Title: S'H'M'
1S.H.M.
2Simple Harmonic Motion
- Motion which is reoccurring
- Mass on spring
- Horizontal
- Vertical
- Simple Pendulum
3SHM Kinematics Graphs
- See IP demo
- BUNGIE JUMP SHM DEMO
4SHM Kinematics Graphs
5SHM Kinematics
POSITION
0 p/2
p 3/2p
2p
VELOCITY
-
0 p/2
p 3/2p
2p
ACCEL
-
0 p/2
p 3/2p
2p
6SHM Kinematics
POSITION
0 p/2
p 3/2p
2p
VELOCITY
-
0 p/2
p 3/2p
2p
ACCEL
-
0 p/2
p 3/2p
2p
7S.H.M. Terminology
- Period (T) time for one complete oscillation
(cycle) - Sec/cycle
- Frequency (f) number of cycles in a given time.
- Cycles/sec (Hertz) (Hz)
- f 1/T
- Amplitude (A) Magnitude of the displacement
relative to equilibrium or center position.
8SHM PERIODICITYMass - Spring System
- See IP demo
- MASS SPRING PERIOD
9SHM SPRING-MASS
-A
A
0
Net force is attempting to return mass to
Equilibrium Position
A max displacement in x direction
- A max displacement in -x direction
10Fundamental of SHM
Frestore a -x
Frestore -kx
k spring constant
11SHM SPRING-MASS
-A
A
SOLVE FOR MAXIMUM VELOCITY
12SHM SPRING-MASS
0
-A
A
SOLVE FOR MAXIMUM VELOCITY
13SHM SPRING-MASS
0
-A
A
SOLVE FOR VELOCITY AT ANY POINT
14Derive Period (T) Equation
T ?
T vs Mass?
T vs Amplitude?
T vs k (spring constant)?
T vs gravity?
15The shadow cast by mass in circular motion
matches motion of mass oscillating on spring
R A
Mass in uniform circular motion at constant speed
16PE spring 1/2 kDx2
PE spring 1/2 kA2
at x 0, KE mass PE spring
1/2 mvmax2 1/2 kA2
vmax2 (k/m)A2
17Relate mass-spring to circular motion
Speed distance / time
V C/T
T C / V
18T 2pA
T 2p
19Mass - Spring System
T ind A
T ind g
20Mass Spring SHM
A
- A
Net force is attempting to return mass to
Equilibrium Position
Restoring Force
A max displacement in x direction
- A max displacement in -x direction
21Simple Pendulum
22Fundamental of SHM
Frestore a -x
23SIMPLE PENDULUM
24Derive Period (T) of Pendulum
T ?
T vs Mass?
T vs Amplitude?
T vs length?
T vs gravity?
25Simple Pendulum
Fc 0
v 0
Wrad T
q
L
Net F Wtan -mgsin q
tan
T
Net F a sin q, not q
A
(Not true SHM)
Wrad
If q small, sin q q
q
Wtan
W
sin q A/L
Net F mgA/L
rad
26Relate pendulum to circular motion
Speed distance / time
V C / T
T C / V
27Net F is Center Seeking F
Net F Fc
Net F mgA/L
Fc mv2/R
mv2/R mgA/L
(RA)
v2 (g/L)A2
28T 2pA
T 2p
29Simple Pendulum
T ind mass
T ind q
(for small angles)