ELECTRICAL SYSTEMS 21.3.

Slides:



Advertisements
Similar presentations
Electricity.
Advertisements

Topic 7: Electricity in the Home Science 9 with Mrs. M Please take off your hoods and hats Bring a calculator to class next week.
Foundations of Physics
What is included in a circuit diagram?
S Explain parallel circuits, components, and safety of house wiring. S Develop a formula for power consumption and solve related problems.
20.3 Electric Circuits Key Concepts What is included in a circuit diagram? How do series and parallel circuits differ? How do you calculate electrical.
Circuits are designed to control the transfer of Electrical Energy
Series Circuits One kind of circuit is called a series circuit. In a series circuit, the current has only one loop to flow through. 7.3 Electrical Energy.
Foundations of Physics
Electric Circuits Chapter 20.3.
Power and Energy. Power Power means work over a time period Units = Watts Electric power is measured in Watts.
Electric Power, AC, and DC Electricity
Circuits & Electronics
Power Grid and Your Home
Pages  In this PowerPoint, write down everything that is RED!!
To bring electric current into a building, an electrician installs wiring. In a house, all of the wires usually come from one main box.
Generating and Using Electricity
Circuits. Reviewing terms Series and Parallel Circuits Key Question: How do series and parallel circuits work?
Chapter 7 Sound Recording and Reproduction 1Electric Circuits 2AC and DC 3Alternating current and voltage 4Electric Current 5Resistance 6Voltage 7Ohm’s.
P5 – Electric Circuits. Static Electricity When two objects are rubbed together and become charged, electrons are transferred from one object to the other.
13 Electric Circuits. Chapter Outline 1 Electric Circuits and Electric Current 2 Ohm’s Law and Resistance 3 Series and Parallel Circuits 4 Electric Energy.
Chapter Twenty One: Electrical Systems
13 Electric Circuits.
L 27 Electricity and Magnetism [4]
Electricity. Electrical Force energex.com.au An object becomes charged by –Friction –Conduction –Induction.
ELECTRICITY: CHAPTER 7 Section 3 B. Protecting the Building  Two ways to control current in wiring  Fuse Contains a small wire that melts if too much.
Physics Day 23 Aim: How much power does a toaster use? LO: Calculate power use for V, I and R LO: Calculate energy use from power LO: Kilowatt-hour is.
Electrical power. Objectives Use the equation for electrical power to solve circuit problems. Understand basic concepts for home electricity usage and.
Electricity. What is electricity? Electric current – flow of electrons through a _______ Current (I) is measured by how many __________pass a given point.
Electrical Power & Energy Chapter 7-3. Electrical Power F Power is the rate at which work is done F Electrical energy is easily converted into other forms.
Chapter-13 Outline 1Electric Circuits and Electric Current, I 2 Ohm’s Law, ΔV = I R; and Resistance, R. 3 Series and Parallel Circuits 4 Electric Energy.
SPH3U Electricity & Circuits
Chapter 19 Review Current and Resistance. 1. A current of 2 amps flows for 30 seconds. How much charge is transferred?
Unit 3, Chapter 8 Integrated Science. Unit Three: Electricity and Magnetism 8.1 Ohm's Law 8.2 Work, Energy, and Power Chapter 8 Electrical Relationships.
Physical Science Mr. Barry. Series circuits have one loop through which current can flow.
Electrical Calculations. Ohm’s law describes the relationship between current, resistance, and voltage. As voltage increase, current increases As resistance.
ELECTRICAL SYSTEMS. Chapter Twenty One: Electrical Systems  21.1 Series Circuits  21.2 Parallel Circuits  21.3 Electrical Power.
Final Jeopardy StaticCurrentCircuitsApplicationsCalculations Surprise
Electric Power Lesson 2.5. Key Concepts How do you calculate electric power? What factors are used to determine how people pay for electrical energy?
ELECTRICITY: Electrical Energy (Circuits)
Electrical Circuits Chapter 20 Section Three. Science Journal Entry #42 Expound upon Ohm’s Law and its relationship to current, resistance, and voltage.
Electrical power pg. 49. Objectives Use the equation for electrical power to solve circuit problems. Understand basic concepts for home electricity usage.
Section 7.3 Electrical Energy Circuits are pathways for electricity to flow. – Unlike static electricity, which is short-lived and fast, current flowing.
Circuits Chapter 17.3 Notes. What are circuits? An electric circuit is a set of electrical components connected such that they provide one or more complete.
ELECTRIC POWER. POWER AT HOME When you plug in a device, you are using alternating current (AC) Both (+) and (-) … alternates at 60x /second (60Hertz)
Electric Current Everything (water, heat, smells, …) flows from areas of high concentration to areas of lower concentration. Electricity is no different.
Unit 7, Chapter 20 CPO Science Foundations of Physics.
Outline 1 Electric Circuits and Electric Current 2 Ohm’s Law and Resistance 3 Series and Parallel Circuits 4 Electric Energy and Power 5 Alternating currents.
Power in Electrical Systems Power in Electrical Systems.
Chapter 34 Notes Electric Circuits. Electric Current Intro Voltage is an “electric pressure” That can produce a flow of charge, or current, within a conductor.
Circuits. Reviewing terms Circuits need 3 basic parts: An Energy Source Load (Power demand) Wires.
Safety, Energy Production & Energy Consumption at Home.
Electrical Circuits Section 7.3. Electrical Circuits Circuits rely on generators at power plants to produce a voltage difference across the outlet, causing.
Moving electricity.
Electricity Friction
Physical Science 7.3 Electrical Energy.
Electrical Systems Series Circuits Parallel Circuits Electrical Power.
Energy Consumption: HOME.
Electricity 7-3 Circuits.
Electric Circuits Chapter 22 Section 3.
Series and Parallel Circuits
Foundations of Physics
20.1 Series and Parallel Circuits
Electrical Calculations
Chapter-13 Outline Electric Circuits and Electric Current, I
Physical Science 7.3 Electrical Energy.
Chapter 43 Uses & Effects of Electricity
Chapter Twenty One: Electrical Systems
Electric Power.
20.1 Short circuit A short circuit is a parallel path in a circuit with zero or very low resistance. Short circuits can be made accidentally by connecting.
Presentation transcript:

