Goa Board Class 11th Physics Syllabus 2024 PDF Download – GBSHSE has released the syllabus of Goa Board Class 11th Physics Syllabus 2024 along with the official notification on the official website – gbshse.info. The Goa Board Class 11th Physics 2024 Syllabus pdf comprises the subject-wise topics which will be asked in the class 11 Physics exam. Students of Goa State Board Class 11th Physics can download the syllabus PDF from this page.
GBSHSE Class 11 Physics Syllabus 2024-2025 PDF
Using the Goa Board Class 11th Physics Syllabus 2024 PDF, students can prepare their study schedule and exam preparation strategy. As the Goa Board exam date has been released, candidates can plan their schedule according to it, therefore, they can prepare their syllabus of Goa Board Class 11th Physics Exam 2024 accordingly. Along with the Goa Board Class 11th Physics 2024 syllabus, candidates can also check the official GBSHSE exam pattern and the previous year’s GBSHSE Class 11th Physics question papers.
Goa State Board Class 11th Physics Syllabus 2024 PDF Online
Name of the Board |
Goa Board |
Name of the Grade |
11 |
Subjects |
Physics |
Year |
2024-2025 |
Format |
PDF/DOC |
Provider |
|
Official Website |
gbshse.info |
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Follow the steps as under to download Goa Board Class 11 Physics Syllabus 2024 PDF:
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Goa Board Class 11th Physics Syllabus 2024-2025 PDF
Students of download the Goa Board Class 11th Physics Syllabus 2024-2025 PDF online using the links provided below:
Topics |
---|
Physical World |
Physics-scope and excitement; nature of physical laws; Physics, technology and society. |
Units and Measurements |
Need for measurement: Units of measurement; systems of units; SI units, fundamental and derived units. Length, mass and time measurements; accuracy and precision of measuring instruments; errors in measurement; significant figures. Dimensions of physical quantities, dimensional analysis and its applications |
Motion in a Straight Line |
Elementary concepts of differentiation and integration for describing motion, uniform and non- uniform motion, average speed and instantaneous velocity, uniformly accelerated motion, velocity – time and position-time graphs. Relations for uniformly accelerated motion (graphical treatment). |
Motion in a Plane |
Scalar and vector quantities; position and displacement vectors, general vectors and their notations; equality of vectors, multiplication of vectors by a real number; addition and subtraction of vectors, relative velocity, Unit vector; resolution of a vector in a plane, rectangular components, Scalar and Vector product of vectors. Motion in a plane, cases of uniform velocity and uniform acceleration-projectile motion, uniform circular motion. |
Laws of Motion |
Intuitive concept of force, Inertia, Newton’s first law of motion; momentum and Newton’s second law of motion; impulse; Newton’s third law of motion. (recapitulation only) Law of conservation of linear momentum and its applications. Equilibrium of concurrent forces, Static and kinetic friction, laws of friction, rolling friction, lubrication. Dynamics of uniform circular motion: Centripetal force, examples of circular motion (vehicle on a level circular road, vehicle on a banked road). |
Work, Energy and Power |
Work done by a constant force and a variable force; kinetic energy, work-energy theorem, power. Notion of potential energy, potential energy of a spring, conservative forces: conservation of mechanical energy (kinetic and potential energies); non-conservative forces: motion in a vertical circle; elastic and inelastic collisions in one and two dimensions. |
System of Particles and Rotational Motion |
Centre of mass of a two-particle system, momentum conservation and centre of mass motion. Centre of mass of a rigid body; centre of mass of a uniform rod. Moment of a force, torque, angular momentum, law of conservation of angular momentum and its applications. Equilibrium of rigid bodies, rigid body rotation and equations of rotational motion, comparison of linear and rotational motions. Moment of inertia, radius of gyration, values of moments of inertia for simple geometrical objects (no derivation). |
Gravitation |
Universal law of gravitation. Acceleration due to gravity (recapitulation only) and its variation with altitude and depth. Gravitational potential energy and gravitational potential, escape velocity, orbital velocity of a satellite, Geo-stationary satellites. |
Mechanical Properties of Solids |
Stress-strain relationship, Hooke’s law, Young’s modulus, bulk modulus |
Mechanical Properties of Fluids |
Pressure due to a fluid column; Pascal’s law and its applications (hydraulic lift and hydraulic brakes), effect of gravity on fluid pressure. Viscosity, Stokes’ law, terminal velocity, streamline and turbulent flow, critical velocity, Bernoulli’s theorem and its applications. Surface energy and surface tension, angle of contact, excess of pressure across a curved surface, application of surface tension ideas to drops, bubbles and capillary rise. |
Thermal Properties of Matter |
Heat, temperature,( recapitulation only) thermal expansion; thermal expansion of solids, liquids and gases, anomalous expansion of water; specific heat capacity; Cp, Cv – calorimetry; change of state – latent heat capacity. Heat transfer-conduction, convection and radiation (recapitulation only), thermal conductivity, qualitative ideas of Blackbody radiation, Wein’s displacement Law, Stefan’s law, Greenhouse effect. |
Thermodynamics |
Thermal equilibrium and definition of temperature (zeroth law of thermodynamics), heat, work and internal energy. First law of thermodynamics, isothermal and adiabatic processes. Second law of thermodynamics: reversible and irreversible processes. |
Kinetic Theory |
Equation of state of a perfect gas, work done in compressing a gas. Kinetic theory of gases – assumptions, concept of pressure. Kinetic interpretation of temperature; rms speed of gas molecules; degrees of freedom, law of equi-partition of energy (statement only) and application to specific heat capacities of gases; concept of mean free path, Avogadro’s number. |
Oscillations |
Periodic motion – time period, frequency, displacement as a function of time, periodic functions. Simple harmonic motion (S.H.M) and its equation; phase; oscillations of a loaded spring restoring force and force constant; energy in S.H.M. Kinetic and potential energies; simple pendulum derivation of expression for its time period. Free, forced and damped oscillations (qualitative ideas only), resonance. |
Waves |
Wave motion: Transverse and longitudinal waves, speed of travelling wave, displacement relation for a progressive wave, principle of superposition of waves, reflection of waves, standing waves in strings and organ pipes. |
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