SlideShare a Scribd company logo
1 of 6
KINEMATICS!
Introduction:
Welcome back! Hope you all are good. Today we are going to learn an important topic, that is kinematics. The big
question: what is kinematics? It is the study of speed, velocity, time and acceleration. We’ll study these quantities in
more detail in this tutorial.
Definition:
Okay so starting with speed and velocity, speed is defined as the distance travelled by an object in a given time, or
more simply as distance travelled per unit time. While on the other hand velocity is displacement per unit time. So
then, what is the difference between the two? The difference is the same as that between distance and displacement;
Speed is a scalar quantity while velocity is a vector. Now, what is scalar and what is vector? Well, scalar quantities
are those which have a magnitude only, while vector quantities have both a direction and a magnitude. Just to further
clear it out, consider a car going at a speed of 40 m/s. We are not told whether the car is going northwards, down the
hill or whatever. So what is 40m/s? It’s speed. A bit easier now?
How to calculate average speed?
Average speed can be calculated using the formula:
Average Speed = Total Distance Travelled / Total Time Taken
Q1. The distance b/w town A and town B is 25 km . A car travels from town A to town B and then returns to town A .
The total time taken is 5 hours. What was the average speed of the journey?
Uniform acceleration:
Acceleration is the rate of change of velocity. Simple as that!
Acceleration = (Final Velocity - Initial Velocity) / Time
Q2. A car starts from rest and travels in a straight path. It reaches a speed of 40 m/s in 8 seconds. What is it’s
acceleration, assuming that it accelerates uniformly?
If we know that the acceleration of an object is constant, we can find its average velocity by a different formula, which
is as follows:
Average Velocity = (Final Velocity + Initial Velocity) / 2
Also if an object is travelling with constant acceleration, then these equations of motions are applicable.
● 2as = v2
- u2
● s = ut + 1/2 at2
● v = u + at
● 2s = (v + u)t
Key:
a = acceleration , s = displacement, v = final velocity, u = initial velocity, t = time
These equations are very helpful in finding the unknown.
Non-uniform acceleration:
This form of acceleration changes with time. In such case, the equations of motions cannot be used.
Graphs:
Every situation that can be considered can be represented graphically. It helps us in various calculations and is easy
to interpret. In such graphs, time is always taken on the x-axis while distance on the y-axis.
Distance-Time Graphs:
Okay so here are the distance-time graphs of three objects in motion. As we know the gradient of distance-time
graph represents speed. Object A is moving with increasing speed a it’s gradient is increasing. Object B is moving
with uniform speed as it’s gradient is uniform. And similarly, as the gradient of C is decreasing, it’s moving with a
decreasing speed. Nothing too scientific, right?
Okay so moving on to the graph of a stationary object, it should be covering any distance, right? So that explains it
all! The graph of a stationary will look like this:
As we can see, the object is stuck on the same distance. Let’s say 40 m, and it’s on 40 m throughout. So it’s
stationary, not moving, at rest!
Speed-Time Graphs:
So here’s a speed-time graph for an object at rest:
Since the slope is equal to zero, there is no acceleration. And secondly, the velocity is zero, so object is at rest.
And a speed time graph for an object moving at constant velocity:
Since the slope is zero, the acceleration is obviously zero, right? And as there is no acceleration, that is, change in
velocity, the velocity is therefore constant. Get it?
Okay, and here’s a new concept: the area under a speed time graph gives the distance moved by the object.
The shaded area in this case also gives the distance moved by the object:
Graph for non uniform acceleration:
Okay so as we can that the slope of the graph is increasing, and we know that the slope in a velocity time graph
represents acceleration. Therefore, the acceleration in this case is increasing. Easy, no? And again, the shaded area
in this case represents the distance travelled by the object.
So to sum up:
● The gradient of a distance-time graph represents speed
● The gradient of a speed-time graph represents acceleration
● The area under a speed-time graph represents distance
Motion under free-fall:
The acceleration due to the gravitational pull of the earth is always constant and its value is 9.81 m/s2
. However,
when a body falls from the sky, it doesn't fall with constant acceleration. This is due to the resistance provided by air
which is present. As soon as the body accelerates the air resistance acting on the body also increases. Very soon,
the air resistance reaches the point where it balances the weight of the body which means that the acceleration of the
body becomes zero, as the resultant force acting on it is also zero (we will deal with forces in the next section). This
causes the body to fall with a uniform velocity; This velocity is known as terminal velocity. A typical graph for motion
under free-fall would look like this:
Task: Okay so finally, your assignment is to google questions of kinematics and assess yourself to see if you have grabbed the
basic concepts.
Answers:
Q1: 10 m/s
Q2: 5m/s2
Task: Okay so finally, your assignment is to google questions of kinematics and assess yourself to see if you have grabbed the
basic concepts.
Answers:
Q1: 10 m/s
Q2: 5m/s2

