SlideShare une entreprise Scribd logo
1  sur  18
Energy
Forms of
T- 1-855-694-8886
Email- info@iTutor.com
By iTutor.com
Different Forms of Energy
• Energy cannot be created or destroyed, it can only be
changed from one form to another.
• Energy comes in six forms: chemical energy,
electromagnetic energy, radiant energy, mechanical
energy, nuclear energy and thermal energy.
• These six forms of energy are all related. Each form can be
converted or changed into the other forms. For example,
when wood burns, its chemical energy changes into thermal
(heat) energy and radiant (light) energy.
© iTutor. 2000-2013. All Rights Reserved
© iTutor. 2000-2013. All Rights Reserved
mechanical energy
• Mechanical Energy is the energy a substance or system has
because of its motion(K.E.) and position(P.E).
• The Mechanical energy stays alive along with both the
kinetic energy and the potential energy which is available
in the system.
• Every moving object has mechanical energy, whether it is a
hammer driving a nail, a leaf falling from a tree, or a rocket
flying in space. Mechanical energy pulls, pushes, twists,
turns and throws.
• Our bodies also use mechanical energy to perform motions
such as throwing a ball or moving a pencil to write on
paper.
© iTutor. 2000-2013. All Rights Reserved
convert other forms of energy into
mechanical energy
© iTutor. 2000-2013. All Rights Reserved
Chemical Energy
• The motive force that powers the
human body, is provided by the
chemical energy derived through
the process of respiration.
• Chemical energy is derived from
the making and breaking of inter-
atomic bonds in molecules.
• Through molecular
rearrangements, the biological
world derives energy. The energy
derived from gasoline is an
example of chemical energy
utilization.
© iTutor. 2000-2013. All Rights Reserved
electromagnetic energy
 Energy from a magnetic field that is produced by the motion
of electric charges such as electric current.
 Electromagnetic radiation exists in the form of particles
called photons. Each particle or photon is an extremely small
grain of energy - an energy packet.
 Electromagnetic energy is said to be the type of energy which
comes from electromagnetic waves. These radiation travels
with the speed of light and can be composed of radio
waves, TV waves, radar waves, heat, light, X-rays, visible
waves, etc.
 The Sun, the earth and the ionosphere are main sources of
electromagnetic energy in nature.
© iTutor. 2000-2013. All Rights Reserved
© iTutor. 2000-2013. All Rights Reserved
nuclear energy
• Nuclear energy originates from the splitting of uranium
atoms in a process called fission..
• When the nucleus splits (fission), nuclear energy is released
in the form of heat energy and light energy.
• Nuclear energy is also released when nuclei collide at high
speeds and join (fuse).
• The sun’s energy is produced from a nuclear fusion reaction
in which hydrogen nuclei fuse to form helium nuclei.
• Nuclear energy starts with Albert Einstein—his classic
formula, E = mc2 actually describes how much energy is
released when an atom splits.
© iTutor. 2000-2013. All Rights Reserved
© iTutor. 2000-2013. All Rights Reserved
Thermal Energy
 Thermal Energy is a form of internal energy possessed by
all material matter due to random motion of atoms and
minute particles(kinetic molecular model of matter), and
the amount depends on the temperature of the material
region.
 Thermal Energy is transferred only when there is a
difference in temperature.
 Thermal Energy always flows from a region of higher
temperature to a region of lower temperature.
© iTutor. 2000-2013. All Rights Reserved
© iTutor. 2000-2013. All Rights Reserved
Energy Transfer
Chemical
Electrical
Sound
(mechanical)
Light
(Electromagnetic)
Thermal
Mechanical
© iTutor. 2000-2013. All Rights Reserved
energy conversions in motors
 Electric motors, which convert
electrical energy to mechanical
energy.
 Magnetism is the basis for all electric
motor operation. It produces the force
required to run the motor.
 When current passes through a coil of
wire, magnetic field is produced.
 Electric motors operate through the
interaction f magnetic field and current
- carrying conductors to generate force.
© iTutor. 2000-2013. All Rights Reserved
energy conversions in generators
 Electric generator is a device that converts mechanical
energy to electrical energy.
 A generator forces electric charge (usually carried by electrons)
to flow through an external electrical circuit.
© iTutor. 2000-2013. All Rights Reserved
 The generator is based on the
principle of "electromagnetic
induction”.
 An electric conductor is moved
through a magnetic field, electric
current will flow in the conductor.
 So the mechanical energy of the
moving wire is converted into the
electric energy of the current that
flows in the wire.
 In a generator The energy conversion
occurs when a coil of conducting wire
is rotated between two different poles
of two permanent magnets.
energy conversions in generators
© iTutor. 2000-2013. All Rights Reserved
energy conversions in photocells
 Photocells convert light energy into
electrical energy.
 Most photocells contain silicon atoms.
As long as a light shines on the
photocell, electrons gain enough
energy to move between atoms.
 The electrons are then able to move
though a wire to provide electrical
energy to a device, such as a
calculator.
© iTutor. 2000-2013. All Rights Reserved
Call us for more
information:
www.iTutor.com
1-855-694-8886
Visit

Contenu connexe

Tendances (20)

Light.ppt
Light.pptLight.ppt
Light.ppt
 
6th Grade Chapter 12-energy
6th Grade  Chapter 12-energy6th Grade  Chapter 12-energy
6th Grade Chapter 12-energy
 
Force, Motion, Energy
Force, Motion, EnergyForce, Motion, Energy
Force, Motion, Energy
 
Simple machines
Simple machinesSimple machines
Simple machines
 
The Three States of Matter
The Three States of MatterThe Three States of Matter
The Three States of Matter
 
Matter,solid,liquid,gases
Matter,solid,liquid,gasesMatter,solid,liquid,gases
Matter,solid,liquid,gases
 
Light Energy
Light EnergyLight Energy
Light Energy
 
Potential energy
Potential energyPotential energy
Potential energy
 
Physical & chemical change
Physical & chemical changePhysical & chemical change
Physical & chemical change
 
Heat and light
Heat and lightHeat and light
Heat and light
 
Kinetic and potential energy
Kinetic and potential energyKinetic and potential energy
Kinetic and potential energy
 
Light and Shadow
Light and ShadowLight and Shadow
Light and Shadow
 
Energy transformation (1)
Energy transformation (1)Energy transformation (1)
Energy transformation (1)
 
Forces and their effects pps
Forces and their effects ppsForces and their effects pps
Forces and their effects pps
 
Energy ppt[1]
Energy ppt[1]Energy ppt[1]
Energy ppt[1]
 
Transformation of energy
Transformation of energyTransformation of energy
Transformation of energy
 
Types of Energy
Types of EnergyTypes of Energy
Types of Energy
 
Forms of energy
Forms of energyForms of energy
Forms of energy
 
Light Energy
Light EnergyLight Energy
Light Energy
 
Forms of Energy
Forms of EnergyForms of Energy
Forms of Energy
 

En vedette

Energy What Every 5th Grader Should Know
Energy   What Every 5th Grader Should KnowEnergy   What Every 5th Grader Should Know
Energy What Every 5th Grader Should Know
Glenn E. Malone, EdD
 
Sequencing 5th ppt
Sequencing 5th pptSequencing 5th ppt
Sequencing 5th ppt
aelowans
 
DIFFERENT KINDS OF ENERGY
DIFFERENT KINDS OF ENERGYDIFFERENT KINDS OF ENERGY
DIFFERENT KINDS OF ENERGY
Sandy Nuñal
 
The cell & tissues 2014
The cell & tissues 2014The cell & tissues 2014
The cell & tissues 2014
kmwall
 
0708 types of_energy
0708 types of_energy0708 types of_energy
0708 types of_energy
David Genis
 

En vedette (20)

Energy transformations and conservation
Energy transformations and conservationEnergy transformations and conservation
Energy transformations and conservation
 
Energy What Every 5th Grader Should Know
Energy   What Every 5th Grader Should KnowEnergy   What Every 5th Grader Should Know
Energy What Every 5th Grader Should Know
 
Forms of energy explain powerpoint
Forms of energy explain powerpointForms of energy explain powerpoint
Forms of energy explain powerpoint
 
Sequencing 5th ppt
Sequencing 5th pptSequencing 5th ppt
Sequencing 5th ppt
 
Forms of energy
Forms of energyForms of energy
Forms of energy
 
Kinds_Energy
Kinds_EnergyKinds_Energy
Kinds_Energy
 
Sequencing events
Sequencing eventsSequencing events
Sequencing events
 
DIFFERENT KINDS OF ENERGY
DIFFERENT KINDS OF ENERGYDIFFERENT KINDS OF ENERGY
DIFFERENT KINDS OF ENERGY
 
The cell & tissues 2014
The cell & tissues 2014The cell & tissues 2014
The cell & tissues 2014
 
Sequence of events
Sequence of eventsSequence of events
Sequence of events
 
Sequence of events
Sequence of eventsSequence of events
Sequence of events
 
Sequencing events lesson
Sequencing events lessonSequencing events lesson
Sequencing events lesson
 
Sequence of events
Sequence of eventsSequence of events
Sequence of events
 
Spectra Energy Partners - Investor Presentation
Spectra Energy Partners	 - Investor PresentationSpectra Energy Partners	 - Investor Presentation
Spectra Energy Partners - Investor Presentation
 
0708 types of_energy
0708 types of_energy0708 types of_energy
0708 types of_energy
 
Energy Powerpoint
Energy  PowerpointEnergy  Powerpoint
Energy Powerpoint
 
ARALING PANLIPUNAN Yunit II Aralin 14 Pagsulong at Pag unlad ng Kultura
ARALING PANLIPUNAN Yunit II Aralin 14 Pagsulong at Pag unlad ng KulturaARALING PANLIPUNAN Yunit II Aralin 14 Pagsulong at Pag unlad ng Kultura
ARALING PANLIPUNAN Yunit II Aralin 14 Pagsulong at Pag unlad ng Kultura
 
Physics: Potential and Kinetic Energy
Physics: Potential and Kinetic EnergyPhysics: Potential and Kinetic Energy
Physics: Potential and Kinetic Energy
 
ARALING PANLIPUNAN YUNIT II Aralin 15: Ang Kultura at Pagbubuo ng Pagkakakil...
ARALING PANLIPUNAN YUNIT II Aralin 15: Ang Kultura at Pagbubuo  ng Pagkakakil...ARALING PANLIPUNAN YUNIT II Aralin 15: Ang Kultura at Pagbubuo  ng Pagkakakil...
ARALING PANLIPUNAN YUNIT II Aralin 15: Ang Kultura at Pagbubuo ng Pagkakakil...
 
Ideas for Effective Stand-alone Presentations
Ideas for Effective Stand-alone PresentationsIdeas for Effective Stand-alone Presentations
Ideas for Effective Stand-alone Presentations
 

Similaire à Forms of Energy

The Nature of Sub-Atomic Quantum Photon Energy Creation and Externalization A...
The Nature of Sub-Atomic Quantum Photon Energy Creation and Externalization A...The Nature of Sub-Atomic Quantum Photon Energy Creation and Externalization A...
The Nature of Sub-Atomic Quantum Photon Energy Creation and Externalization A...
Thane Heins
 
Electricity & Magnetism
Electricity & MagnetismElectricity & Magnetism
Electricity & Magnetism
itutor
 
Electricity pale
Electricity paleElectricity pale
Electricity pale
jctascon
 

Similaire à Forms of Energy (20)

Electricity And Magnetism
Electricity And MagnetismElectricity And Magnetism
Electricity And Magnetism
 
Basics of energy conversion and solar cell working
Basics of energy conversion and solar cell workingBasics of energy conversion and solar cell working
Basics of energy conversion and solar cell working
 
Basic Electrical Equipment module-1
Basic Electrical Equipment module-1Basic Electrical Equipment module-1
Basic Electrical Equipment module-1
 
The Nature of Sub-Atomic Quantum Photon Energy Creation and Externalization A...
The Nature of Sub-Atomic Quantum Photon Energy Creation and Externalization A...The Nature of Sub-Atomic Quantum Photon Energy Creation and Externalization A...
The Nature of Sub-Atomic Quantum Photon Energy Creation and Externalization A...
 
