SlideShare une entreprise Scribd logo
1  sur  20
GRAVITATION
Gravitation, Universal Law of Gravitation, Kepler Laws of Planetary
Motion, Free Fall, Acceleration due to Gravity, Mass and Weight.
Topics to be covered
Efforts By - Yuvraj Ghaly
TGT Science Faculty
Bhavan Vidyalaya,
Panchkula
● Indian Astrologer and Mathematician, Aryabhatta studied motions of planets. He
stated Earth revolves about its own axis and moves in a circular orbit around the sun.
● Ptolemy ( 100-170 BC) explains geocentric nature of universe. Earth is the centre of
universe and sun, planets and other celestial objects revolves around it.
● Copernicus (1473-1543) disproves the geocentric nature but come up with heliocentric
nature of universe in which Sun is the centre and Earth with other planets revolves
around it.
● Galileo verified the copernicus idea about universe later after his persecution.
● Tycho Brahe (1546-1601) gave accurate predictions of stars and planets location.
● Johannes Kepler gave 3 laws of planetary motion called Kepler’s law of planetary
motion.
● Newton gave law of gravitation based on 3rd Kepler law, popularly called Universal
Law of Gravitation.
GRAVITATION
● Newton stated that there is force that causes the
acceleration and keeps the body along the circular
path, is acting towards the centre. This force is
called CENTRIPETAL FORCE.
GRAVITATION
●The motion of celestial bodies such as moon, earth,
planets etc. and attraction of moon towards earth and
earth towards sun is an interesting subject of study
since long time.
●All the bodies in the universe, there is a force exists between them. This force of
attraction between objects is called GRAVITATIONAL FORCE.
● The gravitational force is a central force that is It acts along the line joining the centers of
two bodies.
●It is a long range force. The gravitational force is effective even at large distances.
●It is a conservative force. This means that the work done by the gravitational force in
displacing a body from one point to another is only dependent on the initial and final
positions of the body and is independent of the path followed.
●Unlike electrostatic and magnetic forces, the gravitational force is always attractive.
Characteristics of Gravitational Force
“Every objects in the universe attracts every other object with a force
(a) proportional to the product of their masses.
F 𝞪 M1M2
(a) inversely proportional to the square of the distance between them.
F 𝞪 1/d2
F 𝞪 M1M2
--------
d2
F = G M1M2
--------
d2
Where G is the constant called Universal Gravitational Constant
G = 6.7 x 10-11 Nm2/kg2 (measured experimentally by Henry Cavendish)
UNIVERSAL LAW OF GRAVITATION
● Determine the force of gravitational attraction
between the earth (m = 5.98 x 1024 kg) and a 70-
kg physics student if the student is standing at
sea level, a distance of 6.38 x 106 m from earth's
center.
m1 = 5.98 x 1024 kg
m2 = 70 kg
d = 6.38 x 106 m
F = G M1M2
--------
d2
F = 6.7 x 10-11 x 5.98 x 1024 x 70
----------------------------
(6.38 x 106 )2
F= 686 N
NUMERICAL PRACTICE
● Determine the force of gravitational attraction
between the earth (m = 5.98 x 1024 kg) and a
70-kg physics student if the student is in an
airplane at 40000 feet above earth's surface.
This would place the student a distance of
6.39 x 106 m from earth's center.
m1 = 5.98 x 1024 kg
m2 = 70 kg
d = 6.39 x 106 m
F = G M1M2
--------
d2
F = 6.7 x 10-11 x 5.98 x 1024 x 70
----------------------------
(6.39 x 106 )2
F = 684 N
IMPORTANCE OF UNIVERSAL LAW OF GRAVITATION
Kepler's three laws emerged from the analysis of data carefully collected over a span of
several years by his Danish predecessor and teacher, Tycho Brahe. Kepler's three laws of
planetary motion can be briefly described as follows:
● The paths of the planets about the sun are elliptical in shape, with the center of the
sun being located at one focus. (The Law of Ellipses)
● An imaginary line drawn from the center of the sun to the center of the planet will
sweep out equal areas in equal intervals of time. (The Law of Equal Areas)
● The ratio of the squares of the periods of any two planets is equal to the ratio of the
cubes of their average distances from the sun. (The Law of Harmonies)
Kepler’s Law of Planetary Motion
CAVENDISH EXPERIMENT FOR ‘G’ VALUE
APPARATUS SET UP:
● A light, rigid rod about 2-feet long.
● Two small lead spheres were attached to the ends of the rod
● The rod was suspended by a thin wire.
PRINCIPLE: When the rod becomes twisted, the tension of the wire begins to exert
a force that is proportional to the angle of rotation of the rod. The more twist of the
wire, the more the system pushes backwards to restore itself towards the original
position.
PROCEDURE:
● Cavendish then brought two large lead spheres near the smaller spheres
attached to the rod. Since all masses attract, the large spheres exerted a
gravitational force upon the smaller spheres and twisted the rod a measurable
amount. Once the torsional force balanced the gravitational force, the rod and
spheres came to rest and Cavendish was able to determine the gravitational
force of attraction between the masses.
● By measuring m1, m2, d and Fgrav, the value of G could be determined.
Cavendish's measurements resulted in an experimentally determined value of
6.75 x 10-11 N m2/kg2. Today, the currently accepted value is 6.67259 x 10-11 N
m2/kg2.
https://www.physicsclassroom.com/Physics-Interactives/Circular-and-Satellite-Motion/Gravitational-Fields
● A free falling object is an object that is
falling under the sole influence of gravity.
Any object that is being acted upon only by
the force of gravity is said to be in a state of
free fall.
● Aristotle once said ,” “The heavier a body
the faster it falls”. It was disproved by
Galileo.
Free Fall
Feather Coin Experiment
Robert Boyle experimented by creating vacuum in a long glass tube and then allowed the feather
and the coins to fall simultaneously. He showed that both of them reached the bottom at the same
time.
Conclusion- acceleration produced in freely falling bodies is the same for all bodies irrespective of
their masses.
Acceleration due to Gravity
● The force of gravitation acting on the bodies called force of gravity due to earth.
● Whenever an object falls towards the earth, an acceleration is involved. This acceleration is
called acceleration due to gravity (g).
Consider a body on the surface of Earth of mass, m. Let M be the mass
of earth and R be the distance between the body and the centre of the
earth. Let F be the force acting on the body.
According to the law of gravitation,
F = G M m
---------- (1)
R2
According to the second law of motion,
F = m x a (2)
m x a = G M m
----------
R2
a = G M
----
-----
R2
g = G M
----
------ as a = g
acceleration due to gravity is a vector quantity. Its
value is 9.8 m/s2 or 10 m/s2
Calculation of Acceleration Due to Gravity
g = G M
--------
--
R2
g = 6.7 x 10-11
x 6 x 1024
------------
-----------
(6.4 x 106)2
g = 6.7 x 6 x
10 -11+24
------------
-----------
6.4 x
6.4 x 1012
g = 40.2 x 10
/40.96
g = 0.981 x 101
g = 9.81 m/s2
acceleration due to gravity is 9.83 m/s2 at the poles and 9.78 m/s2 at the equator.
Variation of ‘g’ due to height
g’ =
- 2h) x g
----
R
Variation of ‘g’ due to depth
g’ =
(1- d) x g
----
R
Escape Velocity and Orbital Velocity
● Maximum vertical velocity required to take satellite just outside the earth’s gravitational field
is called escape velocity.
● Horizontal velocity imparted to the satellite so that it orbits around the earth in a stable
circular orbit with constant velocity is called orbital velocity.
Escape Velocity of a certain height = √2 orbital velocity
Practice Time
Ques: The orbital velocity of certain height is 28800 km per hour. How much is the escape velocity
off the same the height?
[40729 km/h]
Escape Velocity of a certain height = √2 orbital velocity
V = √2 x 28800 = 40723 km/h
Ques: What is the radius of the moon if its gravity is 1/6th of the earth. The mass of the moon is 7.35
x 1022 kg.
[1.73 x 105 m]
g = GM/R2
9.8 X ⅙ = 6.6 X 10-11 X 7.35 X 1022/ R2
1.63 = 4.245 X 1011 /R2
R2 = 30.156 X 1011
R = √30.156 X 1011
R = 1.73 X 1011 m
Equations of Motion for freely falling objects
Practice Time
Ques: An object is thrown vertically upwards and rises to a height of 18 m. Calculate the velocity
with which the object was thrown upwards? Take g=9.8 m/s2?
[14 m/s]
(0)2 = u2 + 2 x (-9.8) x 18
-u2 = - 352.8
u = 18.78 m/s
Ques: What is the time period of the stone to reach the maximum height of 250 m from the ground?
Take g = 10 m/s2
h = ut + ½ gt2
250 = 0 + ½ x 10 x t2
250/5 = t2
√50 = t
7.07 s = t
V2-U2 = 2gh
{o}2 - u2 = 2gh
u2 = 2 x 10 x 250
u2 = 5000
u = √5000
u = 70.7 m/s
v = u + gt
0 = 70.7 + 10 x t
70.7/10 = t
7.07 = t
Mass and Weight
S.NO MASS WEIGHT
1 Matter contained in a body Force by which Earth pulls objects towards its
centre.
2 Scalar Quantity Vector Quantity
3 Constant and cannot be zero Variable and can be zero
4 S.I. unit is kilogram (kg) S.I. unit is Newton (N)
Practice Time
Q: A man weight is 1200N on the Earth. What is is mass? (take g=10m/s2). If he were to taken to moon, his weight
would be 200N. What is his mass? what is the acceleration due to gravity on the moon?
F = 1200 N
WEIGHT = FORCE =mg
1200 = m x
10
1200/10 = m
120 kg = m
F = 200 N
WEIGHT = FORCE =mg
200 = 120 x
g
200/120 = g
1.67 m/s2 =
Practice Time
Q: A person of mass 70 kg weighs himself on a weighing machine first on Earth and then on a planet where
acceleration due to gravity is ½ that of the earth. Calculate the reading of the weight on the weighing machine.
Take g = 9.8 m/s2?
Weight of person on Earth
WEIGHT = FORCE =mg
W = 70 x 9.8
W = 686 N
Weight of person on the planet
WEIGHT = ½ Weight on Earth
= ½ x 686
= 343 N
Q: How far should a man go away from the centre of the Earth such that his weight is ¼th the earth? Radius of
earth is 6400 km.
weight on surface = force of gravity of earth = g = GM/R2
Weight = GM/R2
Weight on certain height = W/4
W/4 = GM/R’2
W/4 = GM/R’2
------ -------------
W GM/R2
W/4 = 1/R’2
------
-------------
W
1/R2
1 = R2
------
-----
4
R’2
R’2 = 4 x (6400)2
R’ = √4 x 6400
x6400
R’ = 2 x 6400
R’ = 12800 km

