Difference between revisions of "TF Lab1 Writeup"

From New IAC Wiki
Jump to navigation Jump to search
(Created page with ' =Kirchoff's Law (50 pnts)= == Smokey Circuits== When doing these labs it is important to determine the limitations of your electrical components in order to avoid damaging the...')
 
(Blanked the page)
 
Line 1: Line 1:
  
−
=Kirchoff's Law (50 pnts)=
 
−
 
−
== Smokey Circuits==
 
−
 
−
When doing these labs it is important to determine the limitations of your electrical components in order to avoid damaging them.
 
−
 
−
This lab uses resistors.  Resistors are vulnerable to melting if you push too much current through them.
 
−
 
−
Resistors have power ratings ranging from 1/8 Watt up to several Watts.  The common resistors are rated at 1/4 Watt.  Let's assume this rating for the resistors in this lab.
 
−
 
−
Determine the maximum voltage of the DC power supply you will use. (ie, 30 Volts)
 
−
 
−
;<math> P =I^2R = V^2/R \Rightarrow R = \frac{V^2}{P} > \frac{\left (30 V \right)^2}{1/4 \mbox{Watt}} > 3600 \Omega</math>
 
−
 
−
:By keeping your resistance values above 3600 <math>\Omega</math> you should be able to avoid burning up 1/4 Watt resistors when your max voltage is 30 Volts.
 
−
 
−
The next objective is to use resistors which allow currents that you can measure with your voltmeter.
 
−
 
−
;Since <math>V=IR \Rightarrow I = V/R = 30 \mbox{Volts}/3600 \Omega = 8\mbox{mA}</math>
 
−
 
−
Determine the range of currents which the voltmeter can measure. (ie 1 mA)
 
−
 
−
To get measurable currents you need low resistance BUT the lower resistances will need to have a high power rating.  These two competing properties limit the range of resistances you can use.
 
−
 
−
 
−
Select the three resistors you should use for this experiment.
 
−
 
−
==Construct the circuit below==
 
−
 
−
 
−
[[File:TF_EIM_Lab1.png | 400 px]]
 
−
 
−
 
−
 
−
==Enter the values of the DC voltage and Resisters that you used.==
 
−
 
−
Use a voltmeter to measure the potential difference and resistances.
 
−
 
−
{| border="3"  cellpadding="20" cellspacing="0"
 
−
|Variable ||Measured Value
 
−
|-
 
−
| <math>V_A </math> || 
 
−
|-
 
−
| <math>R_1</math> || 
 
−
|-
 
−
| <math>R_2</math> || 
 
−
|-
 
−
| <math>R_3</math> ||   
 
−
|}
 
−
 
−
==Enter the measured and predicted quantities in the table below==
 
−
 
−
 
−
Given <math>V_A</math> and the values of all resistors, use Kirchoff's laws to predict
 
−
 
−
a.) Predict the value of <math>V_B</math>
 
−
 
−
b.) Predict the values of the three currents.
 
−
 
−
c.) compare your predictions and measurements  by filling in the table below.
 
−
 
−
{| border="3"  cellpadding="20" cellspacing="0"
 
−
|Variable ||Measured Value|| Predicted Value|| % Difference
 
−
|-
 
−
| <math>V_B</math> ||  || ||
 
−
|-
 
−
| <math>I_1</math> ||  || ||
 
−
|-
 
−
| <math>I_2</math> ||  || ||
 
−
|-
 
−
| <math>I_3</math> ||  || ||
 
−
|}
 
−
 
−
= Internal resistance (30 pnts)=
 
−
 
−
Measure the internal resistance of your power source by graphing the potential difference on the x-axis and the current on the y-axis for several values of the resistance <math>R_L</math> shown in the circuit below.  Begin with <math>R_L = 1k\Omega</math> and then decrease it by a factor of 5 for each subsequent measurement.  You can use a volt meter to measure the current and potential difference.
 
−
 
−
=Questions (20 pnts)=
 
−
 
−
#What conservation law is involved in Kirchoff's Loop Theorem?
 
−
#What does the slope in the internal resistance plot above represent?
 
−
 
−
 
−
[[TF_EIM_LabWriteups]]
 

Latest revision as of 22:54, 2 December 2010