Fast Reader Notes: Today, we develop a description of thermal and optical excitations in intrinsic semiconductors. In this video we discuss the Ewald sphere which is a geometric interpretation of the interference condition that our change in wave ...

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In this video we find the physically significant values of q, our wave vector. In this video we discuss the Ewald sphere which is a geometric interpretation of the interference condition that our change in wave ... Today, we discuss the utility of Miller indices in labeling different planes and how this can be used to better understand crystal ...

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Today, we discuss the utility of Miller indices in labeling different planes and how this can be used to better understand crystal ... Today, we develop a description of thermal and optical excitations in intrinsic semiconductors.

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  • Today, we discuss the utility of Miller indices in labeling different planes and how this can be used to better understand crystal ...
  • Today, we develop a description of thermal and optical excitations in intrinsic semiconductors.
  • In this video we discuss the Ewald sphere which is a geometric interpretation of the interference condition that our change in wave ...
  • In this video we find the physically significant values of q, our wave vector.
  • We discuss the Debye model which invokes a linear, isotropic dispersion and uses that to solve

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Solid State Physics in a Nutshell: Topic 4-4: Psi Scans

Solid State Physics in a Nutshell: Topic 4-4: Psi Scans

Read more details and related context about Solid State Physics in a Nutshell: Topic 4-4: Psi Scans.

Solid State Physics in a Nutshell: Topic 4-1: Ewald Sphere

Solid State Physics in a Nutshell: Topic 4-1: Ewald Sphere

In this video we discuss the Ewald sphere which is a geometric interpretation of the interference condition that our change in wave ...

Solid State Physics in a Nutshell: Topic 4-2: Powder Diffraction

Solid State Physics in a Nutshell: Topic 4-2: Powder Diffraction

We begin this video by connecting the intensity to reciprocal space

Solid State Physics in a Nutshell: Topic 4-3: Omega Rocking Curves

Solid State Physics in a Nutshell: Topic 4-3: Omega Rocking Curves

Read more details and related context about Solid State Physics in a Nutshell: Topic 4-3: Omega Rocking Curves.

Solid State Physics in a Nutshell: Topic 2-4: Miller Indices

Solid State Physics in a Nutshell: Topic 2-4: Miller Indices

Today, we discuss the utility of Miller indices in labeling different planes and how this can be used to better understand crystal ...

Solid State Physics in a Nutshell: Topic 5-2: Nyquist Frequency and Group Velocity

Solid State Physics in a Nutshell: Topic 5-2: Nyquist Frequency and Group Velocity

In this video we find the physically significant values of q, our wave vector. We then use our dispersion to find group and

Solid State Physics in a Nutshell: Topic 6-4: Phonon-Phonon Scattering

Solid State Physics in a Nutshell: Topic 6-4: Phonon-Phonon Scattering

Today, we look at phonon-phonon scattering of two different types. First, we handle the easier form, normal scattering, and then ...

Solid State Physics in a Nutshell: Topic 6-2: Heat Capacity with the Debye Model

Solid State Physics in a Nutshell: Topic 6-2: Heat Capacity with the Debye Model

We discuss the Debye model which invokes a linear, isotropic dispersion and uses that to solve

Solid State Physics in a Nutshell: Topic 5-4: Phonon Density of States

Solid State Physics in a Nutshell: Topic 5-4: Phonon Density of States

Read more details and related context about Solid State Physics in a Nutshell: Topic 5-4: Phonon Density of States.

Solid State Physics in a Nutshell: Topic 10-1:  Thermal & Optical Excitations

Solid State Physics in a Nutshell: Topic 10-1: Thermal & Optical Excitations

Today, we develop a description of thermal and optical excitations in intrinsic semiconductors. We consider both direct and ...