Contenu connexe

Tendances

6.2 newtons law of gravitation
6.2 newtons law of gravitation6.2 newtons law of gravitation
6.2 newtons law of gravitationPaula Mills
 
Our universe (stars & solar system) class 8
Our universe (stars & solar system) class 8Our universe (stars & solar system) class 8
Our universe (stars & solar system) class 8Ravi Prakash
 
Physics class 9
Physics class 9Physics class 9
Physics class 9Anam Khan
 
Gravitation
GravitationGravitation
GravitationAnuraj K
 
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
 
Forces and Laws of Motion class 9
Forces and Laws of Motion class 9Forces and Laws of Motion class 9
Forces and Laws of Motion class 9Sanaa Sial
 
Gravitation (Class XI Brief)
Gravitation (Class XI Brief)Gravitation (Class XI Brief)
Gravitation (Class XI Brief)Aryavarta Giri
 
motion class 9 physics
 motion class 9 physics motion class 9 physics
motion class 9 physicsshashankgarg57
 
Newton's law of gravitation
Newton's law of gravitationNewton's law of gravitation
Newton's law of gravitationitutor
 
Physics Project On Physical World, Units and Measurement
Physics Project On Physical World, Units and MeasurementPhysics Project On Physical World, Units and Measurement
Physics Project On Physical World, Units and MeasurementSamiran Ghosh
 
Gravitation class 9
Gravitation class 9 Gravitation class 9
Gravitation class 9 PranaviVerma
 

Tendances (20)

Class 9 gravitation
Class 9 gravitationClass 9 gravitation
Class 9 gravitation
 
6.2 newtons law of gravitation
6.2 newtons law of gravitation6.2 newtons law of gravitation
6.2 newtons law of gravitation
 
Our universe (stars & solar system) class 8
Our universe (stars & solar system) class 8Our universe (stars & solar system) class 8
Our universe (stars & solar system) class 8
 
Gravitation
GravitationGravitation
Gravitation
 
Physics class 9
Physics class 9Physics class 9
Physics class 9
 
Gravitation
GravitationGravitation
Gravitation
 
Force and laws of motion
Force and laws of motion Force and laws of motion
Force and laws of motion
 
Gravitation
Gravitation Gravitation
Gravitation
 
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
 
gravitation
gravitationgravitation
gravitation
 
Forces and Laws of Motion class 9
Forces and Laws of Motion class 9Forces and Laws of Motion class 9
Forces and Laws of Motion class 9
 
Gravitation (Class XI Brief)
Gravitation (Class XI Brief)Gravitation (Class XI Brief)
Gravitation (Class XI Brief)
 
motion class 9 physics
 motion class 9 physics motion class 9 physics
motion class 9 physics
 
Newton's law of gravitation
Newton's law of gravitationNewton's law of gravitation
Newton's law of gravitation
 
IGCSE PHYSICS:Measurement
IGCSE PHYSICS:MeasurementIGCSE PHYSICS:Measurement
IGCSE PHYSICS:Measurement
 
gravitation class 9
gravitation class 9gravitation class 9
gravitation class 9
 
Physics Project On Physical World, Units and Measurement
Physics Project On Physical World, Units and MeasurementPhysics Project On Physical World, Units and Measurement
Physics Project On Physical World, Units and Measurement
 
Gravitation class 9
Gravitation class 9 Gravitation class 9
Gravitation class 9
 
Gravitation
GravitationGravitation
Gravitation
 
GRAVITY
GRAVITYGRAVITY
GRAVITY
 

Similaire à Class 9 gravitation

Newton's Law of Universal Gravitation
Newton's Law of Universal Gravitation Newton's Law of Universal Gravitation
Newton's Law of Universal Gravitation akshat saxena
 
