Khoobchandra Agrawal

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Professor

Biography

I have teaching experience of 27 years. I am teaching 11&12 th standard students preparing for board exam and for competitive exam ( jee and neet)

Education

MS Bundelkhand University
Other Schools
BS Physics
Other Schools
BS Physics
Other Schools
MS Physics
Other Schools

Educator Statistics

Numerade tutor for 6 years
18678 Students Helped

Topics Covered

Capacitance and Dielectrics: Understanding the Basics
Understanding Electric Charge and Field: A Comprehensive Guide
Understanding Gauss's Law: A Comprehensive Guide
Unlocking the Power of Electric Potential: Exploring its Benefits
Calculating Electrical Power: Resistance and EMF
Master Direct Current Circuits with Our Expert Guide
Electromagnetic Induction: Understanding the Science and Applications
Understanding Alternating Current: A Comprehensive Guide
Unlocking the Secrets of Thermal Properties: Understanding Matter
Exploring the Fascinating World of Quantum Physics
Exploring the Wonders of Atomic Physics: A Comprehensive Guide
Discover the Fascinating World of Nuclear Physics
Mastering the Rotation of Rigid Bodies: Tips & Techniques
Explore the Fascinating Dynamics of Rotational Motion
Understanding Equilibrium and Elasticity: A Comprehensive Guide
Unlocking the Power of Magnetic Fields and Forces
Discovering the Sources of Magnetic Fields: A Comprehensive Guide
Understanding Inductance: A Comprehensive Guide
Discover the Power of Gravitation: Exploring the Science Behind It
Understanding the First Law of Thermodynamics: Key Concepts
Understanding the Second Law of Thermodynamics: Key Principles
Understanding Reflection and Refraction of Light: A Comprehensive Guide
Motion in 2d or 3d
Mastering Motion: Achieving Efficiency Along a Straight Line
Understanding Electromagnetic Waves: A Comprehensive Guide
Explore the Fascinating World of Wave Optics - Unleash Its Potential
Exploring the Fascinating World of Mechanical Waves
Explore the Fascinating World of Periodic Motion - Learn More Today!
Understanding Moment Impulse and Collisions for Better Physics
Discovering the Fundamentals: Newton's Laws of Motion Explained
Unlock the Power of Kinetic Energy: Boost Your Efficiency Today
Unlocking the Power of Potential Energy: Discover the Benefits
Save Energy and Money with Effective Conservation Techniques
Mastering Newton's Laws: Tips for Applying Them Effectively
Relativity
Fluid Mechanics
Unlock the Secrets of Fluid Mechanics with Our Expert Guide
Understanding Temperature and Heat: A Comprehensive Guide
Discover the Fascinating World of Particle Physics Today
Discover the Science of Sound and Hearing: Your Guide to Better Listening
Master the Fundamentals of Physics: Learn Physics Basics
Find Your Dream Job: Discover the Best Work Opportunities
Temperature and the Kinetic Theory of Gases
Kinetic Theory Of Gases
Superposition
Applications of Newton’s Laws
Gravity, Planetary Orbits
Unlock the Power of Vectors: Discover Their Limitless Possibilities
Mechanical Waves
Momentum and Collisions
Motion
Electric Forces and Electric Fields
Oscillatory Motion
Spectroscopy
Differential Equations
Understanding Structure and Bonding: A Comprehensive Guide
Rotational Motion
Electric Potential and Capacitance
Mastering Power and Root Functions for Optimal Performance
Mastering Equations and Inequalities: Your Guide to Mathematical Success
Condensed Matter Physics
Electromagnetic Waves
Introduction and Vectors
Unlocking the Power of Chemical Reactions: A Comprehensive Guide
Discover the Power of Solids for Your Everyday Needs
Mastering Partial Derivatives: Essential Techniques and Tips
Discover the Best Series to Binge-Watch | Your Ultimate Guide
Understanding Complex Numbers: A Comprehensive Guide
Master Vector Calculus with Our Comprehensive Guide
Introduction to Vector Calculus
Mastering Integration Techniques for Optimal Results
Exploring Probability Topics: From Basics to Advanced Strategies
Mastering Second Order Differential Equations: Tips and Techniques
Mastering Multiple Integrals: Techniques and Tips
Differential Equations Made Simple: Expert Tips & Resources
Kinetic Theory Of Gases
Breaking Limits: Unlock Your Potential with Our Expert Solutions
Exploring the World of Derivatives: A Comprehensive Guide
Stand Out with Differentiation Strategies | Boost Your Business
Power Series
Powers and Polynomial
Unlock the Power of Sequences: Boost Your Productivity
Mastering Integrals: Tips and Tricks for Calculus Success
Integration
Applications of Integration: Exploring Real-World Solutions
Mastering the Basics of Parametric Equations: A Comprehensive Guide
Polar Coordinates: Understanding the Basics and Applications
Understanding Continuous Random Variables: Key Concepts
Unlocking Insights with Descriptive Statistics: A Comprehensive Guide
Hypothesis Testing with One Sample: A Comprehensive Guide
Unlocking the Power of Confidence Intervals: A Comprehensive Guide
Linear Regression & Correlation: Analyzing Data Relationships
Unlocking Insights with Non-Parametric Statistics | Boost Your Analysis
Maximizing Accuracy with Effective Sampling and Data Analysis
Mastering Analysis of Variance: Techniques for Accurate Results
Understanding the Normal Distribution: A Comprehensive Guide