More Related Content

What's hot

Physics - Chapter 2 - One Dimensional Motion
Physics - Chapter 2 - One Dimensional MotionPhysics - Chapter 2 - One Dimensional Motion
Physics - Chapter 2 - One Dimensional MotionJPoilek
 
Kinematics - The Study of Motion
Kinematics - The Study of MotionKinematics - The Study of Motion
Kinematics - The Study of Motionwalt sautter
 
Motion speed- and velocity
Motion speed- and velocityMotion speed- and velocity
Motion speed- and velocitySubhash Jain
 
Motion in a plane chapter 3 converted
Motion in  a plane chapter 3 convertedMotion in  a plane chapter 3 converted
Motion in a plane chapter 3 convertedAbhirajAshokPV
 
Physics chapter 3 and 5
Physics chapter 3 and 5Physics chapter 3 and 5
Physics chapter 3 and 5shaffelder
 
Motion class 9 physics
Motion class 9 physics Motion class 9 physics
Motion class 9 physics shashankgarg57
 
Chapter 3 Powerpoint
Chapter 3 PowerpointChapter 3 Powerpoint
Chapter 3 PowerpointMrreynon
 
1.2 form 3 speed, velocity and acceleration
1.2 form 3 speed, velocity and acceleration1.2 form 3 speed, velocity and acceleration
1.2 form 3 speed, velocity and accelerationchris lembalemba
 
Displacement, velocity, acceleration
Displacement, velocity, accelerationDisplacement, velocity, acceleration
Displacement, velocity, accelerationmiss mitch
 
Physics F3 (IGCSE) speed, velocity and acceleration
Physics F3 (IGCSE)   speed, velocity and acceleration Physics F3 (IGCSE)   speed, velocity and acceleration
Physics F3 (IGCSE) speed, velocity and acceleration Nurul Fadhilah
 
Ch 1-2 review ppt
Ch 1-2 review pptCh 1-2 review ppt
Ch 1-2 review pptsekuhar
 
Kinematics: Motion along a straight line
Kinematics: Motion along a straight lineKinematics: Motion along a straight line
Kinematics: Motion along a straight lineKayraineMaeCaballero1
 
Lecture13 motion
Lecture13 motionLecture13 motion
Lecture13 motionAlex Klein
 
Speed, Velocity and Acceleration
Speed, Velocity and AccelerationSpeed, Velocity and Acceleration
Speed, Velocity and AccelerationJerome Bigael
 
Short Notes of First year Physics
Short Notes of First year Physics Short Notes of First year Physics
Short Notes of First year Physics Aneel-k Suthar
 

What's hot (20)

2.1 Kinematics
2.1 Kinematics 2.1 Kinematics
2.1 Kinematics
 
Physics - Chapter 2 - One Dimensional Motion
Physics - Chapter 2 - One Dimensional MotionPhysics - Chapter 2 - One Dimensional Motion
Physics - Chapter 2 - One Dimensional Motion
 
Kinematics - The Study of Motion
Kinematics - The Study of MotionKinematics - The Study of Motion
Kinematics - The Study of Motion
 
1.3 velocity
1.3   velocity1.3   velocity
1.3 velocity
 
Motion speed- and velocity
Motion speed- and velocityMotion speed- and velocity
Motion speed- and velocity
 
Motion in a plane chapter 3 converted
Motion in  a plane chapter 3 convertedMotion in  a plane chapter 3 converted
Motion in a plane chapter 3 converted
 
