The Long List of Things to Memorize

Similar documents
Pre Comp Review Questions 7 th Grade

Pre Comp Review Questions 8 th Grade Answers

Honors Physics Quarter 1. Math and Measurement Duration 2 Weeks

Kinematics 1D Kinematics 2D Dynamics Work and Energy

HIGLEY UNIFIED SCHOOL DISTRICT INSTRUCTIONAL ALIGNMENT. Physics Quarter 1. Scientific Inquiry (Duration 1 Week)

Physics Pre-comp diagnostic Answers

Midterm Exam #1: Solutions

Pre-Comp Review Questions- 8 th Grade

Block 1: General Physics. Chapter 1: Making Measurements

AP Physics 1: Algebra-Based

Chapter 6 Work and Energy

Chapter 12 Vibrations and Waves Simple Harmonic Motion page

W = F Δx or W = F Δx cosθ

Chapter 3: Force, Work and Energy

Knowledge Organiser Year 12 Semester 1: Measurements and Movement

Ch 5 Work and Energy

3. What type of force is the woman applying to cart in the illustration below?

Chapter 13. Simple Harmonic Motion

General Physics I Spring Forces and Newton s Laws of Motion

Chapter 3 The Laws of motion. The Laws of motion

KINETIC AND POTENTIAL ENERGY. Chapter 6 (cont.)

Work changes Energy. Do Work Son!

m k F = "kx T = 2# L T = 2# Notes on Ch. 11 Equations: F = "kx The force (F, measured in Newtons) produced by a spring is equal to the L g T = 2#

Momentum & Energy Review Checklist

Work Done by a Constant Force

Two Hanging Masses. ) by considering just the forces that act on it. Use Newton's 2nd law while

Motion, Forces, and Energy

WORK, POWER & ENERGY

QUANITY NAME OF UNIT ABBREVIATION length meter m mass kilogram kg time second s

Mechanics and Heat. Chapter 5: Work and Energy. Dr. Rashid Hamdan

Newtons Laws/Forces and Motion Study Guide (Fall 2017)

General Physics I Work & Energy

Metric System (System International or SI)

Power: Sources of Energy

In-Class Problems 20-21: Work and Kinetic Energy Solutions

Conservation of Energy and Momentum

AS Unit G481: Mechanics

Lab: Energy-Rubber Band Cannon C O N C E P T U A L P H Y S I C S : U N I T 4

The content contained in all sections of chapter 6 of the textbook is included on the AP Physics B exam.

Elastic Potential Energy

Mechanics. Time (s) Distance (m) Velocity (m/s) Acceleration (m/s 2 ) = + displacement/time.

TOPIC LEARNING OUTCOMES REMARKS HOUR

Chapter 7 Energy of a System

MULTIPLE CHOICE. Choose the one alternative that best completes the statement or answers the question.

Axis Balanced Forces Centripetal force. Change in velocity Circular Motion Circular orbit Collision. Conservation of Energy

Momentum & Energy Review Checklist

MULTIPLE CHOICE. Choose the one alternative that best completes the statement or answers the question.

ENERGY. Conservative Forces Non-Conservative Forces Conservation of Mechanical Energy Power

Study Guide Solutions

These variables have specific names and I will be using these names. You need to do this as well.

0J2 - Mechanics Lecture Notes 2

Physics 101: Lecture 9 Work and Kinetic Energy

Dynamics Review Outline

MULTIPLE CHOICE. Choose the one alternative that best completes the statement or answers the question.

Work and energy. 15 m. c. Find the work done by the normal force exerted by the incline on the crate.

Exam 2--PHYS 101--F11--Chapters 4, 5, & 6

Purpose of the experiment

One-Dimensional Motion Review IMPORTANT QUANTITIES Name Symbol Units Basic Equation Name Symbol Units Basic Equation Time t Seconds Velocity v m/s

Name Lesson 7. Homework Work and Energy Problem Solving Outcomes

Review. Kinetic Energy Work Hooke s s Law Potential Energy Conservation of Energy Power 1/91

This chapter covers all kinds of problems having to do with work in physics terms. Work

Physics- using a small number of basic concepts, equations, and assumptions to describe the physical world

Lesson 8: Work and Energy

CHAPTER 6 WORK AND ENERGY

MULTIPLE CHOICE. Choose the one alternative that best completes the statement or answers the question.

St Olave s Grammar School. AS Physics Mock Revision Checklist

Chapter Work, Energy and Power. Q1. The co-efficient of restitution e for a perfectly elastic collision is [1988] (a) 1 (b) 0 (c) (d) 1 Ans: (a)

What is a Force? Free-Body diagrams. Contact vs. At-a-Distance 11/28/2016. Forces and Newton s Laws of Motion

ANSWER'SHEET' 'STAPLE'TO'FRONT'OF'EXAM'! Name:!!!CWID:!!! Lab'section'(circle'one):' 6!(W!3pm)! 8!(W!7pm)!!!

