Magnetism & Electricity. Science Notebook Format Date: Time: Title of Lesson Question: This question...
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Transcript of Magnetism & Electricity. Science Notebook Format Date: Time: Title of Lesson Question: This question...
Magnetism & Electricity
Science Notebook FormatDate:Time:
Title of LessonQuestion: This question focuses the inquiry of the lesson.
Prediction: Sometimes the lesson calls for a prediction of the
outcomes. Be sure to state your prediction in this manner: I think
that…...because ….. If science words are used an explanation should
follow.
Vocabulary: New words and definitions to be used during the lesson.
Materials: A list of the items you need to complete your
investigation.
Procedures: These are step by step instructions on how to complete
the investigation.
Observations: Drawings, descriptions, data tables, graphs showing
what happened during your experiment or investigation.
Conclusion: What did you learn in this inquiry? What were your
findings? Be sure to answer the question posed at the beginning of
the investigation. Use your vocabulary words and definitions! Also
check How to Write a Powerful Conclusion.
Date:Time:
Question: What is static electricity?Prediction: I think…because…Vocabulary: • electricity-• attract-• repel-• electron-Materials: balloon, string, tape
Procedures:
1. Tie a piece of cereal to a string approximately 12 inches long.
2. Tape the string to your desk.
3. Rub the balloon against your clothing (to get a negative charge) then hold the balloon next to the cereal.
4. Record your observations.
Static Electricity (1.e)
PROJECT 1 - Swinging cerealWhat you need:
a hard rubber or plastic comb, or a balloon thread, small pieces of dry cereal (O-shapes, or puffed rice of wheat)
What to do: 1. Tie a piece of the cereal to one end of a 12 inch piece of thread. Find a place to attach
the other end so that the cereal does not hang close to anything else. (You can tape the thread to the edge of a table but check with your parents first.)
2. Wash the comb to remove any oils and dry it well. 3. Charge the comb by running it through long, dry hair several times, or vigorously rub
the comb on a wool sweater. 4. Slowly bring the comb near the cereal. It will swing to touch the comb. Hold it still until
the cereal jumps away by itself. 5. Now try to touch the comb to the cereal again. It will move away as the comb
approaches. This project can also be done by substituting a balloon for the comb.
What Happened: Combing your hair moved electrons from your hair to the comb. The comb had a negative static charge. The neutral cereal was attracted to it. When they touched, electrons slowly moved from the comb to the cereal. Now both objects had the same negative charge, and the cereal was repelled.
http://www.sciencemadesimple.com/static.html#static_electricity_experiment
Observations:
Conclusion:I learned…
Date:Time:
Mystery ObjectsQuestion: What kind of objects are attracted to a
magnet?
Predictions: I think…Vocabulary:
• magnetism-
Materials: magnets, mystery objects
Procedures:
1. Explore the classroom with your magnet (computers and electronics are off limit.
2. Observe the mystery objects without the magnet.
3. Predict which objects will be attracted to the magnet.
4. Test the mystery objects.
5. Record the results.
6. Discuss your results.
Activity 1 (permanent magnets)
Observations:
Conclusion:I learned…
Magnetic Field Date:
Time:
Question: How do magnets interact?
Prediction: I think…
Vocabulary:• magnetic field- the area in which the pull of a magnet is felt.
Materials: doughnut magnets, iron filings, bar magnets
Procedures:1. Construct a floating magnet.2. Diagram your floating magnet.
3. Observe which areas of a magnet have the strongest magnetic pull.
4. Record your findings.
Observations:
Conclusion:I learned…
Building a CompassDate:
Time:
Question: How does a compass work?
Prediction: I think…
Vocabulary:
• compass- an instrument for determining directions with a freely rotating magnetized needle that indicates magnetic north. Materials:• plastic cup with water• styrofoam chip• needle• magnet• manufactured compass
Procedures:
1. Find magnetic north using a compass.
2. Explore what objects might affect the compass.
3. Record your observations.
4. Rub a needle in only one direction with a magnet.
5. Stick the needle through the Styrofoam chip.
6. Place the Styrofoam in the water.
7. Find magnetic north using your compass.
8. Record your observations.
Observations:
Conclusion:I learned…
Date:Time:
Motors (1.g)Activity 2
Question: How can you make a motor spin?
Prediction: I think…because…
Vocabulary:
• electricity-
• electric current-• electric charge-
Materials:• D-cell• motor
Procedure:1. Using your materials make the motor spin.2. Record your observations.
Observations:
Conclusion:I learned…
Date:Time:
Pathfinders Question: What is a circuit?
Prediction: I think…because…
Vocabulary:• circuit- path along which electric current flows.• open circuit- circuit in which electric current cannot flow because the path is not complete.• closed circuit- complete path along which an electric current can flow.
Materials:• pathfinders sheet• d-cell• wires• light bulb
Procedures:
1. Using the pathfinder sheet mark which pictures you think will make a closed circuit.
2. Share your predictions.
3. Test your predictions.
Observations:See attached sheet
Conclusion:I learned…
Series Circuits Date:
Time:Question: What is a series circuit?Prediction: I think…
Vocabulary:• series circuit- a circuit with only one path for the electric current to flow.• insulator- a material that does not conduct heat or electricity well.• conductor- material that does conduct heat or electricity well.
Materials: • wires, battery holder, d-cell, symbol sheet, light bulb
Procedure:
1. Using your materials construct a series circuit.
2. Draw a diagram of your circuit.
Observations:
Conclusion:I learned…
Date:Time:
Series Circuit Part II (1.a)Activity 3a Part 1
Question: Can more than one light bulb be lit using a series circuit?
Predictions: I think…because…
Materials:• wires• circuit board• d-cell• switch• light bulbs
Procedure:1. Using your materials try to light two light bulbs.2. Diagram your results.3. Construct a circuit that uses a switch.4. Diagram your results.
Observations:
Conclusion:I learned…
Parallel CircuitsDate:Time:Question: What is a parallel circuit?Prediction: I think…because…
Vocabulary:• parallel circuit- a circuit with more than one
path for electricity to flow.
Materials:• wires• battery holderProcedure:1. Using your materials construct a parallel
circuit.2. Diagram your observations.
• D-cell• light bulb
Observations:
Conclusion:I learned…
Date:Time:
Holiday Lights (1.a)Activity 3a Part 2
Question: Would a parallel circuit or a series circuit be better for holiday lights?
Predictions: I think…because…
Materials:• wires• circuit board• d-cell• light bulbs• switch
Procedures:1. Construct a closed circuit using multiple light
bulbs.2. Diagram your results.
Observations:
Conclusion:I learned…
Testing CircuitsDate:Time:
Question: What is a conductor?Prediction: I think…because…
Materials: D-cell, circuit board, wires, light bulbs, switch, mystery objects
Procedures:1. Predict which items will be conductors and which
ones will be insulators.2. Test your items.3. Record your observations.
Observations:
Conclusion:I learned…
Electromagnets Date:Time:
Question: What is an electromagnet?Prediction: I think…because…
Vocabulary:• electromagnet- a temporary magnet that can be turned on and off.
Materials: d-cell, wire, metal rod, metal washers or paperclips
Observations:
also see attached
Conclusion:I learned…
Procedures:
1. Construct a simple electromagnet (5 coils).
2. Test your electromagnet.
3. Add 5 more coils to your rod.
4. Record your observations.
5. Complete your data sheet and graph.
Extension Activities:• Breaking the Force
• Click It (Morse Code)
• Circuit Boards
Links and Resources:
• http://www.sciencemadesimple.com/static.html
• http://www.coolmagnetman.com/magelect.htm
• http://www.pge.com/microsite/PGE_dgz/wires/activity.html
• http://www.andythelwell.com/blobz/
• united streaming
• http://www.howstuffworks.com/compass.htm
Enjoy teaching Magnetism and
Electricity!