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Forwarded from Class 11 12 Science Notes
Physics Chapter-Wise Marks Distribution for Board Exam.
1. Rotational Dynamics: 7 marks
2. Mechanical Properties of Fluids: 7 marks
3. Kinetic Theory of Gases and Radiation: 7 marks
4. Thermodynamics: 7 marks
5. Oscillations: 5 marks
6. Superposition of Waves: 6 marks
7. Wave Optics: 7 marks
8. Electrostatics: 6 marks
9. Current Electricity: 6 marks
10. Magnetic Fields due to Electric Current: 6 marks
11. Magnetic Materials: 5 marks
12. Electromagnetic Induction: 7 marks
13. AC Circuits: 6 marks
14. Dual Nature of Radiation and Matter: 5 marks
15. Structure of Atoms and Nuclei: 6 marks
16. Semiconductor Devices: 5 marks
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Forwarded from Class 11 12 Science Notes
Chemistry Chapter-Wise Marks Distribution for HSC Maharashtra Board
Physical Chemistry:
Solid State: 3 marks (5 marks with options)
Solutions: 4 marks (6 marks with options)
Ionic Equilibrium: 4 marks (6 marks with options)
Chemical Thermodynamics: 6 marks (8 marks with options)
Electrochemistry: 5 marks (7 marks with options)
Chemical Kinetics: 4 marks (6 marks with options)
Inorganic Chemistry:
Elements of Groups 16, 17, & 18: 6 marks (8 marks with options)
Transition & Inner Transition Elements: 6 marks (8 marks with options)
Coordination Compounds: 5 marks (7 marks with options)
Organic Chemistry:
Halogen Derivatives: 5 marks (7 marks with options)
Alcohols, Phenols, and Ethers: 4 marks (6 marks with options)
Aldehydes, Ketones, and Carboxylic Acids: 6 marks (8 marks with options)
Amines: 3 marks (4 marks with options)
Applied Chemistry:
Biomolecules: 3 marks (4 marks with options)
Introduction to Polymer Chemistry: 3 marks (4 marks with options)
Green Chemistry and Nano Chemistry: 3 marks (4 marks with options)
Preparation Tips:
1. Prioritize High-Weightage Chapters: Focus on chapters like Chemical Thermodynamics, Aldehydes, Ketones, and Carboxylic Acids, and Elements of Groups 16, 17, & 18 to maximize scoring potential.
2. Understand Concepts Thoroughly: Ensure a deep understanding of fundamental concepts, as questions often test conceptual clarity.
3. Practice Regularly: Solve previous years' question papers and sample papers to familiarize yourself with the exam pattern and improve time management.
4. Revise Systematically: Regular revision is key to retaining information and performing well in the exam.
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Forwarded from Class 11 12 Science Notes
Biology Chapter-Wise Marks Distribution for HSC Maharashtra Board
1. Reproduction in Lower and Higher Plants: 6 marks (8 marks with options)
2. Reproduction in Lower and Higher Animals: 6 marks (8 marks with options)
3. Inheritance and Variation: 4 marks (6 marks with options)
4. Molecular Basis of Inheritance: 6 marks (8 marks with options)
5. Origin and Evolution of Life: 4 marks (6 marks with options)
6. Plant Water Relation: 5 marks (7 marks with options)
7. Plant Growth and Mineral Nutrition: 5 marks (7 marks with options)
8. Respiration and Circulation: 7 marks (10 marks with options)
9. Control and Coordination: 8 marks (11 marks with options)
10. Human Health and Diseases: 3 marks (4 marks with options)
12. Enhancement and Food Production: 4 marks (6 marks with options)
13. Biotechnology: 5 marks (7 marks with options)
14. Organisms and Populations: 3 marks (4 marks with options)
15. Ecosystems and Energy Flow: 3 marks (4 marks with options)
16. Biodiversity, Conservation, and Environmental Issues: 3 marks (4 marks with options)
Total: 70 marks (98 marks with options)
This distribution indicates the importance of each chapter in the examination, allowing you to prioritize your study accordingly.
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🔰MHT-CET Complete Study material
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MHT-CET 2025 Physics Syllabus
1. Measurements
2. Scalars and Vectors
3. Force
4. Friction in Solids and Liquids
5. Refraction of Light
6. Ray Optics
7. Magnetic Effect of Electric Current
8. Magnetism
Circular Motion
Gravitation
Rotational Motion
Oscillations
Elasticity
Surface Tension
Wave Motion
Stationary Waves
Kinetic Theory of Gases and Radiation
Wave Theory of Light
Interference and Diffraction
Electrostatics
Current Electricity
Magnetic Effects of Electric Current
Magnetism
Electromagnetic Induction
Electrons and Photons
Atoms, Molecules, and Nuclei
Semiconductors
Communication Systems
For a comprehensive understanding and detailed breakdown of each topic, it's advisable to refer to the official MHT-CET 2025 syllabus document available on the Maharashtra State CET Cell's website.