Law of Universal Gvvdvxcvvfravitation.pptx
Law of Universal Gvvdvxcvvfravitation.pptxLaw of Universal Gvvdvxcvvfravitation.pptx
Law of Universal Gvvdvxcvvfravitation.pptxhamda100
 
Law Of Gravitation PPT For All The Students | With Modern Animations and Info...
Law Of Gravitation PPT For All The Students | With Modern Animations and Info...Law Of Gravitation PPT For All The Students | With Modern Animations and Info...
Law Of Gravitation PPT For All The Students | With Modern Animations and Info...Jay Butani
 
GRAVITATION.ppt
GRAVITATION.pptGRAVITATION.ppt
GRAVITATION.pptSabhya5
 
Gravitation
GravitationGravitation
Gravitationohmed
 
fdocuments.in_chapter-10-gravitation.ppt
fdocuments.in_chapter-10-gravitation.pptfdocuments.in_chapter-10-gravitation.ppt
fdocuments.in_chapter-10-gravitation.pptAarthiRamesh12
 
orbital velocity of satellite unit 5 new.pptx
orbital velocity of satellite unit 5 new.pptxorbital velocity of satellite unit 5 new.pptx
orbital velocity of satellite unit 5 new.pptxAdeelaMahtab
 
batki phys project.docx
batki phys project.docxbatki phys project.docx
batki phys project.docxKapilPooniya
 
Gravity origin & evolution
Gravity origin & evolutionGravity origin & evolution
Gravity origin & evolutiondsvthampi
 
Phys111_lecture13.ppt
Phys111_lecture13.pptPhys111_lecture13.ppt
Phys111_lecture13.pptAnshulNayak6
 
Physics chapter 7.3 and 8
Physics chapter 7.3 and 8Physics chapter 7.3 and 8
Physics chapter 7.3 and 8shaffelder
 

Similaire à Class 9 gravitation (20)

Newton's Law of Universal Gravitation
Newton's Law of Universal Gravitation Newton's Law of Universal Gravitation
Newton's Law of Universal Gravitation
 
Gravitation.pptx
Gravitation.pptxGravitation.pptx
Gravitation.pptx
 
lecture5
lecture5lecture5
lecture5
 
Chapter 11 GRAVITATION
Chapter  11 GRAVITATIONChapter  11 GRAVITATION
Chapter 11 GRAVITATION
 
Law of Universal Gvvdvxcvvfravitation.pptx
Law of Universal Gvvdvxcvvfravitation.pptxLaw of Universal Gvvdvxcvvfravitation.pptx
Law of Universal Gvvdvxcvvfravitation.pptx
 
Ch-10 GRAVITATION.pptx
Ch-10 GRAVITATION.pptxCh-10 GRAVITATION.pptx
Ch-10 GRAVITATION.pptx
 
Law Of Gravitation PPT For All The Students | With Modern Animations and Info...
Law Of Gravitation PPT For All The Students | With Modern Animations and Info...Law Of Gravitation PPT For All The Students | With Modern Animations and Info...
Law Of Gravitation PPT For All The Students | With Modern Animations and Info...
 
GRAVITATION.ppt
GRAVITATION.pptGRAVITATION.ppt
GRAVITATION.ppt
 
Gravitation
GravitationGravitation
Gravitation
 
fdocuments.in_chapter-10-gravitation.ppt
fdocuments.in_chapter-10-gravitation.pptfdocuments.in_chapter-10-gravitation.ppt
fdocuments.in_chapter-10-gravitation.ppt
 
1.4.1 gravity again
1.4.1   gravity again1.4.1   gravity again
1.4.1 gravity again
 
orbital velocity of satellite unit 5 new.pptx
orbital velocity of satellite unit 5 new.pptxorbital velocity of satellite unit 5 new.pptx
orbital velocity of satellite unit 5 new.pptx
 
batki phys project.docx
batki phys project.docxbatki phys project.docx
batki phys project.docx
 
Gravity origin & evolution
Gravity origin & evolutionGravity origin & evolution
Gravity origin & evolution
 
Gravitation
GravitationGravitation
Gravitation
 
Gravity 2
Gravity 2Gravity 2
Gravity 2
 
Chap8
Chap8Chap8
Chap8
 
Phys111_lecture13.ppt
Phys111_lecture13.pptPhys111_lecture13.ppt
Phys111_lecture13.ppt
 
Physics chapter 7.3 and 8
Physics chapter 7.3 and 8Physics chapter 7.3 and 8
Physics chapter 7.3 and 8
 
08 gravitation
08   gravitation08   gravitation
08 gravitation
 

Plus de BHAVAN VIDYALAYA, PANCHKULA (6)

Is matter around us pure slideshare
Is matter around us pure  slideshareIs matter around us pure  slideshare
Is matter around us pure slideshare
 
