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Home » Biographies » A.P.J. Abdul Kalam Biography, Early Life, Education, Interest, Achievements as a Scientist

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    A.P.J. Abdul Kalam Biography, Early Life, Education, Interest, Achievements as a Scientist

    Dr. A.P.J. Abdul Kalam, known as the "Missile Man of India," was an inspirational leader, scientist, and the 11th President of India. His journey from a small town in Tamil Nadu to the highest office in the country is a remarkable story of perseverance, dedication, and a deep love for science and technology. 

    by Simran
    2 years ago
    in Biographies
    A.P.J Abdul Kalam

    A.P.J Abdul Kalam

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    Dr. A.P.J. Abdul Kalam, known as the “Missile Man of India,” was an inspirational leader, scientist, and the 11th President of India. His journey from a small town in Tamil Nadu to the highest office in the country is a remarkable story of perseverance, dedication, and a deep love for science and technology. 

    This article talks about the details of the life of Dr. A.P.J. Abdul Kalam, exploring his early years, his significant contributions to science and technology, his tenure as President, and the lasting impact he has left on India and the world. Through his story, we find lessons of resilience, innovation, and the importance of dreaming big.

    A.P.J. Abdul Kalam Early Life

    Childhood and Family

    Dr. A.P.J. Abdul Kalam was born on October 15, 1931, in Rameswaram, a small town on the southeastern coast of India in Tamil Nadu. His full name was Avul Pakir Jainulabdeen Abdul Kalam. He was the youngest of five siblings in a modest family.

    Family Background: Kalam’s father, Jainulabdeen, was a humble boat owner who also served as an imam at the local mosque. His work involved taking people across the sea and helping with religious duties. Jainulabdeen was known for his wisdom and kindness, and he played a key role in shaping Kalam’s values.

    His mother, Ashiamma, was a dedicated housewife who took care of the family and home. She was deeply supportive and provided a nurturing environment for her children. Although the family did not have much money, they were rich in love and values.

    Home Life: The Kalam family lived a simple life in a small house on Mosque Street in Rameswaram. Despite their limited financial resources, they maintained a close-knit and supportive family environment. Young Kalam often helped his father with the family’s boat business and took on various small jobs to contribute to the household income.

    Influence of Family: Kalam’s parents were deeply religious and believed in hard work, honesty, and integrity. These values were instilled in Kalam from a young age. They encouraged him to pursue his dreams and work diligently towards his goals, even though they could not provide him with many material comforts.

    This supportive and loving environment had a profound impact on Kalam. His family’s values and their resilience in the face of financial difficulties shaped his character and instilled in him a strong sense of determination and purpose.

    Abdul Kalam Schooling and Early Interests

    Early Curiosity: From a young age, A.P.J. Abdul Kalam was known for his curiosity and eagerness to learn. He was fascinated by the world around him and had a deep interest in understanding how things worked. His curiosity and determination were evident even in his early years.

    Schwartz Higher Secondary School: Kalam attended Schwartz Higher Secondary School in Ramanathapuram. The school was a few miles away from his home, so he had to travel a bit to get there. Despite the challenges, he was a dedicated student who took his studies seriously.

    Financial Challenges: Kalam’s family faced financial difficulties, which made it hard for them to support his education fully. To help with his school expenses, Kalam took on a job delivering newspapers early in the morning. He would wake up before dawn, distribute newspapers across the town, and then head to school.

    Lessons from Early Work: This job was more than just a way to earn money; it was a valuable learning experience for Kalam. Through this work, he learned the importance of hard work, perseverance, and managing responsibilities. It also gave him a sense of independence and taught him the value of earning his own way.

    Early Interests: During his school years, Kalam developed a strong interest in science and technology. He was particularly fascinated by flight and space, a passion that would later define his career. His teachers noticed his enthusiasm and encouraged him to pursue his interests further.

    A.P.J. Abdul Kalam Education

    Schooling

    Early Education: Dr. A.P.J. Abdul Kalam’s educational journey started in his hometown of Rameswaram. He attended Schwartz Higher Secondary School, a local school that played a significant role in his early education. Kalam was an enthusiastic student who had a strong desire to learn and explore new subjects.

    Challenges and Determination: Even though Kalam was eager to learn, his family faced financial difficulties. This made it challenging to cover the costs associated with his education. To help his family and support his schooling, Kalam took up a job selling newspapers early in the morning. He would wake up before sunrise, deliver newspapers to homes in the town, and then go to school.

    Balancing Work and Studies: Despite the long hours and hard work, Kalam never let this job interfere with his school performance. He continued to excel in his studies and maintain good grades. His teachers noticed his dedication and determination, which helped him stand out as a student.

    College at Saint Joseph’s

    After finishing his schooling at Schwartz Higher Secondary School, A.P.J. Abdul Kalam moved to Tiruchirappalli, a city in Tamil Nadu, to continue his education. He enrolled at Saint Joseph’s College, which was known for its strong academic programs.

    At Saint Joseph’s College, Kalam chose to study Physics. He was fascinated by the subject and eager to understand the principles that govern the natural world. His interest in science grew deeper as he delved into various topics, from the basic laws of physics to more complex theories.

    Kalam worked hard during his time at college and graduated with a degree in Physics in 1955. His dedication to his studies paid off, and he earned respect from both his peers and professors. This period was crucial in shaping his future path.

    Aerospace Engineering at MIT

    Driven by his fascination with flight and space, A.P.J. Abdul Kalam decided to study aerospace engineering at the Madras Institute of Technology (MIT) in Chennai. This decision marked a significant step in his educational journey. Kalam was determined to understand the principles behind aircraft and spacecraft, which were becoming increasingly important in the field of technology.

    During his time at MIT, Kalam worked on several important projects. He was involved in designing and developing small aircraft, which helped him apply theoretical concepts to practical problems. This experience was crucial in building his expertise in aerospace technology.

    The education and training Kalam received at MIT laid the groundwork for his later achievements in space and missile technology. The skills he developed and the knowledge he gained at MIT played a crucial role in his future contributions to India’s space program and defense systems.

    A.P.J. Abdul Kalam Personal Life

    A.P.J. Abdul KalamFamily Life

    Dr. A.P.J. Abdul Kalam was born into a close-knit family in Rameswaram. His father, Jainulabdeen, was a respected boat owner and an imam of the local mosque. His mother, Ashiamma, was a devoted homemaker. Kalam had three siblings—two brothers and a sister. 