Physics chapter 3 and 5
Physics chapter 3 and 5Physics chapter 3 and 5
Physics chapter 3 and 5
 
Motion class 9 physics
Motion class 9 physics Motion class 9 physics
Motion class 9 physics
 
Chapter 3 Powerpoint
Chapter 3 PowerpointChapter 3 Powerpoint
Chapter 3 Powerpoint
 
Speed and velocity
Speed and velocitySpeed and velocity
Speed and velocity
 
1.2 form 3 speed, velocity and acceleration
1.2 form 3 speed, velocity and acceleration1.2 form 3 speed, velocity and acceleration
1.2 form 3 speed, velocity and acceleration
 
Displacement, velocity, acceleration
Displacement, velocity, accelerationDisplacement, velocity, acceleration
Displacement, velocity, acceleration
 
Physics F3 (IGCSE) speed, velocity and acceleration
Physics F3 (IGCSE)   speed, velocity and acceleration Physics F3 (IGCSE)   speed, velocity and acceleration
Physics F3 (IGCSE) speed, velocity and acceleration
 
Speed,velocity,acceleration
Speed,velocity,accelerationSpeed,velocity,acceleration
Speed,velocity,acceleration
 
Ch 1-2 review ppt
Ch 1-2 review pptCh 1-2 review ppt
Ch 1-2 review ppt
 
Motion
MotionMotion
Motion
 
Kinematics: Motion along a straight line
Kinematics: Motion along a straight lineKinematics: Motion along a straight line
Kinematics: Motion along a straight line
 
Lecture13 motion
Lecture13 motionLecture13 motion
Lecture13 motion
 
Speed, Velocity and Acceleration
Speed, Velocity and AccelerationSpeed, Velocity and Acceleration
Speed, Velocity and Acceleration
 
Short Notes of First year Physics
Short Notes of First year Physics Short Notes of First year Physics
Short Notes of First year Physics
 

Similar to Kinematics

Important Helpful Physics Notes/Formula--Must See
Important Helpful Physics Notes/Formula--Must SeeImportant Helpful Physics Notes/Formula--Must See
Important Helpful Physics Notes/Formula--Must Seeanicholls1234
 
velocity and acceleration.ppt
velocity and acceleration.pptvelocity and acceleration.ppt
velocity and acceleration.pptHaroldNyambose
 
acceleration.ppt
acceleration.pptacceleration.ppt
acceleration.pptShemaeObni1
 
Honors methods of motion-day 7-per4
Honors methods of motion-day 7-per4Honors methods of motion-day 7-per4
Honors methods of motion-day 7-per4stephm32
 
Sec.1 describing and measuring_motion
Sec.1 describing and measuring_motionSec.1 describing and measuring_motion
Sec.1 describing and measuring_motionHamdy Karim
 
Lecture13 motion
Lecture13 motionLecture13 motion
Lecture13 motionAlex Klein
 
Velocity and Acceleration PowerPoint.ppt
Velocity and Acceleration PowerPoint.pptVelocity and Acceleration PowerPoint.ppt
Velocity and Acceleration PowerPoint.pptssuser5087b61
 
Velocity and Acceleration PowerPoint (1).ppt
Velocity and Acceleration PowerPoint (1).pptVelocity and Acceleration PowerPoint (1).ppt
Velocity and Acceleration PowerPoint (1).pptmarinirobot
 
Kinematics in One-dimension.ppt
Kinematics in One-dimension.pptKinematics in One-dimension.ppt
Kinematics in One-dimension.pptCrisanteBacong2
 
Motion 2 d
Motion  2 dMotion  2 d
Motion 2 dwpchem81
 
Motion - Distance time graphs and speed time graphs.pptx
Motion - Distance time graphs and speed time graphs.pptxMotion - Distance time graphs and speed time graphs.pptx
Motion - Distance time graphs and speed time graphs.pptxMehjabeenShaik1
 
CP - Graphical Analysis
CP - Graphical AnalysisCP - Graphical Analysis
CP - Graphical Analysisstephm32
 

Similar to Kinematics (20)

Physics .
Physics .Physics .
Physics .
 
