.pdfPests of soyabean_Binomics_IdentificationDr.UPR.pdf
Pests of soyabean_Binomics_IdentificationDr.UPR.pdfPirithiRaju
 
Vision and reflection on Mining Software Repositories research in 2024
Vision and reflection on Mining Software Repositories research in 2024Vision and reflection on Mining Software Repositories research in 2024
Vision and reflection on Mining Software Repositories research in 2024AyushiRastogi48
 

Dernier (20)

Call Girls In Nihal Vihar Delhi ❤️8860477959 Looking Escorts In 24/7 Delhi NCR
Call Girls In Nihal Vihar Delhi ❤️8860477959 Looking Escorts In 24/7 Delhi NCRCall Girls In Nihal Vihar Delhi ❤️8860477959 Looking Escorts In 24/7 Delhi NCR
Call Girls In Nihal Vihar Delhi ❤️8860477959 Looking Escorts In 24/7 Delhi NCR
 
Volatile Oils Pharmacognosy And Phytochemistry -I
Volatile Oils Pharmacognosy And Phytochemistry -IVolatile Oils Pharmacognosy And Phytochemistry -I
Volatile Oils Pharmacognosy And Phytochemistry -I
 
REVISTA DE BIOLOGIA E CIÊNCIAS DA TERRA ISSN 1519-5228 - Artigo_Bioterra_V24_...
REVISTA DE BIOLOGIA E CIÊNCIAS DA TERRA ISSN 1519-5228 - Artigo_Bioterra_V24_...REVISTA DE BIOLOGIA E CIÊNCIAS DA TERRA ISSN 1519-5228 - Artigo_Bioterra_V24_...
REVISTA DE BIOLOGIA E CIÊNCIAS DA TERRA ISSN 1519-5228 - Artigo_Bioterra_V24_...
 
User Guide: Magellan MX™ Weather Station
User Guide: Magellan MX™ Weather StationUser Guide: Magellan MX™ Weather Station
User Guide: Magellan MX™ Weather Station
 
User Guide: Capricorn FLX™ Weather Station
User Guide: Capricorn FLX™ Weather StationUser Guide: Capricorn FLX™ Weather Station
User Guide: Capricorn FLX™ Weather Station
 
ECG Graph Monitoring with AD8232 ECG Sensor & Arduino.pptx
ECG Graph Monitoring with AD8232 ECG Sensor & Arduino.pptxECG Graph Monitoring with AD8232 ECG Sensor & Arduino.pptx
ECG Graph Monitoring with AD8232 ECG Sensor & Arduino.pptx
 
User Guide: Pulsar™ Weather Station (Columbia Weather Systems)
User Guide: Pulsar™ Weather Station (Columbia Weather Systems)User Guide: Pulsar™ Weather Station (Columbia Weather Systems)
User Guide: Pulsar™ Weather Station (Columbia Weather Systems)
 
LIGHT-PHENOMENA-BY-CABUALDIONALDOPANOGANCADIENTE-CONDEZA (1).pptx
LIGHT-PHENOMENA-BY-CABUALDIONALDOPANOGANCADIENTE-CONDEZA (1).pptxLIGHT-PHENOMENA-BY-CABUALDIONALDOPANOGANCADIENTE-CONDEZA (1).pptx
LIGHT-PHENOMENA-BY-CABUALDIONALDOPANOGANCADIENTE-CONDEZA (1).pptx
 
Pests of safflower_Binomics_Identification_Dr.UPR.pdf
Pests of safflower_Binomics_Identification_Dr.UPR.pdfPests of safflower_Binomics_Identification_Dr.UPR.pdf
Pests of safflower_Binomics_Identification_Dr.UPR.pdf
 
Citronella presentation SlideShare mani upadhyay
Citronella presentation SlideShare mani upadhyayCitronella presentation SlideShare mani upadhyay
Citronella presentation SlideShare mani upadhyay
 
Pests of Bengal gram_Identification_Dr.UPR.pdf
Pests of Bengal gram_Identification_Dr.UPR.pdfPests of Bengal gram_Identification_Dr.UPR.pdf
Pests of Bengal gram_Identification_Dr.UPR.pdf
 
Pests of jatropha_Bionomics_identification_Dr.UPR.pdf
Pests of jatropha_Bionomics_identification_Dr.UPR.pdfPests of jatropha_Bionomics_identification_Dr.UPR.pdf
Pests of jatropha_Bionomics_identification_Dr.UPR.pdf
 
Behavioral Disorder: Schizophrenia & it's Case Study.pdf
Behavioral Disorder: Schizophrenia & it's Case Study.pdfBehavioral Disorder: Schizophrenia & it's Case Study.pdf
Behavioral Disorder: Schizophrenia & it's Case Study.pdf
 
BIOETHICS IN RECOMBINANT DNA TECHNOLOGY.
BIOETHICS IN RECOMBINANT DNA TECHNOLOGY.BIOETHICS IN RECOMBINANT DNA TECHNOLOGY.
BIOETHICS IN RECOMBINANT DNA TECHNOLOGY.
 
