SlideShare a Scribd company logo
1 of 39
Atomic Theory


 Atoms are building blocks of elements
 Similar atoms in each element
 Different from atoms of other elements
 Two or more different atoms bond in simple ratios to
  form compounds

                     LecturePLUS Timberlake       1
Subatomic Particles
Particle         Symbol             Charge
                                                      Mass
Electron          e-                1-                 1/1840

Proton            p+                +                  1

Neutron           n                 0                  1
Charge measure in terms of electronic charge: e=1.6x10^-19

Mass is measure in unified atomic mass: units(u)
1 u is 1/12 of the mass of a carbon-12 atom.

                             LecturePLUS Timberlake             2
Location of Subatomic Particles
                 10-13 cm
electrons

                                        protons
                                        neutrons
                      nucleus




  10-8 cm

               LecturePLUS Timberlake              3
Atomic Number


Counts the number
        of
     protons
   in an atom

    LecturePLUS Timberlake   4
Atomic Symbols

 Show the mass number and atomic number
 Give the symbol of the element


  mass number
                          23 Na              sodium-23
 atomic number 11


                    LecturePLUS Timberlake               5
Number of Electrons


 An atom is neutral
 The net charge is zero
 Number of protons = Number of electrons
 Atomic number = Number of electrons




                    LecturePLUS Timberlake   6
Subatomic Particles in Some Atoms


16         31                            65
  O         P                                 Zn
 8         15                            30
8 p+       15 p+                         30 p+
8n         16 n                          35 n
8 e-       15 e-                         30 e-

                LecturePLUS Timberlake             7
Isotopes

 Atoms with the same number of protons, but
  different numbers of neutrons.
 Atoms of the same element (same atomic
  number) with different mass numbers
         Isotopes of chlorine
           35Cl                          37Cl
           17                            17

    chlorine - 35       chlorine - 37
                    LecturePLUS Timberlake      8
Learning Check
 Naturally occurring carbon consists of three isotopes,
 12C, 13C, and 14C. State the number of protons,

 neutrons, and electrons in each of these carbon atoms.
     12C               13C                          14C
     6                   6                     6
#p _______       _______                      _______
#n _______       _______                      _______
#e _______       _______                      _______

                     LecturePLUS Timberlake               9
Nuclear Density
• Mass of proton m(p)=1.67 x 10^-27 kg
• Radius of proton r = 0.80 x 10^-15 m

• Find the density=
Isotopes
Atoms made of protons, neutrons and electrons.

Neutrons+ Protons: Nucleus

• Electron + Proton # influences-> Chemical Properties
• Protons+ Neutron # influences-> Physical Properties

Isotopes
Atoms with same number of protons but different
   number of protons are Isotopes.
Radioactivity

• A stable nuclei emits radiations. Radiation was
  discovered by Henri Becquerel in 1896. These
  radiations are not influenced by any outside
  conditions such as temperature or pressure.


• It is a spontaneous process, but it occurs at
  fixed intervals. Hence a proportion of sample
  decay will occur in that time interval.
Three particles present in these
              Radiations:
• Alpha, Beta And Gamma


          Alpha
          Beta
         Gamma
• We know that nuclei consists of protons and
  neutrons, if the balance between these two
  types of particles is too far to one side, the
  nucleus may emit alpha or B radiations.

• Gamma emitted after alpha or B radiation to
  release excess energy.
A third conserved quantity
• In radioactive decay, both nucleon number A
  and proton number Z are conserved.

• On comparison b/w mass before and after
  decay, we witness a decrease in mass.

• This is because energy lost caries mass- recall
  E=mc^2, so we witness a net decrease in
  energy.
Properties of Ionizing radiation
• On moving past atoms, alpha or B collide/rub with
  them and this as a result causes to knock or drag away
  electrons from an atom.

• This process is called Ionization.
• Now, Energy is lost during ionization.

             Size:        Motion:      Ionization Ability:
• Alpha: more mass &charge | slow | Most
• Beta:    lighter         | faster | Moderate
• Gamma: no charge                  | Least
Lesson Contents
1.   Physical properties of a, b and g
2.   Penetrating power of a, b and g
3.   N v Z graphs
4.   Decay laws
Alpha Radiation
Alpha particles contain two protons
and two neutrons
Alpha Radiation
a has the same constitution as a
helium nucleus
Alpha particles may be written as



They have a double positive charge
and a mass of 4 u
Alpha
• Since most effective ionization therefore,
  most energy is lost during travel, hence cover
  least distance and in a cloud chamber, most
  prominent tracks are formed.
Detection of all three:
Beta-minus Radiation
Beta-minus particles are electrons
Beta-minus Radiation
b- is produced when a neutron decays
Beta-minus particles may be written
as



They have a negative charge and a
mass of 1/1800 u
Beta-minus Radiation
b- is produced when a neutron decays

                           + Energy

The surplus mass is released as
kinetic energy in the b- and as an
antineutrino
Gamma Radiation
Gamma rays are a form of electro-
magnetic radiation
Gamma Radiation
g release is often associated with a
or b decay
Gamma rays remove energy from
an unstable nucleus
Type of        Nature of the          Nuclear      Penetrating power, and what will block it    Ionising power - the ability to remove electrons
radiation         radiation            Symbol       (more dense material, more radiation is              from atoms to form positive ions
emitted &       (higher only)       (higher only)   absorbed BUT smaller mass or charge of
 symbol                                                   particle, more penetrating)




            a helium nucleus of 2                     Low penetration, biggest mass and          Very high ionising power, the biggest mass and
                protons and 2                        charge, stopped by a few cm of air or         charge of the three radiation's, the biggest
            neutrons, mass = 4,                               thin sheet of paper                                    'punch'!
                 charge = +2
Alpha



             high kinetic energy                     Moderate penetration, 'middle' values of    Moderate ionising power, with a smaller mass
             electrons, mass =                      charge and mass, most stopped by a few           and charge than the alpha particle
            1/1850, charge = -1                           mm of metals like aluminium

 Beta



            very high frequency                       Very highly penetrating, smallest mass     The lowest ionising power of the three, gamma
              electromagnetic                          and charge, most stopped by a thick         radiation carries no electric charge and has
            radiation, mass = 0,                    layer of steel or concrete, but even a few     virtually no mass, so not much of a 'punch'
                 charge = 0                           cm of dense lead doesn't stop all of it!              when colliding with an atom
Gamma
Penetrating power
Effect of Magnetic Fields
Decay laws - alpha
When an isotope emits an a particle
 Its nucleon number decreases by 4
 Its proton number decreases by 2
For example:
Decay laws – beta-minus
When an isotope emits a b- particle
 Its nucleon number is unchanged
 Its proton number increases by 1
For example:
Decay laws – beta-plus
When an isotope emits a b+ particle
 Its nucleon number is unchanged
 Its proton number decreases by 1
For example:
Decay laws
Try writing the nuclear equations for
the decay of these isotopes
Decay laws
Answers
Decays
Randomness and Decay:

Spontaneous:
• Decays not effected by the presence of other
  nuclei.
• No chemical reaction, external factors like
  pressure and temperature effect the decay.
• Random:
• Impossible to predict the time
• Each nucleus has an equal probability to decay

More Related Content

What's hot

Discovery of neutron
Discovery of neutron Discovery of neutron
Discovery of neutron ABTEJAN
 
Alpha beta and_gamma
Alpha beta and_gammaAlpha beta and_gamma
Alpha beta and_gammabillbarker830
 
Transition Elements
Transition ElementsTransition Elements
Transition ElementsBernard Ng
 
Neils bohr atomic model
Neils bohr atomic modelNeils bohr atomic model
Neils bohr atomic modelABTEJAN
 
Nuclear fission and fusion By Pratimesh pathak
Nuclear fission and fusion By Pratimesh pathakNuclear fission and fusion By Pratimesh pathak
Nuclear fission and fusion By Pratimesh pathakPratimesh Pathak
 
Elementary particles
Elementary particlesElementary particles
Elementary particlesSNS
 
Elementry particles project by Jyotibhooshan chaturvedi
Elementry particles project by Jyotibhooshan chaturvediElementry particles project by Jyotibhooshan chaturvedi
Elementry particles project by Jyotibhooshan chaturvediJyotibhooshan Chaturvedi
 
Fission and fusion
Fission and fusionFission and fusion
Fission and fusionInga Teper
 
RUTHERFORD ‘ S MODEL OF AN ATOM
RUTHERFORD ‘ S MODEL OF AN ATOMRUTHERFORD ‘ S MODEL OF AN ATOM
RUTHERFORD ‘ S MODEL OF AN ATOMdeepak190
 

What's hot (20)

Discovery of neutron
Discovery of neutron Discovery of neutron
Discovery of neutron
 
Alpha beta and_gamma
Alpha beta and_gammaAlpha beta and_gamma
Alpha beta and_gamma
 
Transition Elements
Transition ElementsTransition Elements
Transition Elements
 
Nuclear radiation
Nuclear radiationNuclear radiation
Nuclear radiation
 
Neils bohr atomic model
Neils bohr atomic modelNeils bohr atomic model
Neils bohr atomic model
 
Nuclear chemistry
Nuclear chemistryNuclear chemistry
Nuclear chemistry
 
Structure of an Atom
Structure of an AtomStructure of an Atom
Structure of an Atom
 
RADIATION
RADIATIONRADIATION
RADIATION
 
Nuclear physics
Nuclear physicsNuclear physics
Nuclear physics
 
Nuclear fission and fusion By Pratimesh pathak
Nuclear fission and fusion By Pratimesh pathakNuclear fission and fusion By Pratimesh pathak
Nuclear fission and fusion By Pratimesh pathak
 
Elementary particles
Elementary particlesElementary particles
Elementary particles
 
Ppt nuclear strability
Ppt nuclear strabilityPpt nuclear strability
Ppt nuclear strability
 
Elementry particles project by Jyotibhooshan chaturvedi
Elementry particles project by Jyotibhooshan chaturvediElementry particles project by Jyotibhooshan chaturvedi
Elementry particles project by Jyotibhooshan chaturvedi
 
Redox (1).pptx
Redox (1).pptxRedox (1).pptx
Redox (1).pptx
 
Fission and fusion
Fission and fusionFission and fusion
Fission and fusion
 
Radioactivity
RadioactivityRadioactivity
Radioactivity
 
Radioactivity
RadioactivityRadioactivity
Radioactivity
 
RUTHERFORD ‘ S MODEL OF AN ATOM
RUTHERFORD ‘ S MODEL OF AN ATOMRUTHERFORD ‘ S MODEL OF AN ATOM
RUTHERFORD ‘ S MODEL OF AN ATOM
 
Ppt nuclear strability
Ppt nuclear strabilityPpt nuclear strability
Ppt nuclear strability
 
