Very small semiconductor crystals, composed of approximately 1000 to 10,000 atoms, are palled quantum dots. Quantum dots made of the semiconductor CdSe are now being used in electronic reader and tablet displays because they emit light efficiently and in multiple colors, depending on dot size. The density of CdSe is 5.82 g/cm 3 a. What is the mass of one 2.5-nm CdSe quantum dot? b. CdSe quantum dots that are 2.5 nm in diameter emit blue light upon stimulation. Assuming that the dot is a perfect sphere and that the empty space in the dot can be neglected, calculate how many Cd atoms are in one quantum dot of this size. c. What is the mass of one 6.5-nm CdSe quantum dot? d. CdSe quantum dots that are 6.5 nm in diameter emit red light upon stimulation. Assuming that the dot is a perfect sphere, calculate how many Cd atoms are in one quantum dot of this size. e. If you wanted to make one 6.5-nm dot from multiple 2.5-hm dots, how many 2.5-nm dots would you need, and how many CdSe formula units would be left over, if any?
Very small semiconductor crystals, composed of approximately 1000 to 10,000 atoms, are palled quantum dots. Quantum dots made of the semiconductor CdSe are now being used in electronic reader and tablet displays because they emit light efficiently and in multiple colors, depending on dot size. The density of CdSe is 5.82 g/cm 3 a. What is the mass of one 2.5-nm CdSe quantum dot? b. CdSe quantum dots that are 2.5 nm in diameter emit blue light upon stimulation. Assuming that the dot is a perfect sphere and that the empty space in the dot can be neglected, calculate how many Cd atoms are in one quantum dot of this size. c. What is the mass of one 6.5-nm CdSe quantum dot? d. CdSe quantum dots that are 6.5 nm in diameter emit red light upon stimulation. Assuming that the dot is a perfect sphere, calculate how many Cd atoms are in one quantum dot of this size. e. If you wanted to make one 6.5-nm dot from multiple 2.5-hm dots, how many 2.5-nm dots would you need, and how many CdSe formula units would be left over, if any?
Very small semiconductor crystals, composed of approximately 1000 to 10,000 atoms, are palled quantum dots. Quantum dots made of the semiconductor CdSe are now being used in electronic reader and tablet displays because they emit light efficiently and in multiple colors, depending on dot size. The density of CdSe is 5.82 g/cm3
a. What is the mass of one 2.5-nm CdSe quantum dot?
b. CdSe quantum dots that are 2.5 nm in diameter emit blue light upon stimulation. Assuming that the dot is a perfect sphere and that the empty space in the dot can be neglected, calculate how many Cd atoms are in one quantum dot of this size.
c. What is the mass of one 6.5-nm CdSe quantum dot?
d. CdSe quantum dots that are 6.5 nm in diameter emit red light upon stimulation. Assuming that the dot is a perfect sphere, calculate how many Cd atoms are in one quantum dot of this size.
e. If you wanted to make one 6.5-nm dot from multiple 2.5-hm dots, how many 2.5-nm dots would you need, and how many CdSe formula units would be left over, if any?
Consider the structure of 1-bromo-2-fluoroethane.
Part 1 of 2
Draw the Newman projection for the anti conformation of 1-bromo-2-fluoroethane, viewed down the C1-C2 bond.
✡
ぬ
Part 2 of 2
H
H
F
Br
H
H
☑
Draw the Newman projection for the gauche conformation of 1-bromo-2-fluoroethane, viewed down the C1-C2 bond.
H
F
Br
H
H
Please help me answer this question. I don't understand how or where the different reagents will attach and it's mostly due to the wedge bond because I haven't seen a problem like this before. Please provide a detailed explanation and a drawing showing how it can happen and what the final product will look like.
Which of the following compounds is the most acidic in the gas phase?
Group of answer choices
H2O
SiH4
HBr
H2S
Chapter 3 Solutions
Laboratory Experiments For Chemistry: The Central Science, Si Edition
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, chemistry and related others by exploring similar questions and additional content below.
Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell
Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell