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Test your basic knowledge |
Everyday Physics
Start Test
Study First
Subjects
:
science
,
literacy
Instructions:
Answer 50 questions in 15 minutes.
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study here
.
Match each statement with the correct term.
Don't refresh. All questions and answers are randomly picked and ordered every time you load a test.
This is a study tool. The 3 wrong answers for each question are randomly chosen from answers to other questions. So, you might find at times the answers obvious, but you will see it re-enforces your understanding as you take the test each time.
1. Length of a wave
wavelength
Heat capacity equation
bernoulli's equation
law of conservation of energy
2. Equals total momentum after collision
Acceleration due to gravity on the earth
Total momentum before collision
Heat
Stable
3. Time= the square root of 2 x height / acceleration due to gravity
Time for an object thrown to reach maximum height
Heat
Speed of light
Quantum mechanics
4. The change in internal energy= the heat absorbed- the work done
Internal energy
law of conservation of energy
measure of density
the pressure of liquids _____ when it goes faster
5. The combination of force and point of application
Emissive
Physics
Torque
pressure does what when depth is increased
6. T=2p square root m/k frequency= square root k/m;/2p
Center of gravity (CG)
period p of a mass m oscillating on a horizontal spring of force constant k
infrasound
measurement of pressure
7. It increases
frequency of light
Momentum
Mechanics
pressure does what when depth is increased
8. The first to do experimental studies of the laws of motion and was Imprisoned by Pope Urban VIII in 1633 for advocating the Copernican theory - also know as the heliocentric theory - that the earth was a planet revolving around the sun.
mass flow rate formula
static fluid formula
Galileo
when ice in water melts what happens?
9. Time= the square root of 2 x height / acceleration due to gravity
Acceleration due to gravity on the earth
Conservation of energy
Time for an object thrown to reach maximum height
Change in internal energy
10. A disturbance that propagates through a medium
pressure at depth h
mechanical wave
frequency of light
Center of gravity (CG)
11. Heat into system - work done by system
Change in internal energy
Newton
density of lead
The US uses how much of the total world energy consumption?
12. Not easy to knock over
Stable
amplitude
order of states of matter stronger to lesser forces between atoms
Why does something move?
13. The efficiency with which an object emits thermal radiation. Is a number between 0 and 1. A good emitter has an e close to 1.
Net force?0 net torque=0
density of air
Buoyant force
Emissive
14. The total disorder of an object
Engine efficiency
entropy
Engine efficiency cannot be 100%
Wave speed=
15. V x A= constant
Centripedal acceleration=
Engine efficiency
Mechanics
continuity
16. 1 -000 kg/m^3
mechanical wave
measurement of pressure
Stable structures
density of water
17. Heat is transferred directly through a material with no bulk movement of material
measure of density
period p of a mass m oscillating on a horizontal spring of force constant k
Conduction
mechanical wave
18. F=mass x acceleration
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19. Fbottom=Ftop+mg where mg is the weight of the volume
static fluid formula
azX
Net force=0 net torque?0
bernoulli's equation
20. Distance traveled / time
density of air
Velocity=
period p of a mass m oscillating on a horizontal spring of force constant k
Kepler
21. 1.25 kg/m^3
Convert Fahrenheit to Celsius
Acceleration due to gravity on the earth
Power (watts)
density of air
22. The total force (positive and negative) acting upon an object
Center of gravity (CG)
Time for an object thrown to reach maximum height
Net force
The US uses how much of the total world energy consumption?
23. An object that is thrown or struck or shot and then travels under the influence of gravity
Projectile
Einstein
azX
variation of pressure with depth
24. The effectiveness of a material in conducting heat
Condition for stability
Net force?0 net torque=0
Thermal conductivity
viscosity
25. 25%
The US uses how much of the total world energy consumption?
continuity
Conduction
Convert Celsius to Fahrenheit
26. Rod with forces applied at opposite ends in opposite directions
Stable structures
Thermal conductivity
Net force=0 net torque?0
c=3x10^8 m/s
27. Rod with forces applied at opposite ends in the same direction
Radiation
static fluid formula
Net force?0 net torque=0
entropy
28. P x u x A
Voltage
Centripedal acceleration=
mass flow rate formula
Engine efficiency
29. Time required to complete one cycle
Brahe
Einstein
Period
Newton's Second Law
30. The study of how objects behave (from the very tiny to the very big - and from the beginning of the Universe to its ultimate fate).
Total momentum before collision
Wave speed=
static fluid formula
Physics
31. Work done / heat in
wavelength
Energy of motion (kinetic energy)
Engine efficiency
Stable structures
32. ?
pressure depends on
density of aluminum
density of water
c=3x10^8 m/s
33. Initial velocity = acceleration x time
Conduction
Wavelength
density of air
Present velocity
34. Maximum displacement from equilibrium
Condition for stability
Brahe
Acceleration due to gravity on the earth
amplitude
35. Weight of displaced water=volume of displaced water in liters x 10 n / liter
Momentum
Newton's Second Law
Buoyant force
The US uses how much of the total world energy consumption?
36. C/n
Power (watts)
azX
Wavelength
velocity through a medium
37. Initial velocity= the square root of 2gh
density of water
infrasound
Velocity required for an object to reach height h
Physics
38. Pressure x area
wave
Aristotle
Convert Celsius to Kelven
Fluid force
39. Fluid flow velocity=u - fluid density=p (rho) - fluid pressure=P P +
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40. 2 -700 kg/m^3
First Law of thermodynamics
density of aluminum
Radiation
Wave speed=
41. Change in velocity / time
Power (watts)
Acceleration
Period
Stable structures
42. The energy that flows from one system to another because of their temperature difference.
Heat
Aristotle
volume fluid flow rate
Voltage
43. 1 / period (time)
Heat capacity (specific heat)
Momentum
Frequency
velocity through a medium
44. Solids - liquids - gases
Brahe
First Law of thermodynamics
order of states of matter stronger to lesser forces between atoms
Convert Celsius to Fahrenheit
45. Speed of light / wavelength
Stable
Why does something move?
frequency of light
Heat capacity equation
46. 18600 miles/sec
entropy
Speed of light
Heat
Thermal radiation
47. 2 -700 kg/m^3
density of aluminum
period p of a mass m oscillating on a horizontal spring of force constant k
order of states of matter stronger to lesser forces between atoms
Physics
48. Heat is carried from place to place by the bulk movement of either liquids or gasses
Torque
Net force?0 net torque=0
Rotational inertia (moment of inertia)
Convection
49. The amount of heat that is required to raise the temperature of one g of a substance by 1 degree C.
order of states of matter stronger to lesser forces between atoms
Power (watts)
Heat capacity (specific heat)
volume fluid flow rate formula
50. The change in internal energy= the heat absorbed- the work done
law of conservation of energy
Frequency
Flow through a pipe
c=3x10^8 m/s
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