Important Helpful Physics Notes/Formula--Must See
Important Helpful Physics Notes/Formula--Must SeeImportant Helpful Physics Notes/Formula--Must See
Important Helpful Physics Notes/Formula--Must See
 
velocity and acceleration.ppt
velocity and acceleration.pptvelocity and acceleration.ppt
velocity and acceleration.ppt
 
Motion (1)
Motion (1)Motion (1)
Motion (1)
 
acceleration.ppt
acceleration.pptacceleration.ppt
acceleration.ppt
 
Honors methods of motion-day 7-per4
Honors methods of motion-day 7-per4Honors methods of motion-day 7-per4
Honors methods of motion-day 7-per4
 
Sec.1 describing and measuring_motion
Sec.1 describing and measuring_motionSec.1 describing and measuring_motion
Sec.1 describing and measuring_motion
 
Mechanics
MechanicsMechanics
Mechanics
 
1 d motion
1 d motion1 d motion
1 d motion
 
Lecture13 motion
Lecture13 motionLecture13 motion
Lecture13 motion
 
Velocity and Acceleration PowerPoint.ppt
Velocity and Acceleration PowerPoint.pptVelocity and Acceleration PowerPoint.ppt
Velocity and Acceleration PowerPoint.ppt
 
Velocity and Acceleration PowerPoint (1).ppt
Velocity and Acceleration PowerPoint (1).pptVelocity and Acceleration PowerPoint (1).ppt
Velocity and Acceleration PowerPoint (1).ppt
 
Velocity.ppt
Velocity.pptVelocity.ppt
Velocity.ppt
 
Kinematics in One-dimension.ppt
Kinematics in One-dimension.pptKinematics in One-dimension.ppt
Kinematics in One-dimension.ppt
 
Motion 2 d
Motion  2 dMotion  2 d
Motion 2 d
 
MOTION.pptx
MOTION.pptxMOTION.pptx
MOTION.pptx
 
Motion - Distance time graphs and speed time graphs.pptx
Motion - Distance time graphs and speed time graphs.pptxMotion - Distance time graphs and speed time graphs.pptx
Motion - Distance time graphs and speed time graphs.pptx
 
Motion
MotionMotion
Motion
 
Motion 1
Motion 1Motion 1
Motion 1
 
CP - Graphical Analysis
CP - Graphical AnalysisCP - Graphical Analysis
CP - Graphical Analysis
 

More from naomizammit2003 (20)

Waves
WavesWaves
Waves
 
Transfer of thermal energy
Transfer of thermal energyTransfer of thermal energy
Transfer of thermal energy
 
Thermal properties of matter
Thermal properties of matterThermal properties of matter
Thermal properties of matter
 
Temperature
TemperatureTemperature
Temperature
 
Static electricity
Static electricityStatic electricity
Static electricity
 
Sound
SoundSound
Sound
 
Radioactivity
RadioactivityRadioactivity
Radioactivity
 
Pressure
PressurePressure
Pressure
 
Practical electricity
Practical electricityPractical electricity
Practical electricity
 
Moments
MomentsMoments
Moments
 
Measurements
MeasurementsMeasurements
Measurements
 
Mass, weight and density
Mass, weight and densityMass, weight and density
Mass, weight and density
 
Magnetism
MagnetismMagnetism
Magnetism
 
Logic gates
Logic gatesLogic gates
Logic gates
 
Light ii
Light iiLight ii
Light ii
 
Light i
Light iLight i
Light i
 
Kinetic model of matter
Kinetic model of matterKinetic model of matter
Kinetic model of matter
 
Forces
ForcesForces
Forces
 
Energy work and power
Energy work and powerEnergy work and power
Energy work and power
 
Electromagnetism
ElectromagnetismElectromagnetism
Electromagnetism
 

Recently uploaded

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
 
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
 
Topic 9- General Principles of International Law.pptx
Topic 9- General Principles of International Law.pptxTopic 9- General Principles of International Law.pptx
Topic 9- General Principles of International Law.pptxJorenAcuavera1
 
Bentham & Hooker's Classification. along with the merits and demerits of the ...
Bentham & Hooker's Classification. along with the merits and demerits of the ...Bentham & Hooker's Classification. along with the merits and demerits of the ...
Bentham & Hooker's Classification. along with the merits and demerits of the ...Nistarini College, Purulia (W.B) India
 
