SUBJECTS
|
BROWSE
|
CAREER CENTER
|
POPULAR
|
JOIN
|
LOGIN
Business Skills
|
Soft Skills
|
Basic Literacy
|
Certifications
About
|
Help
|
Privacy
|
Terms
|
Email
Search
Test your basic knowledge |
Praxis Physics Basic Principles
Start Test
Study First
Subjects
:
praxis
,
science
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. How do you determine the volume of an irregularly shaped object?
Water displacement
Ionizing Radiation (3 types)
Chemical Change
Isotope
2. A Machine that converts thermal energy to mechanical energy that can be used to do work
Conservation of Energy
Heat Engine
Energy
Kinetic Energy
3. Type of High energy electromagnetic radiation consisting of photons. It rids the decaying nucleus of excess energy after it has emitted either alpha or beta radiation. They can cause serious damage to living tissue. It takes thick lead to stop them.
Volume
Gamma Rays
Work
Radioisotopes
4. Substances that have mass and occupy space
Atomic Weight
Molecule
Matter
Isotope
5. AKA Mass Number. The total number of protons and Neutrons in the nucleus of an atoms. Referred to as 'A.'
Atomic Mass
Joule
Specific Gravity
Weight
6. Isotopes that have not been observed to decay
Joule
Most abundant Elements in Universe
Kinetic Energy
Stable Isotopes
7. A change that does not result in different substances; when an object changes form but not compostion.
Entropy
Nuclear Fission
Thermodynamic Equilibrium
Physical Changes
8. The measure of the ratio of a substance's density compared to the density of water.
Radioactive Half - life
Chemical Change
Specific Gravity
Atomic Mass
9. Measure of the amount of substance in an object
Radioactivity
Radioisotopes
Physical properties
Mass
10. Energy transferred to a body by a means other than work. (through the process of heat)
Thermal Contact
Alpha Rays
Radioactive Decay
Three states of matter
11. Joining of two nuclei; occurs under extreme temperatures and pressure. Fusion occurs naturally in stars (responsible for the release of great energy).
Water displacement
Nuclear Fusion
Solutions
Surrounding Environment (physics)
12. When energy is emitted by one body and absorbed by another
Closed Systems (physics)
Thermal Contact
Radioisotopes
Radiation
13. The time it takes for half of the radioactive nuclei in a sample to undergo radioactive decay.
Radioactive Half - life
Compound
Work
Nuclear Fusion
14. The smallest unit of matter that has the characteristics of an element; consists of three main types of subatomic particles: protons neutrons and electrons.
Thermal Contact
Atoms
Heat Engine
Joule
15. Ratio of the average mass per atom of a sample (which can include various isotopes) to 1/12 of the mass of an atom of carbon -12.
Open Systems (physics)
Work
Atomic Weight
Solutions
16. Total Kinetic Energy and Potential Energy in a system
Weight
First Law of Thermodynamics
Physical Changes
Thermal Energy
17. Refers to everything outside a thermodynamic system.
Thermodynamics
Surrounding Environment (physics)
Volume
Thermodynamic Equilibrium
18. The quantity of energy transferred by one system to another due to changes in a system that is the result of external forces; also can be described as the amount of energy that must be transferred to overcome a force.
Work
Isotope
Three states of matter
Radiation
19. Two or more atoms held together by covalent bonds
Physical properties
Energy
Thermal Contact
Molecule
20. Refers to the fact that the total amount of energy in a closed system is constant
Thermodynamic Equilibrium
Atomic Mass
Conservation of Energy
Ionizing Radiation (3 types)
21. Can be Beta - Minus or Beta Plus. Beta - Minus: contain an energetic electron Beta - plus: emitted by positrons and can result in gamma photons. Beta particles can be stopped by thin metal.
Nuclear Fission
Beta Rays
Volume
Radioactive Isotopes
22. Refers to the amount of energy in a system that is no longer available for work. (also used to describe the amount of disorder in a group)
Entropy
Physical Changes
Radioactive Decay
Volume
23. This refers to objects that have the same temperature b/c heat is transferred between them to reach equilibrium
Weight
Thermodynamic Equilibrium
Thermodynamics
Density
24. Rate at which work is performed
First Law of Thermodynamics
Perpetual Motion
Density
Power
25. Atoms that have an unstable nucleus that has excess energy and the potential to make radiation particles within the nucleus or undergo radioactive decay which can result in the emission of gamma rays. May occur naturally or artificially produced.
Physical properties
Radioisotopes
Electron Shell Configuration
Water displacement
26. Branch of Physics that studies the conversion of energy into work and heat. Concerned w/ variables such as temperature - volume - and pressure
Chemical Change
Perpetual Motion
Thermodynamics
Conservation of Energy
27. A misguided belief that a system can continuously produce more energy than it consumes.
Nuclear Fusion
Thermodynamic Equilibrium
Isolated System (physics)
Perpetual Motion
28. Properties concerned with the constituent particles that make up a substance. Can include: Atomic Number - Category - Group - Period - Block - weight - electron configuration - electrons per shell - phase - density - Sublimation point - specific heat
Closed Systems (physics)
Radioactive Isotopes
Chemical Properties
Mixtures
29. A System that cannot exchange heat - work - or matter with its surroundings. Total Energy & Mass stay constant w/in system
Nuclear Fusion
Isolated System (physics)
Radioactive Half - life
Specific Gravity
30. Solid - Liquid - Gas
Three states of matter
Open Systems (physics)
Chemical Change
Power
31. Occurs when an unstable atomic nucleus spontaneously loses energy by emitting ionizing particles & radiation. It is a form of energy transfer. Before Decay = parent nuclide After Decay = Daughter nuclide (s)
Radioactive Decay
Solutions
Conservation of Energy
Radiation
32. Positive; larger than Beta. Because of their large mass they can be easily stopped (even with a sheet of paper.) Can cause severe damage if ingested.
Thermal Contact
Mixtures
Water displacement
Alpha Rays
33. Measure of the amount of mass per unit volume.
Isotope
Radioactive Decay
Density
Atomic Weight
34. Transfer of Energy from a body or system as a result of thermal contact. Heat consists of random motion and the vibration of atoms - molecules - & ions. Higher the temperature - greater the atomic/molecular motion
Mixtures
Density
Heat
Chemical Change
35. The capacity to do work
Density
Energy
Mass
Molecule
36. Measure of gravitational pull of Earth on an object or between two bodies
Molecule
Compound
Nuclear Fission
Weight
37. Refers to the particles that are emitted from nuclei as a result of nuclear instability
Specific Gravity
Radioactivity
Electron Shell Configuration
Gamma Rays
38. Measurement of Work
Weight
Stable Isotopes
Joule
Work
39. Homogeneous mixtures composed of two or more substances that have become one
Solutions
Beta Rays
Nuclear Fission
Mixtures
40. Isotopes that have unstable nuclei and can undergo spontaneous nuclear reactions which results in particle or radiation being emitted.
Radioactive Isotopes
Physical Changes
Atomic Weight
Mixtures
41. Conservation of Energy (energy can only be transferred - not created or destroyed)
First Law of Thermodynamics
Isolated System (physics)
Atomic Mass
Elements
42. A variation of an atom; occur when the number of protons in the nucleus are the same but the number of neutrons are not. Written as the element plus the number of Neucleons (i.e. Carbon -13 (6 Protons - 7 Neutrons)
Atomic Mass
Chemical Properties
Isotope
Heat
43. Measurement of the amount of cubic space occupied.
Thermodynamic Equilibrium
Open Systems (physics)
Elements
Volume
44. A system that can exchange heat and work - but not matter
Closed Systems (physics)
Physical properties
Radioactive Half - life
Conservation of Energy
45. Capable of interacting with a surrounding environment and can exchange heat - work (energy) and matter outside their system boundaries
Open Systems (physics)
Most abundant Elements in Universe
Surrounding Environment (physics)
Alpha Rays
46. Substance containing two or more elements; formed by chemical reactions. Can only be separated by a chemical reaction
Isolated System (physics)
Compound
Density
Radioactivity
47. Substances that consist of only one type of atom
Mixtures
Elements
Radioisotopes
Closed Systems (physics)
48. A change that results in a different substance. They may release or consume energy.
Heat
Most abundant Elements in Universe
Specific Gravity
Chemical Change
49. Refers to the energy of an object in motion.
Kinetic Energy
Density
Isolated System (physics)
Closed Systems (physics)
50. Causes an electron to detach from an atom; occurs in radioactive reactions. Three types: 1. Alpha 2. Beta 3. Gamma
Potential Energy
Ionizing Radiation (3 types)
Mass
Work