#Innovative_Classes_Gonda #Innovative_Students #Innovative_Physics #PinkMoonOfApril19 #Telescope #AstroPhysics #YesWeAreTheChange (at Innovative Classes) https://www.instagram.com/p/Bwe1thEgeO6/?utm_source=ig_tumblr_share&igshid=5yxpwo7hdeqg
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#Innovative_Classes_Gonda #Innovative_Students #Innovative_Physics #PinkMoonOfApril19 #Telescope #AstroPhysics #YesWeAreTheChange (at Innovative Classes) https://www.instagram.com/p/Bwe1thEgeO6/?utm_source=ig_tumblr_share&igshid=5yxpwo7hdeqg
*Observe the Astro Physics Phenomenon* Full Moon of April (Pink Moon) 19/04/2019 today by Telescope. Venue-Innovative Classes. Time-7 P.M. Open for all. #Innovative_Classes_Gonda #Innovative_Classes_Students #Innovative_Physics (at Innovative Classes) https://www.instagram.com/p/BwcFRPQAdF3/?utm_source=ig_tumblr_share&igshid=x1fvl9ypoof7
Pat-2 #Innovative_Instagram_Post #innovative_physics #cbse11th #CBSE . Chapter – Kinetic Theory 1. Behaviour of Gases 2. Law of Equipartition Energy 3. Mean Free Path 4. Specific Heat capacity Chapter – Oscillations 1. Simple Harmonic Motion 2. SHM and Uniform Circular Motion 3. Energy in SHM 4. Oscillation due to Spring 5. Simple Pendulum Chapter – Waves 1. Longitudinal and Transverse Waves 2. Displacement relation in Longitudinal Waves 3. Characteristics of Longitudinal and Transverse Waves 4. Principle of Superposition 5. Standing Waves 6. Beats 7. Dooplers Effect Hope this helps you..All the best!!! To be continued in next post..... #Innovative_Classes_Gonda #Innovative_Students #BMTGonda (at Innovative Classes) https://www.instagram.com/p/BscSW5tD8XB/?utm_source=ig_tumblr_share&igshid=ywkklr4mhzlb
#Innovative_Instagram_Post #innovative_physics #cbse11th #CBSE **As such everthing is important and you cannot skip anything..because anything can be asked in your exams. However, following is the list of important topics chapterwise. Chapter – Units and Measurement 1. SI Units 2. Absolute Errors 3. Significant Figures 4. Dimensional Analysis Chapter – Motion in a Straight Line 1. Average Velocity and Average Speed 2. Instantaneous Velocity and Speed 3. Relative Velocity 4. Kinematic Equations for Uniformly Accelerated Motion Chapter – Motion In a Plane 1. Vector Operations 2. Resolutions of Vectors 3. Motion of Object in Plane 4. Projectile Motion Chapter – Laws of Motion 1. Newton’s First Law of Motion 2. Newton’s Second law of Motion 3. Newton’s Third Law of Motion 4. Conservation of Momentum 5. Circular Motion 6. Problem Solving in Mechanics Chapter – Work, Energy and Power 1. Work-Energy Theorem 2. Kinetic Energy and Potential Energy 3. Law of Conservation of Energy 4. Potential Energy of a Spring 5. Collisions Chapter– Systems of Particles and Rotational Motion. 1. Centre of Mass and its Motion 2. Linear motion of System of Particles 3. Angular Velocity and Angular Acceleration 4. Torque and Angular Momentum 5. Moment of Inertia 6. Theorems of perpendicular and Parallel Axis 7. Kinematics of rotational motion about a fixed axis 8. Dynamics of rotational motion about a fixed axis 9. Angular momentum in case of rotation about a fixed axis Rolling motion 10. Rolling Motion Chapter – Gravitation 1. Kepler’s Law 2. Universal Law of Gravitation 3. Acceleration due to to gravity Chapter – Mechanical Properties of Fluids 1. Bernoulli’s Principle 2. Surface Tension 3. Venturi-meter Chapter – Thermal Properties of Matter. 1. Ideal Gas Equation 2. Thermal Expansion 3. Specific Heat Capacity 4. Calorimetry 5. Latent Heat 6. Heat Transfer Chapter – Thermodynamics Important Topics: 1. Zeroth Law of Thermodynamics 2. First Law of Thermodynamics 3. Heat Engines 4. Second Law of Thermodynamics 5. Carnot Engine. To be continued in next post..... #Innovative_Classes_Gonda #Innovative_Students #BMTGonda (at Innovative Classes) https://www.instagram.com/p/BscRXWADZPZ/?utm_source=ig_tumblr_share&igshid=1ehg9pe8suymv
BREAKING NEWS #nobelprize #nobelprize2018 The Royal Swedish Academy of Sciences has decided to award the Nobel Prize in Physics 2018 “for groundbreaking inventions in the field of laser physics” with one half to Arthur Ashkin “for the optical tweezers and their application to biological systems” and the other half jointly to Gérard Mourou and Donna Strickland “for their method of generating high-intensity, ultra-short optical pulses.” #Innovative_Classes_Gonda #INNOVATIVE_STUDENTS #INNOVATIVE_PHYSICS #innovativeScience The inventions being honoured this year have revolutionised laser physics. Extremely small objects and incredibly fast processes now appear in a new light. Not only physics, but also chemistry, biology and medicine have gained precision instruments for use in basic research and practical applications. Arthur Ashkin invented optical tweezers that grab particles, atoms and molecules with their laser beam fingers. Viruses, bacteria and other living cells can be held too, and examined and manipulated without being damaged. Ashkin’s optical tweezers have created entirely new opportunities for observing and controlling the machinery of life. Gérard Mourou and Donna Strickland paved the way towards the shortest and most intense laser pulses created by mankind. The technique they developed has opened up new areas of research and led to broad industrial and medical applications; for example, millions of eye operations are performed every year with the sharpest of laser beams. Courtesy-Nobel Prize Fb page. (at Innovative Classes) https://www.instagram.com/p/BohU-sdgpQz/?utm_source=ig_tumblr_share&igshid=1c93qcx0s7d5o
#Innovative_Classes_Gonda #innovative_students ##INNOVATIVE_PHYSICS #innovativeScience Important Formulas for Class-11th #Physics. #calculas #differentiation #integration (at Innovative Classes) https://www.instagram.com/p/BnCS_7RHNhz/?utm_source=ig_tumblr_share&igshid=wbdgizqqqh5r
Where these lines intersect ? #Innovative_Classes_Gonda #Innovative_Students #opticalillusion #innovativeScience #INNOVATIVE_PHYSICS (at Innovative Classes) https://www.instagram.com/p/Bm2q7qLAP2A/?utm_source=ig_tumblr_share&igshid=1wdzntw3sytaa
#INNOVATIVE_CLASSES_GONDA #INNOVATIVE_PHYSICS #INNOVATIVE_CHEMISTRY #TYNDALL_EFFECTS #repost Tyndall effect in morning through window. The Tyndall effect is the scattering of light as a light beam passes through a colloid. The individual suspension particles scatter and reflect light, making the beam visible. The amount of scattering depends on the frequency of the light and density of the particles. Tyndall effect is easily observed when a fine beam of light enters a room through a small hole Tyndall effect happens because of scattering of light by dust and smoke in the air Tyndall effect can be observed when sunlight passes through a canopy of the dense forest. In the forest, mist contains tiny droplets of water which act as colloidal particles dispersed in air. (at Innovative Classes) https://www.instagram.com/p/BmvtbUUAa40/?utm_source=ig_tumblr_share&igshid=1u9cgjp4ur079