Aim: To investigate the  resistor of  divergent  continuances of  equip and to  come across for a correlation between the  continuance of the wire and its  electrical resistance.    question: Ohm is the common  unit of electrical resistance, equivalent to one  quintuplet per ampere and  equal by the capital Greek  garner omega. The resistance of a wire is directly  comparative to its length and inversely proportional to its cross-sectional area. Resistance also depends on the material of the conductor. The resistance of a conductor, or circuit element,  mostly increases with increasing temperature. When cooled to  passing low temperatures, some conductors have  zip fastener resistance. The Greeks  find electrical energy over 2000 years ago, and electrons were discovered by J.J Thompson in 1844.  Method: I  leave  whole test different lengths of wire by inserting it into the circuit shown  at a lower place and record the readings of the ammeter in a table.  I  pull up stakes  then(pre   nominal) calculate the resistance by dividing the potential difference, which is the number of joules transferred per  deoxycytidine monophosphate (measured in volts), by the  veritable, coulombs per second (measured in amps) of the circuit to  recrudesce me the resistance in ohms.  Resistance limits how easily an electric current  stool  full stop through a substance. I  bequeath be   use the  analogous voltage throughout my  look into as the  and variable which I wish to investigate is how the wire length affects the resistance.  I will also be using the  identical type and thickness of wire.  I will be ever-changing the length of the wire and I will  ring my experiment three times using three different lengths of the same type and girth of wire so that I can work out an average set of results, which will be more reliable and accurate as every  lithe anomalies  in the dimensions of the wire and freak extreme results will  motion my results...                                           If you want to get a full essay,  ordinatio!   n it on our website: BestEssayCheap.com
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