Scheme-of-Work-Science-Stage-4 cambridge science.docx
Scheme-of-Work-Science-Stage-4 cambridge science.docxScheme-of-Work-Science-Stage-4 cambridge science.docx
Scheme-of-Work-Science-Stage-4 cambridge science.docxyaramohamed343013
 
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
 
Microphone- characteristics,carbon microphone, dynamic microphone.pptx
Microphone- characteristics,carbon microphone, dynamic microphone.pptxMicrophone- characteristics,carbon microphone, dynamic microphone.pptx
Microphone- characteristics,carbon microphone, dynamic microphone.pptxpriyankatabhane
 
THE ROLE OF PHARMACOGNOSY IN TRADITIONAL AND MODERN SYSTEM OF MEDICINE.pptx
THE ROLE OF PHARMACOGNOSY IN TRADITIONAL AND MODERN SYSTEM OF MEDICINE.pptxTHE ROLE OF PHARMACOGNOSY IN TRADITIONAL AND MODERN SYSTEM OF MEDICINE.pptx
THE ROLE OF PHARMACOGNOSY IN TRADITIONAL AND MODERN SYSTEM OF MEDICINE.pptxNandakishor Bhaurao Deshmukh
 
(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
 
Pests of Blackgram, greengram, cowpea_Dr.UPR.pdf
Pests of Blackgram, greengram, cowpea_Dr.UPR.pdfPests of Blackgram, greengram, cowpea_Dr.UPR.pdf
Pests of Blackgram, greengram, cowpea_Dr.UPR.pdfPirithiRaju
 
Base editing, prime editing, Cas13 & RNA editing and organelle base editing
Base editing, prime editing, Cas13 & RNA editing and organelle base editingBase editing, prime editing, Cas13 & RNA editing and organelle base editing
Base editing, prime editing, Cas13 & RNA editing and organelle base editingNetHelix
 
Best Call Girls In Sector 29 Gurgaon❤️8860477959 EscorTs Service In 24/7 Delh...
Best Call Girls In Sector 29 Gurgaon❤️8860477959 EscorTs Service In 24/7 Delh...Best Call Girls In Sector 29 Gurgaon❤️8860477959 EscorTs Service In 24/7 Delh...
Best Call Girls In Sector 29 Gurgaon❤️8860477959 EscorTs Service In 24/7 Delh...lizamodels9
 
Harmful and Useful Microorganisms Presentation
Harmful and Useful Microorganisms PresentationHarmful and Useful Microorganisms Presentation
Harmful and Useful Microorganisms Presentationtahreemzahra82
 
Is RISC-V ready for HPC workload? Maybe?
Is RISC-V ready for HPC workload? Maybe?Is RISC-V ready for HPC workload? Maybe?
Is RISC-V ready for HPC workload? Maybe?Patrick Diehl
 
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
 
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
 
FREE NURSING BUNDLE FOR NURSES.PDF by na
FREE NURSING BUNDLE FOR NURSES.PDF by naFREE NURSING BUNDLE FOR NURSES.PDF by na
FREE NURSING BUNDLE FOR NURSES.PDF by naJASISJULIANOELYNV
 
The dark energy paradox leads to a new structure of spacetime.pptx
The dark energy paradox leads to a new structure of spacetime.pptxThe dark energy paradox leads to a new structure of spacetime.pptx
The dark energy paradox leads to a new structure of spacetime.pptxEran Akiva Sinbar
 
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
 

Recently uploaded (20)

User Guide: Magellan MX™ Weather Station
User Guide: Magellan MX™ Weather StationUser Guide: Magellan MX™ Weather Station
User Guide: Magellan MX™ Weather Station
 
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
 
Topic 9- General Principles of International Law.pptx
Topic 9- General Principles of International Law.pptxTopic 9- General Principles of International Law.pptx
Topic 9- General Principles of International Law.pptx
 
Bentham & Hooker's Classification. along with the merits and demerits of the ...
Bentham & Hooker's Classification. along with the merits and demerits of the ...Bentham & Hooker's Classification. along with the merits and demerits of the ...
Bentham & Hooker's Classification. along with the merits and demerits of the ...
 