Khoobchandra's Textbook Answer Videos

03:14
University Physics with Modern Physics

After a long day of driving you take a late-night swim in a motel swimming pool. When you go to your room, you realize that you have lost your room key in the pool. You borrow a powerful flashlight and walk around the pool, shining the light into it. The light shines on the key, which is lying on the bottom of the pool, when the flashlight is held 1.2 m above the water surface and is directed at the surface a horizontal distance of 1.5 m from the edge ($\textbf{Fig. P33.44}$). If the water here is 4.0 m deep, how far is the key from the edge of the pool?

Chapter 33: The Nature and Propagation of Light
Khoobchandra Agrawal
05:08
University Physics with Modern Physics

You sight along the rim of a glass with vertical sides so that the top rim is lined up with the opposite edge of the bottom ($\textbf{Fig. P33.45a}$). The glass is a thin-walled, hollow cylinder 16.0 cm high. The diameter of the top and bottom of the glass is 8.0 cm. While you keep your eye in the same position, a friend fills the glass with a transparent liquid, and you then see a dime that is lying at the center of the bottom of the glass (Fig. P33.45b). What is the index of refraction of the liquid?

Chapter 33: The Nature and Propagation of Light
Khoobchandra Agrawal
02:31
University Physics with Modern Physics

A beam of unpolarized sunlight strikes the vertical plastic wall of a water tank at an unknown angle. Some of the light reflects from the wall and enters the water ($\textbf{Fig. P33.55}$). The refractive index of the plastic wall is 1.61. If the light that has been reflected from the wall into the water is observed to be completely polarized, what angle does this beam make with the normal inside the water?

Chapter 33: The Nature and Propagation of Light
Khoobchandra Agrawal
09:15
University Physics with Modern Physics

A thin beam of white light is directed at a flat sheet of silicate flint glass at an angle of 20.0$^\circ$ to the surface of the sheet. Due to dispersion in the glass, the beam is spread out in a spectrum as shown in $\textbf{Fig. P33.56}$. The refractive index of silicate flint glass versus wavelength is graphed in Fig. 33.17. (a) The rays $a$ and $b$ shown in Fig. P33.56 correspond to the extreme wavelengths shown in Fig. 33.17. Which corresponds to red and which to violet? Explain your reasoning. (b) For what thickness $d$ of the glass sheet will the spectrum be 1.0 mm wide, as shown (see Problem 33.54)?

Chapter 33: The Nature and Propagation of Light
Khoobchandra Agrawal
06:13
University Physics with Modern Physics

In physics lab, you are studying the properties of four transparent liquids. You shine a ray of light (in air) onto the surface of each liquid ${-A, B, C, and \space D-}$ one at a time, at a 60.0$^\circ$ angle of incidence; you then measure the angle of refraction. The table gives your data:

The wavelength of the light when it is traveling in air is 589 nm. (a) Find the refractive index of each liquid at this wavelength. Use Table 33.1 to identify each liquid, assuming that all four are listed in the table. (b) For each liquid, what is the dielectric constant $K$ at the frequency of the 589-nm light? For each liquid, the relative permeability $(K_m)$ is very close to unity. (c) What is the frequency of the light in air and in each liquid?

Chapter 33: The Nature and Propagation of Light
Khoobchandra Agrawal
02:46
University Physics with Modern Physics

First, light with a plane of polarization at 45 degrees to the horizontal shines on the insect. Which statement is true about the two types of cells? (a) Both types detect this light. (b) Neither type detects this light. (c) Only type H detects the light. (d) Only type V detects the light.

Chapter 33: The Nature and Propagation of Light
Khoobchandra Agrawal
1 2 3 4 5 ... 1937

Khoobchandra's Quick Ask Videos

02:27
Physics 101 Mechanics

Determine the escape speed from (a) Jupiter's moon Callisto, with mass 1.07Ă—1023kg and radius 2.40 Mm, and (b) a neutron star, with the Sun's mass crammed into a sphere of radius 6.50 km .

Khoobchandra Agrawal
03:48
Physics 101 Mechanics

Hello, I need help to solve problem number two question a-c.

Khoobchandra Agrawal
05:26
Physics 103

he sound source of a ship’s sonar system operates at a frequency of 22.0 kHz . The speed of sound in water (assumed to be at a uniform 20°C) is 1482 m/s . What is the difference in frequency between the directly radiated waves and the waves reflected from a whale traveling straight toward the ship at 4.95 m/s ? Assume that the ship is at rest in the water.
What would be the difference in frequency Δf between the directly radiated waves and the waves reflected from the whale if the whale is stationary?

Khoobchandra Agrawal
05:19
Physics 103

Khoobchandra Agrawal
07:32
Physics 103

Khoobchandra Agrawal
11:18
Physics 102 Electricity and Magnetism

Khoobchandra Agrawal
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