ANSWER'SHEET' 'STAPLE'TO'FRONT'OF'EXAM'! Name:!!!CWID:!!! Lab'section'(circle'one):' 6!(W!3pm)! 8!(W!7pm)!!!

Lesson 5. Luis Anchordoqui. Physics 168. Tuesday, September 26, 17

Chapter 6 Work, Energy, and Power. Copyright 2010 Pearson Education, Inc.

5.3: Calculate kinetic energy, gravitational potential energy, and elastic potential energy. Do Now: 1. Hand in your Forms of Energy Wheel

Chapter Four Holt Physics. Forces and the Laws of Motion

W = F x W = Fx cosθ W = Fx. Work

Chapter 4. Energy. Work Power Kinetic Energy Potential Energy Conservation of Energy. W = Fs Work = (force)(distance)

Chapter 7. Work and Kinetic Energy

Dynamics Review Checklist

FORCE, WORK, ENERGY & POWER

Unit-1. Force & Motion. Solutions 1.6 Energy & Motion page a) W 1. = F.x = 1. = F.cos60!.2x =F.x W 2. b) = W 2 = 2. 2.m.v 1.

Broward County Schools AP Physics 1 Review

WORK, ENERGY & POWER Work scalar W = F S Cosθ Unit of work in SI system Work done by a constant force

Chapter 5: Energy. Energy is one of the most important concepts in the world of science. Common forms of Energy

UNITS AND DEFINITIONS RELATED TO BIOMECHANICAL AND ELECTROMYOGRAPHICAL MEASUREMENTS

Power: Sources of Energy

Physics 231. Topic 5: Energy and Work. Alex Brown October 2, MSU Physics 231 Fall

Physics 111. Lecture 15 (Walker: 7.1-2) Work & Energy March 2, Wednesday - Midterm 1

AQA Physics P2 Topic 1. Motion

Physics 2414 Group Exercise 8. Conservation of Energy

Healy/DiMurro. Vibrations 2016

0.1 Work. W net = T = T f T i,

2 possibilities. 2.) Work is done and... 1.) Work is done and... *** The function of work is to change energy ***

Chapter 4 Dynamics: Newton s Laws of Motion

Conservative vs. Non-conservative forces Gravitational Potential Energy. Conservation of Mechanical energy

Mechanical Energy. Unit 4

Measuring Time, Space, and Matter. Units of Measurement

Force mediated by a field - long range: action at a distance: The attractive or repulsion between two stationary charged objects.

Subject: Triple Physics Unit title: P4.5 Forces (Paper 2) Strand Content Checklist (L) R A G Forces and their interactions

Dynamics: Forces and Newton s Laws of Motion

Dynamics Review Checklist

Transcription:

8 th Grade Physics BASIS Peoria Pre Comprehensive Exam Prep The Long List of Things to Memorize How to use this guide o This is a list of items that must be memorized in order to have success on the precomprehensive exam in 8 th grade physics. o You must be able to recite any of these definitions or equations instantaneously. o For any item which you are not 100% confident that you have memorized, you should make a flashcard where the left hand column is the front side of the flashcard and the right hand column is the back of the flashcard. o To effectively use flashcards, you must go over them every single day. This means 7 days a week from now until the pre comprehensive examination, or until you are 100% confident that you have memorized the concept and will have it memorized forever. o 10 minutes a day or less, EVERY DAY o To use flashcards: start with a single pile of cards. Go through them one at a time. Any that you do not get correct goes into a review pile, any that you do get correct goes into a completed pile. Once you have gone through the initial pile, pick up the review pile only try it again. Continue to sort those into complete and review piles. Any word you get correct the second time goes into the complete pile, any you are still uncertain of goes into the review pile again. Go through the review pile 4 times. o Any card which ends up in the review pile after 4 times is something you need to study. Read the front of the flashcard out loud, turn it over and read the back of it out loud. Repeat this process for a total of 5 times. o Repeat the entire process tomorrow. o Any card which goes into the complete pile on the first time through the pile every day for a week should be removed from your pile of flashcards and you should consider it memorized. o We will not have class time to review vocabulary terms in class; you must spend time studying your vocabulary terms on your own.

