Chapter 14 Light and Color. Genesis 1: 3-4 God said, “Let there be light”; and there was light. And God saw that the light was good: and God divided the.

Slides:



Advertisements
Similar presentations
I. Electromagnetic Radiation (p )
Advertisements

Electromagnetic Waves & the Electromagnetic Spectrum
Electromagnetic Waves
I. Electromagnetic Waves
The difference between sound and light They’re both waves, after all.
How do scientific models describe light?
Waves: Light.
Waves.
4-1 Radiant Energy. Waves  Light travels in Waves similar to ocean waves  Light waves are electromagnetic and consist of an electric and magnetic fields.
Radiant Energy Electromagnetic wave, crest, trough, medium,
Chapter 18 The Electromagnetic Spectrum and Waves
Electromagnetic Waves. Electromagnetic wave is a wave that can travel through empty space or through matter and is produced by charged particles that.
Electromagnetic Waves
CP Physics Ms. Morrison.  Moving charged particles create magnetic fields  Changing motion of charged particle creates expanding and collapsing magnetic.
ELECTROMAGNETIC WAVES
EXAM #2 THIS FRIDAY, 10/16 BRING PENCIL, CALCULATOR, AND SHEET OF NOTES (PUT YOUR A00 NUMBER ON IT) CHAPTER 4 OWL ASSIGNMENTS (& FIRST CHAPTER 6 ASSIGNMENT)
Electromagnetic Waves
Electromagnetic Waves (light) & the Electromagnetic Spectrum
The Electromagnetic Spectrum
The Electromagnetic Spectrum
Energy Unit Learning Goal #1: Evaluate the quantum energy changes in the atom in terms of the energy contained in light emissions.
ELECTROMAGNETIC WAVES SECONDARY 3 PHYSICS. WHAT ARE EM WAVES? Electromagnetic waves (EM waves for short) are waves that can travel in a vacuum. These.
27 Light Light is the ONLY thing you see! All visible objects either emit or reflect light.
The Electromagnetic Spectrum (EMS). Electromagnetic Wave An electromagnetic wave is a transverse wave that carries electrical and magnetic energy. The.
Chapter 18 Review.
Chapter 12 magneticspectrum.html.
Electromagnetic Waves & the Electromagnetic Spectrum.
Chapter 18 The Electromagnetic Spectrum and Waves
Sound and LightSection 2 Section 2: The Nature of Light STANDARDS: SC.912.P Explore the theory of electromagnetism by comparing and contrasting.
Electromagnectic Spectrum
Energy. Radiant Energy Radiant: think light…. How does light carry energy through space???
Electromagnetic Waves Examples with differing frequencies, wavelengths and energy levels
Chapter 18 – The Electromagnetic Spectrum and Light
Lecture 20 Electromagnetic Waves Nature of Light
Wednesday, September 25, 2015 Take out the following:  Pen or pencil  Planner (p. 33)  Energy Workbook (p. 28)
Daily Science pg Grab the National geographic article we read in class last time. Finish your paragraphs. If you are finished, make sure you have.
Light and Electrons! Ch 11. Light & Atomic Spectra A Brief Bit of History (development of the quantum mechanical model of the atom) Grew out of the study.
Sound and LightSection 2 EQ: How can I explain the characteristics of waves?
Electrons and Light. Light’s relationship to matter Atoms can absorb energy, but they must eventually release it When atoms emit energy, it is released.
The Electromagnetic Spectrum Coach Smith. EM Spectrum 0 Types 0 Radio 0 Microwave 0 Infrared 0 Visible light 0 Ultraviolet 0 X-rays 0 Gamma rays.
Solids and Light – Introduction to Light
Let there be... Light The Nature of Light What is Light? By the 17th century, light had been observed to… 1. travel in straight lines 1. travel in straight.
Electromagnetcetera… Chapter 18. Electromagnetic Waves Constantly changing fields: –Electric field –Magnetic field.
Electromagnetic Waves An Electromagnetic wave travels like a wave, but can interact with matter like a particle. It has a “dual nature”, behaving like.
P HYSICAL S CIENCE The Electromagnetic Spectrum. O BJECTIVES Explain the properties of the electromagnetic spectrum Differentiate between the different.
The Universe and Electromagnetic Spectrum State Objectives 2e. and 4.f.
ELECTROMAGNETIC WAVES AND LIGHT. ELECTROMAGNETIC WAVES Electromagnetic Waves travel through empty space or through matter and are produced by charged.
Electromagnetic Waves & the Electromagnetic Spectrum electromagnetic spectrum power point.
QW 1-14 Draw a Venn Diagram to compare and contrast Transverse and Longitudinal Waves.
Chapter 14 Light and Color. Genesis 1: 3-4 God said, “Let there be light”; and there was light. And God saw that the light was good: and God divided the.
Electromagnetic Waves & the Electromagnetic Spectrum.
ELECTROMAGNETIC WAVES & THE ELECTROMAGNETIC SPECTRUM WAVES.
Chapter 14 Light and Color. Genesis 1: 3-4 God said, “Let there be light”; and there was light. And God saw that the light was good: and God divided the.
Electromagnetic Waves & the Electromagnetic Spectrum.
Sound and LightSection 2 Waves and Particles 〉 How do scientific models describe light? 〉 The two most common models describe light either as a wave or.
 Electromagnetic wave (light) - a wave that consists of electric and magnetic fields.  These waves are produced when a charged particle oscillates 
Electromagnetic Spectrum. What is a wave? A disturbance involving the transfer of energy from place to place.
Electromagnetic Radiation (Light).
The Electromagnetic Spectrum
Electromagnetic Waves
Electromagnetic Spectrum
THEORIES OF LIGHT Is light a wave or a stream of particles?
Light and Electromagnetic Waves
Electromagnetic Waves & the Electromagnetic Spectrum
Electromagnetic Waves & the Electromagnetic Spectrum
I. Electromagnetic Radiation EM EM Radiation
Light Waves Light is an electromagnetic wave.
Chapter 14 Light and Color.
Electromagnetic Spectrum
Presentation transcript:

