Matlab in electronics -- 2
Budget: ₹3,000 – ₹3,500 INR
Start with your Monte-Carlo simulator without the bottle-neck:
If a voltage is applied across the x dimension of the semiconductor, electric field on the electrons.
force on each electron..
the acceleration on the electrons and use this in your model to update the velocity of each electron at each time step. Add the capability for the electrons to respond to a static electric field with both an x and a y component. Plot the trajectories of the electrons.
the relationship between the electron drift current density and average carrier velocity
formula for current and generate a plot of the current over time in the x direction.
As before generate the density and temperature maps at the end of the
More details available
If a voltage is applied across the x dimension of the semiconductor, electric field on the electrons.
force on each electron..
the acceleration on the electrons and use this in your model to update the velocity of each electron at each time step. Add the capability for the electrons to respond to a static electric field with both an x and a y component. Plot the trajectories of the electrons.
the relationship between the electron drift current density and average carrier velocity
formula for current and generate a plot of the current over time in the x direction.
As before generate the density and temperature maps at the end of the
More details available