TITLE: EFFECTS OF ELECTROMAGNETIC RADIATION ON HUMAN HEALTH. Table of Contents DECLARATION 2 APPROVAL 3 DEDICATION 4 ABSTRACT 7 LIST OF ABBREVIATIONS 7 CHAPTER 1: INTRODUCTION 9 1.1 Background information 9 1.2 STATEMENT OF THE PROBLEM 10 1.2.1 Current situation 10 1.2.2 Research to find out the effects of electromagnetic radiation on human health. 11 1.3 OBJECTIVE OF THE STUDY 13 1.3.1 General objective 13 1
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Cell Phone Radiation Written by: Jacob Nickerson Cell phone radiation is something we as consumers are exposed to each and every day. What effect does this have on us? Can this radiation alter the cell structures and functions of our bodies? For what amount of time can our bodies be exposed to this radiation without health risks? These are all questions many scientists and researchers are trying to answer with every day that passes. Researchers are divided on a conclusion of whether or not
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word ’radiation’ has to do with energy or matter moving through space. Space radiation affects astronauts when an amount of radiation gets through the walls of a space shuttle or station and enters the body. Solar radiation usually affects astronauts walking in space‚ outside of their space shuttles‚ but sometimes it can even affect the people on Earth‚ causing electricity failures. Many people - astronauts mostly- fear the consequences of solar radiation‚ due to the fact that solar radiation can cause
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Blackbody Radiation Lab 11 Go to http://phet.colorado.edu/simulations/sims.php?sim=Blackbody_Spectrum and click on Run Now. 1) In this lab‚ you will use the Blackbody Spectrum Simulation to investigate how the spectrum of electromagnetic radiation emitted by objects is affected by the object’s temperature. In this simulation‚ you can input the temperature and observe the spectrum of the radiation emitted. a) The temperature of stars in the universe varies with the type of star and the age
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The History of the Discovery of Radiation and Radioactivity Introduction: Radiation can be defined as the propagation of energy through matter or space. It can be in the form of electromagnetic waves or energetic particles. Ionizing radiation has the ability to knock an electron from an atom‚ i.e. to ionize. Examples of ionizing radiation include: • alpha particles • beta particles • neutrons • gamma rays • x-rays Non-ionizing radiation does not have enough energy to ionize atoms in the material
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MOBILE RADIATION CONTROL PROJECT REPORT DEPARTMENT OF INFORMATION TECHNOLOGY THIAGARAJAR COLLEGE
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Research on Conduction‚ Convention‚ and Radiation Conduction is the exchange of warmth between substances that are in direct contact with one another. The better the conductor‚ the all the more quickly warmth will be exchanged. Metal is a decent conduction of warmth. Conduction happens when a substance is warmed‚ particles will acquire vitality‚ and vibrate more. These atoms then chance upon adjacent particles and exchange some of their vitality to them. This then proceeds with and passes the vitality
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cellular structure. Ionizing radiation causes atoms and molecules to become ionized or excited. These excitations and ionizations can: * Produce free radicals. * Break chemical bonds. * Produce new chemical bonds and cross-linkage between macromolecules. * Damage molecules that regulate vital cell processes (e.g. DNA‚ RNA‚ proteins). The cell can repair certain levels of cell damage. At low doses‚ such as that received every day from background radiation‚ cellular damage is rapidly
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INDUSTRIAL RADIATION SAFETY MANUAL PART I Approval Sheet Table of contents Acknowledgement Preface PART II A. INTRODUCTION Company’s Profile Mission and Vision Organizational Chart - Company - Section/Department - Radiation Protection Committee B. INDUSTRIAL X-RAY FACILITY Location of the Facility (detailed location of the facility) Layout of the Facility Equipment Description/ Specifications/ Standards (ISO/IEC Standards)
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Conduction‚ Convection‚ and Radiation Heat transfer is the way heat moves through matter to change the temperature of other objects. There are three types of heat transfers‚ Conduction‚ Convection‚ and Radiation. The first kind of heat transfer‚ conduction‚ is heat transferring through direct contact of materials. This would be the same thing as a pan on the stove. The heat from the stove touches the pan directly‚ therefore making the pan hot. The next type of heat transfer is convection
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