These rays are produced in a discharge tube at a pressure below 0.01 rom of mercury. Candidates who are ambitious to qualify the CBSE Class 11 Chemistry with good score can check this article for Notes. Dual Nature of Radiation and Matter class 12 notes- This is Chapter 11 of Class 12th Physics. Electromagnetic radiation by James maxwell (1870). But as soon as it is irradiated with even less intense yellow light having frequency of 5.1×1014 to 5.2×1014 Hertz, photoelectrons are ejected. 6.11 Hess’s Law and Enthalpies for Different Types of Reactions, 06.13 Enthalpy of solution and Lattice Enthalpy, 6.13 Enthalpy of Solution and Lattice Enthalpy, 07.02 Equilibrium In Physical Processes – I, 7.02 Equilibrium In Physical Processes - I, 07.03 Equilibrium In Physical Processes – II, 7.03 Equilibrium In Physical Processes - II, 07.04 Equilibrium in Chemical Processes – Dynamic Equilibrium, 7.04 Equilibrium in Chemical Processes - Dynamic Equilibrium, 07.05 Law of Chemical Equilibrium and Equilibrium Constant, 7.05 Law of Chemical Equilibrium and Equilibrium Constant, 07.08 Characteristics and Applications of Equilibrium Constants, 7.08 Characteristics and Applications of Equilibrium Constants - I, 07.09 Characteristics and Applications of Equilibrium Constants – II, 7.09 Characteristics and Applications of Equilibrium Constants - II, 07.10 Relationship between Equilibrium Constant K, Reaction Quotient Q and Gibbs Energy G, 7.10 Relationship Between Equilibrium Constant K, Reaction Quotient Q and Gibbs Energy G, 07.14 Acids, Bases and Salts – Arrhenius Concept, 7.14 Acids, Bases and Salts - Arrhenius Concept, 07.15 Acids, Bases and Salts – Brönsted-Lowry Concept and Lewis Concept, 7.15 Acids, Bases and Salts - Brönsted-Lowry Concept and Lewis Concept, 07.16 Ionization of Acids and Bases and KW of Water, 7.16 Ionization of Acids and Bases and KW of Water, 07.18 Ionization Constants of Weak Acids and Weak Bases, 7.18 Ionization Constants of Weak Acids and Weak Bases, 07.19 Factors Affecting Acid Strength and Common Ion Effect, 7.19 Factors Affecting Acid Strength and Common Ion Effect, 07.20 Hydrolysis of Salts and the pH of their solutions, 7.20 Hydrolysis of Salts and the pH of their solutions, 08.02 Redox Reaction in terms of Electron Transfer Reaction, 8.02 Redox Reaction in Terms of Electron Transfer, 08.08 Redox Reactions as Basis for Titration, 8.08 Redox Reactions as Basis for Titration, 08.09 Redox Reactions and Electrode processes, 8.09 Redox Reactions and Electrode Processes, 09.01 Introduction to Hydrogen and its Isotopes, 9.01 Introduction to Hydrogen and Its Isotopes, 09.06 Structure of Water and Ice, Hard and Soft water, 9.06 Structure of Water and Ice, Hard and Soft water, 10.02 Group I Elements /Alkali Metals: Properties – I, 10.02 Group I Elements (Alkali Metals) Properties - I, 10.03 Group I Elements /Alkali Metals: Properties – II, 10.03 Group I Elements (Alkali Metals) Properties - II, 10.04 General Characteristics of Compounds of Alkali Metals, 10.05 Anomalous Properties of Lithium and diagonal relationship, 10.05 Anomalous Properties of Lithium and Diagonal Relationship, 10.06 Compounds of Sodium: Na2CO3 and NaHCO3, 10.06 Compounds of Sodium - Na2CO3 and NaHCO3, 10.07 Compounds of Sodium - NaCl and NaOH, 10.08 Group II Elements “Alkaline Earth Metals”- I, 10.08 Group II Elements (Alkaline Earth Metals) - I, 10.09 Group II Elements “Alkaline Earth Metals”- II, 10.09 Group II Elements (Alkaline Earth Metals) - II, 10.10 Uses of Alkali Metals and Alkaline Earth Metals, 10.11 General Characteristics of Compounds of Alkaline Earth Metals, 10.12 Anomalous Behaviour of Beryllium and Diagonal Relationship, 10.13 Some Important Compounds of Calcium: CaO and Ca(OH)2, 10.13 Some Important Compounds of Calcium - CaO and Ca(OH)2, 10.14 Important Compounds of Calcium: CaCO3, CaSO4 and Cement, 10.14 Important Compounds of Calcium - CaCO3, CaSO4 and Cement, 11.03 Group 13 Elements: The Boron Family, 11.03 Group 