It takes the average reader 10 hours and 37 minutes to read Dispersion Relations in Heavily-Doped Nanostructures by Kamakhya Prasad Ghatak
Assuming a reading speed of 250 words per minute. Learn more
This book presents the dispersion relation in heavily doped nano-structures. The materials considered are III-V, II-VI, IV-VI, GaP, Ge, Platinum Antimonide, stressed, GaSb, Te, II-V, HgTe/CdTe superlattices and Bismuth Telluride semiconductors. The dispersion relation is discussed under magnetic quantization and on the basis of carrier energy spectra. The influences of magnetic field, magneto inversion, and magneto nipi structures on nano-structures is analyzed. The band structure of optoelectronic materials changes with photo-excitation in a fundamental way according to newly formulated electron dispersion laws. They control the quantum effect in optoelectronic devices in the presence of light. The measurement of band gaps in optoelectronic materials in the presence of external photo-excitation is displayed. The influences of magnetic quantization, crossed electric and quantizing fields, intense electric fields on the on the dispersion relation in heavily doped semiconductors and super-lattices are also discussed. This book contains 200 open research problems which form the integral part of the text and are useful for graduate students and researchers. The book is written for post graduate students, researchers and engineers.
Dispersion Relations in Heavily-Doped Nanostructures by Kamakhya Prasad Ghatak is 625 pages long, and a total of 159,375 words.
This makes it 211% the length of the average book. It also has 195% more words than the average book.
The average oral reading speed is 183 words per minute. This means it takes 14 hours and 30 minutes to read Dispersion Relations in Heavily-Doped Nanostructures aloud.
Dispersion Relations in Heavily-Doped Nanostructures is suitable for students ages 12 and up.
Note that there may be other factors that effect this rating besides length that are not factored in on this page. This may include things like complex language or sensitive topics not suitable for students of certain ages.
When deciding what to show young students always use your best judgement and consult a professional.
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