Search

work function lithium

Input interpretation

lithium | work function
lithium | work function

Results

2.93 eV
2.93 eV
polycrystalline | 2.93 eV
polycrystalline | 2.93 eV

Threshold frequency

7.085×10^14 Hz (hertz)
7.085×10^14 Hz (hertz)

Electromagnetic frequency range

visible light
visible light

Unit conversion

4.69×10^-19 J (joules)
4.69×10^-19 J (joules)

Comparisons as energy

 ≈ ( 0.22 ≈ 1/5 ) × Rydberg energy ( ≈ 2.2×10^-18 J )
≈ ( 0.22 ≈ 1/5 ) × Rydberg energy ( ≈ 2.2×10^-18 J )
 ≈ (0.3 to 1.5) × energy of a covalent bond ( 3×10^-19 to 1×10^-18 J )
≈ (0.3 to 1.5) × energy of a covalent bond ( 3×10^-19 to 1×10^-18 J )
 ≈ (1.1 to 1.3) × energy of a photon of green light ( 2.2 to 2.5 eV )
≈ (1.1 to 1.3) × energy of a photon of green light ( 2.2 to 2.5 eV )

Corresponding quantities

Electromagnetic wave frequency ν from E = hν:  | 708 THz (terahertz)  | 7.085×10^14 Hz (hertz)
Electromagnetic wave frequency ν from E = hν: | 708 THz (terahertz) | 7.085×10^14 Hz (hertz)
Thermodynamic temperature T from E = kT:  | 34001 K (kelvins)
Thermodynamic temperature T from E = kT: | 34001 K (kelvins)
Photon wavelength λ from E = hc/λ:  | 423 nm (nanometers)
Photon wavelength λ from E = hc/λ: | 423 nm (nanometers)
Spectroscopic wavenumber ν^~ from ν^~ = E/(hc):  | 2.363×10^6 m^(-1) (reciprocal meters)  | 23632 cm^(-1) (reciprocal centimeters)
Spectroscopic wavenumber ν^~ from ν^~ = E/(hc): | 2.363×10^6 m^(-1) (reciprocal meters) | 23632 cm^(-1) (reciprocal centimeters)