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3.6: Quiz 6

  • Page ID
    408612
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    1. For p-type and n-type \(\mathrm{Si}\)... (2 points)

    a. What is a possible dopant atom?

    p-type: _______________                                                     n-type: _______________ 

    b. What are the charge carriers?

    p-type: _______________                                                     n-type: _______________ 

    c. How many bonds does the dopant atom form once it has donated its charge carriers?

    p-type: _______________                                                     n-type: _______________ 

    Grid of circles labeled "Si" representing silicon atoms interconnected with lines, organized in a 3x3 formation.

    d. Label the structures below as p-type and n-type \(\mathrm{Si}\). Label conduction and valence bands, donor level, and acceptor level. (2 points)

    Four empty rectangles arranged in two rows and two columns, with a horizontal line between the top and bottom rows.

    e. For \(100 \mathrm{~g}\) of \(\mathrm{Si}\), calculate the mass of As needed in order to have \(3.091 * 10^{17}\) carriers \(/ \mathrm{cm}^3\). (2 points)

    2. Lattice structures (You may want to use your pre-built FCC structure :) )

    a. The radius of a nickel atom is \(r=1.97 \AA\) What is the volume packing fraction of the FCC unit cell? (1 point)

    b. What is the direction of closest packing? (1 point)

    c. Consider one face of your FCC lattice. How many nearest neighbors does the central atom have in the same plane? (1 point)

    d. Under sufficient pressure, some elemental metals transitions from BCC to another cubic structure. What is the cubic structure that it transitions to? (1 point)


    This page titled 3.6: Quiz 6 is shared under a CC BY-NC-SA 4.0 license and was authored, remixed, and/or curated by Donald Sadoway (MIT OpenCourseWare) via source content that was edited to the style and standards of the LibreTexts platform.