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16123188
Physics
Description
Conceptual map of themes of physics standard level IB
No tags specified
physics
ib
conceptual map
segundo
Mind Map by
Karla Mejía González
, updated more than 1 year ago
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Created by
Mariely BJ
about 8 years ago
Copied by
Karla Mejía González
almost 6 years ago
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Resource summary
Physics
Measurements
Uncertainties
Can affect
Precision
Random error
Accuracy
Systematic error
Absolute
Relative
Percentage
Operations
Sum and rest
Add the absolute uncertainties
Any other operation
Add percentage uncertainties
For power and roots, multiply the exponent by the percentage uncertainty
SI Units
Derived Units
Volume - m^3
Density - kgm^-3
Newton - kgms^-2
Length - m
Time - s
Mass - kg
Electric current - A
Temperature - K
Amount of substance - mol
Luminous intensity - cd
Orders of magnitud
Mass
Electron - 10^-30
Proton - 10^-27
Observable universe - 10^50
Length
Radios proton - 10^-15
Diameter H atom - 10^-10
Radios obs. universe - 10^26
Time
Age universe - 10^18
Themes
Vectors
Quantity with magnitude and direction
Use of
Trigonometry
Motion
Not the same as
Motion
Scalar
Quantity with magnitude only
Example
Equilibrant vector
Added to the original gives zero as result
Changes direction 180º
Weight
Thermal Physics
Boyle's Law
Charle's Law
Pressure Law
Ideal Gas Law
PV=nRT
Small elastic balls
PE is zero
Smaller than total volume
Elastic
KE + PE
Internal energy
Average KE
Temperature
Specific heat capacity
Heat capacity
Latent heat
Fusion
Vaporization
Circular Motion
Time period (s)
Frequency (s^-1)
Angular frequency
or
Angular velocity
Simple Harmonic Motion
Centripetal acceleration
Oscillations
Simple Harmonic Motion
Can be
Pendulum
Graphs
Spring
Related with
Hooke's Law
Waves
Travelling
Transverse
Light
can also be
Electromagnetic
can be
Unpolarized
or
Polarized
Longitudinal
Sound
can also be
Mechanical
Standing
Characteristics of light
Reflection
Total Internal Reflection
Snell's Law
Refraction
Critical Angle
Superposition
Interference
Constructive
Destructive
Path difference
Pase difference
Standing
Travelling
Smaller wavelength
higher
Frequency (s^-1)
Energy
Wavefront
Ray
Intensity
related with
Power/Area
Polarized
Malu's Law
Brewster's Angle
Frequency (s^-1
Time period (s)
Kinematics
Motion
Forces
Newton's Fist Law
Object is at rest or constant motion unless an external force is applied to it
Newton's Second Law
Momentum
Change equals to
Impulse
F*t
m*v
Conservation of momentum
and
change of
Collisions
Elastic
KE conserved
Inelastic
KE of system lost
Explosions
KE of system gained
Impulse
Newton's Third Law
If an object exerts a force upon a second object, the second object exerts a force of same magnitude but opposite direction on the first one.
Related with
Explosions
Strong
Electromagnetic
Weak
Gravitational
Weight
Tension
Normal
Friction
Static
Dynamic
Fluid resistance
Uptrhust
Thrust
Drag
Represented in
Free body diagrams
Distance vs Displacement
Scalar
Speed
Energy
Ability to do
Vector
Velocity
Acceleration
Work
Scalar
Nevertheless
It can have negative values
Is done
Not
An object has
Ability to do
Uniformly accelerated motion
Free fall
Projectile motion
Vertical motion (y-compnent)
Horizontal motion (x-compnent)
Energy
Mechanic
Kinetic
Motion
1/2mv^2
Change of
Net Work
Work
Potential
Stored
mgh
Change of
Work done by a person
Work
Rate of work done
Useful over used
Efficiency
Can be
Elastic
Hooke's Law
Conservation of energy
Change
Rate of energy transferred
Power
Useful over used
Efficiency
Average Kinetic Energy
Media attachments
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