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HC Verma Solutions Class 11 Chapter 17 - Light Waves

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Summary of HC Verma Solutions Part 1 Chapter 17: Light Waves

This chapter explores the nature of light waves, which are electromagnetic waves responsible for our sense of vision. HC Verma explains the properties of light waves, their reflection, refraction, and polarisation. The chapter also covers Huygens' principle, which describes how light behaves as a wave, and introduces the wave theory of light.


The PDF of HC Verma Solutions for Class 11 Physics Part-1 Chapter 17 - Light Waves is conveniently available for free on Vedantu. This means that you can access it anytime and from anywhere, making it easily accessible for your studying needs.


By offering the Class 11 HC Verma Solutions Light Waves PDF for free, Vedantu aims to facilitate efficient and flexible studying, allowing students to conveniently revise and practice physics concepts whenever they need to.


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Key benefits of using Class 11 HC Verma Solutions for Chapter 17 - Light Waves

  • The solutions are provided by expert Physics teachers, who have a deep understanding of the concepts in the chapter.

  • The solutions cover all of the exercises in the chapter, so students can practice solving problems in a variety of contexts.

  • The solutions are available in a free PDF, so students can access them anytime, anywhere.

  • The given PDF provides a clear and concise explanation of the solutions to the exercises.


About HC Verma Class 11 Chapter 17 - Light Waves Solutions

Light waves are commonly referred to as electromagnetic waves by scientists because they comprise the electromagnetic spectrum. Wavelengths are usually measured in billionths of a meter (nanometers) or ten billionths of a meter (Angströms). The distance is measured from one wave's peak to the next peak. Humans can see wavelengths ranging from approximately 700 nm, which appears dark red, to approximately 400 nm, which appears violet. Short-wavelength light (violet) carries more energy than long-wavelength light (red). Sir Isaac Newton published "Opticks" in 1704 to explain some of the mysteries of light. Newton demonstrated that sunlight is a continuous spectrum of colors. White light from the Sun can be broken down into all the colors of the rainbow by passing it through a glass prism. He even put the colored spectrum through another prism, which reassembled it into white light. Other astronomers and physicists later discovered new ways to analyze light using the spectrum. And also discovered that light from any source, be it a candle or a star, is made up of a variety of wavelengths that differ depending on which atoms and molecules emit the light.


HC Verma Volume 1 Solutions Other Chapters:


Tips to study HC Verma Chapter 17 - Light Waves Solutions:

  • Start by reading the chapter carefully: Make sure you understand the basic concepts and terminology before you start working on the solutions.

  • Work on the examples step-by-step: Don't just try to memorize the solutions, make sure you understand how they work.

  • Try to solve the illustrative exercises on your own: If you get stuck, you can refer to the solutions, but try to solve them on your own first.

  • Practice, practice, practice! The more you practice, the better you'll become at solving physics problems.


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FAQs on HC Verma Solutions Class 11 Chapter 17 - Light Waves

1. How is HC Verma solutions for Class 11 Physics Part-1 Chapter 17 helpful for students?

Students can benefit from the HC Verma solutions a lot by practicing with it’s help. HC Verma provides step by step and detailed solutions for every problem for students to understand it properly. Students can get the HC Verma Solutions for Class 11 Physics Part-1 Chapter for free on the website of Vedantu where they can download it in the pdf format and use it as per their convenience. With the help of the free material on Vedantu and the expertise of the HC Verma solutions, students will get a wholesome experience while studying. 

2. What types of waves are light waves?

Waves are how energy travels from one location to another. Light waves allow us to see in the dark because they travel from a light bulb to a dark room and then finally to our eyes. Light waves travel always as transverse waves and can travel at a speed of 186,000 miles per second through a vacuum. It does not require a mechanical medium to propagate. Light has both magnetic and electric fields. This is referred to as electromagnetic radiation by scientists.

3. What three things can a light wave do?

When a light wave hits an object, it bounces off (reflection), bends (refraction), passes through (transmission), or absorbs heat.It interferes with other waves and also carries energy and momentum. Some objects transmit light waves more efficiently than the others. Light waves cannot pass through opaque materials. Light can pass through translucent materials, but not in a straight line. One example of a translucent material is wax paper. Lightwaves can easily pass through transparent materials. Transparent materials include clear glass.  

4. Difference between light waves and sound waves?

Light waves are similar to sound waves in appearance, but they move much faster. Light travels at 186,000 miles per second or 299792.458 kilometers per second, while sound travels at 1090 feet per second. Another distinction between light and sound waves is that, whereas sound must travel through some form of matter, such as air or water, light can travel through the vacuum of space.You can get more points in Vedantu app as well, to understand the concept clearly.

5. What are Wavelengths?

There are wavelengths in the light waves. That is the distance between one wave's crest and the next wave's crest. The wavelength of each type of light varies. Some, such as x-rays, have short wavelengths. These waves are extremely powerful. UV waves emitted by the sun are another example. Our skin can be damaged if we are exposed to too many x-rays or UV waves. When we are overexposed to UV waves in sunlight, we can get sunburned or worse. These solutions can be accessed on Vedantu's website and app.