Class 9 structure of atom
Class 9 structure of atomClass 9 structure of atom
Class 9 structure of atom
 
Class 9 fundamental unit of life
Class 9 fundamental unit of lifeClass 9 fundamental unit of life
Class 9 fundamental unit of life
 
Matter in our surroundings
Matter in our surroundingsMatter in our surroundings
Matter in our surroundings
 
Electricity
ElectricityElectricity
Electricity
 
Motion Class 9th
Motion Class 9thMotion Class 9th
Motion Class 9th
 

Dernier

Unit-V; Pricing (Pharma Marketing Management).pptx
Unit-V; Pricing (Pharma Marketing Management).pptxUnit-V; Pricing (Pharma Marketing Management).pptx
Unit-V; Pricing (Pharma Marketing Management).pptxVishalSingh1417
 
The basics of sentences session 2pptx copy.pptx
The basics of sentences session 2pptx copy.pptxThe basics of sentences session 2pptx copy.pptx
The basics of sentences session 2pptx copy.pptxheathfieldcps1
 
Gardella_Mateo_IntellectualProperty.pdf.
Gardella_Mateo_IntellectualProperty.pdf.Gardella_Mateo_IntellectualProperty.pdf.
Gardella_Mateo_IntellectualProperty.pdf.MateoGardella
 
Seal of Good Local Governance (SGLG) 2024Final.pptx
Seal of Good Local Governance (SGLG) 2024Final.pptxSeal of Good Local Governance (SGLG) 2024Final.pptx
Seal of Good Local Governance (SGLG) 2024Final.pptxnegromaestrong
 
microwave assisted reaction. General introduction
microwave assisted reaction. General introductionmicrowave assisted reaction. General introduction
microwave assisted reaction. General introductionMaksud Ahmed
 
Holdier Curriculum Vitae (April 2024).pdf
Holdier Curriculum Vitae (April 2024).pdfHoldier Curriculum Vitae (April 2024).pdf
Holdier Curriculum Vitae (April 2024).pdfagholdier
 
Measures of Central Tendency: Mean, Median and Mode
Measures of Central Tendency: Mean, Median and ModeMeasures of Central Tendency: Mean, Median and Mode
Measures of Central Tendency: Mean, Median and ModeThiyagu K
 
Introduction to Nonprofit Accounting: The Basics
Introduction to Nonprofit Accounting: The BasicsIntroduction to Nonprofit Accounting: The Basics
Introduction to Nonprofit Accounting: The BasicsTechSoup
 
Activity 01 - Artificial Culture (1).pdf
Activity 01 - Artificial Culture (1).pdfActivity 01 - Artificial Culture (1).pdf
Activity 01 - Artificial Culture (1).pdfciinovamais
 
Unit-IV- Pharma. Marketing Channels.pptx
Unit-IV- Pharma. Marketing Channels.pptxUnit-IV- Pharma. Marketing Channels.pptx
Unit-IV- Pharma. Marketing Channels.pptxVishalSingh1417
 
Paris 2024 Olympic Geographies - an activity
Paris 2024 Olympic Geographies - an activityParis 2024 Olympic Geographies - an activity
Paris 2024 Olympic Geographies - an activityGeoBlogs
 
APM Welcome, APM North West Network Conference, Synergies Across Sectors
APM Welcome, APM North West Network Conference, Synergies Across SectorsAPM Welcome, APM North West Network Conference, Synergies Across Sectors
APM Welcome, APM North West Network Conference, Synergies Across SectorsAssociation for Project Management
 
Sports & Fitness Value Added Course FY..
Sports & Fitness Value Added Course FY..Sports & Fitness Value Added Course FY..
Sports & Fitness Value Added Course FY..Disha Kariya
 
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...christianmathematics
 
PROCESS RECORDING FORMAT.docx
PROCESS      RECORDING        FORMAT.docxPROCESS      RECORDING        FORMAT.docx
PROCESS RECORDING FORMAT.docxPoojaSen20
 
Application orientated numerical on hev.ppt
Application orientated numerical on hev.pptApplication orientated numerical on hev.ppt
Application orientated numerical on hev.pptRamjanShidvankar
 
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptxSOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptxiammrhaywood
 
This PowerPoint helps students to consider the concept of infinity.
This PowerPoint helps students to consider the concept of infinity.This PowerPoint helps students to consider the concept of infinity.
This PowerPoint helps students to consider the concept of infinity.christianmathematics
 

Dernier (20)

Unit-V; Pricing (Pharma Marketing Management).pptx
Unit-V; Pricing (Pharma Marketing Management).pptxUnit-V; Pricing (Pharma Marketing Management).pptx
Unit-V; Pricing (Pharma Marketing Management).pptx
 
The basics of sentences session 2pptx copy.pptx
The basics of sentences session 2pptx copy.pptxThe basics of sentences session 2pptx copy.pptx
The basics of sentences session 2pptx copy.pptx
 
Gardella_Mateo_IntellectualProperty.pdf.
Gardella_Mateo_IntellectualProperty.pdf.Gardella_Mateo_IntellectualProperty.pdf.
Gardella_Mateo_IntellectualProperty.pdf.
 
