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Kinematics 
AP Physics 1 & 2 
Tuesday, September 9, 14
Defining the important variables 
Kinematics is a way of describing the motion of objects 
without describing the causes. You can describe an 
object’s motion: 
In words Mathematically Pictorially Graphically 
No matter HOW we describe the motion, there are several KEY VARIABLES 
that we use. 
Symbol Variable Units 
t Time s 
a Acceleration m/s/s 
x or y Displacement m 
vo Initial velocity m/s 
v Final velocity m/s 
g or ag Acceleration due to 
gravity 
m/s/s 
Tuesday, September 9, 14
The 3 Kinematic equations 
There are 3 major 
kinematic equations 
than can be used to 
describe the motion in 
DETAIL. All are used 
when the acceleration 
is CONSTANT. 
Tuesday, September 9, 14
Kinematic #1 
Tuesday, September 9, 14
Kinematic #1 
Example: A boat moves slowly out of a marina (so as to not 
leave a wake) with a speed of 1.50 m/s. As soon as it 
passes the breakwater, leaving the marina, it throttles up 
and accelerates at 2.40 m/s/s. 
a) How fast is the boat moving after accelerating for 5 seconds? 
What do I 
know? 
What do I 
want? 
vo= 1.50 m/s v = ? 
a = 2.40 m/s/s 
t = 5 s 
13.5 m/s 
Tuesday, September 9, 14
Kinematic #2 
b) How far did the boat travel during that time? 
37.5 m 
Tuesday, September 9, 14
Does all this make sense? 
13.5 m/s 
1.5 m/ 
s 
Total displacement = 7.50 + 30 = 37.5 m = Total AREA under the line. 
Tuesday, September 9, 14
Interesting to Note 
A = HB 
A=1/2HB 
Most of the time, xo=0, but if it is not 
don’t forget to ADD in the initial 
position of the object. 
Tuesday, September 9, 14
Kinematic #3 
Example: You are driving through town at 12 m/s when suddenly a ball rolls 
out in front of your car. You apply the brakes and begin decelerating at 
3.5 m/s/s. 
How far do you travel before coming to a complete stop? 
What do I 
know? 
What do I 
want? 
vo= 12 m/s x = ? 
a = -3.5 m/s/s 
V = 0 m/s 
20.57 m 
Tuesday, September 9, 14
Common Problems Students Have 
I don’t know which equation to choose!!! 
Equation Missing Variable 
x 
v 
t 
Tuesday, September 9, 14
Kinematics for the VERTICAL Direction 
All 3 kinematics can be used to analyze one 
dimensional motion in either the X direction OR the 
y direction. 
X - direction Y - direction 
Tuesday, September 9, 14
“g” or ag – The Acceleration due to gravity 
The acceleration due to gravity is a special constant that exists in 
a VACUUM, meaning without air resistance. If an object is in 
FREE FALL, gravity will CHANGE an objects velocity by 9.8 
m/s every second. 
The acceleration due to gravity: 
•ALWAYS ACTS DOWNWARD 
•IS ALWAYS CONSTANT near the 
surface of Earth 
Tuesday, September 9, 14
Examples 
A stone is dropped at rest from the top of a cliff. It is 
observed to hit the ground 5.78 s later. How high 
is the cliff? 
What do I 
What do I 
know? 
want? 
voy= 0 m/s y = ? 
g = -9.8 m/s2 
yo=0 m 
t = 5.78 s 
Which variable is NOT given and 
NOT asked for? 
Final Velocity! 
-163.7 m 
H =163.7m 
Tuesday, September 9, 14
Examples 
A pitcher throws a fastball with a velocity of 43.5 m/s. It is 
determined that during the windup and delivery the ball covers 
a displacement of 2.5 meters. This is from the point behind the 
body when the ball is at rest to the point of release. Calculate 
the acceleration during his throwing motion. 
What do I 
What do I 
know? 
want? 
vo= 0 m/s a = ? 
x = 2.5 m 
v = 43.5 m/s 
Which variable is NOT given and 
NOT asked for? 
TIME 
378.5 m/s/s 
Tuesday, September 9, 14
Examples 
How long does it take a car at rest to cross a 35.0 m 
intersection after the light turns green, if the acceleration 
of the car is a constant 2.00 m/s/s? 
What do I 
What do I 
know? 
want? 
vo= 0 m/s t = ? 
x = 35 m 
a = 2.00 m/s/s 
Which variable is NOT given and 
NOT asked for? 
Final Velocity 
5.92 s 
Tuesday, September 9, 14
Examples 
A car accelerates from 12.5 m/s to 25 m/s in 6.0 
seconds. What was the acceleration? 
