The Period, or the time it takes for wave to complete on wavelength, is related to ____________ Frequency.

Slides:



Advertisements
Similar presentations
Universal Wave Equation
Advertisements

Properties of Waves Amplitude, Wavelength, Frequency, Speed.
Properties of Mechanical Waves
Learning Goals: Define wavelength, frequency, period, and amplitude. Describe the relationship between frequency and wavelength. Explain how a wave’s energy.
General Properties of Waves
Properties of Waves EQ: How do I describe the basic properties of waves and how a wave’s speed is related to its wavelength and frequency?
Electrons as Waves.
Properties of Waves Ms. T.. 4 Basic Properties of Waves O Amplitude O Wavelength O Frequency O Speed.
Waves can also be reflective and refractive Waves can bounce off of something after striking it. That is a reflection. Sound and light waves can equally.
Waves Lesson 2: Pgs
Two Source Interference Patterns Contents: Basic Concept Two Source patterns.
Waves Transferring Energy. Waves: traveling disturbance that carries energy from one place to another Waves travel through water, but they do not carry.
Energy and Waves.
WAVES AS 2.3: Demonstrate an understanding of wave phenomenon.
Review Concept: PS-7.4 Use the formulas v = f λ and v = d/t to solve problems related to the velocity of waves.
Waves And Wave Properties Applied Physics and Chemistry SHM Lecture 2.
Basic Wave Properties Notes Waves are caused by a disturbance which propagates and carries energy.
What is the wavelength? What is the amplitude?.
Unit 07 Waves & Wave Properties Sound Waves & Light Waves Problem Solving.
1. A wave passes every seconds. What is the frequency with which waves pass? (80.0 Hz)
Wave Calculations. There are different physical parts of a wave. Amplitude, Crest, Trough, Wave Length.
Look at your formula chart for question 9 10.
Calculating Wave Speed
Waves and Wave Properties. A wave is a disturbance that carries energy from place to place. A wave does NOT carry matter with it! It just moves the matter.
Waves 23.2 – Properties of Waves pp Waves A wave is an oscillation that travels from one place to another. A wave is an oscillation that.
IPC Notes Wave Properties. Definitions reflection – the bouncing back of a wave ex) your reflection in a mirror & a sound echoes.
Waves Chapter 15 Section 2. Objectives  What are ways to measure and compare waves  How can you calculate speed of a wave?
Chapter Twenty-Three: Waves  23.1 Harmonic Motion  23.2 Properties of Waves  23.3 Wave Motion.
The faster the end of the rope is ‘waggled’, the shorter the wavelength produced The wave equation.
V f λ.
A repeating disturbance or movement that transfers energy through matter or space Example: Ocean Light sound What Are Waves?
WavesSection 2 Bellringer In the diagram, A is the distance from a point on one wave to an identical point on the next wave. What might this distance be.
Measuring Waves Physics 7(B). Learning Objectives Describe and measure the parts of a wave Explain the relationship between frequency and wavelength Use.
Chapter Twenty-Three: Waves  23.1 Harmonic Motion  23.2 Properties of Waves  23.3 Wave Motion.
Electromagnetic Spectrum Chemistry 6(B). Lesson Objectives Explore the electromagnetic spectrum Understand the mathematical relationships between energy,
17.2 Properties of Mechanical Waves A surfer needs to understand the properties of waves.
Wave Properties. Amplitude The distance a wave vibrates from its rest position. The distance a wave vibrates from its rest position. The greater the amplitude,
Light and Quantized Energy Light and Quantized Energy Essential Question: What are the quantitative and qualitative properties across the range of the.
SOUND
PROPERTIES OF WAVES. Waves A wave is a means of transferring energy and information from one point to another without there being any transfer of matter.
Define “wave” Explain why there is no sound in space Define “period”
Speed Formula - Waves.
General Properties of Waves
Light and the Atomic Spectra
Wave Frequency and Speed
DO NOW: FIND YOUR SEAT Take out the Slinky Lab from yesterday. We will go over some of the questions. DUE FRIDAY! Open your notebooks: wave calculations.
V f λ.
8th Grade Integrated Science
Properties of Waves Chapter 15 Section 2.
Waves Wave properties.
Section 2 – Properties of Waves pp
Section 2 – Properties of Waves pp
Basic Wave Properties Notes
Characteristics of Waves
The Nature and Properties of Waves
Calculating Wave Speed
Properties of waves.
Wave Velocity.
What we will do today: Carry out calculations involving the relationship between speed, wavelength and frequency for waves.
Section 2 – Properties of Waves pp
Calculating Wave Properties
Wave Frequency and Speed
24.2 Speed of Waves.
11-2: Wave Properties.
Properties of Waves Unit 12 Section 2.
Electromagnetic Waves
Section 3-2 Properties of Waves.
Other terms related to a periodic wave
Section 2 – Properties of Waves pp
Chapter Twenty-Three: Waves
Presentation transcript:

The Period, or the time it takes for wave to complete on wavelength, is related to ____________ Frequency

A wave has a frequency of 40 hertz. What is the period of the wave? Know: Find: Formula: Answer: f = 40hertz Period T = 1/ f T = 1/f = 1/40 = 0.025s

A wave has a period of 2 seconds. What is the frequency of the wave? Know: Find: Formula: Answer: T = 2s frequency f = 1/ T f= 1/T = 1/2 = 0.5Hz

The only thing that affect wave speed is the medium We can use two properties of a wave to calculate the speed: Frequency- (how many waves per second) Wave Length- (distance between waves)

Finding Speed of a Wave

Know: Find: Formula: Answer: f = 40hertz ƛ = 0.5m v = fƛ The wavelength for a wave is 0.5 meter, and its frequency is 40 hertz. What is the speed of the wave? Know: Find: Formula: Answer: f = 40hertz ƛ = 0.5m Speed v = fƛ v = 40hrtz x 0.5m = 20m/s

The period of a wave is 10 seconds and the wavelength is 2 meters The period of a wave is 10 seconds and the wavelength is 2 meters. What is the wave speed? Know: Find: Formula: Answer: T = 10s ƛ = 2m Wave Speed v = f ƛ v = f ƛ = f = 1/T = 1/10 = 0.1hz v = 0.1hrtz x 2m = 0.2m/s

Can rearrange formula to solve for either frequency or wavelength

A sound wave has a speed of 400m/sec and a frequency of 200Hz A sound wave has a speed of 400m/sec and a frequency of 200Hz. What is its wavelength? Know: Find: Formula: Answer: v = 400m/s f= 200Hz Wavelength v =fƛ v/f = fƛ / f ƛ = v/f = 400/200 =2m

Summarizer: Try these on your own!

Johnny is making waves on a slinky. It takes 0 Johnny is making waves on a slinky. It takes 0.5s for one complete wavelength. The wavelength of the waves is 2m. What is the speed of the waves John-boy made?

Johnny now creates waves with a speed of 3m/s, with a wavelength of 0 Johnny now creates waves with a speed of 3m/s, with a wavelength of 0.25m. What is the frequency of the waves? What is the period of the waves?