Chapter 14 Light and Color

Genesis 1: 3-4 God said, “Let there be light”; and there was light. And God saw that the light was good: and God divided the light form the darkness.

Theories of Light Isaac Newton first studies light… He defined light as particles… In Newton’s “particle theory of light”, he postulated that light was tiny streams of particles emitted by a light source.

Theories of Light Other scientists of the time proposed light was a wave. The “wave theory of light” postulates that light consists of waves rather than particles. During the civil war, James Maxwell demonstrated that light was two transverse waves vibrating at right angles to each other.

Theories of Light These two waves act together as a single electromagnetic wave…

Theories of Light Maxwell said that electromagnetic waves are similar to other waves (sound and water)…they undergo reflection, refraction, diffraction, and interference. He said they are different in that they do not need a medium, they can travel through the vacuum of space. Electromagnetic waves are much, much faster also… 300,000 km/s!!!

Theories of Light Light is a small part of the electromagnetic spectrum… Maxwell proposed that the spectrum contained other waves as well that were higher and lower in frequency than light. Hertz in 1888 proved the existence of radio waves, which are lower in frequency than light and therefore confirmed what Maxwell proposed.

Theories of Light Maxwell calculated that all electromagnetic waves travel at a speed of 300,000 km/s in empty space… It can be represented by the equation… c = x f Speed of light = wavelength times frequency

The Dual Nature of Light Max Planck and Albert Einstein showed that light cannot be simply classified as a wave or particle… Rather, light has the characteristics of both particles and waves… Transmitted light is wavelike… The manner in which light interacts with matter is particle-like…

Quantum Theory of Light The theory that light has both a wave nature and a particle nature is called the quantum theory of light…..\DSDUQT.mov

Quantum Theory of Light Quantum theory says that light is tiny bundles of energy called photons… When interacting with matter, photons act like particles, but when traveling through space, photons act like electromagnetic waves.

The Electromagnetic Spectrum We can only perceive part of the frequencies of which light is a part… We can only see “visible light”…

The Electromagnetic Spectrum

The spectrum can be divided into seven broad categories from low frequency to high: –Radio waves –Microwaves –Infrared waves –Visible light –Ultraviolet waves –X-rays –Gamma rays

Radio Waves The lowest frequency waves Higher frequency waves are used for television.. Higher still are used for cell phones

Microwaves Used in microwave ovens Also used for radar

Infrared Radiation Best known as heat waves… Cannot be perceived by our eyes, but it can be felt as warmth Infrared rays are used to “see” in the dark by solders and police

Visible Light This is the only part of the spectrum you can see…

Ultraviolet Radiation Has three categories: UVA UVB UVC UVC is the most dangerous and is fortunately blocked by our ozone layer… UV is often used to sterilize medical instruments… UV rays are necessary to produce vitamin D…

X-rays X-rays are useful because they can “see” through matter…

Gamma Rays The most dangerous of the spectrum… They are very harmful to tissues…

Einstein’s Theory of Relativity Einstein discovered interesting consequences due to the speed of light in a vacuum being constant.

Einstein’s Theory of Relativity He called them his “Theory of Relativity” 1. all motion must be measured relative to some reference point. 2. the speed of light is constant relative to any observer.

Einstein’s Theory of Relativity These principles lead to bizarre things happening when traveling at speeds close to the speed of light… 1. Time dilation: Time slows down for the object moving at high speeds.

Einstein’s Theory of Relativity 2. Length contraction: Objects appear shorter in the direction of the motion. Slow speed Super fast!

Einstein’s Theory of Relativity 3. Mass increase: the mass of the object moving at high speeds increases.

A Universal Speed Limit The speed of light is considered a universal speed limit… Nothing in the physical universe can move faster than the speed of light in a vacuum.

Gravitational Effects Einstein showed that time and length are also affected by gravity.

Gravitational Effects Time runs more slowly the greater the gravitational field.

Gravitational Effects Length is contracted.

The End