Topics
Gravitation
- Concept of Gravitation
- Force and Motion
- Centripetal Force
- Kepler’s Laws
- Law of Orbit or Kepler's First Law
- Law of Areas or Kepler's Second Law
- Law of Periods or Kepler's Third Law
- Newton's Universal Law of Gravitation
- Uniform Circular Motion (UCM)
- Earth’s Gravitational Force
- Earth’s Gravitational Acceleration
- Mass and Weight
- Gravitational Waves
- Free Fall
- Gravitational Potential Energy
- Escape Velocity
- Weightlessness in Space
Periodic Classification of Elements
- Classification of Elements
- Dobereiner’s Triads
- Newland's Law of Octaves
- Mendeleev’s Periodic Table
- Insights into Mendeleev’s Periodic Table
- Modern Periodic Law
- The Modern Periodic Table
- Structure of the Modern Periodic Table
- Modern Periodic Table and Electronic Configuration of Elements
- Groups and Electronic Configuration
- Periods and Electronic Configuration
- Periodic Trends in the Modern Periodic Table
- Atomic Size
- Metallic and Non-metallic Characters
- Gradation in Halogen Family
Chemical Reactions and Equations
- Chemical Reaction
- Chemical Equations
- Balancing Chemical Equation
- Types of Chemical Reactions > Combination Reaction
- Types of Chemical Reactions > Decomposition Reaction
- Types of Chemical Reactions > Single Displacement Reaction
- Types of Chemical Reactions > Double Displacement Reaction
- Endothermic and Exothermic Processes
- Rate of Chemical Reaction
- Factors Affecting the Rate of a Chemical Reaction
- Chemical Properties of Carbon Compounds > Oxidation
- Chemical Properties of Carbon Compounds > Reduction
- Corrosion of Metals
- Rancidity
Effects of Electric Current
- Electric Circuit
- Heating Effect of Electric Current
- Introduction to Magnetic Effect of Current
- Right-hand Thumb Rule
- Applications of Biot-Savart's Law > Magnetic Field at the Axis of a Circular Current-carrying Loop
- Applications of Ampere’s Circuital Law > Magnetic Field of a Long Straight Solenoid
- Force on a Current-Carrying Conductor Placed in a Uniform Magnetic Field
- Fleming’s Left Hand Rule
- Electric Motor
- Introduction to Electromagnetic Induction
- Galvanometer
- Faraday's Laws of Electromagnetic Induction
- Fleming’s Right Hand Rule
- Alternating current (AC) and Direct Current (DC)
- Electric Generator
Heat
Refraction of Light
Lenses
- Concept of Lenses
- Images Formed by Convex Lenses
- Images Formed by Concave Lenses
- Sign Convention
- Lens Formula
- Magnification
- Power of a Lens
- Combination of Lenses
- Defects of Vision and Their Corrections > Myopia
- Defects of Vision and Their Corrections > Hypermetropia
- Defects of Vision and Their Corrections > Presbyopia
- Apparent Size of an Object
- Use of Concave Lenses
- Use of Convex Lenses
- Persistence of Vision
Metallurgy
- Physical Properties of Metals
- Physical Properties of Non-metal
- Chemical Properties of Metal
- Reactions of Metals
- Reactivity Series of Metals
- Chemical Properties of Non-metal
- Ionic Compounds
- Metallurgy
- Basic Principles of Metallurgy > Concentration of Ores
- Basic Principles of Metallurgy > Extraction of Metals
- Basic Principles of Metallurgy > Refining of Metals
- Corrosion of Metals
- Prevention of Corrosion
Carbon Compounds
- Bonds in Carbon Compounds
- Carbon: A Versatile Element
- Hydrocarbons
- Straight chains, Branched chains, and Rings of Carbon atoms
- Functional Groups in Carbon Compounds
- Homologous Series
- Nomenclature
- Chemical Properties of Carbon Compounds > Combustion
- Chemical Properties of Carbon Compounds > Oxidation
- Chemical Properties of Carbon Compounds > Addition Reaction
- Chemical Properties of Carbon Compounds > Substitution Reaction
- Ethanol
- Ethanoic Acid
- Macromolecules and Polymers
Space Missions
School of Elements
The Magic of Chemical Reactions
- Chemical Equations
- Types of Chemical Reactions > Combination Reaction
- Types of Chemical Reactions > Decomposition Reaction
- Types of Chemical Reactions > Single Displacement Reaction
- Types of Chemical Reactions > Double Displacement Reaction