13 Elements - The Boron Family, 11.04 The Boron Family: Chemical Properties, 11.04 The Boron Family - Chemical Properties, 11.06 Boron and its compounds – Ortho Boric Acid and Diborane, 11.06 Boron and Its Compounds - Ortho Boric Acid and Diborane, 11.07 Uses of Boron and Aluminium And their Compounds, 11.07 Uses of Boron and Aluminium and Their Compounds, 11.08 The Carbon Family Overview and Physical Properties, 11.09 The Carbon Family Overview and Chemical Properties, 11.10 Important Trends and Anomalous Behaviour of Carbon, 11.12 Important Compounds of Carbon: Carbon Monoxide, 11.12 Important Compounds of Carbon - Carbon Monoxide, 11.13 Important Compounds of Carbon: Carbon dioxide, 11.13 Important Compounds of Carbon - Carbon Dioxide, 11.14 Important Compounds of Silicon: Silicon dioxide, 11.14 Important Compounds of Silicon - Silicon Dioxide, 11.15 Important Compounds of Carbon: Silicones, Silicates, Zeolites, 11.15 Important Compounds of Carbon - Silicones, Silicates, Zeolites, 12 Organic Chemistry - Some Basic Principles and Techniques, 12.01 Organic Chemistry and Tetravalence of Carbon, 12.02 Structural Representation of Organic Compounds, 12.03 Classification of Organic Compounds, 12.05 Nomenclature of branched chain alkanes, 12.05 Nomenclature of Branched Chain Alkanes, 12.06 Nomenclature of Organic Compounds with Functional Group, 12.06 Nomenclature of Organic Compounds with Functional Group, 12.07 Nomenclature of Substituted Benzene Compounds, 12.12 Resonance Structure and Resonance Effect, 12.12 Resonance Structure and Resonance Effect, 12.13 Electromeric Effect and Hyperconjugation, 12.14 Methods of purification of organic compound – Sublimation, Crystallisation, Distillation, 12.14 Methods of Purification of Organic Compound, 12.15 Methods of purification of organic compound – Fractional Distillation and Steam Distillation, 12.15 Methods of Purification of Organic Compound, 12.16 Methods of purification of organic compound – Differential Extraction and Chromatography, 12.16 Methods of Purification of Organic Compound, 12.17 Methods of purification of organic compound- Column, Thin layer and Partition Chromatography, 12.17 Methods of Purification of Organic Compound, 12.18 Qualitative analysis of organic compounds, 12.18 Qualitative Analysis of Organic Compounds, 12.19 Quantitative analysis of Carbon and Hydrogen, 12.19 Quantitative Analysis of Carbon and Hydrogen, 13.01 Hydrocarbons Overview and Classification, 13.04 Physical and Chemical Properties of Alkanes – I, 13.04 Physical and Chemical Properties of Alkanes - I, 13.05 Physical and Chemical Properties of Alkanes – II, 13.05 Physical and Chemical Properties of Alkanes - II, 13.07 Alkenes – Structure, Nomenclature, And Isomerism, 13.07 Alkenes - Structure, Nomenclature and Isomerism, 13.09 Physical and Chemical Properties of Alkenes – I, 13.09 Physical and Chemical Properties of Alkenes, 13.10 Physical and Chemical Properties of Alkenes – II, 13.10 Physical and Chemical Properties of Alkenes, 13.11 Alkynes – Structure, Nomenclature and Isomerism, 13.11 Alkynes - Structure, Nomenclature and Isomerism, 13.13 Physical and Chemical Properties of Alkynes – I, 13.13 Physical and Chemical Properties of Alkynes, 13.14 Physical and Chemical Properties of Alkynes – II, 13.14 Physical and Chemical Properties of Alkynes, 13.15 Benzene, Preparation and Physical Properties, 13.16 Aromatic Hydrocarbons – Structure, Nomenclature and Isomerism, 13.16 Aromatic Hydrocarbons - Structure, Nomenclature and Isomerism, 13.19 Mechanism of Electrophilic Substitution Reactions, 13.19 Mechanism of Electrophilic Substitution Reaction, 13.20 Directive influence of a functional group in Monosubstituted Benzene, 13.20 Directive Influence of a Functional Group in Mono substituted Benzene, 14.02 Tropospheric pollutants : Gaseous air pollutant – I, 14.2 Tropospheric Pollutants - Gaseous air Pollutant, 14.03 Tropospheric pollutants : Gaseous air pollutant – II, 14.03 Tropospheric