Download Phet Lab: Circuits - Oakland Schools Moodle

Survey
yes no Was this document useful for you?
   Thank you for your participation!

* Your assessment is very important for improving the workof artificial intelligence, which forms the content of this project

Document related concepts

Rectifier wikipedia , lookup

Mains electricity wikipedia , lookup

Switched-mode power supply wikipedia , lookup

Electrical substation wikipedia , lookup

Ground (electricity) wikipedia , lookup

Fault tolerance wikipedia , lookup

Opto-isolator wikipedia , lookup

Flexible electronics wikipedia , lookup

Alternating current wikipedia , lookup

Surface-mount technology wikipedia , lookup

Two-port network wikipedia , lookup

Buck converter wikipedia , lookup

Resistive opto-isolator wikipedia , lookup

Earthing system wikipedia , lookup

Resistor wikipedia , lookup

Multimeter wikipedia , lookup

Metadyne wikipedia , lookup

Rectiverter wikipedia , lookup

Circuit breaker wikipedia , lookup

Electrical ballast wikipedia , lookup

Current source wikipedia , lookup

Ohm's law wikipedia , lookup

Network analysis (electrical circuits) wikipedia , lookup

RLC circuit wikipedia , lookup

Transcript
Phet Lab: Circuits with Diagrams
DO NOT PRINT; SUBMIT TO MOODLE
Name_____________________________ Block____
Save this document to your own folder, calling it: NAME Phet Circuit Diagrams
1) Create a circuit with a battery, one resistor, and a closed switch. You may use either lifelike or schematic
view.
Use Control-PrtScn (Print screen function) to copy your drawing, and paste it into this paper in the space
below. Click on the picture, and then crop the picture using the
button so it only includes your circuit.
Expand the picture to be easily readable.
2) Click on non-contact ammeter, and move it so the crosshairs are over a wire in the circuit.
Adjust the properties of the battery by right-clicking on it. Set its resistance to zero, and then adjust the
voltage so the current is as close to 2.0 Amperes as you can get. Paste your diagram here.
3)
a) Add a second resistor in series with the first one. Change the resistance of each resistor to
approximately 8 Ohms, and adjust the voltage of the battery to 48 Volts.
b) Record actual values here:
R1 =
R2 =
c) Use a calculator to calculate V/Total R:
Total R =
V=
I=
It should match the measured current above.
d) Click on all circuit elements to “show value”, and then copy and paste the diagram below.
4) Create a new parallel circuit. Give yourself room to work!
a) Each branch should have one resistor, and one switch controlling only that branch. Hint: Think of
our road system, with a lot of different possible routes from 7 Mile to 8 Mile.
b) You should insert a regular ammeter in each branch of the circuit which shows the current through
that branch, and one ammeter near the battery which will show the total current through the whole
circuit.
c) Be sure to click “Show Values”
d) After you paste in the diagram, you should use Ohm’s law to calculate the current through each
ammeter, and see if it matches the actual values on the screen.
CALCULATIONS:
Resistor 1:
Resistor 2:
Resistor 3: