The photoelectric equation for the kinetic energy of a photoelectron is, following Einstein, E < hf – W, where h is Planck's constant, f is the frequency of the light, and W is the work-function. Sodium has W 3.2x 10-19 J. When sodium is illuminated by monochromatic light of a particular frequency, electrons are emitted with speeds up to 8 x 105 m s-1. a) Calculate the wavelength of the light. b) Calculate the stopping potential.
Q: The photoelectric work function energy for tin metal is 4.38 eV (per electron). What wavelength of…
A: Given that:- W=4.38 eV=4.38×1.602×10-19=7.016×10-19 J KE=2.50×10-20 J E=hcλ where,…
Q: The photoelectric equation for the kinetic energy of a photoelectron is, following Einstein, E ≤ hf…
A: Given, work function of Sodium is, W = 3.2×10-19 J velocity of electron is, v =8×105 m/s So maximum…
Q: Photoelectrons with a maximum kinetic energy of 7.95 eV are emitted from a metal when it is…
A: Step 1:Step 2:
Q: Find the energy of the following. Express your answers in units of electron volts, noting that 1 eV…
A:
Q: The root mean square speed of the hydrogen molecules at temperature t°C is given by 3x8.31 x (t+273)…
A: Given Rms speed at t0C vrms=3×8.31×(t+273)2×10-3 Temperature T=240 C Mass of hydrogen molecule…
Q: Take h to have an exact value of 6.63x10-34J-s for significant figure purposes, and use…
A: Given:Planck's constant Speed of light (since hc is given, we don't actually need the exact value…
Q: Photons of a certain infrared light have an energy of 1.76 10-19 J. (a) What is the frequency of…
A:
Q: The intensity of the emitted radiation by a star is at a maximum at a wavelength of 78.9 nm. a)…
A: The maximum radiation is emitted by the given star at a wavelength λ= 78.9nm = 78.9x10-9m a) The…
Q: A mercury discharge tube emits two wavelengths: Green of wavelength 546.1 nm and Yellow of…
A: Wavelength of green light = 546.1 nm Wavelength of yellow light = 579.0 nm We require a comparison…
Q: Calculate the wavelength (λ) for an X-ray photon having an energy E = 2.13 × 10–15 J. Express…
A:
Q: The energy emitted by a black body's surface per unit area at a particul ar wavelength can be calcul…
A: Given information: The Units of the E=erg/μm2 The value and units of planks constant is…
Q: A potassium surface is illuminated by a monochromatic laser light with a wavelength of 400 nm.…
A: Given Wavelength of the light is λ=400 nm=400×10-9 m Work function of potassium is φ=2.30…
Q: A(n) ultraviolet photon has a wavelength of 9.30 x 100 cm. Find the momentum, the frequency, and the…
A: Given, A(n) ultraviolet photon has a wavelength of λ = 9.30×10-6cm = 9.30×10-8m = 93 nm For photon,…
Q: Hydrogen H2 is a diatomic molecule composed of two hydrogen atoms. (Figure 1) is an energy diagram…
A: Given that: The velocity is v=19 km/s= 19×103 m/s The distance is x=0.05 nm The energy is…
Q: 5. (The following data were collected for a certain metal in the photoelectric effect experiment: 2…
A: Given: The data given is as follows: Introduction: The work function is defined as the minimum…
Q: The photoelectric equation for the kinetic energy of a photoelectron is, following Einstein, E <…
A: Photoelectric effect: When the photon of energy h𝛎 incident on the surface of the metal, this…
Q: The blackbody radiation emitted from a furnace peaks at a wavelength of 6.4 x 10-6 m (0.0000064 m).…
A: Given: The peak wavelength is 6.4x10-6 m.
Q: The photoelectric threshold wavelength of a tungsten surface is given as 256 nm. Calculate the…
A:
Q: Photons of a certain infrared light have an energy of 1.05 10-19 J. (a) What is the frequency of…
A: Wavelength is 1891 nm
Q: For a black body, the temperature and the wavelength of the emission maximum, Amax, are related by…
A:
Q: In scenario A, visible light has a wavelength of 729.9 nm.729.9 nm. Determine its frequency, energy…
A: Since, we solve up to 1 question, we will solve the first question only. Please resubmit the…
Q: When ultraviolet radiation of 9.5 X 10 14 Hz is incident on a metal sheet, photoelectrons are…
A:
Q: he photoelectric threshold wavelength of a tungsten surface is given as 256 nm. Calculate the…
A: Given: The threshold wavelength of the tungsten is 256 nm. The frequency of the ultraviolet…
Q: constant has the value h = 6.626 × 10–34 joule-seconds (J-s), and the speed of light is c = 3 × 108…
A: Given Energy E = 1.1 × 10-19 J Planks constant h = 6.626 × 10-34 Js Speed of light c = 3 × 108…
Q: |In a photoelectric effect experiment, the frequency of photons bombarding the surface is increased…
A: Given, Threshold frequency (vth)= 6×1014 Hz
Q: ) What temperature is required for a black body spectrum to peak in the X-ray band? (Assume that E =…
A:
Step by step
Solved in 3 steps
- 4. In an experiment on the photoelectric effect, a metal is illuminated by visible light of different wavelengths. A photoelectron has a maximum kinetic energy of 0.9 eV when red light of wavelength 640 nm is used. With blue light of wavelength 420 nm, the maximum kinetic energy of the photoelectron is 1.9 eV. Use this information to calculate an experimental value for the Planck constant h. [The work function of a tungsten surface is 5.4 eV. When the surface is illuminated by light of wavelength 175 nm, the maximum photoelectric energy is 1.7 eV. Find Planck's constant from these data.A monochromatic light source illuminates the surface of metal X. The maximum kinetic energy of electrons leaving the surface of the metal is shown in the graph above.An ammeter is connected to the standard photoelectric effect circuit to measure the photoelectric current arising from the electrons moving between the cathode and anode of the vacuum tube containing the illuminated sample. The current is found to be 12.4mA when the metal is illuminated with a wavelength of 184.2nm.What is the energy (eV) of the photons striking metal X?
- A) Find the wavelength of a photon that has energy of 27 eVeV. Express your answer with the appropriate units. B) Find the wavelength of an electron that has energy of 27 eVeV. (The energy of the electron is its kinetic energy.) Express your answer with the appropriate units.In 1893, physicist Wilhelm Wien showed that the wavelength of maximum thermal emission strength of electromagnetic radiation from a blackbody at temperature T obeys: Amax T 2.898 mm.K. = This result, known today as Wien's Law, is very useful for, among other things, esti- mating the temperature of distant objects based on the color of light they emit. (a) Planck's spectral energy density function is usually written as an energy per range df of frequencies. Quite often, however, it is more convenient to express it as anBy Thomson's time, it was known that excited atoms emit light waves of only certain frequencies. In his model, the frequency of emitted light is the same as the oscillation frequency of the electron or electrons in the atom. What would the radius of a Thomson-model atom have to be for it to produce red light of frequency 4.55×1014 HzHz ? (see Appendix FF from the textbook for data about the electron)
- Calculate the maximum wavelength, Amax, of electromagnetic radiation that could eject electrons from the surface of copper, which has a work function of 7.26 x 10-1⁹ J. Amax = λ = m If the maximum speed of the emitted photoelectrons is 4.92 x 106 m/s, what wavelength of electromagnetic radiation struck the surface and caused the ejection of the photoelectrons? mProblem 10: We observe photons of light coming from a bright star in the night sky. One of those photons has a frequency 6.9 x 10¹4 Hz (or cycles per second). DS What is the energy of the photon in joules? Energy -A(n) ultraviolet photon has a wavelength of 0.000400 cm. Find the momentum, the frequency, and the energy of the photon in electron volts. (a) the momentum kg. m/s (b) the frequency Hz (c) the energy of the photon in electron volts eV