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All Physics Formulae Panorama by FrazMallick

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**Caution:
**

**”Copyright© All Rights Reserved”
**

”All copyrights are Reserved with the Author and the Publisher.

**NO ONE IS ALLOWED** to Edit, Copy or Modify this ShortBook in any Case.”

All Physics Formulae Panorama by FrazMallick

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**About The ShortBook:
**

**Book Title: All Physics Formulae Panorama
**

**Pages: 57
**

**Edition: 2nd
**

**Format: Portable Document Format (For This
**

**Copy Only)
**

**Author: Fraz Mallick
**

**Association: #teamFR
**

**Courtesy: MCAT Panorama
**

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**Table of Content
**

**Sr. Chapter No. Chapter Name Page Number
**

**1. Book-I
**

**2. 1. Measurement 06
**

**3. 2.
Vectors and
**

**Equilibrium
07
**

**4. 3. Motion and Force 10
**

**5. 4. Work and Energy 13
**

**6. 5. 15
**

**7. 6. Fluid Dynamics 18
**

**8. 7. Oscillations 19
**

**9. 8. Waves 21
**

**10. 9. Physical Optics 24
**

**11. 10. Optical Instruments 26
**

**12. 11.
Heat and
**

**Thermodynamics
28
**

**13. Book-II
**

**14. 12. Electrostatics 33
**

**15. 13. Current Electricity 36
**

**16. 14. Electromagnetism 39
**

**17. 15.
Electromagnet
**

**Induction
41
**

**18. 16. Alternate Current 43
**

**19. 17. Physics of Solids 45
**

**20. 18. Electronics 47
**

**21. 19.
Dawn of Modern
**

**Physics
49
**

**22. 20. Atomic Spectra 51
**

**23. 21. Nuclear Physics 53
**

**24. Important Information 55
**

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**All
**

**Physics
**

**Formulae
**

**Panorama
Part-I
**

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**Chapter-01
**

**Measurements
**

**Steradian:
**

Further Details from this Chapter are at the end of this shortbook.

**Measurements **

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**Chapter No. 02
**

**Vector and Equilibrium
**

**Addition of Vectors:
**

**Unit Vector:
**

**Null Vector:
**

**Rectangular Components of a Vector:
**

**Determination of a Vector form from the Rectangular Components:
**

**Position Vector:
**

Vectors

and

Equilibrium

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**Vector Addition by Rectangular Components:
**

**PRODUCT OF TWO VECTORS
**

**Scalar or Dot Product:
**

**Vector or Cross Product:
**

**Torque:
**

**EQUILIBRIUM OF FORCES **

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**First Condition of Equilibrium:
**

**Second Condition of Equilibrium:
**

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**Chapter No. 03
**

**Motion and Force
**

**Displacement:
**

**Velocity:
**

**Instantaneous Velocity:
**

**Acceleration:
**

**Instantaneous Acceleration:
**

**Review of Equations of Uniformly Accelerated Motion:
**

Motion

and

Force

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**NEWTON LAWS OF MOTION
**

**Newton’s Second law of Motion:
**

**Momentum:
**

**Momentum and Newton’s Second Law of Motion:
**

**Impulse:
**

**Law of conservation of momentum:
**

**Elastic Collision in One Dimension:
**

**Force due to water flow:
**

**Momentum and Explosive Forces:
**

**Projectile Motion:
**

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**Height of Projectile:
**

**Time of flight:
**

**Range of the Projectile:
**

**Chapter No. 04 **

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**Work and Energy:
**

**Work:
**

**Work done by a variable force:
**

**Power:
**

**Power and Velocity:
**

**Energy:
**

**Work-Energy Principle:
**

Work and

Energy

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**Absolute Potential Energy:
**

**Escape Velocity:
**

**Interconversion of Potential Energy and Kinetic Energy:
**

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**Chapter No. 05
**

**Circular Motion
**

**Angular Displacement:
**

Angular Velocity:

**Instantaneous Angular Velocity:
**

**Angular Acceleration:
**

**Instantaneous Angular Acceleration:
**

Circular

Motion

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**Relation between Angular and Linear Velocity:
**

**Relation between Linear and Angular Acceleration:
**

**EQUATIONS OF LINEAR AND ANGULAR MOTION
**

Linear Motion Angular Motion

**Centripetal Force:
**

**Momentum of Inertia:
**

**Angular Momentum:
**

Law of Conservation of Momentum:

Rotational Kinetic Energy:

Real and Apparent weight:

At Rest:

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**Moving Up with Acceleration:
**

**Moving downward with an Acceleration:
**

**Orbital Velocity:
**

**Artificial Gravity:
**

**Radius of Geostationary Orbit:
**

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**Chapter No. 6
**

**Fluid Dynamics
**

**Drag Force:
**

**Terminal Velocity:
**

**Equation of Continuity:
**

**Bernouli’s Equation:
**

**Torricelli’s Theorem:
**

**Relation between speed and pressure of the fluid:
**

**Venturi Relation:
**

Fluid

Dynamics

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**Chapter No. 07
**

**Oscillations
**

**Frequency:
**

**Angular Frequency:
**

**Displacement:
**

**Instantaneous Velocity:
**

**Acceleration in terms of **

**Vibrational Angular Frequency:
**

**Time Period of the Mass:
**

Oscillations

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**Instantaneous Displacement:
**

**Instantaneous Velocity:
**

**Time Period of a Pendulum:
**

**Energy Conservation:
**

**Chapter No. 08 **

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**Waves
**

**The Speed of the Crest:
**

**Speed of the Sound in Air:
**

**Laplace Correction:
**

**INTERFERENCE
**

**Conditions for Constructive Interference:
**

**Conditions for Destructive Interference:
**

Waves

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**STATIONARY WAVES
**

**Speed **** of the waves in the string:
**

**Frequency of Stationary Waves having n loops:
**

**Wavelength of Stationary Waves having n loops:
**

**STATIONARY WAVES IN AIR COLUMN
**

**When pipe is open at both ends:
**

**DOPPLER’S EFFECT
**

**If the Observer moves towards the Stationary Source:
**

**If the Observer moves away from the Stationary Source:
**

**If the Source moves towards the Observer: **

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**And If the Source moves away from the Observer:
**

**Chapter No. 09 **

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**Physical Optics
**

**YOUNG’S DOUBLE SLIT EXPERIMENT
**

**Path Difference for bright fringe:
**

**Path Difference for dark fringe:
**

**Bright Fringe Position:
**

**Position of Dark Fringe:
**

**DIFFRACTION DUE TO A NARROW SLIT
**

**Equation for the first minimum:
**

where, m=

**Diffraction Grating:
**

Physical

Optics

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where, n=

**Diffraction of X-rays by Crystals:
**

**Chapter No. 10 **