🔵 Class 11 Topics:
1. Measurements
2. Scalars and Vectors
3. Force
4. Friction in Solids and Liquids
5. Refraction of Light
6. Ray Optics
7. Magnetic Effect of Electric Current
8. Magnetism
🔵 Class 12 Topics:
Circular Motion
Gravitation
Rotational Motion
Oscillations
Elasticity
Surface Tension
Wave Motion
Stationary Waves
Kinetic Theory of Gases and Radiation
Wave Theory of Light
Interference and Diffraction
Electrostatics
Current Electricity
Magnetic Effects of Electric Current
Magnetism
Electromagnetic Induction
Electrons and Photons
Atoms, Molecules, and Nuclei
Semiconductors
Communication Systems
For a comprehensive understanding and detailed breakdown of each topic, it's advisable to refer to the official MHT-CET 2025 syllabus document available on the Maharashtra State CET Cell's website.
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1. Measurements – MHT-CET Revision Notes
1. Introduction to Measurement
Measurement is the process of comparing a physical quantity with a standard unit.
Every measurement consists of two parts: numerical value (magnitude) and unit of measurement.
Example: In "5 meters," 5 is the magnitude, and meter (m) is the unit.
2. Fundamental and Derived Quantities
Fundamental Quantities (Basic Physical Quantities)
There are seven fundamental quantities in physics:
Length (meter, m)
Mass (kilogram, kg)
Time (second, s)
Temperature (kelvin, K)
Electric Current (ampere, A)
Luminous Intensity (candela, cd)
Amount of Substance (mole, mol)
Derived Quantities (Obtained from Fundamental Quantities)
Some examples:
Area (square meter, m²) = Length × Breadth
Volume (cubic meter, m³) = Length × Breadth × Height
Velocity (meter per second, m/s) = Distance / Time
Acceleration (meter per second², m/s²) = Velocity / Time
Force (newton, N) = Mass × Acceleration
Work (joule, J) = Force × Displacement
Power (watt, W) = Work / Time
3. Systems of Units
Different systems of measurement:
CGS System: Uses centimeter (cm), gram (g), and second (s).
MKS System: Uses meter (m), kilogram (kg), and second (s).
FPS System: Uses foot (ft), pound (lb), and second (s).
SI System (International System): Modern system based on the MKS system.
4. Dimensional Analysis
Dimensional analysis helps in checking the correctness of equations and converting units.
Dimensional Formulas of Some Physical Quantities:
Velocity: [M⁰L¹T⁻¹]
Acceleration: [M⁰L¹T⁻²]
Force: [M¹L¹T⁻²]
Work/Energy: [M¹L²T⁻²]
Power: [M¹L²T⁻³]
Pressure: [M¹L⁻¹T⁻²]
Momentum: [M¹L¹T⁻¹]
Principle of Homogeneity
The dimensions on both sides of a physical equation must be the same. This is used to check if an equation is correct.
Example: Checking the Equation for Force
We know Force (F) = Mass × Acceleration
Mass (M) → [M¹]
Acceleration (a) → [M⁰L¹T⁻²]
So, Force = [M¹] × [L¹T⁻²] = [M¹L¹T⁻²]
Since both sides match, the equation is dimensionally correct.
5. Errors in Measurement
Errors occur due to limitations in instruments, human mistakes, or environmental factors.
Types of Errors:
1. Systematic Errors – Constant errors due to instrumental defects, external conditions, or observer bias.
2. Random Errors – Occur unpredictably due to external disturbances or limitations in human observation.
3. Gross Errors – Mistakes in using instruments, such as wrong readings.
4. Absolute Error – Difference between the measured value and the true value.
5. Relative Error – Ratio of absolute error to true value.
6. Percentage Error – Relative error expressed as a percentage.
Error Formulae
Absolute Error = |Measured Value - True Value|
Relative Error = Absolute Error / True Value
Percentage Error = (Relative Error × 100)%
6. Significant Figures
Significant figures represent the precision of a measured value.
Rules for Counting Significant Figures:
All non-zero digits are significant. Example: 123 has 3 significant figures.
Zeros between non-zero digits are significant. Example: 102 has 3 significant figures.
Leading zeros are NOT significant. Example: 0.002 has 1 significant figure.
Trailing zeros are significant ONLY if there is a decimal point. Example: 5.00 has 3 significant figures.
Rules for Rounding Off:
1. If the digit to be removed is less than 5, the preceding number remains unchanged. Example: 4.32 rounded to two significant figures is 4.3.
2. If the digit to be removed is 5 or greater, the preceding number increases by 1. Example: 4.37 rounded to two significant figures is 4.4.
7. Applications of Measurements in Physics
Scientific Research: Accurate measurements are crucial in experiments.
Engineering & Technology: Used in designing machinery, buildings, and electronics.
Medical Field: Measurements of temperature, blood pressure, and weight are critical.
Space & Aviation: Precise calculations are needed for satellite launches and navigation.
🟡 Quick Summary for Last-Minute Revision: https://t.me/MHT_CET_EXAM_NOTES/5092
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🟡 Quick Summary for Last-Minute Revision:
1. Measurement consists of magnitude and unit.
2. SI system is the standard system of measurement.
3. Fundamental quantities include length, mass, time, temperature, etc.
4. Derived quantities are obtained from fundamental quantities (e.g., velocity, force, power).
5. Dimensional analysis is used to check the correctness of equations.
6. Errors in measurement include systematic, random, and absolute errors.
7. Significant figures determine the accuracy of a measurement.
8. Principle of Homogeneity ensures the dimensions of a physical equation match on both sides.
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🔰Hints & Solution Triumph Book🔰
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