Seal of Good Local Governance (SGLG) 2024Final.pptx
Seal of Good Local Governance (SGLG) 2024Final.pptxSeal of Good Local Governance (SGLG) 2024Final.pptx
Seal of Good Local Governance (SGLG) 2024Final.pptx
 
microwave assisted reaction. General introduction
microwave assisted reaction. General introductionmicrowave assisted reaction. General introduction
microwave assisted reaction. General introduction
 
Holdier Curriculum Vitae (April 2024).pdf
Holdier Curriculum Vitae (April 2024).pdfHoldier Curriculum Vitae (April 2024).pdf
Holdier Curriculum Vitae (April 2024).pdf
 
Measures of Central Tendency: Mean, Median and Mode
Measures of Central Tendency: Mean, Median and ModeMeasures of Central Tendency: Mean, Median and Mode
Measures of Central Tendency: Mean, Median and Mode
 
Introduction to Nonprofit Accounting: The Basics
Introduction to Nonprofit Accounting: The BasicsIntroduction to Nonprofit Accounting: The Basics
Introduction to Nonprofit Accounting: The Basics
 
INDIA QUIZ 2024 RLAC DELHI UNIVERSITY.pptx
INDIA QUIZ 2024 RLAC DELHI UNIVERSITY.pptxINDIA QUIZ 2024 RLAC DELHI UNIVERSITY.pptx
INDIA QUIZ 2024 RLAC DELHI UNIVERSITY.pptx
 
Activity 01 - Artificial Culture (1).pdf
Activity 01 - Artificial Culture (1).pdfActivity 01 - Artificial Culture (1).pdf
Activity 01 - Artificial Culture (1).pdf
 
Unit-IV- Pharma. Marketing Channels.pptx
Unit-IV- Pharma. Marketing Channels.pptxUnit-IV- Pharma. Marketing Channels.pptx
Unit-IV- Pharma. Marketing Channels.pptx
 
Paris 2024 Olympic Geographies - an activity
Paris 2024 Olympic Geographies - an activityParis 2024 Olympic Geographies - an activity
Paris 2024 Olympic Geographies - an activity
 
APM Welcome, APM North West Network Conference, Synergies Across Sectors
APM Welcome, APM North West Network Conference, Synergies Across SectorsAPM Welcome, APM North West Network Conference, Synergies Across Sectors
APM Welcome, APM North West Network Conference, Synergies Across Sectors
 
Sports & Fitness Value Added Course FY..
Sports & Fitness Value Added Course FY..Sports & Fitness Value Added Course FY..
Sports & Fitness Value Added Course FY..
 
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...
 
Código Creativo y Arte de Software | Unidad 1
Código Creativo y Arte de Software | Unidad 1Código Creativo y Arte de Software | Unidad 1
Código Creativo y Arte de Software | Unidad 1
 
PROCESS RECORDING FORMAT.docx
PROCESS      RECORDING        FORMAT.docxPROCESS      RECORDING        FORMAT.docx
PROCESS RECORDING FORMAT.docx
 
Application orientated numerical on hev.ppt
Application orientated numerical on hev.pptApplication orientated numerical on hev.ppt
Application orientated numerical on hev.ppt
 
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptxSOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
 
This PowerPoint helps students to consider the concept of infinity.
This PowerPoint helps students to consider the concept of infinity.This PowerPoint helps students to consider the concept of infinity.
This PowerPoint helps students to consider the concept of infinity.
 

