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Rate at which electric charge passes a given point 2 types DC which is direct current AC which is alternating current amount of work needed to move

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Page 1: Rate at which electric charge passes a given point 2 types DC which is direct current AC which is alternating current amount of work needed to move
Page 2: Rate at which electric charge passes a given point 2 types DC which is direct current AC which is alternating current amount of work needed to move
Page 3: Rate at which electric charge passes a given point 2 types DC which is direct current AC which is alternating current amount of work needed to move
Page 4: Rate at which electric charge passes a given point 2 types DC which is direct current AC which is alternating current amount of work needed to move

Rate at which electric charge passes a given point2 types DC which is direct current AC which is alternating current

amount of work needed to move a charge betweenTwo points. There is a direct relationship between voltage and current.Higher voltage = Higher current

Resistance is opposition to electric current or the passing Of a charge between two points.Inverse relationship between resistance and voltageHigher resistance = lower voltage4 affects or influences on resistanceComposition metals are less resistantTemperatureThicknessLength

Page 5: Rate at which electric charge passes a given point 2 types DC which is direct current AC which is alternating current amount of work needed to move
Page 6: Rate at which electric charge passes a given point 2 types DC which is direct current AC which is alternating current amount of work needed to move
Page 7: Rate at which electric charge passes a given point 2 types DC which is direct current AC which is alternating current amount of work needed to move
Page 8: Rate at which electric charge passes a given point 2 types DC which is direct current AC which is alternating current amount of work needed to move

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Page 9: Rate at which electric charge passes a given point 2 types DC which is direct current AC which is alternating current amount of work needed to move

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X are selectedFor more orHigher ResistanceTo flow of charge

Page 10: Rate at which electric charge passes a given point 2 types DC which is direct current AC which is alternating current amount of work needed to move
Page 11: Rate at which electric charge passes a given point 2 types DC which is direct current AC which is alternating current amount of work needed to move

14 Resistance is defined as opposing the flow of electric current. Electric current is defined as the rate of passing of a charge between two points. A thinner and longer wire will increase the Resistance, opposition to the flow of the current, so there might not be enough electricalEnergy flowing between points to get the electrical device to operate.

Page 12: Rate at which electric charge passes a given point 2 types DC which is direct current AC which is alternating current amount of work needed to move

Inverse relationship existBetween resistance and current

Direct relationship between voltage and current

Page 13: Rate at which electric charge passes a given point 2 types DC which is direct current AC which is alternating current amount of work needed to move

9 Because there is lessResistance in wire composedof copper, the copper wire will have a higher currentThan the geranium wire

10 There is a direct relationship between voltage and current soHigher voltage means higher current if equal resistance.

Page 14: Rate at which electric charge passes a given point 2 types DC which is direct current AC which is alternating current amount of work needed to move
Page 15: Rate at which electric charge passes a given point 2 types DC which is direct current AC which is alternating current amount of work needed to move