Structure of atom
Structure of atomStructure of atom
Structure of atom
 

Viewers also liked

Solution-Paper 1
Solution-Paper 1 Solution-Paper 1
Solution-Paper 1 Hira Rizvi
 
9702 s11 qp_12
9702 s11 qp_129702 s11 qp_12
9702 s11 qp_12Hira Rizvi
 
9702 s11 qp_21
9702 s11 qp_219702 s11 qp_21
9702 s11 qp_21Hira Rizvi
 
Nuclear magnetic resonance ( NMR)
Nuclear magnetic resonance ( NMR)Nuclear magnetic resonance ( NMR)
Nuclear magnetic resonance ( NMR)Ammar Babar
 
9702 w11 qp_11
9702 w11 qp_119702 w11 qp_11
9702 w11 qp_11Hira Rizvi
 
CH EN 3453 Heat Transfer 2014 Fall Utah Homework HW 11 Assignment
CH EN 3453 Heat Transfer 2014 Fall Utah Homework HW 11 AssignmentCH EN 3453 Heat Transfer 2014 Fall Utah Homework HW 11 Assignment
CH EN 3453 Heat Transfer 2014 Fall Utah Homework HW 11 Assignmentsemihypocrite
 
Elect principles 2 thevenin theorem
Elect principles 2   thevenin theoremElect principles 2   thevenin theorem
Elect principles 2 thevenin theoremsdacey
 
Teaching Medical Physics at Undergraduate level
Teaching Medical Physics at Undergraduate levelTeaching Medical Physics at Undergraduate level
Teaching Medical Physics at Undergraduate levelAmmar Felemban
 
Heat transfer in thermal engineering
Heat transfer in thermal engineeringHeat transfer in thermal engineering
Heat transfer in thermal engineeringAshish Khudaiwala
 
Medical Physics 102 - Clinical Leadership - Prado
Medical Physics 102 - Clinical Leadership - PradoMedical Physics 102 - Clinical Leadership - Prado
Medical Physics 102 - Clinical Leadership - PradoKarl Prado
 
Transfer of Heat
Transfer of HeatTransfer of Heat
Transfer of Heatmeenng
 
Unit1: Physical Quantities & Units
Unit1: Physical Quantities & UnitsUnit1: Physical Quantities & Units
Unit1: Physical Quantities & UnitsHira Rizvi
 
Ch 31 Nuclear Physics and Radioactivity
Ch 31 Nuclear Physics and RadioactivityCh 31 Nuclear Physics and Radioactivity
Ch 31 Nuclear Physics and RadioactivityScott Thomas
 
Circuit laws & network theorems
Circuit laws  & network theoremsCircuit laws  & network theorems
Circuit laws & network theoremsHimanshu Batra
 
Radioactivity
RadioactivityRadioactivity
RadioactivityE H Annex
 

Viewers also liked (20)

Radioactivity
RadioactivityRadioactivity
Radioactivity
 
Solution-Paper 1
Solution-Paper 1 Solution-Paper 1
Solution-Paper 1
 
9702 s11 qp_12
9702 s11 qp_129702 s11 qp_12
9702 s11 qp_12
 
Paper 2
Paper 2Paper 2
Paper 2
 
9702 s11 qp_21
9702 s11 qp_219702 s11 qp_21
9702 s11 qp_21
 
Radioactivity.ppt
Radioactivity.pptRadioactivity.ppt
Radioactivity.ppt
 
Nuclear magnetic resonance ( NMR)
Nuclear magnetic resonance ( NMR)Nuclear magnetic resonance ( NMR)
Nuclear magnetic resonance ( NMR)
 
9702 w11 qp_11
9702 w11 qp_119702 w11 qp_11
9702 w11 qp_11
 
CH EN 3453 Heat Transfer 2014 Fall Utah Homework HW 11 Assignment
CH EN 3453 Heat Transfer 2014 Fall Utah Homework HW 11 AssignmentCH EN 3453 Heat Transfer 2014 Fall Utah Homework HW 11 Assignment
CH EN 3453 Heat Transfer 2014 Fall Utah Homework HW 11 Assignment
 
Unit 5: Force
Unit 5: ForceUnit 5: Force
Unit 5: Force
 
Elect principles 2 thevenin theorem
Elect principles 2   thevenin theoremElect principles 2   thevenin theorem
Elect principles 2 thevenin theorem
 
Teaching Medical Physics at Undergraduate level
Teaching Medical Physics at Undergraduate levelTeaching Medical Physics at Undergraduate level
Teaching Medical Physics at Undergraduate level
 
Heat transfer in thermal engineering
Heat transfer in thermal engineeringHeat transfer in thermal engineering
Heat transfer in thermal engineering
 
Medical Physics 102 - Clinical Leadership - Prado
Medical Physics 102 - Clinical Leadership - PradoMedical Physics 102 - Clinical Leadership - Prado
Medical Physics 102 - Clinical Leadership - Prado
 
Heat Ch. 11
Heat Ch. 11Heat Ch. 11
Heat Ch. 11
 
Transfer of Heat
Transfer of HeatTransfer of Heat
Transfer of Heat
 
Unit1: Physical Quantities & Units
Unit1: Physical Quantities & UnitsUnit1: Physical Quantities & Units
Unit1: Physical Quantities & Units
 
Ch 31 Nuclear Physics and Radioactivity
Ch 31 Nuclear Physics and RadioactivityCh 31 Nuclear Physics and Radioactivity
Ch 31 Nuclear Physics and Radioactivity
 
Circuit laws & network theorems
Circuit laws  & network theoremsCircuit laws  & network theorems
Circuit laws & network theorems
 
Radioactivity
RadioactivityRadioactivity
Radioactivity
 

Similar to Presentation for Radioactivity

Atomictheory 120313010052-phpapp01
Atomictheory 120313010052-phpapp01Atomictheory 120313010052-phpapp01
Atomictheory 120313010052-phpapp01Ramesh Pugazh
 
Atomictheory 120313010052-phpapp01
Atomictheory 120313010052-phpapp01Atomictheory 120313010052-phpapp01
Atomictheory 120313010052-phpapp01Ramesh Pugazh
 
Unit2 Presentation
Unit2 PresentationUnit2 Presentation
Unit2 Presentationpoags25
 
Chemistry- JIB Topic 2 Atoms, Ions and Nomenclature
Chemistry- JIB Topic 2 Atoms, Ions and NomenclatureChemistry- JIB Topic 2 Atoms, Ions and Nomenclature
Chemistry- JIB Topic 2 Atoms, Ions and NomenclatureSam Richard
 
Education.27.11 with a big boy toyzz.pdf
Education.27.11 with a big boy toyzz.pdfEducation.27.11 with a big boy toyzz.pdf
Education.27.11 with a big boy toyzz.pdfisraksiam311
 
Structure of an atom
Structure of an atomStructure of an atom
Structure of an atomNaren Sai
 
Ch 5 Notes
Ch 5 NotesCh 5 Notes
Ch 5 Noteskermis
 
7.1 Atomic, nuclear and particle physics
7.1 Atomic, nuclear and particle physics7.1 Atomic, nuclear and particle physics
7.1 Atomic, nuclear and particle physicsPaula Mills
 
Radiobiology2
Radiobiology2Radiobiology2
Radiobiology2zedan
 
Ch 4 The Structure Of The Atom Short
Ch 4 The Structure Of The Atom ShortCh 4 The Structure Of The Atom Short
Ch 4 The Structure Of The Atom Shortfrhsd
 
ch4 structure of an atom.pdf
ch4 structure of an atom.pdfch4 structure of an atom.pdf
ch4 structure of an atom.pdfLUXMIKANTGIRI
 
Structure of atom ppt by shiva prasad class 9th a
Structure of atom ppt by shiva prasad class 9th aStructure of atom ppt by shiva prasad class 9th a
Structure of atom ppt by shiva prasad class 9th ashiva prasad
 

Similar to Presentation for Radioactivity (20)

Atomictheory 120313010052-phpapp01
Atomictheory 120313010052-phpapp01Atomictheory 120313010052-phpapp01
Atomictheory 120313010052-phpapp01
 
Atomic theory
Atomic theory Atomic theory
Atomic theory
 
Atomictheory 120313010052-phpapp01
Atomictheory 120313010052-phpapp01Atomictheory 120313010052-phpapp01
Atomictheory 120313010052-phpapp01
 
Unit2 Presentation
Unit2 PresentationUnit2 Presentation
Unit2 Presentation
 
Chemistry- JIB Topic 2 Atoms, Ions and Nomenclature
Chemistry- JIB Topic 2 Atoms, Ions and NomenclatureChemistry- JIB Topic 2 Atoms, Ions and Nomenclature
Chemistry- JIB Topic 2 Atoms, Ions and Nomenclature
 
Atomic concepts
Atomic conceptsAtomic concepts
Atomic concepts
 
Education.27.11 with a big boy toyzz.pdf
Education.27.11 with a big boy toyzz.pdfEducation.27.11 with a big boy toyzz.pdf
Education.27.11 with a big boy toyzz.pdf
 
Radioactivity
RadioactivityRadioactivity
Radioactivity
 
12.2
12.212.2
12.2
 
7.1
7.17.1
7.1
 
Structure of an atom
Structure of an atomStructure of an atom
Structure of an atom
 
Ch 5 Notes
Ch 5 NotesCh 5 Notes
Ch 5 Notes
 
7.1 Atomic, nuclear and particle physics
7.1 Atomic, nuclear and particle physics7.1 Atomic, nuclear and particle physics
7.1 Atomic, nuclear and particle physics
 
Radiobiology2
Radiobiology2Radiobiology2
Radiobiology2
 
Radioactivity
RadioactivityRadioactivity
Radioactivity
 
ATOMS, MOLECULES AND IONS
ATOMS, MOLECULES AND IONSATOMS, MOLECULES AND IONS
ATOMS, MOLECULES AND IONS
 
Ch 4 The Structure Of The Atom Short
Ch 4 The Structure Of The Atom ShortCh 4 The Structure Of The Atom Short
Ch 4 The Structure Of The Atom Short
 
ch4 structure of an atom.pdf
ch4 structure of an atom.pdfch4 structure of an atom.pdf
ch4 structure of an atom.pdf
 
Structure of atom ppt by shiva prasad class 9th a
Structure of atom ppt by shiva prasad class 9th aStructure of atom ppt by shiva prasad class 9th a
Structure of atom ppt by shiva prasad class 9th a
 
Unit 7 Power Point
Unit 7 Power PointUnit 7 Power Point
Unit 7 Power Point
 

More from Hira Rizvi

AS PHYSICS-May/June 9702/22
AS PHYSICS-May/June 9702/22AS PHYSICS-May/June 9702/22
AS PHYSICS-May/June 9702/22Hira Rizvi
 
AS PHYSICS-May/June 9702/12
AS PHYSICS-May/June 9702/12AS PHYSICS-May/June 9702/12
AS PHYSICS-May/June 9702/12Hira Rizvi
 
M schemes(work, energy and power)
M schemes(work, energy and power)M schemes(work, energy and power)
M schemes(work, energy and power)Hira Rizvi
 
The Densities of some common substances
The Densities of some common substancesThe Densities of some common substances
The Densities of some common substancesHira Rizvi
 
Density Table of some common substances
Density Table of some common substancesDensity Table of some common substances
Density Table of some common substancesHira Rizvi
 
Unit 7 Pressure
Unit 7 PressureUnit 7 Pressure
Unit 7 PressureHira Rizvi
 
Kinematics worksheet solution
Kinematics worksheet solutionKinematics worksheet solution
Kinematics worksheet solutionHira Rizvi
 
Weight massdensity
Weight massdensityWeight massdensity
Weight massdensityHira Rizvi
 
Kinematics worksheet
Kinematics worksheetKinematics worksheet
Kinematics worksheetHira Rizvi
 
Calibration Curves
Calibration CurvesCalibration Curves
Calibration CurvesHira Rizvi
 
Pacific Physics-Vectors
Pacific Physics-VectorsPacific Physics-Vectors
Pacific Physics-VectorsHira Rizvi
 
Marking Scheme Worksheet 2
Marking Scheme Worksheet 2Marking Scheme Worksheet 2
Marking Scheme Worksheet 2Hira Rizvi
 
Solution Monthly Test 2
Solution Monthly Test 2Solution Monthly Test 2
Solution Monthly Test 2Hira Rizvi
 
Solution Monthly Test 1
Solution Monthly Test 1 Solution Monthly Test 1
Solution Monthly Test 1 Hira Rizvi
 

More from Hira Rizvi (20)

AS PHYSICS-May/June 9702/22
AS PHYSICS-May/June 9702/22AS PHYSICS-May/June 9702/22
AS PHYSICS-May/June 9702/22
 
AS PHYSICS-May/June 9702/12
AS PHYSICS-May/June 9702/12AS PHYSICS-May/June 9702/12
AS PHYSICS-May/June 9702/12
 
Worksheet 9
Worksheet 9Worksheet 9
Worksheet 9
 
Worksheet 14
Worksheet 14Worksheet 14
Worksheet 14
 
Worksheet 08
Worksheet 08Worksheet 08
Worksheet 08
 
M schemes(work, energy and power)
M schemes(work, energy and power)M schemes(work, energy and power)
M schemes(work, energy and power)
 
The Densities of some common substances
The Densities of some common substancesThe Densities of some common substances
The Densities of some common substances
 
Table
TableTable
Table
 
Tables
TablesTables
Tables
 
Density Table of some common substances
Density Table of some common substancesDensity Table of some common substances
Density Table of some common substances
 
Unit 7 Pressure
Unit 7 PressureUnit 7 Pressure
Unit 7 Pressure
 
Kinematics worksheet solution
Kinematics worksheet solutionKinematics worksheet solution
Kinematics worksheet solution
 
Weight massdensity
Weight massdensityWeight massdensity
Weight massdensity
 
Ch5kinematics
Ch5kinematicsCh5kinematics
Ch5kinematics
 
Kinematics worksheet
Kinematics worksheetKinematics worksheet
Kinematics worksheet
 
Calibration Curves
Calibration CurvesCalibration Curves
Calibration Curves
 
Pacific Physics-Vectors
Pacific Physics-VectorsPacific Physics-Vectors
Pacific Physics-Vectors
 
Marking Scheme Worksheet 2
Marking Scheme Worksheet 2Marking Scheme Worksheet 2
Marking Scheme Worksheet 2
 
Solution Monthly Test 2
Solution Monthly Test 2Solution Monthly Test 2
Solution Monthly Test 2
 
Solution Monthly Test 1
Solution Monthly Test 1 Solution Monthly Test 1
Solution Monthly Test 1
 

Recently uploaded

TeamStation AI System Report LATAM IT Salaries 2024
TeamStation AI System Report LATAM IT Salaries 2024TeamStation AI System Report LATAM IT Salaries 2024
TeamStation AI System Report LATAM IT Salaries 2024Lonnie McRorey
 
Gen AI in Business - Global Trends Report 2024.pdf
Gen AI in Business - Global Trends Report 2024.pdfGen AI in Business - Global Trends Report 2024.pdf
Gen AI in Business - Global Trends Report 2024.pdfAddepto
 
From Family Reminiscence to Scholarly Archive .
From Family Reminiscence to Scholarly Archive .From Family Reminiscence to Scholarly Archive .
From Family Reminiscence to Scholarly Archive .Alan Dix
 
SIP trunking in Janus @ Kamailio World 2024
SIP trunking in Janus @ Kamailio World 2024SIP trunking in Janus @ Kamailio World 2024
SIP trunking in Janus @ Kamailio World 2024Lorenzo Miniero
 
"ML in Production",Oleksandr Bagan
"ML in Production",Oleksandr Bagan"ML in Production",Oleksandr Bagan
"ML in Production",Oleksandr BaganFwdays
 
Hyperautomation and AI/ML: A Strategy for Digital Transformation Success.pdf
Hyperautomation and AI/ML: A Strategy for Digital Transformation Success.pdfHyperautomation and AI/ML: A Strategy for Digital Transformation Success.pdf
Hyperautomation and AI/ML: A Strategy for Digital Transformation Success.pdfPrecisely
 
Advanced Computer Architecture – An Introduction
Advanced Computer Architecture – An IntroductionAdvanced Computer Architecture – An Introduction
Advanced Computer Architecture – An IntroductionDilum Bandara
 
SALESFORCE EDUCATION CLOUD | FEXLE SERVICES
SALESFORCE EDUCATION CLOUD | FEXLE SERVICESSALESFORCE EDUCATION CLOUD | FEXLE SERVICES
SALESFORCE EDUCATION CLOUD | FEXLE SERVICESmohitsingh558521
 
Streamlining Python Development: A Guide to a Modern Project Setup
Streamlining Python Development: A Guide to a Modern Project SetupStreamlining Python Development: A Guide to a Modern Project Setup
Streamlining Python Development: A Guide to a Modern Project SetupFlorian Wilhelm
 
Digital Identity is Under Attack: FIDO Paris Seminar.pptx
Digital Identity is Under Attack: FIDO Paris Seminar.pptxDigital Identity is Under Attack: FIDO Paris Seminar.pptx
Digital Identity is Under Attack: FIDO Paris Seminar.pptxLoriGlavin3
 
DSPy a system for AI to Write Prompts and Do Fine Tuning
DSPy a system for AI to Write Prompts and Do Fine TuningDSPy a system for AI to Write Prompts and Do Fine Tuning
DSPy a system for AI to Write Prompts and Do Fine TuningLars Bell
 
SAP Build Work Zone - Overview L2-L3.pptx
SAP Build Work Zone - Overview L2-L3.pptxSAP Build Work Zone - Overview L2-L3.pptx
SAP Build Work Zone - Overview L2-L3.pptxNavinnSomaal
 
What's New in Teams Calling, Meetings and Devices March 2024
What's New in Teams Calling, Meetings and Devices March 2024What's New in Teams Calling, Meetings and Devices March 2024
What's New in Teams Calling, Meetings and Devices March 2024Stephanie Beckett
 
Are Multi-Cloud and Serverless Good or Bad?
Are Multi-Cloud and Serverless Good or Bad?Are Multi-Cloud and Serverless Good or Bad?
Are Multi-Cloud and Serverless Good or Bad?Mattias Andersson
 
Tampa BSides - Chef's Tour of Microsoft Security Adoption Framework (SAF)
Tampa BSides - Chef's Tour of Microsoft Security Adoption Framework (SAF)Tampa BSides - Chef's Tour of Microsoft Security Adoption Framework (SAF)
Tampa BSides - Chef's Tour of Microsoft Security Adoption Framework (SAF)Mark Simos
 
New from BookNet Canada for 2024: Loan Stars - Tech Forum 2024
New from BookNet Canada for 2024: Loan Stars - Tech Forum 2024New from BookNet Canada for 2024: Loan Stars - Tech Forum 2024
New from BookNet Canada for 2024: Loan Stars - Tech Forum 2024BookNet Canada
 
unit 4 immunoblotting technique complete.pptx
unit 4 immunoblotting technique complete.pptxunit 4 immunoblotting technique complete.pptx
unit 4 immunoblotting technique complete.pptxBkGupta21
 
TrustArc Webinar - How to Build Consumer Trust Through Data Privacy
TrustArc Webinar - How to Build Consumer Trust Through Data PrivacyTrustArc Webinar - How to Build Consumer Trust Through Data Privacy
TrustArc Webinar - How to Build Consumer Trust Through Data PrivacyTrustArc
 
Transcript: New from BookNet Canada for 2024: Loan Stars - Tech Forum 2024
Transcript: New from BookNet Canada for 2024: Loan Stars - Tech Forum 2024Transcript: New from BookNet Canada for 2024: Loan Stars - Tech Forum 2024
Transcript: New from BookNet Canada for 2024: Loan Stars - Tech Forum 2024BookNet Canada
 
The Ultimate Guide to Choosing WordPress Pros and Cons
The Ultimate Guide to Choosing WordPress Pros and ConsThe Ultimate Guide to Choosing WordPress Pros and Cons
The Ultimate Guide to Choosing WordPress Pros and ConsPixlogix Infotech
 

Recently uploaded (20)

TeamStation AI System Report LATAM IT Salaries 2024
TeamStation AI System Report LATAM IT Salaries 2024TeamStation AI System Report LATAM IT Salaries 2024
TeamStation AI System Report LATAM IT Salaries 2024
 
Gen AI in Business - Global Trends Report 2024.pdf
Gen AI in Business - Global Trends Report 2024.pdfGen AI in Business - Global Trends Report 2024.pdf
Gen AI in Business - Global Trends Report 2024.pdf
 
From Family Reminiscence to Scholarly Archive .
From Family Reminiscence to Scholarly Archive .From Family Reminiscence to Scholarly Archive .
From Family Reminiscence to Scholarly Archive .
 
SIP trunking in Janus @ Kamailio World 2024
SIP trunking in Janus @ Kamailio World 2024SIP trunking in Janus @ Kamailio World 2024
SIP trunking in Janus @ Kamailio World 2024
 
"ML in Production",Oleksandr Bagan
"ML in Production",Oleksandr Bagan"ML in Production",Oleksandr Bagan
"ML in Production",Oleksandr Bagan
 
Hyperautomation and AI/ML: A Strategy for Digital Transformation Success.pdf
Hyperautomation and AI/ML: A Strategy for Digital Transformation Success.pdfHyperautomation and AI/ML: A Strategy for Digital Transformation Success.pdf
Hyperautomation and AI/ML: A Strategy for Digital Transformation Success.pdf
 
Advanced Computer Architecture – An Introduction
Advanced Computer Architecture – An IntroductionAdvanced Computer Architecture – An Introduction
Advanced Computer Architecture – An Introduction
 
SALESFORCE EDUCATION CLOUD | FEXLE SERVICES
SALESFORCE EDUCATION CLOUD | FEXLE SERVICESSALESFORCE EDUCATION CLOUD | FEXLE SERVICES
SALESFORCE EDUCATION CLOUD | FEXLE SERVICES
 
Streamlining Python Development: A Guide to a Modern Project Setup
Streamlining Python Development: A Guide to a Modern Project SetupStreamlining Python Development: A Guide to a Modern Project Setup
Streamlining Python Development: A Guide to a Modern Project Setup
 
Digital Identity is Under Attack: FIDO Paris Seminar.pptx
Digital Identity is Under Attack: FIDO Paris Seminar.pptxDigital Identity is Under Attack: FIDO Paris Seminar.pptx
Digital Identity is Under Attack: FIDO Paris Seminar.pptx
 
DSPy a system for AI to Write Prompts and Do Fine Tuning
DSPy a system for AI to Write Prompts and Do Fine TuningDSPy a system for AI to Write Prompts and Do Fine Tuning
DSPy a system for AI to Write Prompts and Do Fine Tuning
 
SAP Build Work Zone - Overview L2-L3.pptx
SAP Build Work Zone - Overview L2-L3.pptxSAP Build Work Zone - Overview L2-L3.pptx
SAP Build Work Zone - Overview L2-L3.pptx
 
What's New in Teams Calling, Meetings and Devices March 2024
What's New in Teams Calling, Meetings and Devices March 2024What's New in Teams Calling, Meetings and Devices March 2024
What's New in Teams Calling, Meetings and Devices March 2024
 
Are Multi-Cloud and Serverless Good or Bad?
Are Multi-Cloud and Serverless Good or Bad?Are Multi-Cloud and Serverless Good or Bad?
Are Multi-Cloud and Serverless Good or Bad?
 
Tampa BSides - Chef's Tour of Microsoft Security Adoption Framework (SAF)
Tampa BSides - Chef's Tour of Microsoft Security Adoption Framework (SAF)Tampa BSides - Chef's Tour of Microsoft Security Adoption Framework (SAF)
Tampa BSides - Chef's Tour of Microsoft Security Adoption Framework (SAF)
 
New from BookNet Canada for 2024: Loan Stars - Tech Forum 2024
New from BookNet Canada for 2024: Loan Stars - Tech Forum 2024New from BookNet Canada for 2024: Loan Stars - Tech Forum 2024
New from BookNet Canada for 2024: Loan Stars - Tech Forum 2024
 
unit 4 immunoblotting technique complete.pptx
unit 4 immunoblotting technique complete.pptxunit 4 immunoblotting technique complete.pptx
unit 4 immunoblotting technique complete.pptx
 
TrustArc Webinar - How to Build Consumer Trust Through Data Privacy
TrustArc Webinar - How to Build Consumer Trust Through Data PrivacyTrustArc Webinar - How to Build Consumer Trust Through Data Privacy
TrustArc Webinar - How to Build Consumer Trust Through Data Privacy
 
Transcript: New from BookNet Canada for 2024: Loan Stars - Tech Forum 2024
Transcript: New from BookNet Canada for 2024: Loan Stars - Tech Forum 2024Transcript: New from BookNet Canada for 2024: Loan Stars - Tech Forum 2024
Transcript: New from BookNet Canada for 2024: Loan Stars - Tech Forum 2024
 
The Ultimate Guide to Choosing WordPress Pros and Cons
The Ultimate Guide to Choosing WordPress Pros and ConsThe Ultimate Guide to Choosing WordPress Pros and Cons
The Ultimate Guide to Choosing WordPress Pros and Cons
 

