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Test your basic knowledge |
Everyday Physics
Start Test
Study First
Subjects
:
science
,
literacy
Instructions:
Answer 50 questions in 15 minutes.
If you are not ready to take this test, you can
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. The energy that flows from one system to another because of their temperature difference.
Heat
entropy
Photon energy
static fluid formula
2. Force per unit area
entropy
Pressure=
frequency of light
Equilibrium
3.
bernoulli's equation
wave
Net force
Energy of motion (kinetic energy)
4. Wrote Principia in 1687. Made the 3 laws of mechanics and law of gravity. He also invented calculus.
Flow through a pipe
Newton
Power (watts)
pressure depends on
5. Compiled the first detailed observational data on planetary motion (mars) - without a telescope.
volume fluid flow rate formula
Brahe
Net force=0 net torque?0
volume fluid flow rate formula
6. Velocity squared / radius
Conduction
period p of a mass m oscillating on a horizontal spring of force constant k
Photon energy
Centripedal acceleration=
7. You can't get more work out than the energy you put in
Conservation of energy
Physics
pressure at depth h
Net force=0 net torque?0
8. 100 -000 n/m^2
Conservation of energy
density of aluminum
Net force
atmospheric pressure (atm)
9. A disturbance that moves through something
Power (watts)
Acceleration
Heat capacity (specific heat)
wave
10. Fluid flow velocity=u - fluid density=p (rho) - fluid pressure=P P +
11. Pressure x area
Newton's Second Law
velocity through a medium
Convert Fahrenheit to Celsius
Fluid force
12. Why things move
Internal energy
Mechanics
Wave speed=
Convert Fahrenheit to Celsius
13. Equals total momentum after collision
Total momentum before collision
Momentum
Heat
infrasound
14. P(P2-P1)D^4/128Ln n=fluid's viscosity
Flow through a pipe
density of lead
Quantum mechanics
Einstein
15. Length of a wave
wavelength
Acceleration due to gravity on the earth
volume fluid flow rate formula
Thermodynamics
16. P + density x g h
pressure at depth h
Voltage
Thermodynamics
Emissive
17. Time required to complete one cycle
Period
Condition for stability
Centripedal acceleration=
Fluid force
18. The level stays the same
Heat capacity (specific heat)
when ice in water melts what happens?
restoring force
Present velocity
19. New theory that explained behavior at the atomic level
Distance traveled
Net force?0 net torque=0
Newton
Quantum mechanics
20. It increases
Heat capacity (specific heat)
Convert Celsius to Kelven
pressure does what when depth is increased
Power (watts)
21. A disturbance that moves through something
wave
pressure depends on
Frequency
density of water
22. Rod with forces applied at opposite ends in opposite directions
incoming and outgoing flow rate formula
Newton
Change in internal energy
Net force=0 net torque?0
23. Mass x specific heat x temperature change
Heat
measure of density
Second law of thermodynamics
Radiation
24. 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).
Physics
Convert Celsius to Kelven
law of conservation of energy
Total momentum before collision
25. Speed of light / wavelength
Aristotle
Conduction
frequency of light
Engine efficiency
26. The total disorder of an object
c=3x10^8 m/s
restoring force
Present velocity
entropy
27. As the speed of a moving fluid increases - the pressure within the fluid decreases
28. 2p x square root L/g
measurement of pressure
period of a pendulum T of length L
amplitude
Time for an object thrown to reach maximum height
29. T^4
Thermal radiation
Stable
bernoulli's equation
Physics
30. 11 -000 kg/m^3
Conduction
density of lead
Resistance
Frequency
31. ?
c=3x10^8 m/s
frequency of light
Velocity=
pressure depends on
32. Distance traveled / time
Heat capacity (specific heat)
Velocity=
Present velocity
Wavelength
33. T^4
Thermal radiation
pressure at depth h
incoming and outgoing flow rate formula
Convert Celsius to Kelven
34. If the temperature of system A is less then the temperature of system B then heat flows from B to A (hot to cold)
Conservation of energy
mass flow rate formula
entropy
Second law of thermodynamics
35. Current x voltage energy/time (joules per second)
Power (watts)
frequency of light
Net force?0 net torque=0
Conduction
36. An object that is thrown or struck or shot and then travels under the influence of gravity
Present velocity
Newton's Second Law
Projectile
Emissive
37. The force that brings a system back to equilibrium
restoring force
c=3x10^8 m/s
Convert Celsius to Kelven
Convert Fahrenheit to Celsius
38. Initial velocity = acceleration x time
Resistance
Present velocity
Equilibrium
Conduction
39. T=2p square root m/k frequency= square root k/m;/2p
Second law of thermodynamics
Total momentum before collision
period p of a mass m oscillating on a horizontal spring of force constant k
Newton's Second Law
40. If energy is transferred and the internal energy of system B decreases by some amount then the internal energy of system A must incrase by the same amount.
Speed of light
Flow through a pipe
First Law of thermodynamics
Voltage
41. Decreases
Net force=0 net torque?0
the pressure of liquids _____ when it goes faster
Physics
Radiation
42. Change in velocity / time
Thermodynamics
Acceleration
definition of Bernoulii's equation
density of air
43. Heat is transferred directly through a material with no bulk movement of material
Conduction
Heat capacity (specific heat)
Convert Fahrenheit to Celsius
velocity through a medium
44. If the CG is above the edge - the object will not fall
period of a pendulum T of length L
Condition for stability
Convert Celsius to Fahrenheit
Projectile
45. Number density x temperature
Brahe
Heat
period of a pendulum T of length L
pressure depends on
46. Mass x specific heat x temperature change
mass flow rate formula
Heat
viscosity
Thermal radiation
47. Heat into system - work done by system
measurement of pressure
Change in internal energy
Heat
Period
48. The heat needed to raise the temperature of 1 pound of water by 1 degree F
1 BTU
Condition for stability
Rotational inertia (moment of inertia)
Internal energy
49. T=2p square root m/k frequency= square root k/m;/2p
density of lead
period p of a mass m oscillating on a horizontal spring of force constant k
Heat capacity (specific heat)
Newton's Second Law
50. 1 -000 kg/m^3
wave
Newton's Second Law
density of water
Engine efficiency cannot be 100%