Pollutants - Gaseous Air Pollutant, 14.04 Global Warming and Greenhouse Effect, 14.06 Tropospheric pollutants : Particulate pollutant, 14.06 Tropospheric Pollutants - Particulate Pollutant, 14.10 Water Pollution: Chemical Pollutant, 14.10 Water Pollution - Chemical Pollutant, 14.11 Soil Pollution, Pesticides and Industrial Waste, 14.12 Strategies to control environmental pollution, 14.12 Strategies to Control Environmental Pollution, Chapter 14 Environmental Chemistry - Test. NCERT Books. The model does not provide information about how electrons are distributed around the nucleus and what is the energy of those electrons. It IS given by Werner Heisenberg and Erwin Schrodinger . The model does not provide information about how electrons are distributed around the nucleus and what is the energy of those electrons. The dual nature of radiation here basically mean ‘the wave nature’ and ‘the particle nature’. The magnetic and the electric fields come at 90° to each other and the combined waves move perpendicular to both electric and magnetic oscillating fields occurring the disturbance. Physics Notes by Akhil. The wave nature of light can be observed in the phenomena of interference, diffraction and polarisation. Atom is made of electron, proton and neutrons. The electrons thus emitted are called photoelectrons. Class 1-5; Class 6; Class 7; Class 8; Class 9; Class 10; Class 11; Class 12; NCERT Solutions. So the orbit must be narrowed. Where, m is the mass of the particle and v is its velocity. Note to our visitors :-Thanks for visiting our website. 06.11 Hess’s Law and Enthalpies for Different Types of Reactions. Note to our visitors :-Thanks for visiting our website. But as soon as it is irradiated with even less intense yellow light having frequency of 5.1, Hertz, photoelectrons are ejected. These are wave nature as well as particle nature. Thus, the electron must be emitted into orbit. Electromagnetic radiation can be defined as a form of energy that is produced by the movement of electrically charged particles traveling through a matter or vacuum or by oscillating magnetic and electric disturbance. Dual Behavior of Electromagnetic Radiation: ... Go back to Class 11 Main Page using below links Class 11 Maths Class 11 Physics Class 11 Chemistry Class 11 Biology. frequencies. Thus, the electron must be emitted into orbit. The French physicist, de Broglie in 1924 proposed that matter, like radiation, exhibits dual behaviour i.e., both particle and wavelike properties. Dual Behaviour of Electromagnetic Radiation. This is possible only when you have the best CBSE Class 11 Chemistry study material and a smart preparation plan. It is the branch of chemistry which deals with dual behaviour of matter. Free Education for All. matter shows both particle and wave nature. Louis de Broglie, a French physicist, in 1924, suggested that all microscopic as well as macroscopic objects possesses dual character. Dual Nature of Matter and Radiation. Dual Nature of Radiation and Matter (chapter 11) Cathode Rays Cathode rays are the stream of fast moving electrons. Greater is the intensity of incident light or the number of photons that strike a metal, greater is the number of electrons ejected. Lecture 2 . Candidates who are ambitious to qualify the CBSE Class 11 Chemistry with good score can check this article for Notes. CBSE class 12 chapter wise notes based on chapter 11, Dual Nature of Radiation and Matter, of class 12 NCERT Physics textbook are available in this article. Atomic structure Notes For Class 11, JEE Main, NEET, AIIMS, etc. Browse more Topics under Dual Nature Of Radiation And Matter. Hurry! STRUCTURE OF ATOM Class 11 Chemistry CBSE Board Free download Aoms: Atom is the smallest indivisible particle of the matter. QnA , Notes & Videos & sample exam papers. To assist you with that, we are here with notes. Detailed explanation with examples on photoelectric-effect-and-dual-behaviour-of-electromagnetic-r helps you to