Environmental Biotechnology Topic:- Microbial Biosensor
Environmental Biotechnology Topic:- Microbial BiosensorEnvironmental Biotechnology Topic:- Microbial Biosensor
Environmental Biotechnology Topic:- Microbial Biosensor
 
(9818099198) Call Girls In Noida Sector 14 (NOIDA ESCORTS)
(9818099198) Call Girls In Noida Sector 14 (NOIDA ESCORTS)(9818099198) Call Girls In Noida Sector 14 (NOIDA ESCORTS)
(9818099198) Call Girls In Noida Sector 14 (NOIDA ESCORTS)
 
preservation, maintanence and improvement of industrial organism.pptx
preservation, maintanence and improvement of industrial organism.pptxpreservation, maintanence and improvement of industrial organism.pptx
preservation, maintanence and improvement of industrial organism.pptx
 
Harmful and Useful Microorganisms Presentation
Harmful and Useful Microorganisms PresentationHarmful and Useful Microorganisms Presentation
Harmful and Useful Microorganisms Presentation
 
Pests of soyabean_Binomics_IdentificationDr.UPR.pdf
Pests of soyabean_Binomics_IdentificationDr.UPR.pdfPests of soyabean_Binomics_IdentificationDr.UPR.pdf
Pests of soyabean_Binomics_IdentificationDr.UPR.pdf
 
Vision and reflection on Mining Software Repositories research in 2024
Vision and reflection on Mining Software Repositories research in 2024Vision and reflection on Mining Software Repositories research in 2024
Vision and reflection on Mining Software Repositories research in 2024
 

