Forces LAB. PART 1: Mapping the Magnetic Field-Invisible Forces. 1. BACKGROUND INFORMATION (what is a magnetic field?): 2. ASK A QUESTION (Aim):

Similar documents
Magnetic fields. Where do we go? 21 October 2015

24 Magnetic Fields BIGIDEA Write the Big Idea for this chapter.

Phys 223A. Spring Lab 3 Magnetism Some Investigations. Objective: To investigate magnetic interactions and magnetic fields.

1103 Period 19: Magnetic Forces and Electromagnets

Magnetic Potpourri. Objective: Today we will explore various properties of magnetism through four activities.

MAGNETISM. B.Directions: Answer the following questions with a short answer. You may use the back of this sheet if you need more space.

Magnetic Fields. Goals. Introduction. Mapping magnetic fields with iron filings

Magnetism. Magnets and Magnetic Fields S N

Class: Physics II Group 10. Lab performed 10/14/ 2016 Report submitted 10/27/ Eric Thomas. PHYSICS Lab 6: Magnetism

Magnetic Fields. Goals. Introduction. Mapping magnetic fields with iron filings

MAGNETS: A FIRST LOOK Grade Levels: K-4 17 minutes AIMS MULTIMEDIA Instructional Graphics Enclosed

Unit 3P.1: Forces, magnets and springs.

Vocabulary. Magnet. a material that can create magnetic effects by itself. Electromagnet

Exploring the Poles (Without Leaving Your Classroom!)

Lab 5. Magnetic Fields

GRADE 7: Physical processes 3. UNIT 7P.3 8 hours. Magnetism. Resources. About this unit. Previous learning. Expectations

Section 3: Mapping Magnetic Fields. In this lesson you will

Magnets SPI Success Criteria:

Physics Week 5(Sem. 2) Name. Magnetism. Chapter Summary. Magnetic Fields

Grade 2 Hands on Science Forces and Magnets

Pre-Lab Questions. Physics 1BL MAGNETISM Spring 2010

Review: Magnetism and Electromagnetism

A Deeper Look at Electricity A First Look at Magnets. NBSP Physical Science Institute Tuesday July 23, 2002

Fusion/Plasma/Magnetism Videos. Video 1: PSFC Fusion Research at MIT: Alcator C-Mod and the Plasma Science and Fusion Center (by MIT)

Electric and Magnetic Forces

Reading Question 24.1

Lab 5. Magnetic Fields

Gravitational Potential Energy

Objectives. to be able to represent a magnetic field at a point with a vector. to understand how to represent a magnetic field with field lines

Magnetism BROWARD COUNTY ELEMENTARY SCIENCE BENCHMARK PLAN

7th Grade Task for today:

Photo Credits: All images Harcourt

Magnetism. Magnets. Section 1

2. How do electrically charged objects affect neutral objects when they come in contact?

2. How do electrically charged objects affect neutral objects when they come in contact?

GRADE 5: Physical processes 4. UNIT 5P.4 5 hours. Magnetic forces. Resources. About this unit. Previous learning. Expectations

Magnetism. Resources and methods for learning about these subjects (list a few here, in preparation for your research):

Magnetism and Electricity Unit Design Rev9.08 Grade 5

Magnets and Compasses

Lesson 9: Products of Electricity

May 08, Magnetism.notebook. Unit 9 Magnetism. This end points to the North; call it "NORTH." This end points to the South; call it "SOUTH.

Physics 202: Lecture 8, Pg 1

Chapter 18 Study Questions Name: Class:

DRAWING YOUR CONTINENT

CLASSROOM KIT ELECTROMAGNETS

EB Education Revision Guide. How to work with Magnetism and Electromagnetism

Your web browser (Safari 7) is out of date. For more security, comfort and. the best experience on this site: Update your browser Ignore

4.7 Magnetism and electromagnetism

Magnetism and Gravity

Lecture #4.4 Magnetic Field

Elements of Physics II. Agenda for Today

Magnetism S8P5: Obtain, evaluate, and communicate information about gravity, electricity, and magnetism as major forces acting in nature.

Magnets & Electromagnets. Pg

Chromatography: Candy Coating and Marker Colors Student Version

Physics Lab 202P-9. Magnetic Fields & Electric Current NAME: LAB PARTNERS:

CLASSROOM VISIT ELECTROMAGNETS

Magnetic field lines outside a magnet are always drawn from north to south.

Activity 1: Evidence of Interactions

9.5 Making an Electric Motor. Grade 9 Activity Plan

Component 6 - Physics: Electricity, magnetism and waves

Magnetism Intro. 1) Students will be able to describe the magnetic fields around bar magnets.

Chapter 29. Magnetic Fields due to Currentss

Cabrillo College Physics 10L. LAB 8 Magnetism. Read Hewitt Chapter 24

Lesson 1: Forces. Fascinating Education Script Fascinating Intro to Chemistry Lessons. Slide 1: Introduction. Slide 2: Forces

Lab 7: Magnetism Introduction Magnets need no introduction (i.e. introduction to be added in future revision).

Chapter 19. Magnetism

1. A solenoid is a powerful magnet that is created by looping a conductor and passing a current through the conductor.

4.7.1 Permanent and induced magnetism, magnetic forces and fields. Content Key opportunities for skills development

Material World: Electricity

Mystery Substance Laboratory Experiment

MOTION IN THE SOLAR SYSTEM ENGAGE, EXPLORE, EXPLAIN

Magnets. Science Force Grade 3. The purpose of this visit is to investigate magnetism:

Activity 4: The Electric-Circuit Interaction

9. Which of the following is the correct relationship among power, current, and voltage?. a. P = I/V c. P = I x V b. V = P x I d.

