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Power Generation,
Efficiency and Cost of
Electricity
• Where does the electricity that we get from an
electrical outlet in our home come from?
• Electrical generating station (transfer of one
kind of energy to electrical energy):
– Hydroelectric
– Nuclear
– Coal
– Wind
– Solar
– Natural Gas
– Other (Geothermal, Biomass, etc.)ha
Energy Input
• No matter the type of energy input,
generators will take that energy and
transform mechanical energy to electrical
energy:
• Alternating Current (AC) produced by
generators at electric generating stations 
when flow of electrons alternates in direction
in an electric current
– Used in power generating stations because it is
more efficient method of distributing electrical
energy over long distances than DC
• Direct Current (DC) produced by an electric
cell  when flow of electrons in one direction
through an electric circuit
• Efficiency: comparison of energy output of a
device to energy input (energy supplied)
• % Efficiency = (Eout / Ein) x 100%
• Ex: an incandescent lightbulb uses 100 J of
electrical energy to produce 35 J of light
energy. Calculate the % efficiency of the light
bulb.
• % efficiency = (35 J / 100 J) x 100% = 35%
• What do you think is the best Type of Energy
to use in Power Generation?
• Typically rate charged by electrical generating
companies is per kilowatthour
• kilowatthour: the SI unit for measuring
electrical energy usage; the use of one
kilowatt of power for one hour
• Many electrical generating companies will bill
customers using time-of-use (TOU) rates
(based on supply and demand)
• Can use equation to determine how much it
costs to operate certain devices in your home:
• Cost to operate = power used x time x rate
charged
• Ex: Compare the cost to operate a 60 W
incandescent light bulb for 3 hours compared
to a 13 W CFL for 3 hours. Use Toronto Hydro
rates for off-peak hours. {These 2 bulbs are
comparable in the amount of light produced.}
• Incandescent Bulb:
– Power: 60 W = 0.060 kW
– Time: 3 hours
– Rate: 8.7 ¢/kWhr
– Cost 0.060 kW x 3 hr x 8.7¢/kWhr = 1.57¢
• CFL Bulb:
– Power: 13 W = 0.013 kW
– Time: 3 hours
– Rate: 8.7 ¢/kWhr
– Cost = 0.013 kW x 3 hr x 8.7 ¢/kWhr = 0.34¢
Homework Questions
From lesson on electrical quantities:
Questions on Elect. Power: w/b page 20 #1,3,4,5,6
Questions related to this lesson:
w/b page 20 Efficiency: 1-3
w/b page 20 Paying for Electricity: 1,2,4
From lesson on total resistance and complex circuits:
w/b page 22 attempt all questions.

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Grade9, U2-L7-Power generation, efficiency and cost of electricity

  • 1. Power Generation, Efficiency and Cost of Electricity
  • 2. • Where does the electricity that we get from an electrical outlet in our home come from? • Electrical generating station (transfer of one kind of energy to electrical energy): – Hydroelectric – Nuclear – Coal – Wind – Solar – Natural Gas – Other (Geothermal, Biomass, etc.)ha
  • 3. Energy Input • No matter the type of energy input, generators will take that energy and transform mechanical energy to electrical energy:
  • 4. • Alternating Current (AC) produced by generators at electric generating stations  when flow of electrons alternates in direction in an electric current – Used in power generating stations because it is more efficient method of distributing electrical energy over long distances than DC • Direct Current (DC) produced by an electric cell  when flow of electrons in one direction through an electric circuit
  • 5. • Efficiency: comparison of energy output of a device to energy input (energy supplied) • % Efficiency = (Eout / Ein) x 100% • Ex: an incandescent lightbulb uses 100 J of electrical energy to produce 35 J of light energy. Calculate the % efficiency of the light bulb. • % efficiency = (35 J / 100 J) x 100% = 35%
  • 6.
  • 7. • What do you think is the best Type of Energy to use in Power Generation?
  • 8. • Typically rate charged by electrical generating companies is per kilowatthour • kilowatthour: the SI unit for measuring electrical energy usage; the use of one kilowatt of power for one hour • Many electrical generating companies will bill customers using time-of-use (TOU) rates (based on supply and demand)
  • 9.
  • 10. • Can use equation to determine how much it costs to operate certain devices in your home: • Cost to operate = power used x time x rate charged • Ex: Compare the cost to operate a 60 W incandescent light bulb for 3 hours compared to a 13 W CFL for 3 hours. Use Toronto Hydro rates for off-peak hours. {These 2 bulbs are comparable in the amount of light produced.}
  • 11. • Incandescent Bulb: – Power: 60 W = 0.060 kW – Time: 3 hours – Rate: 8.7 ¢/kWhr – Cost 0.060 kW x 3 hr x 8.7¢/kWhr = 1.57¢ • CFL Bulb: – Power: 13 W = 0.013 kW – Time: 3 hours – Rate: 8.7 ¢/kWhr – Cost = 0.013 kW x 3 hr x 8.7 ¢/kWhr = 0.34¢
  • 12. Homework Questions From lesson on electrical quantities: Questions on Elect. Power: w/b page 20 #1,3,4,5,6 Questions related to this lesson: w/b page 20 Efficiency: 1-3 w/b page 20 Paying for Electricity: 1,2,4 From lesson on total resistance and complex circuits: w/b page 22 attempt all questions.