Scheme-of-Work-Science-Stage-4 cambridge science.docx
Scheme-of-Work-Science-Stage-4 cambridge science.docxScheme-of-Work-Science-Stage-4 cambridge science.docx
Scheme-of-Work-Science-Stage-4 cambridge science.docx
 
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
 
Microphone- characteristics,carbon microphone, dynamic microphone.pptx
Microphone- characteristics,carbon microphone, dynamic microphone.pptxMicrophone- characteristics,carbon microphone, dynamic microphone.pptx
Microphone- characteristics,carbon microphone, dynamic microphone.pptx
 
THE ROLE OF PHARMACOGNOSY IN TRADITIONAL AND MODERN SYSTEM OF MEDICINE.pptx
THE ROLE OF PHARMACOGNOSY IN TRADITIONAL AND MODERN SYSTEM OF MEDICINE.pptxTHE ROLE OF PHARMACOGNOSY IN TRADITIONAL AND MODERN SYSTEM OF MEDICINE.pptx
THE ROLE OF PHARMACOGNOSY IN TRADITIONAL AND MODERN SYSTEM OF MEDICINE.pptx
 
Hot Sexy call girls in Moti Nagar,🔝 9953056974 🔝 escort Service
Hot Sexy call girls in  Moti Nagar,🔝 9953056974 🔝 escort ServiceHot Sexy call girls in  Moti Nagar,🔝 9953056974 🔝 escort Service
Hot Sexy call girls in Moti Nagar,🔝 9953056974 🔝 escort Service
 
(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)
 
Pests of Blackgram, greengram, cowpea_Dr.UPR.pdf
Pests of Blackgram, greengram, cowpea_Dr.UPR.pdfPests of Blackgram, greengram, cowpea_Dr.UPR.pdf
Pests of Blackgram, greengram, cowpea_Dr.UPR.pdf
 
Base editing, prime editing, Cas13 & RNA editing and organelle base editing
Base editing, prime editing, Cas13 & RNA editing and organelle base editingBase editing, prime editing, Cas13 & RNA editing and organelle base editing
Base editing, prime editing, Cas13 & RNA editing and organelle base editing
 
Best Call Girls In Sector 29 Gurgaon❤️8860477959 EscorTs Service In 24/7 Delh...
Best Call Girls In Sector 29 Gurgaon❤️8860477959 EscorTs Service In 24/7 Delh...Best Call Girls In Sector 29 Gurgaon❤️8860477959 EscorTs Service In 24/7 Delh...
Best Call Girls In Sector 29 Gurgaon❤️8860477959 EscorTs Service In 24/7 Delh...
 
Harmful and Useful Microorganisms Presentation
Harmful and Useful Microorganisms PresentationHarmful and Useful Microorganisms Presentation
Harmful and Useful Microorganisms Presentation
 
Is RISC-V ready for HPC workload? Maybe?
Is RISC-V ready for HPC workload? Maybe?Is RISC-V ready for HPC workload? Maybe?
Is RISC-V ready for HPC workload? Maybe?
 
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
 
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)
 
FREE NURSING BUNDLE FOR NURSES.PDF by na
FREE NURSING BUNDLE FOR NURSES.PDF by naFREE NURSING BUNDLE FOR NURSES.PDF by na
FREE NURSING BUNDLE FOR NURSES.PDF by na
 
The dark energy paradox leads to a new structure of spacetime.pptx
The dark energy paradox leads to a new structure of spacetime.pptxThe dark energy paradox leads to a new structure of spacetime.pptx
The dark energy paradox leads to a new structure of spacetime.pptx
 