Scientific Measurement and graphing Qualitative measurement Quantitative measurement Metric units of length Metric units of mass Metric units of weight Metric units of time Metric units of volume Metric units of temperature Metric prefix for 10 9 Metric prefix for 10 6 Metric prefix for 10 3 Metric prefix for 10 2 Metric prefix for 10 1 Metric prefix for 10 1 Metric prefix for 10 2 Metric prefix for 10 3 Metric prefix for 10 6 Metric prefix for 10 9 Equation for slope of a graph Units for slope How to make a graph Equation for the Area of a rectangle Equation for the area of a triangle o Answers questions other than how many o Describes an object o Answers the question how many or how much o Includes a number o meters (m) o kilogram (kg) o Newton (N) o second (s) o meters cubed (m 3 ) or liters (L) o Kelvin (K) o Giga (G ) o Mega (M ) o kilo (k ) o hecto (h ) o deka (da ) o deci (d ) o centi (c ) o milli (m ) o micro ( ) o nano (n ) o o Units on the y axis divided by units on the x axis o Vertical axis is dependent variable o Horizontal axis is independent variable o Both axes need even scales o o Position, Velocity, and Acceleration definition of reference point definition of position o a stationary point from which another object s position is measured o typically used to determine if the second object is in motion o the vector quantity describing the location, both distance and direction, from a reference point to an object

definition of motion definition of speed units for speed Instantaneous speed Average speed Equation for average speed Definition of velocity Constant velocity Definition of acceleration Positive Acceleration Negative Acceleration units for acceleration Equation with acceleration, initial velocity, final velocity, and time interval Equation with acceleration, displacement, initial velocity, and time interval Definition of resultant velocity velocity from a position time graph Acceleration from a velocity time graph Position from a velocity time graph Velocity from an acceleration time graph o when the position of one object is changing when measured from a reference point o how fast an object is moving o / o Speed at any one instant in time o Found using speedometer o Time interval is shorter than anything interesting o Total distance travelled divided by total time that passed while travelling o /Δ o May only be used when 0 / o Change in displacement in a time interval o Speed in a specific direction o Acceleration is 0 / o Object has constant speed o Object does not change direction o Change in velocity o Acceleration in the positive direction o Acceleration in the negative direction o / o /Δ o Δ o Δ Δ Δ o The net total of velocities o Velocity is the slope of a position time graph o Acceleration is the slope of a velocity time graph o Position is the area under the curve of a velocity time graph o Velocity is the area under the curve of an acceleration time graph Forces and Newton s 1st and 2nd Laws of Motion Statement of Newton s 1st law of motion Definition of inertia o An object in motion will remain in motion and an object at rest will remain at rest unless acted upon by an unbalanced force. o A measurement of the mass of an object

Inertia determined by mass o Only the amount of mass changes the amount of inertia Equation for weight o Definition of weight o The force of gravity on an object Mass vs. weight o mass does not change with gravity changes, but weight depends on the force of gravity Free Body Diagram o Drawing depicting all of the forces which act on an object Newton s 2nd law in equation form o Direct proportionality o One value increases as another increases inverse proportionality o one value increases when another decreases Definition of force o a push or a pull on an object Unit of force o Newton (N) mathematical derivation of Newton o 1N = 1kg*(1m/s 2 )=1kgm/s 2 Definition of net force o The result with all the (vector) forces that act on an object are added together Vector quantities o quantities with a magnitude and a direction scalar quantities o quantities with only a magnitude Definition of equilibrium o When the net force on an object is 0N whether it is moving or stationary Balanced forces o when the forces add up to 0N unbalanced forces o When the forces do not add up to 0N Definition of normal force o force caused by a surface which is perpendicular to the surface Definition of tension force o force caused by a rope Definition of friction force o force cause by surface which is parallel to the surface Coefficient of friction o, the measure of how rough a surface is o It has no units Cause of friction o friction occurs because surfaces are not perfectly smooth Equation for Hooke s law o Spring constant o k (in hooke s law) o a measure of how easily stretched the spring is o units are N/m Newton s 3rd Law of Motion

Statement of Newton s 3rd law of motion properties of action and reaction forces o every action (force) has a reaction (corresponding force) that is equal in magnitude and opposite in direction o they occur at exactly the same time o they are always the same size o they act between the same two objects o they each act on separate objects Energy Statement of the conservation of energy law o Energy cannot be created nor destroyed, it can only be transformed from one type to another Equation for Pegrav o PE grav =mgh Equation for KE o KE = ½ mv 2 Equation for PEspring o PEspring = ½ kx 2 Equation for Conservation of Energy o TEi = TEf Calculating total mechanical energy of a o TME = KE + PEgrav + PEspring system Definition of Energy o The ability to do work Units for Energy o Joules (J) Definition of Kinetic Energy o The energy of motion Definition of Potential Energy o Energy that is stored to be turned into motion later Definition of gravitational potential energy o Energy an object possesses because of its position in a gravitational field Definition of spring (elastic) potential energy o Energy which is stored in a stretched or compressed spring Definition of Work o When a force causes a displacement Equation for Work (universal) o Δ Units for work o Joules (J) o Nm Work Energy Theorem o Δ