     His family was supportive and played a crucial role in his upbringing.

    A.P.J. Abdul KalamMarriage

    Dr. Kalam never married. He chose to focus on his career and his passion for science and technology. 

    His decision to remain single allowed him to dedicate his time and energy to his work and to inspiring others, especially young people.

    A.P.J. Abdul Kalam Hobbies and Interests

    Outside of his professional life, Dr. Kalam had a range of interests. He loved writing and authored several books, including his autobiography “Wings of Fire,” which shares his journey from a small town to becoming the President of India. 

    He was also passionate about teaching and often engaged with students and young minds, encouraging them to dream big.

    A.P.J. Abdul Kalam Career

    Dr. A.P.J. Abdul Kalam began his career at the Defence Research and Development Organisation (DRDO), working on a small hovercraft project. This initial role laid the foundation for his future contributions to aeronautics and defense technology.

    Scientist

    ISRO and SLV-III

    In 1969, he joined the Indian Space Research Organisation (ISRO). As Project Director, he led the development of India’s first Satellite Launch Vehicle (SLV-III), successfully launching the Rohini satellite into orbit in 1980. This was a major milestone for India’s space program.

    Missile Development

    Dr. Kalam was the chief architect of the Integrated Guided Missile Development Program (IGMDP). Under his leadership, India developed several key missiles, including Prithvi, Agni, Trishul, Akash, and Nag. These projects significantly enhanced India’s defense capabilities and earned him the nickname “Missile Man of India.”

    Pokhran-II Nuclear Tests

    In 1998, Dr. Kalam played a pivotal role in the Pokhran-II nuclear tests, which demonstrated India’s nuclear capabilities and established it as a nuclear power. His contributions were critical to the success of these tests.

    Politician

    In 2002, Dr. Kalam was elected as the 11th President of India, serving until 2007. During his presidency, he was known for his humble and approachable nature, which endeared him to people from all walks of life. 

    He often met with students and young people, encouraging them to dream big and work hard to achieve their goals. Dr. Kalam’s vision for India was encapsulated in his book “India 2020,” where he outlined his dream of transforming India into a developed nation by 2020. 

    He believed in the power of youth and education, often emphasizing the importance of knowledge and innovation in national development.

    A.P.J. Abdul Kalam Post-Presidency Career

    Return to Teaching

    After completing his term as President in 2007, Dr. A.P.J. Abdul Kalam returned to his true passion: teaching. 

    He took on roles as a visiting professor at various universities in India. Kalam loved interacting with students and sharing his knowledge and experiences. His lectures and sessions were always engaging and aimed at inspiring young minds.

    Writing and Speaking Engagements

    Dr. Kalam continued to be an active writer and speaker. He wrote several books, including “Ignited Minds,” “The Luminous Sparks,” and “My Journey,” where he shared his thoughts on education, innovation, and national development. 

    He traveled across the country and the world, giving talks and participating in conferences to spread his vision and motivate people.

    Involvement in National Projects

    Even after his presidency, Kalam remained involved in national development projects. He worked on various initiatives to improve education and technology in India. 

    One of his notable projects was the “PURPOSE” program, which aimed at improving rural development through technology and innovation.

    A.P.J. Abdul Kalam Death

    Dr. A.P.J. Abdul Kalam, the beloved “Missile Man of India,” passed away on July 27, 2015. He was 83 years old.

    Final Moments

    On the day of his death, Dr. Kalam was at the Indian Institute of Management (IIM) in Shillong. He was delivering a lecture to students, something he loved doing. 

    During his talk, he suddenly collapsed. He was rushed to the nearby Bethany Hospital. Despite efforts to revive him, Dr. Kalam was declared dead from a cardiac arrest.

    Nation in Mourning

    Dr. Kalam’s death was a huge loss for India. People across the country were deeply saddened. 

    He was remembered not only for his contributions to science and technology but also for his inspiring life and his love for teaching and interacting with young people.

    Tributes and Honors

    Tributes poured in from all corners of the world. Leaders, students, and citizens expressed their grief and shared their memories of Dr. Kalam. 

    The government of India declared a seven-day state mourning in his honor. 

    Writings of A.P.J. Abdul Kalam

    Dr. A.P.J. Abdul Kalam was a prolific writer who authored several books that inspired millions. His writings reflect his thoughts on science, education, and personal growth. Here is a list of some of his notable books:

    Book Name Published Year
    Wings of Fire 1999
    Ignited Minds 2002
    The Luminous Sparks 2004
    India 2020 1998
    My Journey 2013
    Turning Points 2012
    Transcendence 2015
    You Are Born to Blossom 2008
    A Manifesto for Change 2014

    A.P.J. Abdul Kalam Contribution’s to Indian Science

    Dr. A.P.J. Abdul Kalam’s contributions to Indian science and technology are immense. His work not only strengthened India’s defense and space capabilities but also inspired future generations to dream big and strive for excellence.

    Here are some of his key contributions to Indian science and technology:

    Satellite Launch Vehicle (SLV)

    One of Dr. Kalam’s major contributions was in developing India’s first Satellite Launch Vehicle (SLV). In 1980, under his leadership, the SLV-III successfully placed the Rohini satellite in orbit.  This achievement made India one of the few countries capable of developing and launching satellites.

    Missile Development

    Dr. Kalam played a key role in developing India’s missile technology. He led the projects for Agni and Prithvi missiles, which are crucial for India’s defense. These projects earned him the nickname “Missile Man of India.”

    Integrated Guided Missile Development Program (IGMDP)

    Dr. Kalam was the chief architect of the Integrated Guided Missile Development Program (IGMDP). This program aimed to make India self-reliant in missile technology.  It resulted in the successful development of several key missiles like Agni, Prithvi, Trishul, Akash, and Nag.

    Pokhran-II Nuclear Tests

    In 1998, Dr. Kalam was a key figure in India’s Pokhran-II nuclear tests. These tests demonstrated India’s nuclear capabilities and marked a significant milestone in its defense technology.

    Aerospace Engineering

    Dr. Kalam worked at the Indian Space Research Organisation (ISRO) and the Defence Research and Development Organisation (DRDO), contributing significantly to both organizations. His work in aerospace engineering helped lay the foundation for many of India’s space and defense programs.