motion

  • 1. CHAPTER - 8 MOTION CLASS :- IX MADE BY :- SHIVA PRASAD SCHOOL :- K.V. 2. SADRAS. KALPAKKAM
  • 2. 1) Describing motion :- i) Motion :- is the change in position of a body with time. Motion can be described in terms of the distance moved or the displacement. ii) Distance moved :- is the actual length of the path travelled by a body. iii) Displacement :- is the length of the shortest path travelled by a body from its initial position to its final position. Eg :- If a body starts moving in a straight line from origin O and moves through C and B and reaches A and then moves back and reaches C through B, then Distance travelled = 60 + 35 = 95 km Displacement = 25 km O C B A 0 5 10 15 20 25 30 35 40 45 50 55 60 km
  • 3. 2) Uniform motion and Non uniform motion :- i) Uniform motion :- If a body travels equal distances in equal intervals of time, it is said to be in uniform motion. ii) Non uniform motion :- If a body travels unequal distances in equal intervals of time, it is said to be in non uniform motion. iii) Speed :- of a body is the distance travelled by the body in unit time. Distance Speed = Time If a body travels a distance s in time t then its speed v is s v = t The SI unit of speed is metre per second m/s or ms -1 Since speed has only magnitude it is a scalar quantity. iv) Average speed :- is the ratio of the total distance travelled to the total time taken. Total distance travelled Average speed = Total time taken
  • 4. 3) Speed with direction :- The rate of motion of a body is more meaningful if we specify its direction of motion along with speed. The quantity which specifies both the direction of motion and speed is velocity. i) Velocity :- of a body is the displacement of the body per unit time. Displacement Velocity = Time taken Since velocity has both magnitude and direction, it is a vector quantity. ii) Average velocity :- is the ratio of the total displacement to the total time taken. Total displacement Average velocity = Total time taken Average velocity is also the mean of the initial velocity u and final velocity v. Initial velocity + Final velocity u + v Average velocity = vav = 2 2 Speed and velocity have the same units m/s or ms -1
  • 5. 4) Rate of change of velocity :- During uniform motion of a body in a straight line the velocity remains constant with time. In this case the change in velocity at any time interval is zero ( no change in velocity). During non uniform motion the velocity changes with time. In this case the change in velocity at any time interval is not zero. It may be positive (+ ve) or negative (- ve). The quantity which specifies changes in velocity is acceleration. Acceleration :- is the change in velocity of a body per unit time.( or the rate of change of velocity.) Change in velocity Acceleration = Time If the velocity of a body changes from initial value u to final value v in time t, then acceleration a is v - u a = t The SI unit of acceleration is ms - 2 Uniform acceleration :- If the change in velocity is equal in equal intervals of time it is uniform acceleration. Non uniform acceleration :- If the change in velocity is unequal in equal intervals of time it is non uniform acceleration.
  • 6. 5) Graphical representation of motion :- a) Distance – Time graphs :- The change in the position of a body with time can be represented on the distance time graph. In this graph distance is taken on the y – axis and time is taken on the x – axis. i) The distance time graph for uniform speed is a straight line ( linear ). This is because in uniform speed a body travels equal distances in equal intervals of time. We can determine the speed of the body from the distance – time graph. For the speed of the body between the points A and B, distance is (s2 – s1) and time is (t2 – t1). s (s2 – s1) v = ---- v = ----------- t (t2 – t1) 20 – 10 10 = --------- = ---- 10 – 5 5 = 2 ms -1 A B 10 20 30 t1 t2 s1 s2 C Time (s) Distance(m) X Y 5 10 15 20 Distance – time graph for a body moving with uniform speed 0
  • 7. ii) The distance – time graph for non uniform motion is non linear. This is because in non uniform speed a body travels unequal distances in equal intervals of time. 20 40 Time (s) Distance(m) X 10 30 50 10 15 20 Distance – time graph for a body moving with non uniform speed Y
  • 8. b) Velocity – time graphs :- The change in the velocity of a body with time can be represented on the velocity time graph. In this graph velocity is taken on the y – axis and time is taken on the x – axis. i) If a body moves with uniform velocity, the graph will be a straight line parallel to the x – axis . This is because the velocity does not change with time. To determine the distance travelled by the body between the points A and B with velocity 20 km h-1 s v = --- t s = v x t v = 20 km h-1 = AC or BD t = t2 – t1 = DC = AC (t2 – t1) s = AC X CD s = area of the rectangle ABDC 20 40 Time (s) Velocity(kmh-1 ) X 10 30 50 10 15 20 t1 t2 A B C D Velocity – time graph for a body moving with uniform velocity Y
  • 9. ii) If a body whose velocity is increasing with time, the graph is a straight line having an increasing slope. This is because the velocity increases by equal amounts with equal intervals of time. The area under the velocity – time graph is the distance (magnitude of displacement) of the body. The distance travelled by a body between the points A and E is the area ABCDE under the velocity – time graph. s = area ABCDE = area of rectangle ABCD + area of triangle ADE 1 s = AB X BC + --- ( AD X DE ) 2 A B 10 20 30 t1 t2 C Time (s) Velocity(ms-1 ) X Y 10 20 30 40 Velocity – time graph for a body moving with uniform acceleration D E 0
  • 10. iii) If a body whose velocity is decreasing with time, the graph is a straight line having an decreasing slope. This is because the velocity decreases by equal amounts with equal intervals of time. iv) If a body whose velocity is non uniform, the graph shows different variations. This is because the velocity changes by unequal amounts in equal intervals of time. 20 40 Time (s) Velocity(ms-1 ) X 10 30 50 10 15 20 20 40 Time (s) Velocity(ms-1 ) X 10 30 50 10 15 20 Velocity – time graph for a uniformly decelerated motion Velocity – time graph for non uniform acceleration Y Y
  • 11. 6) Equations of motions by graphical method :- The motion of a body moving with uniform acceleration can be described with the help of three equations called equations of motion. The equations of motion are :- i) v = u + at ii) s = ut + ½ at2 iii) 2as = v2 – u2 where u - is the initial velocity v - is the final velocity a - is acceleration t - is the time s - is the distance traveled
  • 12. a) Equation for velocity – time relation ( v = u + at ) :- Consider a velocity – time graph for a body moving with uniform acceleration ‘a’. The initial velocity is u at A and final velocity is v at B in time t. Perpendicular lines BC and BE are drawn from point B to the time and velocity axes so that the initial velocity is OA and final velocity is BC and time interval is OC. Draw AD parallel to OC. We observe that BC = BD + DC = BD + OA Substituting BC = v and OA = u We get v = BD + u or BD = v - u Change in velocity Acceleration = --------------------------- Time BD BD v - u a = ----- = ----- or a = --------- AD OC t v – u = at or v = u + at Time (s) Velocity(ms-1 ) XO Velocity – time graph for a uniformly accelerated motion Y t u v A B C D E
  • 13. b) Equation for position – time relation (s = ut + ½ at2 ) :- Consider a velocity – time graph for a body moving with uniform acceleration ‘a’ travelled a distance s in time t. The distance traveled by the body between the points A and B is the area OABC. s = area OABC ( which is a trapezium ) = area of rectangle OABC + area of triangle ABD 1 = OA X OC + --- ( AD X BD ) 2 Substituting OA = u, OC = AD = t, BD = v – u = at We get 1 s = u x t + -- ( t x at ) 2 or s = ut + ½ at2 Time (s) Velocity(ms-1 ) O Velocity – time graph for a uniformly accelerated motion t u v A B C D E
  • 14. c) Equation for position – velocity relation (2as = v2 –u2 ) :- Consider a velocity – time graph for a body moving with uniform acceleration ‘a’ travelled a distance s in time t. The distance travelled by the body between the points A and B is the area OABC. s = area of trapezium OABC (OA + BC) X OC s = ---------------------- 2 Substituting OA = u, BC = v and OC = t ( u + v ) X t We get s = ----------------- 2 From velocity – time relation ( v – u ) t = ----------- a ( v + u ) X ( v – u ) s = ----------------------- or 2as = v2 – u 2 2a Time (s) Velocity(ms-1 ) O Velocity – time graph for a uniformly accelerated motion t u v A B C D E
  • 15. 7) Circular motion :- The motion of a body in a circular path is called circular motion. Uniform circular motion :- If a body moves in a circular path with uniform speed, its motion is called uniform circular motion. Uniform circular motion is accelerated motion because in a circular motion a body continuously changes its direction. The circumference of a circle of radius r is given by 2лr. If a body takes time t to go once around the circular path, then the velocity v is given by 2лr v = ---- t