c. The table below shows characteristics of two dopants added in Czochralski growth processes of crystalline silicon. In both, a mass M of the dopant was added to 1 kg of silicon. Growth 01 1 kg M Silicon mass Dopant mass Dopant atomic weight (molar mass) Distribution coefficient (ka) Growth 02 1 kg M 31 g/mol 0.36 74.9 g/mol 0.3 Doping concentration 1.0 x 10¹5 cm ?? As shown in the table above, we got doping of 1.0 x 10¹5 cm³ for the first process (Growth 01), what is the doping concentration that we will get in the second process (Growth 02) ? Answer A) 0.5 x 10¹5 cm-3 B) 2.0 x 10¹5 cm- C) 2.9 x 10¹5 cm-3 D) 3.4 x 10¹ cm3

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c. The table below shows characteristics of two dopants added in
Czochralski growth processes of crystalline silicon. In both, a
mass M of the dopant was added to 1 kg of silicon.
Growth 01
Silicon mass
Dopant mass
Dopant atomic weight (molar mass)
Distribution coefficient (ka)
1 kg
M
74.9 g/mol
0.3
1.0 x 10¹5 cm-
Growth 02
1 kg
M
31 g/mol
0.36
Doping concentration
22
As shown in the table above, we got doping of 1.0 x 10¹5 cm3 for the first process (Growth 01), what
is the doping concentration that we will get in the second process (Growth 02) ?
A) 0.5 x 10¹5 cm-3 B) 2.0 x 10¹5 cm-³
Answer
C) 2.9 x 10¹5 cm-3D) 3.4 x 10¹4 cm-3
Transcribed Image Text:c. The table below shows characteristics of two dopants added in Czochralski growth processes of crystalline silicon. In both, a mass M of the dopant was added to 1 kg of silicon. Growth 01 Silicon mass Dopant mass Dopant atomic weight (molar mass) Distribution coefficient (ka) 1 kg M 74.9 g/mol 0.3 1.0 x 10¹5 cm- Growth 02 1 kg M 31 g/mol 0.36 Doping concentration 22 As shown in the table above, we got doping of 1.0 x 10¹5 cm3 for the first process (Growth 01), what is the doping concentration that we will get in the second process (Growth 02) ? A) 0.5 x 10¹5 cm-3 B) 2.0 x 10¹5 cm-³ Answer C) 2.9 x 10¹5 cm-3D) 3.4 x 10¹4 cm-3
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