    List of A.P.J. Abdul Kalam Awards

    Dr. A.P.J. Abdul Kalam received numerous awards and honors throughout his life for his contributions to science, technology, and the nation. Here is a list of some of his notable awards:

    Award Name Year
    Padma Bhushan 1981
    Padma Vibhushan 1990
    Indira Gandhi Award for National Integration 1996
    Bharat Ratna 1999
    Veer Savarkar Award 1998
    Ramanujan Award 2000
    King Charles II Medal 2007
    Hoover Medal 2009
    International von Kármán Wings Award 2009

    Popular Culture Representation in A.P.J. Abdul Kalam

    Dr. A.P.J. Abdul Kalam’s influence extends beyond his scientific and political contributions; he is also a prominent figure in popular culture. His life and work have inspired numerous movies, documentaries, and other forms of media.

    Some of these are:

    Movies and Documentaries

    1. “A Little Dream”: This short film, based on Dr. Kalam’s life, captures his journey from Rameswaram to becoming the President of India. It highlights his dedication, hard work, and visionary ideas.
    2. “The Missile Man”: A documentary that explores Dr. Kalam’s contributions to India’s missile and space programs. It includes interviews with his colleagues and rare footage of his work.
    3. “Kalam”: A biographical film that showcases his life and achievements, emphasizing his simplicity, humility, and commitment to science and education.

    Television and Media

    1. TV Interviews and Talks: Dr. Kalam frequently appeared on television for interviews and talks. His speeches were always inspiring and focused on themes of innovation, education, and national development.
    2. Animated Series: Some educational channels have created animated series and short videos to teach children about Dr. Kalam’s life and achievements, making his story accessible to younger audiences.

    Theatre and Plays

    1. Stage Plays: Several plays have been performed depicting Dr. Kalam’s life, highlighting key moments such as his childhood, his role in India’s missile development, and his tenure as President. These plays often emphasize his inspirational journey and messages.

    Public Art and Memorials

    1. Statues and Memorials: Statues and memorials dedicated to Dr. Kalam can be found in various parts of India. These serve as a reminder of his contributions and continue to inspire people.
    2. Named Institutions: Numerous schools, colleges, and educational institutions are named after Dr. Kalam, reflecting his impact on education and his role as a mentor to the youth.

    A.P.J. Abdul Kalam FAQs

    Q1. Who was A.P.J. Abdul Kalam?

    A.P.J. Abdul Kalam was a renowned Indian scientist and the 11th President of India. He was known as the "Missile Man of India" for his work on missile development.

    Q2. When and where was A.P.J. Abdul Kalam born?

    Dr. Kalam was born on October 15, 1931, in Rameswaram, Tamil Nadu, India.

    Q3. What was A.P.J. Abdul Kalam's major contributions?

    Dr. Kalam's major contributions include developing India's first Satellite Launch Vehicle (SLV-III), leading the Integrated Guided Missile Development Program (IGMDP), and playing a key role in the Pokhran-II nuclear tests.

    Q4. When did A.P.J. Abdul Kalam died?

    Dr. Kalam passed away on July 27, 2015, while delivering a lecture at the Indian Institute of Management (IIM) Shillong.

    Q5. What awards did A.P.J. Abdul Kalam receive?

    Dr. Kalam received numerous awards, including the Padma Bhushan, Padma Vibhushan, and Bharat Ratna, which is India's highest civilian award.