ELECTRICAL SYSTEMS 21.3

Chapter Twenty One: Electrical Systems 21.1 Series Circuits 21.2 Parallel Circuits 21.3 Electrical Power

Chapter 21.3 Learning Goals Define electric power and apply a formula to perform power calculations. Distinguish direct current and alternating current. Discuss applications of electricity in daily living.

Electrical Energy and Power Investigation 21B Electrical Energy and Power Key Question: How much energy is carried by electricity?

21.3 Electrical Power Electrical power is measured in watts, just like mechanical power. Power is the rate at which energy is changed into other forms of energy such as heat, sound, or light. Anything that “uses” electricity is actually converting electrical energy into some other type of energy.

21.3 Important review

21.3 Electrical Power The watt is an abbreviation for one joule per second. A 100-watt light bulb uses 100 joules of energy every second.

21.3 Power Power is a “rate” and is measured using current and voltage.

21.3 Different forms of the Power Equation

21.3 Kilowatt Most electrical appliances have a label that lists the power in watts (W) or kilowatts (kW). The kilowatt is used for large amounts of power.

A 12-volt battery is connected in series to two identical light bulbs. Solving Problems A 12-volt battery is connected in series to two identical light bulbs. The current in the circuit is 3 amps. Calculate the power output of the battery.

Looking for: Given: Relationships: Solution: Solving Problems …power of battery Given: …voltage = 12 V; current = 3 amps Relationships: Power: P = I x V Solution: P = 3 A x 12 V = 36 watts

21.3 Buying Electricity Utility companies charge customers for the number of kilowatt-hours (kWh) used each month. A kilowatt-hour is a unit of energy. The number of kilowatt-hours used equals the number of kilowatts multiplied by the number of hours the appliance was turned on.

21.3 Buying Electricity There are many simple things you can do to use less electricity. When added up, these simple things can mean many dollars of savings each month.

How much does it cost to run a 3,000 kW electric stove for 2 hours? Solving Problems How much does it cost to run a 3,000 kW electric stove for 2 hours? Use an electricity cost of $0.15 per kilowatt-hour. Looking for: …cost to run stove for 2h Given: … P = 3,000W; T = 2h; price $0.15/kW

Relationships: Solution: = $ 0.90 Solving Problems 1000 watts = 1 kW Charge in kWh Solution: 3000 W x 1 kW = 3 kW 1000 W Charge = 3 kW x 2 h = 6 kWh Cost = 6 kWh x $ 0.15 1 kWh = $ 0.90

21.3 AC and DC Although the letters “DC” stand for “direct current” the abbreviation “DC” is used to describe both voltage and current. DC current flows in one direction as in a battery.

21.3 AC and DC The electrical system in your house uses alternating current or AC. Alternating current constantly switches direction.

21.3 Electricity in homes Electricity comes into most homes or buildings through a control panel which protect against wires overheating and causing fires.

21.3 Electricity in homes Electrical outlets in bathrooms, kitchens, or outdoors are now required to have ground fault interrupt (GFI) outlets. GFI outlets are excellent protection against electric shocks, especially in wet locations.

21.3 Distributing electricity Electricity is a valuable form of energy because electrical power can be moved easily over large distances. Alternating current is easier to generate and transmit over long distances.

21.3 Distributing electricity Many electronic devices, like cell phones or laptop computers, use DC electricity. An “AC adapter” is a device that changes the AC voltage from the wall outlet into DC voltage for the device.

Bright Ideas What makes one bulb more efficient than another? How much more efficient are the LEDs? What kind of savings does this mean in terms of electricity?