understand easily . CBSE Class 11 Chemistry Atomic Structure– Get here the Notes for CBSE Class 11 Chemistry Atomic Structure. DUAL NATURE OF RADIATION AND MATTER 3. The different types of electromagnetic radiations differ only in their wavelengths and hence. Schrodinger wave equation is. For the Love of Physics - Walter Lewin - May 16, 2011 - Duration: 1:01:26. On the other hand, quantum theory of e.m. radiations successfully explained the photoelectric effect, Compton effect, black body radiations, X- ray spectra, etc. PLEASE READ MY … Thus light exhibit wave - particle duality. Photoelectric Effect And Dual Behaviour Of Electromagnetic Radiation, Ex: when the metal potassium is irradiated with high, intense red light having frequency of 4.3, Hertz for hours together, no electron is ejected. Free Class 11 Science, Chemistry Notes, Class 11 Scince Syllabus, CBSE Class Notes and Study Material, from the latest edition of CBSE (NCERT) books. The wave associated with the particle is called a matter wave or a de Broglie wave. Moreover, the chapter covers various topics that explain a lot of things about the properties, effects, emission, and nature of radiation and matter. The wavelength of the wave associated with any material particle was calculated as: In case of photon, if it is assumed to have a wave character, its energy is given by E = hν where ν is the frequency of the wave and h is Pla… also have momentum as well as wavelength. Dual Nature of Radiation and Matter: Wave theory of electromagnetic radiations explained the phenomenon of interference, diffraction and polarization. Does only light have a dual nature? Apply coupon WELCOME21 at checkout and avail 21% discount on your order. Maxwell’s equations in integral and differential forms, electrostatics and magnetostatics, electroquasistatics and magnetoquasistatics. Matter and radiations had a dual … Dual Behaviour of Electromagnetic Radiation. In vacuum all … Atom is made of electron, proton and neutrons. This is a revolutionary concept of physics that tells that everything is a wave and particle. CBSE Class 11 Chemistry Atomic Structure– Get here the Notes for CBSE Class 11 Chemistry Atomic Structure. CBSE Class 12 Physics Chapter 11 Dual Nature of Radiation and Matter Notes in PDF are available for free download in myCBSEguide mobile app. Dual Behaviour of Electromagnetic Radiation. 1 | P a g e (Visit for all ncert solutions in text and videos, CBSE syllabus, note and many more) Physics Notes Class 12 Chapter 11 Dual Nature of Radiation and Matter Cathode Rays Cathode rays are the stream of fast moving electrons. (Chemistry Ch-2) 3. Dual Behaviour of Electromagnetic Radiation. Electrons should have momentum as well as wavelength, just as photon has momentum as well as wavelength. The electromagnetic radiation is looked at as sinusoidal waves which are composed of a combination of two fields. These packets of energy can be treated as particles. Where, m is the mass of the particle and v is its velocity. As the threshold frequency for potassium metal is 5.0. Electromagnetic Spectrum. where. Electromagnetic wave theory This theory was put forward by James clark Maxwell in 1864.. Towards the end of the nineteenth century, Maxwell's equations established that light was an electromagnetic wave. Lecture notes. An electromagnetic wave has dual (wave–particle) nature. Lecture 1. Dual behavior of matter: de Broglie proposed that matter exhibits dualbehavior i.e. Matter, like radiation, exhibits dual behaviour (i.e., both particle and wave-like properties). Chapter 11 DUAL NATURE OF MATTER AND RADIATION Introdcution Light exhibit dual nature - wave nature and particle nature. Atomic structure Notes For Class 11, JEE Main, NEET, AIIMS, etc. So it may be concluded that electromagnetic radiations possess dual … The wave nature of light can be observed in the phenomena of interference, diffraction and polarisation. 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