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
 

Kinematics

  • 1. KINEMATICS! Introduction: Welcome back! Hope you all are good. Today we are going to learn an important topic, that is kinematics. The big question: what is kinematics? It is the study of speed, velocity, time and acceleration. We’ll study these quantities in more detail in this tutorial. Definition: Okay so starting with speed and velocity, speed is defined as the distance travelled by an object in a given time, or more simply as distance travelled per unit time. While on the other hand velocity is displacement per unit time. So then, what is the difference between the two? The difference is the same as that between distance and displacement; Speed is a scalar quantity while velocity is a vector. Now, what is scalar and what is vector? Well, scalar quantities are those which have a magnitude only, while vector quantities have both a direction and a magnitude. Just to further clear it out, consider a car going at a speed of 40 m/s. We are not told whether the car is going northwards, down the hill or whatever. So what is 40m/s? It’s speed. A bit easier now? How to calculate average speed? Average speed can be calculated using the formula: Average Speed = Total Distance Travelled / Total Time Taken Q1. The distance b/w town A and town B is 25 km . A car travels from town A to town B and then returns to town A . The total time taken is 5 hours. What was the average speed of the journey? Uniform acceleration: Acceleration is the rate of change of velocity. Simple as that! Acceleration = (Final Velocity - Initial Velocity) / Time Q2. A car starts from rest and travels in a straight path. It reaches a speed of 40 m/s in 8 seconds. What is it’s acceleration, assuming that it accelerates uniformly? If we know that the acceleration of an object is constant, we can find its average velocity by a different formula, which is as follows: Average Velocity = (Final Velocity + Initial Velocity) / 2 Also if an object is travelling with constant acceleration, then these equations of motions are applicable. ● 2as = v2 - u2 ● s = ut + 1/2 at2 ● v = u + at ● 2s = (v + u)t Key: a = acceleration , s = displacement, v = final velocity, u = initial velocity, t = time These equations are very helpful in finding the unknown. Non-uniform acceleration: This form of acceleration changes with time. In such case, the equations of motions cannot be used.
  • 2. Graphs: Every situation that can be considered can be represented graphically. It helps us in various calculations and is easy to interpret. In such graphs, time is always taken on the x-axis while distance on the y-axis. Distance-Time Graphs: Okay so here are the distance-time graphs of three objects in motion. As we know the gradient of distance-time graph represents speed. Object A is moving with increasing speed a it’s gradient is increasing. Object B is moving with uniform speed as it’s gradient is uniform. And similarly, as the gradient of C is decreasing, it’s moving with a decreasing speed. Nothing too scientific, right? Okay so moving on to the graph of a stationary object, it should be covering any distance, right? So that explains it all! The graph of a stationary will look like this: As we can see, the object is stuck on the same distance. Let’s say 40 m, and it’s on 40 m throughout. So it’s stationary, not moving, at rest! Speed-Time Graphs: So here’s a speed-time graph for an object at rest:
  • 3. Since the slope is equal to zero, there is no acceleration. And secondly, the velocity is zero, so object is at rest. And a speed time graph for an object moving at constant velocity: Since the slope is zero, the acceleration is obviously zero, right? And as there is no acceleration, that is, change in velocity, the velocity is therefore constant. Get it? Okay, and here’s a new concept: the area under a speed time graph gives the distance moved by the object. The shaded area in this case also gives the distance moved by the object:
  • 4. Graph for non uniform acceleration: Okay so as we can that the slope of the graph is increasing, and we know that the slope in a velocity time graph represents acceleration. Therefore, the acceleration in this case is increasing. Easy, no? And again, the shaded area in this case represents the distance travelled by the object. So to sum up: ● The gradient of a distance-time graph represents speed ● The gradient of a speed-time graph represents acceleration ● The area under a speed-time graph represents distance Motion under free-fall: The acceleration due to the gravitational pull of the earth is always constant and its value is 9.81 m/s2 . However, when a body falls from the sky, it doesn't fall with constant acceleration. This is due to the resistance provided by air which is present. As soon as the body accelerates the air resistance acting on the body also increases. Very soon, the air resistance reaches the point where it balances the weight of the body which means that the acceleration of the body becomes zero, as the resultant force acting on it is also zero (we will deal with forces in the next section). This causes the body to fall with a uniform velocity; This velocity is known as terminal velocity. A typical graph for motion under free-fall would look like this:
  • 5. Task: Okay so finally, your assignment is to google questions of kinematics and assess yourself to see if you have grabbed the basic concepts. Answers: Q1: 10 m/s Q2: 5m/s2
  • 6. Task: Okay so finally, your assignment is to google questions of kinematics and assess yourself to see if you have grabbed the basic concepts. Answers: Q1: 10 m/s Q2: 5m/s2