Class 9 gravitation

  • 1. GRAVITATION Gravitation, Universal Law of Gravitation, Kepler Laws of Planetary Motion, Free Fall, Acceleration due to Gravity, Mass and Weight. Topics to be covered Efforts By - Yuvraj Ghaly TGT Science Faculty Bhavan Vidyalaya, Panchkula
  • 2. ● Indian Astrologer and Mathematician, Aryabhatta studied motions of planets. He stated Earth revolves about its own axis and moves in a circular orbit around the sun. ● Ptolemy ( 100-170 BC) explains geocentric nature of universe. Earth is the centre of universe and sun, planets and other celestial objects revolves around it. ● Copernicus (1473-1543) disproves the geocentric nature but come up with heliocentric nature of universe in which Sun is the centre and Earth with other planets revolves around it. ● Galileo verified the copernicus idea about universe later after his persecution. ● Tycho Brahe (1546-1601) gave accurate predictions of stars and planets location. ● Johannes Kepler gave 3 laws of planetary motion called Kepler’s law of planetary motion. ● Newton gave law of gravitation based on 3rd Kepler law, popularly called Universal Law of Gravitation. GRAVITATION
  • 3. ● Newton stated that there is force that causes the acceleration and keeps the body along the circular path, is acting towards the centre. This force is called CENTRIPETAL FORCE. GRAVITATION ●The motion of celestial bodies such as moon, earth, planets etc. and attraction of moon towards earth and earth towards sun is an interesting subject of study since long time. ●All the bodies in the universe, there is a force exists between them. This force of attraction between objects is called GRAVITATIONAL FORCE.
  • 4. ● The gravitational force is a central force that is It acts along the line joining the centers of two bodies. ●It is a long range force. The gravitational force is effective even at large distances. ●It is a conservative force. This means that the work done by the gravitational force in displacing a body from one point to another is only dependent on the initial and final positions of the body and is independent of the path followed. ●Unlike electrostatic and magnetic forces, the gravitational force is always attractive. Characteristics of Gravitational Force
  • 5. “Every objects in the universe attracts every other object with a force (a) proportional to the product of their masses. F 𝞪 M1M2 (a) inversely proportional to the square of the distance between them. F 𝞪 1/d2 F 𝞪 M1M2 -------- d2 F = G M1M2 -------- d2 Where G is the constant called Universal Gravitational Constant G = 6.7 x 10-11 Nm2/kg2 (measured experimentally by Henry Cavendish) UNIVERSAL LAW OF GRAVITATION
  • 6. ● Determine the force of gravitational attraction between the earth (m = 5.98 x 1024 kg) and a 70- kg physics student if the student is standing at sea level, a distance of 6.38 x 106 m from earth's center. m1 = 5.98 x 1024 kg m2 = 70 kg d = 6.38 x 106 m F = G M1M2 -------- d2 F = 6.7 x 10-11 x 5.98 x 1024 x 70 ---------------------------- (6.38 x 106 )2 F= 686 N NUMERICAL PRACTICE ● Determine the force of gravitational attraction between the earth (m = 5.98 x 1024 kg) and a 70-kg physics student if the student is in an airplane at 40000 feet above earth's surface. This would place the student a distance of 6.39 x 106 m from earth's center. m1 = 5.98 x 1024 kg m2 = 70 kg d = 6.39 x 106 m F = G M1M2 -------- d2 F = 6.7 x 10-11 x 5.98 x 1024 x 70 ---------------------------- (6.39 x 106 )2 F = 684 N
  • 7. IMPORTANCE OF UNIVERSAL LAW OF GRAVITATION
  • 8. Kepler's three laws emerged from the analysis of data carefully collected over a span of several years by his Danish predecessor and teacher, Tycho Brahe. Kepler's three laws of planetary motion can be briefly described as follows: ● The paths of the planets about the sun are elliptical in shape, with the center of the sun being located at one focus. (The Law of Ellipses) ● An imaginary line drawn from the center of the sun to the center of the planet will sweep out equal areas in equal intervals of time. (The Law of Equal Areas) ● The ratio of the squares of the periods of any two planets is equal to the ratio of the cubes of their average distances from the sun. (The Law of Harmonies) Kepler’s Law of Planetary Motion
  • 9. CAVENDISH EXPERIMENT FOR ‘G’ VALUE APPARATUS SET UP: ● A light, rigid rod about 2-feet long. ● Two small lead spheres were attached to the ends of the rod ● The rod was suspended by a thin wire. PRINCIPLE: When the rod becomes twisted, the tension of the wire begins to exert a force that is proportional to the angle of rotation of the rod. The more twist of the wire, the more the system pushes backwards to restore itself towards the original position. PROCEDURE: ● Cavendish then brought two large lead spheres near the smaller spheres attached to the rod. Since all masses attract, the large spheres exerted a gravitational force upon the smaller spheres and twisted the rod a measurable amount. Once the torsional force balanced the gravitational force, the rod and spheres came to rest and Cavendish was able to determine the gravitational force of attraction between the masses. ● By measuring m1, m2, d and Fgrav, the value of G could be determined. Cavendish's measurements resulted in an experimentally determined value of 6.75 x 10-11 N m2/kg2. Today, the currently accepted value is 6.67259 x 10-11 N m2/kg2. https://www.physicsclassroom.com/Physics-Interactives/Circular-and-Satellite-Motion/Gravitational-Fields