What do I 
What do I 
know? 
want? 
vo= 12.5 m/s a = ? 
v = 25 m/s 
t = 6s 
Which variable is NOT given and 
NOT asked for? 
DISPLACEMENT 
2.08 m/s/s 
Tuesday, September 9, 14

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Ap physics 12_-_kinematics

  • 1. Kinematics AP Physics 1 & 2 Tuesday, September 9, 14
  • 2. Defining the important variables Kinematics is a way of describing the motion of objects without describing the causes. You can describe an object’s motion: In words Mathematically Pictorially Graphically No matter HOW we describe the motion, there are several KEY VARIABLES that we use. Symbol Variable Units t Time s a Acceleration m/s/s x or y Displacement m vo Initial velocity m/s v Final velocity m/s g or ag Acceleration due to gravity m/s/s Tuesday, September 9, 14
  • 3. The 3 Kinematic equations There are 3 major kinematic equations than can be used to describe the motion in DETAIL. All are used when the acceleration is CONSTANT. Tuesday, September 9, 14
  • 4. Kinematic #1 Tuesday, September 9, 14
  • 5. Kinematic #1 Example: A boat moves slowly out of a marina (so as to not leave a wake) with a speed of 1.50 m/s. As soon as it passes the breakwater, leaving the marina, it throttles up and accelerates at 2.40 m/s/s. a) How fast is the boat moving after accelerating for 5 seconds? What do I know? What do I want? vo= 1.50 m/s v = ? a = 2.40 m/s/s t = 5 s 13.5 m/s Tuesday, September 9, 14
  • 6. Kinematic #2 b) How far did the boat travel during that time? 37.5 m Tuesday, September 9, 14
  • 7. Does all this make sense? 13.5 m/s 1.5 m/ s Total displacement = 7.50 + 30 = 37.5 m = Total AREA under the line. Tuesday, September 9, 14
  • 8. Interesting to Note A = HB A=1/2HB Most of the time, xo=0, but if it is not don’t forget to ADD in the initial position of the object. Tuesday, September 9, 14
  • 9. Kinematic #3 Example: You are driving through town at 12 m/s when suddenly a ball rolls out in front of your car. You apply the brakes and begin decelerating at 3.5 m/s/s. How far do you travel before coming to a complete stop? What do I know? What do I want? vo= 12 m/s x = ? a = -3.5 m/s/s V = 0 m/s 20.57 m Tuesday, September 9, 14
  • 10. Common Problems Students Have I don’t know which equation to choose!!! Equation Missing Variable x v t Tuesday, September 9, 14
  • 11. Kinematics for the VERTICAL Direction All 3 kinematics can be used to analyze one dimensional motion in either the X direction OR the y direction. X - direction Y - direction Tuesday, September 9, 14
  • 12. “g” or ag – The Acceleration due to gravity The acceleration due to gravity is a special constant that exists in a VACUUM, meaning without air resistance. If an object is in FREE FALL, gravity will CHANGE an objects velocity by 9.8 m/s every second. The acceleration due to gravity: •ALWAYS ACTS DOWNWARD •IS ALWAYS CONSTANT near the surface of Earth Tuesday, September 9, 14
  • 13. Examples A stone is dropped at rest from the top of a cliff. It is observed to hit the ground 5.78 s later. How high is the cliff? What do I What do I know? want? voy= 0 m/s y = ? g = -9.8 m/s2 yo=0 m t = 5.78 s Which variable is NOT given and NOT asked for? Final Velocity! -163.7 m H =163.7m Tuesday, September 9, 14
  • 14. Examples A pitcher throws a fastball with a velocity of 43.5 m/s. It is determined that during the windup and delivery the ball covers a displacement of 2.5 meters. This is from the point behind the body when the ball is at rest to the point of release. Calculate the acceleration during his throwing motion. What do I What do I know? want? vo= 0 m/s a = ? x = 2.5 m v = 43.5 m/s Which variable is NOT given and NOT asked for? TIME 378.5 m/s/s Tuesday, September 9, 14
  • 15. Examples How long does it take a car at rest to cross a 35.0 m intersection after the light turns green, if the acceleration of the car is a constant 2.00 m/s/s? What do I What do I know? want? vo= 0 m/s t = ? x = 35 m a = 2.00 m/s/s Which variable is NOT given and NOT asked for? Final Velocity 5.92 s Tuesday, September 9, 14
  • 16. Examples A car accelerates from 12.5 m/s to 25 m/s in 6.0 seconds. What was the acceleration? What do I What do I know? want? vo= 12.5 m/s a = ? v = 25 m/s t = 6s Which variable is NOT given and NOT asked for? DISPLACEMENT 2.08 m/s/s Tuesday, September 9, 14