Basics of energy
Basics of energy Basics of energy
Basics of energy
 
Renewable energy-2.docx
Renewable energy-2.docxRenewable energy-2.docx
Renewable energy-2.docx
 
Need of Power?
Need of Power?Need of Power?
Need of Power?
 
ENERGY MANAGEMENT AND AUDITING
ENERGY MANAGEMENT AND AUDITINGENERGY MANAGEMENT AND AUDITING
ENERGY MANAGEMENT AND AUDITING
 
common 1.pptx
common 1.pptxcommon 1.pptx
common 1.pptx
 
The Nature of Sub-Atomic Quantum Photon Energy Creation around a Current Carr...
The Nature of Sub-Atomic Quantum Photon Energy Creation around a Current Carr...The Nature of Sub-Atomic Quantum Photon Energy Creation around a Current Carr...
The Nature of Sub-Atomic Quantum Photon Energy Creation around a Current Carr...
 
Energy
EnergyEnergy
Energy
 
Electricity.pptx
Electricity.pptxElectricity.pptx
Electricity.pptx
 
Electricity & Magnetism
Electricity & MagnetismElectricity & Magnetism
Electricity & Magnetism
 
Energy and Its Forms.pptx
Energy and Its Forms.pptxEnergy and Its Forms.pptx
Energy and Its Forms.pptx
 
Energy and Its Forms.pptx
Energy and Its Forms.pptxEnergy and Its Forms.pptx
Energy and Its Forms.pptx
 
Electricity pale
Electricity paleElectricity pale
Electricity pale
 
Work and energy phy
Work and energy phyWork and energy phy
Work and energy phy
 
Energy and work
Energy and workEnergy and work
Energy and work
 
Power station practice (NEE-702) unit-5
Power station practice (NEE-702) unit-5Power station practice (NEE-702) unit-5
Power station practice (NEE-702) unit-5
 
Energy Resources And Power Plants
Energy Resources And Power PlantsEnergy Resources And Power Plants
Energy Resources And Power Plants
 

Plus de itutor

Comparing Fractions
Comparing FractionsComparing Fractions
Comparing Fractions
itutor
 
Fractions
FractionsFractions
Fractions
itutor
 
Quadrilaterals
QuadrilateralsQuadrilaterals
Quadrilaterals
itutor
 
Properties of Addition & Multiplication
Properties of Addition & MultiplicationProperties of Addition & Multiplication
Properties of Addition & Multiplication
itutor
 
Binomial Theorem
Binomial TheoremBinomial Theorem
Binomial Theorem
itutor
 
Equation of Hyperbola
Equation of HyperbolaEquation of Hyperbola
Equation of Hyperbola
itutor
 
Equation of Strighjt lines
Equation of Strighjt linesEquation of Strighjt lines
Equation of Strighjt lines
itutor
 
Evolution and Changes
Evolution and ChangesEvolution and Changes
Evolution and Changes
itutor
 
Slops of the Straight lines
Slops of the Straight linesSlops of the Straight lines
Slops of the Straight lines
itutor
 
Equations of Straight Lines
Equations of Straight LinesEquations of Straight Lines
Equations of Straight Lines
itutor
 
Parabola
ParabolaParabola
Parabola
itutor
 
Ellipse
EllipseEllipse
Ellipse
itutor
 
Periodic Relationships
Periodic RelationshipsPeriodic Relationships
Periodic Relationships
itutor
 
Inverse Matrix & Determinants
Inverse Matrix & DeterminantsInverse Matrix & Determinants
Inverse Matrix & Determinants
itutor
 
Linear Algebra and Matrix
Linear Algebra and MatrixLinear Algebra and Matrix
Linear Algebra and Matrix
itutor
 