  • 10. ● A free falling object is an object that is falling under the sole influence of gravity. Any object that is being acted upon only by the force of gravity is said to be in a state of free fall. ● Aristotle once said ,” “The heavier a body the faster it falls”. It was disproved by Galileo. Free Fall
  • 11. Feather Coin Experiment Robert Boyle experimented by creating vacuum in a long glass tube and then allowed the feather and the coins to fall simultaneously. He showed that both of them reached the bottom at the same time. Conclusion- acceleration produced in freely falling bodies is the same for all bodies irrespective of their masses.
  • 12. Acceleration due to Gravity ● The force of gravitation acting on the bodies called force of gravity due to earth. ● Whenever an object falls towards the earth, an acceleration is involved. This acceleration is called acceleration due to gravity (g). Consider a body on the surface of Earth of mass, m. Let M be the mass of earth and R be the distance between the body and the centre of the earth. Let F be the force acting on the body. According to the law of gravitation, F = G M m ---------- (1) R2 According to the second law of motion, F = m x a (2) m x a = G M m ---------- R2 a = G M ---- ----- R2 g = G M ---- ------ as a = g acceleration due to gravity is a vector quantity. Its value is 9.8 m/s2 or 10 m/s2
  • 13. Calculation of Acceleration Due to Gravity g = G M -------- -- R2 g = 6.7 x 10-11 x 6 x 1024 ------------ ----------- (6.4 x 106)2 g = 6.7 x 6 x 10 -11+24 ------------ ----------- 6.4 x 6.4 x 1012 g = 40.2 x 10 /40.96 g = 0.981 x 101 g = 9.81 m/s2 acceleration due to gravity is 9.83 m/s2 at the poles and 9.78 m/s2 at the equator.
  • 14. Variation of ‘g’ due to height g’ = - 2h) x g ---- R Variation of ‘g’ due to depth g’ = (1- d) x g ---- R
  • 15. Escape Velocity and Orbital Velocity ● Maximum vertical velocity required to take satellite just outside the earth’s gravitational field is called escape velocity. ● Horizontal velocity imparted to the satellite so that it orbits around the earth in a stable circular orbit with constant velocity is called orbital velocity. Escape Velocity of a certain height = √2 orbital velocity
  • 16. Practice Time Ques: The orbital velocity of certain height is 28800 km per hour. How much is the escape velocity off the same the height? [40729 km/h] Escape Velocity of a certain height = √2 orbital velocity V = √2 x 28800 = 40723 km/h Ques: What is the radius of the moon if its gravity is 1/6th of the earth. The mass of the moon is 7.35 x 1022 kg. [1.73 x 105 m] g = GM/R2 9.8 X ⅙ = 6.6 X 10-11 X 7.35 X 1022/ R2 1.63 = 4.245 X 1011 /R2 R2 = 30.156 X 1011 R = √30.156 X 1011 R = 1.73 X 1011 m
  • 17. Equations of Motion for freely falling objects
  • 18. Practice Time Ques: An object is thrown vertically upwards and rises to a height of 18 m. Calculate the velocity with which the object was thrown upwards? Take g=9.8 m/s2? [14 m/s] (0)2 = u2 + 2 x (-9.8) x 18 -u2 = - 352.8 u = 18.78 m/s Ques: What is the time period of the stone to reach the maximum height of 250 m from the ground? Take g = 10 m/s2 h = ut + ½ gt2 250 = 0 + ½ x 10 x t2 250/5 = t2 √50 = t 7.07 s = t V2-U2 = 2gh {o}2 - u2 = 2gh u2 = 2 x 10 x 250 u2 = 5000 u = √5000 u = 70.7 m/s v = u + gt 0 = 70.7 + 10 x t 70.7/10 = t 7.07 = t
  • 19. Mass and Weight S.NO MASS WEIGHT 1 Matter contained in a body Force by which Earth pulls objects towards its centre. 2 Scalar Quantity Vector Quantity 3 Constant and cannot be zero Variable and can be zero 4 S.I. unit is kilogram (kg) S.I. unit is Newton (N) Practice Time Q: A man weight is 1200N on the Earth. What is is mass? (take g=10m/s2). If he were to taken to moon, his weight would be 200N. What is his mass? what is the acceleration due to gravity on the moon? F = 1200 N WEIGHT = FORCE =mg 1200 = m x 10 1200/10 = m 120 kg = m F = 200 N WEIGHT = FORCE =mg 200 = 120 x g 200/120 = g 1.67 m/s2 =
  • 20. Practice Time Q: A person of mass 70 kg weighs himself on a weighing machine first on Earth and then on a planet where acceleration due to gravity is ½ that of the earth. Calculate the reading of the weight on the weighing machine. Take g = 9.8 m/s2? Weight of person on Earth WEIGHT = FORCE =mg W = 70 x 9.8 W = 686 N Weight of person on the planet WEIGHT = ½ Weight on Earth = ½ x 686 = 343 N Q: How far should a man go away from the centre of the Earth such that his weight is ¼th the earth? Radius of earth is 6400 km. weight on surface = force of gravity of earth = g = GM/R2 Weight = GM/R2 Weight on certain height = W/4 W/4 = GM/R’2 W/4 = GM/R’2 ------ ------------- W GM/R2 W/4 = 1/R’2 ------ ------------- W 1/R2 1 = R2 ------ ----- 4 R’2 R’2 = 4 x (6400)2 R’ = √4 x 6400 x6400 R’ = 2 x 6400 R’ = 12800 km