Presentation for Radioactivity

  • 1. Atomic Theory  Atoms are building blocks of elements  Similar atoms in each element  Different from atoms of other elements  Two or more different atoms bond in simple ratios to form compounds LecturePLUS Timberlake 1
  • 2. Subatomic Particles Particle Symbol Charge Mass Electron e- 1- 1/1840 Proton p+ + 1 Neutron n 0 1 Charge measure in terms of electronic charge: e=1.6x10^-19 Mass is measure in unified atomic mass: units(u) 1 u is 1/12 of the mass of a carbon-12 atom. LecturePLUS Timberlake 2
  • 3. Location of Subatomic Particles 10-13 cm electrons protons neutrons nucleus 10-8 cm LecturePLUS Timberlake 3
  • 4. Atomic Number Counts the number of protons in an atom LecturePLUS Timberlake 4
  • 5. Atomic Symbols  Show the mass number and atomic number  Give the symbol of the element mass number 23 Na sodium-23 atomic number 11 LecturePLUS Timberlake 5
  • 6. Number of Electrons  An atom is neutral  The net charge is zero  Number of protons = Number of electrons  Atomic number = Number of electrons LecturePLUS Timberlake 6
  • 7. Subatomic Particles in Some Atoms 16 31 65 O P Zn 8 15 30 8 p+ 15 p+ 30 p+ 8n 16 n 35 n 8 e- 15 e- 30 e- LecturePLUS Timberlake 7
  • 8. Isotopes  Atoms with the same number of protons, but different numbers of neutrons.  Atoms of the same element (same atomic number) with different mass numbers Isotopes of chlorine 35Cl 37Cl 17 17 chlorine - 35 chlorine - 37 LecturePLUS Timberlake 8
  • 9. Learning Check Naturally occurring carbon consists of three isotopes, 12C, 13C, and 14C. State the number of protons, neutrons, and electrons in each of these carbon atoms. 12C 13C 14C 6 6 6 #p _______ _______ _______ #n _______ _______ _______ #e _______ _______ _______ LecturePLUS Timberlake 9
  • 10. Nuclear Density • Mass of proton m(p)=1.67 x 10^-27 kg • Radius of proton r = 0.80 x 10^-15 m • Find the density=
  • 11. Isotopes Atoms made of protons, neutrons and electrons. Neutrons+ Protons: Nucleus • Electron + Proton # influences-> Chemical Properties • Protons+ Neutron # influences-> Physical Properties Isotopes Atoms with same number of protons but different number of protons are Isotopes.
  • 12. Radioactivity • A stable nuclei emits radiations. Radiation was discovered by Henri Becquerel in 1896. These radiations are not influenced by any outside conditions such as temperature or pressure. • It is a spontaneous process, but it occurs at fixed intervals. Hence a proportion of sample decay will occur in that time interval.
  • 13. Three particles present in these Radiations: • Alpha, Beta And Gamma Alpha Beta Gamma
  • 14. • We know that nuclei consists of protons and neutrons, if the balance between these two types of particles is too far to one side, the nucleus may emit alpha or B radiations. • Gamma emitted after alpha or B radiation to release excess energy.
  • 15. A third conserved quantity • In radioactive decay, both nucleon number A and proton number Z are conserved. • On comparison b/w mass before and after decay, we witness a decrease in mass. • This is because energy lost caries mass- recall E=mc^2, so we witness a net decrease in energy.
  • 16. Properties of Ionizing radiation • On moving past atoms, alpha or B collide/rub with them and this as a result causes to knock or drag away electrons from an atom. • This process is called Ionization. • Now, Energy is lost during ionization. Size: Motion: Ionization Ability: • Alpha: more mass &charge | slow | Most • Beta: lighter | faster | Moderate • Gamma: no charge | Least
  • 17. Lesson Contents 1. Physical properties of a, b and g 2. Penetrating power of a, b and g 3. N v Z graphs 4. Decay laws
  • 18. Alpha Radiation Alpha particles contain two protons and two neutrons
  • 19. Alpha Radiation a has the same constitution as a helium nucleus Alpha particles may be written as They have a double positive charge and a mass of 4 u
  • 20. Alpha • Since most effective ionization therefore, most energy is lost during travel, hence cover least distance and in a cloud chamber, most prominent tracks are formed.
  • 23. Beta-minus Radiation b- is produced when a neutron decays Beta-minus particles may be written as They have a negative charge and a mass of 1/1800 u
  • 24. Beta-minus Radiation b- is produced when a neutron decays + Energy The surplus mass is released as kinetic energy in the b- and as an antineutrino
  • 25. Gamma Radiation Gamma rays are a form of electro- magnetic radiation
  • 26. Gamma Radiation g release is often associated with a or b decay Gamma rays remove energy from an unstable nucleus
  • 27. Type of Nature of the Nuclear Penetrating power, and what will block it Ionising power - the ability to remove electrons radiation radiation Symbol (more dense material, more radiation is from atoms to form positive ions emitted & (higher only) (higher only) absorbed BUT smaller mass or charge of symbol particle, more penetrating) a helium nucleus of 2 Low penetration, biggest mass and Very high ionising power, the biggest mass and protons and 2 charge, stopped by a few cm of air or charge of the three radiation's, the biggest neutrons, mass = 4, thin sheet of paper 'punch'! charge = +2 Alpha high kinetic energy Moderate penetration, 'middle' values of Moderate ionising power, with a smaller mass electrons, mass = charge and mass, most stopped by a few and charge than the alpha particle 1/1850, charge = -1 mm of metals like aluminium Beta very high frequency Very highly penetrating, smallest mass The lowest ionising power of the three, gamma electromagnetic and charge, most stopped by a thick radiation carries no electric charge and has radiation, mass = 0, layer of steel or concrete, but even a few virtually no mass, so not much of a 'punch' charge = 0 cm of dense lead doesn't stop all of it! when colliding with an atom Gamma
  • 29.
  • 30.
  • 32.
  • 33. Decay laws - alpha When an isotope emits an a particle  Its nucleon number decreases by 4  Its proton number decreases by 2 For example:
  • 34. Decay laws – beta-minus When an isotope emits a b- particle  Its nucleon number is unchanged  Its proton number increases by 1 For example:
  • 35. Decay laws – beta-plus When an isotope emits a b+ particle  Its nucleon number is unchanged  Its proton number decreases by 1 For example:
  • 36. Decay laws Try writing the nuclear equations for the decay of these isotopes
  • 39. Randomness and Decay: Spontaneous: • Decays not effected by the presence of other nuclei. • No chemical reaction, external factors like pressure and temperature effect the decay. • Random: • Impossible to predict the time • Each nucleus has an equal probability to decay