Living System
Living SystemLiving System
Living System
itutor
 
Ecosystems- A Natural Balance
Ecosystems- A Natural BalanceEcosystems- A Natural Balance
Ecosystems- A Natural Balance
itutor
 
Ecosystems
EcosystemsEcosystems
Ecosystems
itutor
 
Gravitation
GravitationGravitation
Gravitation
itutor
 
Home bound instruction presentation
Home bound instruction presentationHome bound instruction presentation
Home bound instruction presentation
itutor
 

Plus de itutor (20)

Comparing Fractions
Comparing FractionsComparing Fractions
Comparing Fractions
 
Fractions
FractionsFractions
Fractions
 
Quadrilaterals
QuadrilateralsQuadrilaterals
Quadrilaterals
 
Properties of Addition & Multiplication
Properties of Addition & MultiplicationProperties of Addition & Multiplication
Properties of Addition & Multiplication
 
Binomial Theorem
Binomial TheoremBinomial Theorem
Binomial Theorem
 
Equation of Hyperbola
Equation of HyperbolaEquation of Hyperbola
Equation of Hyperbola
 
Equation of Strighjt lines
Equation of Strighjt linesEquation of Strighjt lines
Equation of Strighjt lines
 
Evolution and Changes
Evolution and ChangesEvolution and Changes
Evolution and Changes
 
Slops of the Straight lines
Slops of the Straight linesSlops of the Straight lines
Slops of the Straight lines
 
Equations of Straight Lines
Equations of Straight LinesEquations of Straight Lines
Equations of Straight Lines
 
Parabola
ParabolaParabola
Parabola
 
Ellipse
EllipseEllipse
Ellipse
 
Periodic Relationships
Periodic RelationshipsPeriodic Relationships
Periodic Relationships
 
Inverse Matrix & Determinants
Inverse Matrix & DeterminantsInverse Matrix & Determinants
Inverse Matrix & Determinants
 
Linear Algebra and Matrix
Linear Algebra and MatrixLinear Algebra and Matrix
Linear Algebra and Matrix
 
Living System
Living SystemLiving System
Living System
 
Ecosystems- A Natural Balance
Ecosystems- A Natural BalanceEcosystems- A Natural Balance
Ecosystems- A Natural Balance
 
Ecosystems
EcosystemsEcosystems
Ecosystems
 
Gravitation
GravitationGravitation
Gravitation
 
Home bound instruction presentation
Home bound instruction presentationHome bound instruction presentation
Home bound instruction presentation
 

Dernier

Activity 01 - Artificial Culture (1).pdf
Activity 01 - Artificial Culture (1).pdfActivity 01 - Artificial Culture (1).pdf
Activity 01 - Artificial Culture (1).pdf
ciinovamais
 
1029-Danh muc Sach Giao Khoa khoi 6.pdf
1029-Danh muc Sach Giao Khoa khoi  6.pdf1029-Danh muc Sach Giao Khoa khoi  6.pdf
1029-Danh muc Sach Giao Khoa khoi 6.pdf
QucHHunhnh
 

Dernier (20)

Key note speaker Neum_Admir Softic_ENG.pdf
Key note speaker Neum_Admir Softic_ENG.pdfKey note speaker Neum_Admir Softic_ENG.pdf
Key note speaker Neum_Admir Softic_ENG.pdf
 
TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...
TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...
TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...
 
Mixin Classes in Odoo 17 How to Extend Models Using Mixin Classes
Mixin Classes in Odoo 17  How to Extend Models Using Mixin ClassesMixin Classes in Odoo 17  How to Extend Models Using Mixin Classes
Mixin Classes in Odoo 17 How to Extend Models Using Mixin Classes
 
How to Give a Domain for a Field in Odoo 17
How to Give a Domain for a Field in Odoo 17How to Give a Domain for a Field in Odoo 17
How to Give a Domain for a Field in Odoo 17
 
Activity 01 - Artificial Culture (1).pdf
Activity 01 - Artificial Culture (1).pdfActivity 01 - Artificial Culture (1).pdf
Activity 01 - Artificial Culture (1).pdf
 
