4. Again, complete the following measurements using the simulator. Here, your goal is to find the cutoff wavelength (and therefore, the cutoff frequency) - in other words, the wavelength at which the curren changes from zero to non-zero. You should be sure to collect enough data to be sure that you know at what wavelength this will occur. Wavelength (nm) # electrons detected O 600 550 540 530 520 510 500 490 480 470 460 450 440 430 420 410 400 0 o O O 0 O 35 38 37 46 49 35 Detection time 0.05 0.05 0.0s 0.0s 0.05 0.05 0.05 0.0s 0.0s O 0.0s 18.15 17. Ss Os 19.15 18.55 20.4s 18.15 Frequency (Hz) 0 0 O O Current (A) o O O

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4. Again, complete the following measurements using the simulator. Here, your goal is to find the cutoff
wavelength (and therefore, the cutoff frequency) - in other words, the wavelength at which the current
changes from zero to non-zero. You should be sure to collect enough data to be sure that you know at
what wavelength this will occur.
Wavelength (nm) # electrons detected
O
600
550
540
530
520
510
500
490
480
470
460
450
440
430
420
410
400
0
O
0
O
O
о
O
O
35
38
37
46
49
35
Detection time Frequency (Hz)
0.05
0.05
0.0s
0.0s
0.05
0.05
0.05
0.0s
0.0s
O
O. Os
18.15
17. Ss
19.15
Os
18.5s
20.4 s
18.15
O
O
O
O
o
O
O
Current (A)
O
O
O
O
O
0
Transcribed Image Text:4. Again, complete the following measurements using the simulator. Here, your goal is to find the cutoff wavelength (and therefore, the cutoff frequency) - in other words, the wavelength at which the current changes from zero to non-zero. You should be sure to collect enough data to be sure that you know at what wavelength this will occur. Wavelength (nm) # electrons detected O 600 550 540 530 520 510 500 490 480 470 460 450 440 430 420 410 400 0 O 0 O O о O O 35 38 37 46 49 35 Detection time Frequency (Hz) 0.05 0.05 0.0s 0.0s 0.05 0.05 0.05 0.0s 0.0s O O. Os 18.15 17. Ss 19.15 Os 18.5s 20.4 s 18.15 O O O O o O O Current (A) O O O O O 0
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