- Chemical Properties of Carbon Compounds > Oxidation
- Types of Double Displacement: Neutralization Reaction
The Acid Base Chemistry
- Properties of Acids > Physical Properties
- The pH Scale
- Acids, Bases and Their Reactivity
- Acid or a Base in a Water Solution
- Preparation and Uses of Baking Soda
- Preparation and Uses of Bleaching Powder
- Preparation and Uses of Washing Soda
- Preparation and Uses of Plaster of Paris
- Chemicals from Common Salt - Soap as a Salt
The Electric Spark
All about Electromagnetism
- Magnetic force
- Bar Magnet and Solenoid Analogy
- Right-hand Thumb Rule
- Applications of Biot-Savart's Law > Magnetic Field at the Axis of a Circular Current-carrying Loop
- Applications of Ampere’s Circuital Law > Magnetic Field of a Long Straight Solenoid
- Force on a Current-Carrying Conductor Placed in a Uniform Magnetic Field
- Electric Motor
- Introduction to Electromagnetic Induction
- A.C. Generator
- Simple D.C. Motor
- Household Electrical Circuits
Wonders of Light 1
Wonders of Light 2
Striving for better Environment 1
- Abatement of Pollution
- Sustainable Use of Resources
- Key Points: Presbyopia
Presbyopia and Its Causes
Presbyopia is an age-related vision defect where a person loses the ability to focus on nearby objects. It usually develops around the age of 40 and continues to progress with time. It affects even those who have had perfect vision before or those who already have myopia (nearsightedness).

Presbyopia
Presbyopia occurs due to natural ageing and changes in the eye lens and surrounding muscles.
Main Causes:
- Loss of lens flexibility → The eye lens stiffens over time, reducing its ability to adjust focus.
- Protein changes in the lens → The composition of the lens proteins alters, making the lens less elastic.
- Weakening of ciliary muscles → The muscles around the lens lose their ability to contract and change the lens’s focal length.
As a result, the near point (least distance of distinct vision) shifts farther from the eye, making it difficult to focus on close objects.

Symptoms of Presbyopia
- Difficulty reading or seeing objects up close.
- Needing to hold books or mobile screens farther away to see clearly.
- Frequent headaches due to eye strain.
- Eye fatigue while reading or performing close-up tasks.
- Increased sensitivity to glare and bright lights.
Presbyopia Correction and Treatments
A. Spectacles and Contact Lenses
1. Progressive Lenses: They are multifocal lenses that provide clear vision at all distances (near, intermediate, and far). No visible separation between lens sections.
2. Bifocal Lenses: Lenses with two distinct sections:
- Upper part (concave lens) → Corrects nearsightedness (myopia).
- Lower part (convex lens) → Corrects farsightedness (hypermetropia).
- A visible line separates the two sections.
3. Reading Glasses: It is used only when reading or viewing close objects. It cannot be worn throughout the day.
4. Photochromic Lenses: These lenses automatically darken in sunlight to reduce glare, making them suitable for people sensitive to bright light.
5. Multifocal Contact Lenses: Available for those who prefer contact lenses over glasses. Monovision correction involves one eye fitted for distance vision and the other for near vision.
B. Surgical Treatments for Presbyopia
- Corneal Inlay Implantation: A surgical procedure that enhances depth of vision. It reduces dependency on glasses without affecting distant vision quality.
- LASIK and Other Laser Surgeries: Reshapes the cornea to improve near vision.
Maharashtra State Board: Class 10
Key Points: Presbyopia
- Presbyopia is an age-related vision defect where the eye’s ability to focus on nearby objects decreases.
- It is caused by weakened ciliary muscles and reduced flexibility of the eye lens.
- The near point shifts farther, making close-up vision difficult.
- Bifocal lenses are commonly used for correction—concave at the top (for myopia) and convex at the bottom (for hypermetropia).
- It can also be corrected with contact lenses or, in some cases, surgery.