    Tags: Abdul Kalam AchievementAbdul Kalam biographyAbdul Kalam Early LifeAPJ Abdul Kalam
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    Joule-Thomson Effect Stefan Boltzmann Constant Compressive Stress
    Wave Function Difference Between Density and Specific Gravity Energy Stored in a Capacitor
    Determine Radius of Curvature of a Given Spherical Surface by a Spherometer Uniformly Accelerated Motion Conservative Force
    Biot Savart Law Deuteron Mass Power
    Power of a Lens Refraction and Dispersion of Light Sphygmomanometer
    Uniform Circular Motion Unit of Distance Unit of Energy
    Uses of Rectifier Unit of Inductance Law Equipartition Energy
    Periodic Motion Determination of Focal Length of Concave Mirror and Convex Mirror Optical Density
    Characteristics of a Transistor Scintillation Counter Difference Between Earthing And Grounding
    White Light Optical Fiber Relative Speed
    Unit of Work Coefficient of Viscosity Neutrons, Isotopes, Isotones And Isobars
    Electric Circuit Difference Between Scalar and Vector Difference Between Two Stroke and Four Stroke Engines
    Unit of Velocity Zener Diode Gamma Rays - Electromagnetic Spectrum
    Permittivity and Permeability Tidal Energy Difference Between Resistance and Resistivity
    Uses of Vernier Calipers Human Eye Function Shearing Stress
    Value of Gravitational Constant Value of Electron Difference Between LCD and LED
    Pinhole Camera Single Slit Diffraction Difference Between Circuit Switching and Packet Switching
    Wheatstone Bridge Unit of Resistance Banking of Road
    Scalar and vector Density of Water Cyclotron
    Unit of Specific Resistance Types of Cables Modern Physics
    Uses of Concave Mirror Magnetic Moment Law of Conservation of Momentum Derivation
    Magnet Rectilinear Motion of Particles Difference Between Mass and Weight
    Archimedes Principle Refraction of Light Types of Motors
    Types of Gears Solar Energy and Photovoltaic Cell Escape Velocity and Orbital velocity
    Natural Sources of Energy Difference Between Frequency Modulation and Amplitude Modulation Fick’s Law of Diffusion
    Faraday Electromagnetic Induction Experiment Prism Dispersion Continuous Charge Distribution
    Capacitor Types Geothermal Energy Force and Momentum
    Resistors in Series and Parallel Configuration Work and Power Raman Effect
    Difference Between Asteroid and Comet Thermal Energy Storage Types of Connectors
    Hydroelectricity and Hydropower Plant Conduction of Electricity in Liquids Linear Accelerator
    Maxwell's Relations AC Voltage Resistor Law of Conservation of Charge
    Kinetic Theory of Gases Assumptions Reflection of Light Image Centre of mass of continuous mass distribution
    Speed Velocity Motion Parameters
    Acceleration Derivation of equations of motion Vernier Caliper
    Position Time and  Velocity time graphs Motion Under Gravity Classification of animals based on levels of organisation
    Tension Screw Gauge Scalar and Vector
    Types of Vector Beats Force its unit and dimension
    Newtons First Law Of Motion Newtons second law of motion Linear Momentum
    Kinetic Friction Vector Subtraction Lamis Theorm
    Vector Addition Parallax Method Rule for Significant Figure
    Power Dimension Dimensional Analysis
    Difference between heat and temperature Measurement of Temperature Centre of mass of solid hollow sphere hemisphere
    Work Energy Theorem Potential Energy Application of Newtons second law of motion
    Newton Third Law of Motion Conservation of Mechanical Energy Free Body Diagram
    Resultant Force Vertical Circular Motion Work Done
    Coulombs Law Electric Dipole Stress
    Normal Stress and Types Moment of Inertia Waves
    Transverse Wave Connected Motion Longitudinal Strain
    Radiation Young's Modulus Convection
    Dipole Electric Field Static Friction Nuclear Fission
    Pseudo Force Nuclear Fusion Beta Decay
    Nuclear Force Alpha Decay Energy in Simple Harmonic Motion
    Lamis Theorem Velocity and Acceleration Time Graph Moment of Inertia of Rigid Bodies
    Gauss’s Law Periodic and Oscillatory Motion Newton's Law of Cooling
    Perpendicular & Parallel Axis Theorem Friction On Inclined Plane Kirchhoff's Law
    Shear Strain Gamma Decay Charge Contained Symmetrical Objects
    Parallel and Perpendicular Mirrors Photoelectric Effect Transformer
    Density Surface Tension Angle of Contact
    Longitudinal Wave Heat Capacity Centre of Gravity
    Permanent Magnets and Electromagnets Torque Einstein's Photoelectric Equation
    Progressive Wave Inclined Plane Mirrors Types of Transformers
    Velocity of Image in Plane Mirror Concave Lens Eye and its Defects
    Fluid Atmospheric and Gauge Pressure Excess Pressure Inside Bubble and Drop
    Capillarity Sound Wave Pascal's Law
    Stress Strain Curve Compound Microscope Telescopes
    Power in AC Circuit Impedance in Series LCR Circuit Mean and RMS Value
    Mirror Formula Alternating Current Magnification in Spherical Mirror
    Cells Power of Mirror and Lens Resistor Color Code
    Kirchhoff's Rule Conversion of Galvanometer to Ammeter X-rays Production
    Properties of X-Rays Continuous X-ray Thermal Expansion
    Hysteresis Curve Angular Impulse Interference of Sound
    Simple Pendulum Simple Harmonic Motion Voltmeter
    Ammeter Wheatstone Bridge Meter Bridge
    Prism Superposition of Waves Interference of Waves
    Resolution of Vectors Thermal Stress and Strain Velocity and Acceleration
    Scalar Product Vector Product Torsional Pendulum
    Combination of Resistors Electroplating Uses Scope and Excitement of Physics
    Conduction What is Science Speed of Traveling Wave
    Distance Formula Kinematics of Circular Motion Non Uniform Motion
    Gamma Rays Radio Waves Displacement
    Electromagnetic Spectrum Maxwell’s Equations  
    118 Elements and Their Symbols and Atomic Numbers Acetone Acid And Base Difference
    Acids Bases and Salts Actinides Addition Reaction
    Adsorption Chromatography Aldol Condensation Alkali Metals
    Ammonium Chloride Applications of Redox Reactions Argon
    Arrhenius Equation Rate Constant And Temperature Atomic Number Mass Number Aufbau Principle
    Aufbau Principle, Paulis Exclusion Principle and Hands Rule Bakelite: Structure and Uses Benzene Reactions
    Benzoic Acid - Structure and Properties Biodegradable and Non Biodegradable Calcium Oxide
    Cathode Ray Experiment Charles Law Chemical And Its Composition
    Chemical Formula of Common Compounds Classification Of Carbohydrates and Its Structure Classification of Organic Compounds
    Coefficient of Viscosity - Definition, Formula and Example Colligative Properties beRelative Lowering of Vapour Pressure Colloidal Solution
    Components of Air Condensation Conformation
    Cracking Meaning Crystallization Decantation
    Decomposition Reaction Dehydration of Alcohols Difference Between Alkali and Base
    Difference Between Atom And Ion Difference Between Atom and Molecule Difference Between CNG and LPG
    Difference between Compound and Mixture Difference Between Element And Compound Difference Between Exothermic and Endothermic Reactions
    Difference Between Mixture and Solution Difference Between Molecule and Compounds Difference Between Organic And Inorganic Compounds
    Difference between Physical and Chemical Change Difference between Vapor and Gas Disaccharides
    Discovery of Protons and Neutrons Distillation Effects of Burning Fossil Fuels
    Electromeric Effect Electron Configuration Electronic Configuration of First 30 Elements
    Electronic Configuration of Iron Electroplating Process Endothermic Reaction
    Enthalpy Change Enzyme Catalysis Ester
    Ester Hydrolysis Ethanoic Acid Exothermic Reaction
    Filtration Fuel Types Functions of Nucleic Acids
    Glycerin Glycine Structure Glycogen
    Gravimetric Analysis Group 17 Trends Properties Heat Capacity Cp Cv Relation
    Heavy Water Homogeneous Mixture and Heterogeneous Mixture Hunds Rule
    Hybridization Hydrochloric Acid Hydrogen Peroxide
    Introduction: Importance of Forest IR Spectroscopy Iron
    Krypton Lewis Dot Structures Metallic Bonds
    Metals and Nonmetals Methanol Mineral Resources
    Mixtures Modern Periodic Table and Its Significance Mole Concept
    Monosaccharides NaHCO3 Natural Polymers
    Neutralization Reaction Non Metals Oxalic Acid
    Oxygen Periodic Table Elements Periodic Trends in Properties of Elements
    Pesticides Phenol Preparation Phosphoric Acid
    Physical and Chemical Properties of Carbon Physical And Chemical Properties of Water Physical Change and Chemical Change
    Polarity Polymers Uses Polyvinyl Alcohol
    Positron Potassium Potassium Dichromate - Formula, Properties and Uses
    Potassium Permanganate Precipitation Reaction Preparation of Benzene
    Preparation Properties and uses of Sodium Chloride Properties of Boron Family Properties of Solution
    Redox Titration Relation Between Normality And Molarity Rusting Iron Prevention
    Rutherford Atomic Model Rutherford Atomic Model Shapes of Molecules Vsepr Theory
    Shapes of Orbitals Sieving SilkWorm - Life Cycle of Silkworm, Diagram
    Silver Nitrate Soaps And Detergents Sodium Hydroxide
    Structure of Benzene Sublimation Synthetic Fibres And Natural Fibres
    Synthetic Polymers Tollens Test Toluene
    Transition Metals Tyndall Effect Types of Organic Reactions
    Types of Solutions Types of Titration - Acid Base Titration Unsaturated Solutions
    Ununoctium Ununpentium Uses of Acetone
    Uses of Air Uses of Bauxite Uses of Carboxylic Acid
    Uses of Coal Uses of Ethers Health In Care Industry Uses of Formaldehyde
    Uses of Graphite Uses of Methanol and Ethanol Uses of Minerals
    Uses Of Nitric Acid Uses of Phenol Uses of Propanol
    Uses of Sulfuric Acid Uses of Water Valence Bond Theory
    Volumetric Analysis Waste Water Cycle Process
    What is Dipole Moment? What is Eutrophication? What is Metallurgy?
    Wurtz Reaction Mohr’s Salt Titration with KMnO4 Gattermann Reaction
    Benzene Brown Ring Test Calcium Carbonate
    Cotton and its Various Uses Difference between Petrol and Diesel Engine Difference between Sigma and Pi Bond
    Element-Manganese (Mn) Friedel Crafts Reaction Hofmann Elimination
    Isomerism Laws of Chemical Combination Mannich Reaction
    Methods of separation Molisch’s Test Name Reactions
    NMR Spectroscopy Non – Aqueous Titration Ozonolysis Mechanism – Ozonolysis of Alkenes and Alkynes
    Periodic Classification of Elements Pinacol Pinacolone Rearrangement Planck’s Quantum Theory
    Pseudo First Order Reaction Rosenmund Reduction Mechanism Salt Analysis
    Saponification Science in Everyday life and Its Importance Sericulture: Rearing of Silkworm to Produce Silk
    Spectrophotometer Principle Zone Refining  
    Reactivity Series Difference between isotropic and anisotropic Introduction to p-Block elements
    Plant fibres Inert Gases: Uses Benzoin Condensation
    Difference between primary cell and secondary cell Partition Chromatography Applications of colloids
    Displacement Reactions Handpicking Biogas: Uses of Biogas
    Acid Rain Types of Chemical Reactions SN2 Reaction Mechanism
    Complexometric Titration markovnikov rule Kohlrausch Law
    Electrode Valency Chart Order of Reaction
    Band Theory Difference Between Rusting and Corrosion Potentiometric Titration
    Frenkel Defect Deforestation Stephen Reaction Mechanism
    Gattermann – Koch Reaction Mechanism Electronegativity Industrial Waste: Types
    Ethylene Charge to Mass Ratio of an Electron Fehling Solution
    Photochemical Reactions Difference Between Endpoint and Equivalence Point Second Order Reaction
    Etard Reaction Forms of water Preparation of Acetanilide
    Metallic Minerals and Non-Metallic Minerals Ferric Chloride Henry's Law
    Preparation of Mohr's salt Schottky Defect Claisen rearrangement
    Calcium sulphate Sodium carbonate Rubber
    Ethyl acetate Conductometric Titration Resorcinol
    Difference Between Evaporation and Condensation States of Matter Boric Acid
    Types of Minerals Finkelstein Reaction Electronegativity Chart
    Difference between Solid, Liquid and Gas in tabular form Aromaticity Drawbacks of Rutherford's Atomic Model
    Thermosetting Polymers Preparation of Alkanes Examples of Bases
    Suzuki Coupling Reaction Standard Electrode Potential Disadvantages of Plastics
    Reducing Agent Van't Hoff Factor Hard Water and Soft Water
    Organometallic compounds Gay Lussac's Law Slaked Lime
    Borax Tetravalency of Carbon Boyle's Law
    Ellingham Diagram Crystal Defects : Point Defects HVZ Reaction (Hell-Volhard-Zelinsky Reaction)
    Classification of Drugs Preparation of Sulfuric Acid Lucas test
    Xenon Difluoride Bravais Lattice Classification of Oxides
    Elimination Reaction preparation of polythene, Teflon and polyacrylonitrile Difference between cations and anions
    Uses of Limestone Fructose Azeotropes
    Lewis Acid and Base Emulsification Dielectric properties of solids
    Zwitterion Birch Reduction Mechanism Oxidation and Reduction
    Electrophilic Substitution Reaction Suspensions Aromatic Compounds
    Ores and Minerals Adsorption theory of heterogeneous catalysis Wittig Reaction
    Difference between evaporation and boiling Intensive And Extensive Properties Of Matter Electronic Configuration of Group 16 Elements
    Difference Between Elements and Atoms Sodium Oxide Gypsum
    Difference Between Alloy and Composite Chemical Equations Thorium
    Lead Acid Battery Isotopes of Hydrogen Significant Figure Rules
    Electrophilic Addition Reactions Of Alkenes Isothermal Expansion of an Ideal Gas Potassium Chloride - KCl
    Aluminum Oxide Difference Between Acetic Acid and Glacial Acetic Acid Difference Between Polar and Nonpolar
    Difference Between Baking Powder and Baking Soda Test for Phenolic group To prepare colloidal solution of starch
    Uses of Mica Pi Bonds Potassium Chlorate
    Schmidt Reaction High density Polyethylene Huckel's Rule
    Discovery of Proton Aluminium Ore: Extraction of Aluminium Benzene Hexachloride
    Caustic Potash or Potasium Hydroxide Electromagnetic Radiation - Wave Nature Atomic Number and Mass Number, Isotopes and Isobars
    Preparation of Potash Alum Beckmann Rearrangement Heterogeneous Equilibrium
    Butane Factors Affecting Electrolytic Conductance Scandium
    Homogeneous Equilibrium Phenols Nomenclcature Galvanic Corrosion
    Chlorine Trifluoride Robinson Annulation Copper
    Pyridine Silver Carbonate Harmful Effects of Radiation
    Water Electrolytes and Nonelectrolytes Rules for filling Electrons in Orbitals
    Purification of Colloids Instantaneous and Average Rate of Reaction Density
    Hydrogen Hydrogen Peroxide Strength of Solution
    Chromatography Phosphorus Phosphorus Halides
    Hydrogen Glucose Electrolysis
    Discovery of Electron Catalysis Receptors as Drug Target
    Nutrition Respiration & Reproduction in Eubacteria Charge of Electron Osmosis
    Acidic Buffer Solution Basic Buffer Solution Covalent Bond
    Voids    
    Additive and Multiplicative Identity Adjacent and Vertical Angles Algebra Symbols
    Area Of Hemisphere Area Of Hollow Cylinder Area of Pentagon
    Area of Rectangle Bodmas Rule Branches of Mathematics
    Chance and Probability Circumference of a Circle Congruence Of Triangles
    Construction of Angles Cuboid and Cube Decimals In Daily Life
    Divisibility Rules Dot Product of Two Vectors Empirical Probability
    Equivalent Fractions Even Odd Prime Composite Numbers Frequency Polygons
    Geometric Tools Integers Lines
    Maths Project Number System Numeral System
    Odd Numbers Perfect Cube Of Numbers Perfect Numbers
    Perpendicular Bisector Precision Prime Factorization of Hcf And Lcm
    Prime Numbers Probability and Statistics Symbols Quadrilateral
    Reflection Symmetry Roman Numerals Set Theory Symbols
    Surface Area and Volume Three Dimensional Shapes Triangular Numbers
    Trigonometry Trigonometry Table Two Lines Symmetry
    Types of Angles Value of Pi Variables And Constants In Algebraic Expressions
    Z Score Table Addition Table Algebraic Expression
    Algebraic Identities Apollonius Theorem Applications of Trigonometry
    Area of a Sphere Area of Equilateral Triangle Area of Isosceles Triangle
    Area of Quadrilateral Area of Trapezium Area of Triangle
    Area Segment Circle Ascending Order Average and Mean
    Basic Proportionality Theorem Bisection Method Centroid
    Circumcenter of a Triangle Cm to inch converter Co-Prime Numbers
    Compound Interest Coordinate Geometry Correlation
    Cos 30 Degrees Cube Cylinder
    Difference Between Fraction And Rational Numbers Difference Between Percentage and Percentile Differential Equations
    Differentiation Formulas Even Numbers Factorisation
    Frequency Distribution Table Statistics Graphical Representation HCF and LCM
    Height and Distance Horizontal Line How to Find the Percentage of Marks?
    Math Tricks Maths Equations Mensuration
    Obtuse Angled Triangle Odd Numbers Onto Function
    Pentagon Pentagonal Prism Perimeter of Square
    Perimeter of Triangle Probability Profit and Loss
    Properties of a Triangle Properties of Isosceles Triangle Rational Numbers
    Rational Numbers and Their Properties Real Number Relation between Mean, Median and Mode
    Rhombus Rotation Semicircle
    Sin 30 Degrees Solving Linear Equations Square Root
    Statistics Supplementary Angles Surface Area of a Hemisphere
    Surface Area of a Sphere Surface Areas and Volume Symmetric and Skew Symmetric Matrix
    Tables of 2 to 30 The volume of a Cylinder Trapezium
    Triangular Prism Trigonometric Ratios Types of Triangles
    Types of Vectors Value of Log Infinity Value of Root 3
    Value of Root 5 Vertical Line Volume of a Cube
    Volume of Hemisphere Whole numbers Algebraic Identities
    Differentiation and Integration Greater Than and Less Than Symbols Laplace Transform
    Linear Graph Trigonometric Ratios Orthocenter
    Orthogonal Matrix Square Root from 1 to 25 Log 0 Value
    Altitude of a Triangle Binary Subtraction Cayley Hamilton Theorem
    Diagonal Matrix Difference Between Constants and Variables Difference Between Linear and Nonlinear Equations
    Geometric Progression Sum of GP Like Fractions Unlike Fractions Difference between Place Value and Face Value
    Sin 60 Degrees Singular Matrix Value of Cos 120
    Antilog Table Consistent And Inconsistent Systems Cube Root of Unity
    Direct and Inverse Proportion Euclid Division Lemma Extrapolation
    Frustum of Cone Greater Than Symbol Elementary Transformation of Matrix
    Integration Limits and Derivatives Methods of Integration
    Polynomial Rational Numbers Between Two Rational Numbers Relations and Functions
    Relation and Its Types Right Circular Cone Sequence and Series
    Square Root Of 4 Square Root Of 5 Square Root Of 7
    Statements in Mathematical Reasoning Trapezoids Binary Multiplication
    Definite Integral Square Root of 1 Value of sin 15
    Continuity and Differentiability Axiomatic Definition of Probability Area Of Quadrant
    Rectangle Operations on Rational Numbers Pascals Triangle
    Acute Angled Triangle Angle of Elevation Angle Sum Property of a Triangle
    Tables of 2 to 30 The volume of a Cylinder Trapezium
    Area of a Scalene Triangle Centroid of a Triangle Heptagon
    Octagon Permutation and Combination Scalene Triangle
    Similar Triangles Surface Area of Cube Surface Area of Cylinder
    Volume of Cone Volume of Cuboid Value of Log 1
    Decimal Number System Conversion of Units What is Proper Fraction?
    Rolle's Theorem Vertical Angles Trigonometry Values
    Sec 0 Greatest Integer Function Mean Deviation & Frequency Distribution
    Concentric Circles Symmetry Variance
    Laws of Exponents Length of Tangent Alternative Hypothesis
    Control Charts Straight Angle LCM Of Two Numbers
    Bivariate Analysis Surds Square Root of 10
    Cos 90 Value Prime Numbers and Composite Numbers Decimal to Binary
    Difference Between Square & Rhombus Symmetric Matrix Relation Between Inch and cm