Part 11 - Physics Paper 2 Magnetism and Electromagnetism Combined Science Application Questions

Your web browser (Safari 7) is out of date. For more security, comfort and. the best experience on this site: Update your browser Ignore

Magnetizing a substance

Final Revision G 7 Physics ( ) Multiple Choice Identify the choice that best completes the statement or answers the question.

9.1 Describe the method of making an electromagnet. 9.2 Construct an electromagnet from simple materials. 9.3 Predict the changes in magnetic

Energy and Electromagnetism

PHYSICS - CLUTCH CH 26: MAGNETIC FIELDS AND FORCES.

Electromagnetism Review Sheet

Electromagnetic Energy

So far. Chapter 19. Today ( ) Magnets. Types of Magnetic Materials. More About Magnetism 10/2/2011

Evaporation and Intermolecular Attractions

Chapter 29. Magnetic Fields

Magnetism and Electricity

MODULE 6 ELECTROMAGNETISM MAGNETIC FIELDS MAGNETIC FLUX VISUAL PHYSICS ONLINE

Page 2. Q1.Figure 1 shows two iron nails hanging from a bar magnet. The iron nails which were unmagnetised are now magnetised.

Physics 1402: Lecture 12 Today s Agenda

Embedded Assessment Notes

Electromagnetic Energy

Order from Disorder A Macroscale Simulation to Illustrate a Nanoscale Phenomena

Earth as a Magnet. The strength and orientation of the earth s magnetic field varies over time and location.

Written by Ruth M. Young, M.S. Ed.

PS 12b Lab 1a Basic Electrostatics

Compass Basics. Quick Map Basics Review For Compass Use

Review for Statics and Magnetism Test

Chapter 21. Magnetic Forces and Magnetic Fields

Transcription:

DUE DATE: Name: Forces LAB PART 1: Mapping the Magnetic Field-Invisible Forces 1. BACKGROUND INFORMATION (what is a magnetic field?): 2. ASK A QUESTION (Aim): 3. HYPOTHESIS (Use if, then, and because statement): 4. MATERIALS (what do you need): 5. SAFETY (Identify any safety equipment and procedures for this lab): INVISIBLE MAGNETIC FORCES LAB 1

6. METHOD (Is your experiment a fair test?): Independent Variable: What is the one thing that will change in your experiment? Dependent Variable: How will you measure your results? Constant Variable: (What are you keeping the same?): 7. PROCEDURE (list all the steps you do): Step 1: Reminder to use paper and iron filings to map the magnetic field of magnets. Step 2: Place a horseshoe magnet in the centre of a piece of paper and place a second piece of white paper (or clear sheet) on top of the magnet. Step 3: Lightly sprinkle a small amount of iron filings around the magnet in a circular pattern, gradually moving outward from the magnet. (the filings should begin to line up ). CAUTION: BE SURE NOT TO GET IRON FILINGS ON THE MAGNETS. Step 4: Gently tap the paper to accentuate the magnetic filed lines formed by the filings. Note: observe the filings closely. Step 5: Draw what you see in the diagram section of this lab. Step 6: Repeat step 3 and 4 but position the magnets so that north and north are facing each other. Draw what you see in observation box #1 with an appropriate title. Step 7: Repeat step 3 and 4 but position the magnets so that north and south bar Step 8: Repeat step 3 and 4 but position the magnets so that south and south bar Step 9: Repeat step 3 and 4 but position the magnets so that south and north bar 8. DIAGRAM: eg. Drawing of the magnetic field surrounding a horseshoe magnet INVISIBLE MAGNETIC FORCES LAB 2

9. OBSERVATIONS: Diagram #1- INVISIBLE MAGNETIC FORCES LAB 3

10. RESULTS (looking at your observations): Complete each of these sentences. Use the words repel and attract. Magnetic fields of poles north with north each other. Magnetic fields of poles north with south each other. Magnetic fields of poles south with south each other. Magnetic fields of poles south with north each other. Therefore, like poles (North/North) each other while unlike poles (North/South) each other. By mapping the fields we can see the actual field lines and identify the of the magnet. 11. CONCLUSION (relate to Aim, Hypothesis, and Results): a. Were your predictions correct (look at Aim, Hypothesis, and Results?) b. Compare the magnetic fields of the bar magnet and the Earth. Describe how the magnetic fields are similar and/or how are the magnetic fields different. c. Describe what the magnetic field lines do when two like magnetic poles are placed near each other. d. Describe what the magnetic field lines do when two unlike magnetic poles are placed near each other. INVISIBLE MAGNETIC FORCES LAB 4

e. Observe the magnetic field lines from your observation boxes. How can you tell where the magnetic field (force) is the strongest? f. What happens to the strength of the magnetic field as you get further from the magnet? g. A compass needle does not point exactly to the geographic North Pole. Where does it actually point? h. List 3-4 items found in your household that can be magnetic. What kind of material are these items made of that makes them so magnetic? i. Draw a picture to represent the Earth with an imaginary magnet inside that helps us to think about the Earth s magnetic field. Label the north and south poles of the magnet and the North and South poles of the Earth. INVISIBLE MAGNETIC FORCES LAB 5