Red Light 2 = 700 nm E = 1.8 eV Green Light 2 = 550 nm E = 2.3 eV Blue Light 2 = 400 nm E = 3.1 eV Potassium (4 = 2.0 eV) Three different colored light beams are incident on a piece of potassium metal (work function - 2.0 eV). The same number of photons per second are incident the metal from each light beam. How does the maximum speed v of the ejected electrons resulting from cach ligh beam compare? Vred Vgreen " Vakue Vred * Vgreen Vblue Vred " Vgreen " Value Vred Vgreen> Volue Vred Vgreen" Value How does the number nof ejected electrons per second resulting from each light beam compare? O nred ngreen " blue nred "ngreen"blue Nred ngreen nblue nred ngreen " nblue O nredngreen > Nulue O 0 o O O
Red Light 2 = 700 nm E = 1.8 eV Green Light 2 = 550 nm E = 2.3 eV Blue Light 2 = 400 nm E = 3.1 eV Potassium (4 = 2.0 eV) Three different colored light beams are incident on a piece of potassium metal (work function - 2.0 eV). The same number of photons per second are incident the metal from each light beam. How does the maximum speed v of the ejected electrons resulting from cach ligh beam compare? Vred Vgreen " Vakue Vred * Vgreen Vblue Vred " Vgreen " Value Vred Vgreen> Volue Vred Vgreen" Value How does the number nof ejected electrons per second resulting from each light beam compare? O nred ngreen " blue nred "ngreen"blue Nred ngreen nblue nred ngreen " nblue O nredngreen > Nulue O 0 o O O
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![Red Light
2 = 700 nm
E = 1.8 eV
Green Light
1 = 550 nm
E = 2.3 eV
Blue Light
2 = 400 nm
E = 3.1 eV
Potassium ( = 2.0 eV)
Three different colored light beams are incident on a piece of potassium metal
(work function = 2.0 eV). The same number of photons per second are incident on
the metal from each light beam.
How does the maximum speed v of the cjected electrons resulting from cach light
beam compare?
Vred Vgreen" Vblue
Vred Vgreen Vblue
Vred Vgreen Vblue
Vred > Vgreen> Vblue
Vred > Vgreen" Vblue
How does the number n of ejected electrons per second resulting from each light
beam compare?
Nred ngreen " Nolue
nred" ngreen" nblue
nred <ngreen nalue
nred> ngreen " nblue
nred> ngreen > nulue
O O](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F99c33acf-c5b9-4c3c-abf0-a214f8509a91%2F147cbd12-7abd-47c6-8df9-f7e046c20329%2Ffppcw8b_processed.png&w=3840&q=75)
Transcribed Image Text:Red Light
2 = 700 nm
E = 1.8 eV
Green Light
1 = 550 nm
E = 2.3 eV
Blue Light
2 = 400 nm
E = 3.1 eV
Potassium ( = 2.0 eV)
Three different colored light beams are incident on a piece of potassium metal
(work function = 2.0 eV). The same number of photons per second are incident on
the metal from each light beam.
How does the maximum speed v of the cjected electrons resulting from cach light
beam compare?
Vred Vgreen" Vblue
Vred Vgreen Vblue
Vred Vgreen Vblue
Vred > Vgreen> Vblue
Vred > Vgreen" Vblue
How does the number n of ejected electrons per second resulting from each light
beam compare?
Nred ngreen " Nolue
nred" ngreen" nblue
nred <ngreen nalue
nred> ngreen " nblue
nred> ngreen > nulue
O O
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