    Sin 45 Value Divisibility Rules For 13 Profit and Loss Percentage
    Linear Pair Of Angles Line Segment Rational and Irrational Numbers
    Euclid Geometry Sec 30 Complimentary and Suplementary Angles
    Square root and Cube Root LCM Nature of Roots of a Quadratic Equation
    Vertices, Faces and Edges Quadrilateral Angle Sum Property Geometry Symbols
    Isosceles Triangle Numbers in Words Angle Between Two Planes
    Complex Numbers Addition and Subtraction of Integers Natural Numbers and Whole Numbers
    Is 91 a Prime Number? Difference Between Cube and Cuboid Distributive Property
    Difference Between Rhombus and Parallelogram Skip Counting Trigonometry Functions of Sum and Difference of Angles
    Logarithm Table Vector And Scalar Quantities Data Organization
    PEMDAS Secant of a Circle Vector Space
    Angle Bisector Theorem Mutually Exclusive Events Statistical Inference
    Difference Between Area and Volume How to Find Prime Numbers? 3D Shapes
    Division of Line Segment Binary Addition Ordinate
    Line Graph Boolean Algebra Latus Rectum of Conic Section
    Differential Equation And It's Types Involute Similarity of Triangles
    Simple Equations Application Types of Polygon Equation of A Circle
    Law of Tangents Data Sets Binary to Octal Conversion
    Rational Numbers on a Number Line Cross Section Construction of Triangle
    Circles Factors of 36 Probability Distribution
    Difference Between Parametric and Non-Parametric Test Number Patterns Whole Numbers Parts of Circle
    Square Root of 9 Parallel Lines Oblique Sketch
    Direct Proportion Cosine Rules Construction of Quadrilaterals
    Right Circular Cylinder Hexadecimal number system Remainder Theorem
    Volume of a Prism Missing Numbers Sec 90
    Derivatives Multiple of 9 Metric System of Measurement
    Parallelogram, Trapezium and Kite Cumulative Frequency Distribution Ratio to Percentage
    Factors of 98 Total Probability Theorem Commutative Property
    Basic Set Theory Difference Between Area and Surface Area Identity Function
    Geometric Distribution Combination Sum of Squares
    Factors of 25 Triangle Inequality Complement of a Set
    Factor of 105 Arc Categorical Data
    Construction of a Rhombus Hexadecimal to Octal Conversion Decimal Expansion of Rational Numbers
    Distance Between Two Points Estimation of Numbers Multiplication Theorem of Probability
    Properties of Definite Integrals Right Angle Triangle Theorem Section Formula in 3 Dimension
    Solids Trigonometric Equations Variance and Standard Deviation
    Disjoint Set Application of Linear Equations Area and Perimeter
    Factors of 91 Concave Polygon Factors of 42
    General Equation of a Line Factors of 100 Factors of a Number
    Multiplicative Inverse Linear Differential Equations Inverse Cosine
    Comparing Quantities using Percentage Fractional Part Function Definition of Signum function
    Trigonometric Functions Ellipse Integration By Parts
    Sets Matrix Types of Sets
    Bijective Functions Algebra of Functions Composite Functions
    Binary Operations Domain Codomain & Range Functions Parametric Equation of a Circle
    Venn Diagram Tangent to a Circle Binomial Theorem
    L'Hospital Rule Relations Operation on Sets
    Particular Cases of a Circle Terms Related to an Ellipse Equality of Matrices
    Reflexive, Symmetric & Equivalence Relation Types of Functions Matrix Multiplication
    Tangents to an Ellipse Inverse Trigonometric Functions  
    Active Transport Adaptive radiation evolution Aerobic and Anaerobic Respiration
    Agricultural Implements Algae Alimentary Canal Anatomy
    Angiosperms And Gymnosperms Difference Animal Cell Apiculture Beekeeping
    Apoplast Asexual Reproduction Animals Autotrophic Nutrition
    Biodiversity Biotic and Abiotic Bryophyta
    Budding Camouflage Cattle Farming Animal Husbandry
    Cell Structure and Function Cell Wall and Cell Membrane Cells
    Chloroplasts Chromatin Classification of Animal Kingdom
    Composition of Lymph Conduction of Nerve Impulse Cyclic and Non Cyclic 
    Cyclic Photophosphorylation Cytoplasm Structure Function Difference Between Active and Passive Transport
    Difference Between Archaea And Bacteria Difference Between Blood And Lymphth Difference Between Cerebellum And Cerebrum
    Difference Between Chromosome And Chromatid Difference Between Diffusion and Osmosis Difference Between DNA and RNA
    Difference Between Haploid And Diploid Difference Between Plant Cell and Animal Cell Difference between Renewable and Non Renewable Resources
    Difference Between Unicellular And Multicellular Organisms Difference Between Vertebrates and Invertebrates Difference between Voluntary and Involuntary Muscles
    Difference Between Xylem and Phloem Different Types Ecological Pyramids Diffusion - Means of Transport
    Disadvantages of Dams Ecology Endemic Species
    Endocrine System Ductless Glands Energy Flow In Ecosystem Excretion and Its Importance
    Food Production Food Web Fragmentation
    Gemmules Gibberellins Grassland Adaptations
    Guttation Gymnosperms Harmful Microorganisms
    Homeostasis Human Body Anatomy Human Heart
    Invertebrates Kingdom Monera Protista Fungi Law of Segregation and Law of Dominance
    Life process Light-dependent Reactions Lipids
    Living Things Macromolecule Meiosis 1 Stages and Process
    Mendelian Disorders Microbodies Modern Synthetic Theory of Evolution
    Monera Nephron Function Renal Tubules Nuclear Membrane
    Nucleolus Nucleus Our Environment
    Parasitism Parts of Plants Passive Transport
    Plant Cell Plant Kingdom Plantae Plant Respiration
    Plants Plastids Protista
    Red Data Book Reproductive System of Earthworm Ribosomes
    Scientific Names of Animals and Plants Seed germination Sensory Perception
    Snail Skeletal System Spermatogenesis Structure Of Eye
    Taxonomic Hierarchy Taxonomy Algae
    Thallophyte Types of Soil Vacuoles
    What Is Adaptation Agricultural Practices Animal Kingdom
    Alimentary Canal Coelenterata Conservation of Forest and Wildlife
    Difference between Endosmosis and Exosmosis Difference between Afforestation and Deforestation Difference between Algae and Fungi
    Difference between Cereals and Pulses Difference Between Fragmentation and Regeneration Difference Between Neurosis and Psychosis
    Difference Between Nucleotide and Nucleoside Difference Between Sea and Ocean Difference Between Turtles and Tortoises
    Difference Between Wildlife Sanctuary and National Park Modes of Plant Reproduction Ecological Pyramid and Its Types
    Double Fertilization in Angiosperms Ecosystem Enzymes
    Fertilisation in Plants Five Kingdoms Classification Flower
    Ganongs Potometer Health and Hygiene Herbivores and Carnivores
    Heterotrophic Nutrition Human Digestive System Vertebrates and Invertebrates
    Morphology of Leaves Modifications of Root Phylum Aschelminthes
    Diffusion Osmosis Prokaryotic Cells
    Reproduction Flora And Fauna Overview of Food Chain
    Difference Between Rabi And Kharif Crops Vegetative Propagation Angiosperms Characteristics
    Soil Profile Types of Pollution Human Excretory System
    Sense Organs Rainwater Harvesting Prokaryotic And Eukaryotic Cells
    Living And Non Living Things The Nucleus Irrigation
    Endoplasmic Reticulum Difference Between Data And Information Mitochondria
    Nitrogen Cycle Diagram of Animal Cell Meristematic Tissue
    Law of Segregation Law of Dominance Eukaryotic Cells Food Sources Animal Plant Products
    Photosynthesis Respiration Ozone Layer Depletion
    Kingdom Fungi Aerobic Anaerobic Respiration Cell Organelles
    Peristalsis Bacteria Oogenesis
    Leaves Morphology Types Modification Mitosis and Meiosis Dna Structure
    How Do Organisms Reproduce Diagram of Stomata Monohybrid Cross Inheritance One Gene
    Mechanism of Breathing Soil Erosion Plasmolysis
    Urine Formation Osmoregulation Porifera Flagella
    Amoeba Aerobic Respiration Pteridophyta
    Arteries And Veins Difference Reflex Action Stomata
    Cell Wall Diagram of Neuron A Guide To Composition And Function Of Lymph
    Difference Between Ligaments And Tendons Insectivorous Plants Nutrition Modes Living Organisms
    Mendel Laws Of Inheritance Nutrition In Amoeba Calorific Value
    Air Pollution Control Fertilization In Plants Life Processes
    Binary Fission Omnivores Saprophytes
    Asexual Reproduction Deficiency Diseases Light Reaction Vs Dark Reaction
    Global Warming Wildlife Sanctuary Viviparous Oviparous Embryo Development
    Glycolysis Food Preservation Methods Food Poisoning Crops
    Biofertilizers Biodiversity Conservation Difference Between Endocrine And Exocrine Glands
    Greenhouse Effect Gases Diagram Of Digestive System Crop Production And Management
    Types Of Pollination Introduction and Characteristics of Living Beings Meristematic Cells
    Taxonomical Aids _Flora, Manual, Monograph And Catalogues Types of leaves structure of skeletal muscle
    spirometry human respiratory system herbarium
    dinoflagellates general characters and structure of leaf halophiles and their features
    Exchange of Gases Simple Permanent tissue Morphology of root and its types
    Complex permanent tissues Regions of Root History of classification and its need
    Breathing And Exchange Of Gases Transport of Gases Regulation of Respiration
    Disorders of Respiratory System Interaction of Haemoglobin with Other Gases Amniocentesis
    Anatomy of flowering plants ASSISTED REPRODUCTIVE TECHNOLOGIES (ARTs) Meristematic Cells
    Phloems Population explosion Reproductive Health
    RCH (Reproductive and Child Health Care) Medical termination of Pregnancy (MTP) Plant kingdom
    Biological Systems of Classification & Branches of Taxonomy Pteridophytes Gymnosperms
    Angiosperms Life cycle Patterns Anatomy of Roots
    Contraceptives Anatomy of stem Algae
    Bryophytes Tissues and its types STDs (Sexually Transmitted Diseases)
    Cell - The Basic Unit of Life & its Historical background Cell theory and its modification An Overview of Cell
    Secondary growth in dicot stem Tissue system and types Prokaryotic (Bacterial) cell
    Ribosomes Eukaryotic cell Cell: The basic unit of life
    Cytoskeleton Centrosome and Centriole Cilia and flagella
    Nucleus Chromosomes Evolution
    Movement and Locomotion Human Reproduction Absorption and Translocation of Solutes
    Soil as a reservoir of Essential Elements LOCOMOTION AND MOVEMENT Mechanism of Muscle Contraction
    Morphology in Flowering Plants Contractile proteins Muscular System
    Thyroid Puberty Hormones
    Origin of Universe Hypothalamus Cell wall
    Mitochondria Special Chromosomes Microbodies
    Introduction, Hydroponics and the study of mineral requirements of the plants Criteria of essentiality and Categorisation of Essential elements Deficiency symptoms of essential elements and toxicity
    The Stem The Root Cytoplasm and cell membrane
    Mineral Nutrition Disorders Related To Reproductive System Phylum Ctenophora
    Role of Macronutrients Role of Micronutrients Phylum - Coelenterata / Cnidaria
    Reptilia Aves Mammalia
    Anatomy of the leaf Animal kingdom Phylum Annelida
    Phylum Mollusca Phylum Echinodermata Vertebrata
    Chordates Disorders of circulatory system Abiotic Factors
    Male Reproductive System Kingdom Animalia Responses to Abiotic Factors
    Female Reproductive System Mammary Glands Pregnancy and Embryonic Development
    Cell Cancer Disorders of the Digestive System
    Infertility Morphology of Cockroach Blood and Plasma
    Alternation of Generations and Classification Predation Phaeophyceae and Rhodophyceae
    Phylum Coelenterata Phylum Porifera Phylum Platyhelminthes
    Chromosomal Disorders Competition Taxonomic Aids
    Alternation of generation in Pteridophytes Disorders of muscular and skeletal system General Characteristics of Living
    Digestive Glands Stomach Testis
    Buccal cavity Seed Common Diseases in Humans
    Permanent Tissue Permanent Tissues Xylem Pteridophytes Characteristics
    Parasitism and Commensalism Water Pollution and Its Control Differentiation, Dedifferentiation and Redifferentiation
    Organism and its Environment Carbohydrates Greenhouse Effect Gases
    Amino Acids
     
    Dynamic State of Body Constituents Photosynthesis Chloroplast
    Features of Living Beings Blood Group  Lipids
    Kingdom Protista dense connective tissue connective tissue cartilage
    connective tissue blood plant cell viruses
    the stem Connective Tissue Bone Viroids Prions Lichens
    Animal cell Prokaryotic Cell Taxonomic Aids Herbarium and Museum
    Sphygmomanometer and ECG Population Attributes Noise pollution
    Diaphragm Parts of a Plant Photoperiodism
    Poultry Farming Nucleic Acids Cell Cycle
    Principles of Biotechnology Antibiotics IVF
    Glands Kranz Anatomy Sexual Reproduction in Plants
    Cytokinin Plant Development Biofertilizers
    Photorespiration Auxin Nutrient Cycling
    Types of Flowers Taxonomic Hierarchy and Categories Epidermal Tissue System
    Calyx and Corolla Ethylene Fertilization and Implantation
    Types of Fruits Inflorescence Types of Growth
    Macronutrients Family Liliaceae ETC and Oxidative Phosphorylation
    Classification of Wood Ground Tissue System Secondary Growth in Stem
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