Fostering Friendships - Enhancing Social Bonds in the Classroom
Fostering Friendships - Enhancing Social Bonds  in the ClassroomFostering Friendships - Enhancing Social Bonds  in the Classroom
Fostering Friendships - Enhancing Social Bonds in the Classroom
 
FSB Advising Checklist - Orientation 2024
FSB Advising Checklist - Orientation 2024FSB Advising Checklist - Orientation 2024
FSB Advising Checklist - Orientation 2024
 
Python Notes for mca i year students osmania university.docx
Python Notes for mca i year students osmania university.docxPython Notes for mca i year students osmania university.docx
Python Notes for mca i year students osmania university.docx
 
On National Teacher Day, meet the 2024-25 Kenan Fellows
On National Teacher Day, meet the 2024-25 Kenan FellowsOn National Teacher Day, meet the 2024-25 Kenan Fellows
On National Teacher Day, meet the 2024-25 Kenan Fellows
 
Making communications land - Are they received and understood as intended? we...
Making communications land - Are they received and understood as intended? we...Making communications land - Are they received and understood as intended? we...
Making communications land - Are they received and understood as intended? we...
 
2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx
2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx
2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx
 
Unit-V; Pricing (Pharma Marketing Management).pptx
Unit-V; Pricing (Pharma Marketing Management).pptxUnit-V; Pricing (Pharma Marketing Management).pptx
Unit-V; Pricing (Pharma Marketing Management).pptx
 
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...
 
ICT Role in 21st Century Education & its Challenges.pptx
ICT Role in 21st Century Education & its Challenges.pptxICT Role in 21st Century Education & its Challenges.pptx
ICT Role in 21st Century Education & its Challenges.pptx
 
Unit-IV- Pharma. Marketing Channels.pptx
Unit-IV- Pharma. Marketing Channels.pptxUnit-IV- Pharma. Marketing Channels.pptx
Unit-IV- Pharma. Marketing Channels.pptx
 
Sociology 101 Demonstration of Learning Exhibit
Sociology 101 Demonstration of Learning ExhibitSociology 101 Demonstration of Learning Exhibit
Sociology 101 Demonstration of Learning Exhibit
 
How to Create and Manage Wizard in Odoo 17
How to Create and Manage Wizard in Odoo 17How to Create and Manage Wizard in Odoo 17
How to Create and Manage Wizard in Odoo 17
 
This PowerPoint helps students to consider the concept of infinity.
This PowerPoint helps students to consider the concept of infinity.This PowerPoint helps students to consider the concept of infinity.
This PowerPoint helps students to consider the concept of infinity.
 
UGC NET Paper 1 Mathematical Reasoning & Aptitude.pdf
UGC NET Paper 1 Mathematical Reasoning & Aptitude.pdfUGC NET Paper 1 Mathematical Reasoning & Aptitude.pdf
UGC NET Paper 1 Mathematical Reasoning & Aptitude.pdf
 
1029-Danh muc Sach Giao Khoa khoi 6.pdf
1029-Danh muc Sach Giao Khoa khoi  6.pdf1029-Danh muc Sach Giao Khoa khoi  6.pdf
1029-Danh muc Sach Giao Khoa khoi 6.pdf
 

