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Name: Date: Student Exploration: Advanced Circuits Note to teachers and students: This Gizmo was designed as a followup to the Circuits Gizmo. We recommend doing that activity before trying this one.

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This guide provides step-by-step instructions for filling out the Student Exploration Advanced Circuits form online. Designed to support users of all levels, this comprehensive guide will lead you through each component of the form with clarity and precision.

Follow the steps to complete the Student Exploration Advanced Circuits form successfully.

  1. Press the ‘Get Form’ button to acquire the form and open it in the designated editor of your choice.
  2. Begin by entering your name in the provided space at the top of the form to identify your submission.
  3. Fill in the date by selecting or typing the current date in the appropriate field.
  4. Refer to the Prior Knowledge Questions section and provide answers to the two questions regarding current, resistance, and voltage. Make sure your responses reflect your understanding.
  5. Proceed to the Gizmo Warm-up section. Follow the instructions carefully to utilize Ohm’s law and engage with the circuit simulation tools to answer the questions related to resistance and current.
  6. Advance to Activity A and follow the instructions to calculate the resistance in the complex circuits outlined. Document your calculations in the provided spaces and use the Gizmo to verify your findings.
  7. Continue through Activity B by building the prescribed circuits and providing your answers to the various questions about fuses and circuit safety. Make sure to summarize your thoughts in the final question.
  8. Once you have completed all sections, review your entries for accuracy. You can save your changes, download a copy for your records, print the form if needed, or share it with your instructor.

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In electrical circuits, it is possible to replace a group of resistors with a single equivalent resistor. The equivalent resistance of a number of resistors in series will be the sum of the individual resistances. The unit of resistance is the Ohm i.e. in symbol \Omega.

To find the total resistance, we note that R2 and R3 are in parallel and their combination Rp is in series with R1. Thus the total (equivalent) resistance of this combination is Rtot=R1+R2. First, we find Rp using the equation for resistors in parallel and entering known values: 1Rp=1R2+16.00Ω+113.0Ω=0.2436Ω.

Gizmo Warm-up In the Circuits Gizmo, you learned how to use Ohm's law : I = V/R , to determine the current in parallel and series circuits.

The total parallel circuit current is the sum of the individual branch currents: Itotal = I1 + I2 + . . . I. The total resistance of a parallel circuit is less than any of the individual brand resistances: Rtotal=11R1+1R2+1R3.

How do you calculate the resistance of a resistor? If the current and voltage drop through the resistor is known, the resistance can be calculated using Ohm's law. This law states that R=V/I.

The equivalent resistance is the algebraic sum of the resistances (Equation 10.3.2): RS=R1+R2+R3+R4+R5=20Ω+20Ω+20Ω+20Ω+10Ω=90Ω. The current through the circuit is the same for each resistor in a series circuit and is equal to the applied voltage divided by the equivalent resistance: I=VRS=9V90Ω=0.1A.

Equivalent Resistance: The equivalent resistance of a circuit is the total electrical resistance caused by all of the resistors in the circuit acting together against the voltage source.

"You can find TOTAL RESISTANCE in a Parallel circuit with the following formula: 1/Rt = 1/R1 + 1/R2 + 1/R3 + ... " Before we get into the calculations, remember what we said at the start of this section: "The total resistance of a parallel circuit is NOT equal to the sum of the resistors (like in a series circuit).

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