Forms of Energy

  • 1. Energy Forms of T- 1-855-694-8886 Email- info@iTutor.com By iTutor.com
  • 2. Different Forms of Energy • Energy cannot be created or destroyed, it can only be changed from one form to another. • Energy comes in six forms: chemical energy, electromagnetic energy, radiant energy, mechanical energy, nuclear energy and thermal energy. • These six forms of energy are all related. Each form can be converted or changed into the other forms. For example, when wood burns, its chemical energy changes into thermal (heat) energy and radiant (light) energy. © iTutor. 2000-2013. All Rights Reserved
  • 3. © iTutor. 2000-2013. All Rights Reserved
  • 4. mechanical energy • Mechanical Energy is the energy a substance or system has because of its motion(K.E.) and position(P.E). • The Mechanical energy stays alive along with both the kinetic energy and the potential energy which is available in the system. • Every moving object has mechanical energy, whether it is a hammer driving a nail, a leaf falling from a tree, or a rocket flying in space. Mechanical energy pulls, pushes, twists, turns and throws. • Our bodies also use mechanical energy to perform motions such as throwing a ball or moving a pencil to write on paper. © iTutor. 2000-2013. All Rights Reserved
  • 5. convert other forms of energy into mechanical energy © iTutor. 2000-2013. All Rights Reserved
  • 6. Chemical Energy • The motive force that powers the human body, is provided by the chemical energy derived through the process of respiration. • Chemical energy is derived from the making and breaking of inter- atomic bonds in molecules. • Through molecular rearrangements, the biological world derives energy. The energy derived from gasoline is an example of chemical energy utilization. © iTutor. 2000-2013. All Rights Reserved
  • 7. electromagnetic energy  Energy from a magnetic field that is produced by the motion of electric charges such as electric current.  Electromagnetic radiation exists in the form of particles called photons. Each particle or photon is an extremely small grain of energy - an energy packet.  Electromagnetic energy is said to be the type of energy which comes from electromagnetic waves. These radiation travels with the speed of light and can be composed of radio waves, TV waves, radar waves, heat, light, X-rays, visible waves, etc.  The Sun, the earth and the ionosphere are main sources of electromagnetic energy in nature. © iTutor. 2000-2013. All Rights Reserved
  • 8. © iTutor. 2000-2013. All Rights Reserved
  • 9. nuclear energy • Nuclear energy originates from the splitting of uranium atoms in a process called fission.. • When the nucleus splits (fission), nuclear energy is released in the form of heat energy and light energy. • Nuclear energy is also released when nuclei collide at high speeds and join (fuse). • The sun’s energy is produced from a nuclear fusion reaction in which hydrogen nuclei fuse to form helium nuclei. • Nuclear energy starts with Albert Einstein—his classic formula, E = mc2 actually describes how much energy is released when an atom splits. © iTutor. 2000-2013. All Rights Reserved
  • 10. © iTutor. 2000-2013. All Rights Reserved
  • 11. Thermal Energy  Thermal Energy is a form of internal energy possessed by all material matter due to random motion of atoms and minute particles(kinetic molecular model of matter), and the amount depends on the temperature of the material region.  Thermal Energy is transferred only when there is a difference in temperature.  Thermal Energy always flows from a region of higher temperature to a region of lower temperature. © iTutor. 2000-2013. All Rights Reserved
  • 12. © iTutor. 2000-2013. All Rights Reserved
  • 14. energy conversions in motors  Electric motors, which convert electrical energy to mechanical energy.  Magnetism is the basis for all electric motor operation. It produces the force required to run the motor.  When current passes through a coil of wire, magnetic field is produced.  Electric motors operate through the interaction f magnetic field and current - carrying conductors to generate force. © iTutor. 2000-2013. All Rights Reserved
  • 15. energy conversions in generators  Electric generator is a device that converts mechanical energy to electrical energy.  A generator forces electric charge (usually carried by electrons) to flow through an external electrical circuit. © iTutor. 2000-2013. All Rights Reserved
  • 16.  The generator is based on the principle of "electromagnetic induction”.  An electric conductor is moved through a magnetic field, electric current will flow in the conductor.  So the mechanical energy of the moving wire is converted into the electric energy of the current that flows in the wire.  In a generator The energy conversion occurs when a coil of conducting wire is rotated between two different poles of two permanent magnets. energy conversions in generators © iTutor. 2000-2013. All Rights Reserved
  • 17. energy conversions in photocells  Photocells convert light energy into electrical energy.  Most photocells contain silicon atoms. As long as a light shines on the photocell, electrons gain enough energy to move between atoms.  The electrons are then able to move though a wire to provide electrical energy to a device, such as a calculator. © iTutor. 2000-2013. All Rights Reserved
  • 18. Call us for more information: www.iTutor.com 1-855-694-8886 Visit