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what's the maximum energy of electrons that 20cm of manganese can block?

Input interpretation

kinetic energy of particle |  incident particle | e^- (electron) radiation absorber | manganese thickness | 20 cm
kinetic energy of particle | incident particle | e^- (electron) radiation absorber | manganese thickness | 20 cm

Result

63 GeV (gigaelectronvolts)
63 GeV (gigaelectronvolts)

Comparison as energy for 63 GeV

 ≈ 0.68 × mass-energy equivalent of a Z boson ( ≈ 1.5×10^-8 J )
≈ 0.68 × mass-energy equivalent of a Z boson ( ≈ 1.5×10^-8 J )
 ≈ 0.78 × mass-energy equivalent of a W boson ( ≈ 1.3×10^-8 J )
≈ 0.78 × mass-energy equivalent of a W boson ( ≈ 1.3×10^-8 J )
 ≈ 1.3 × initial per beam operating energy of the CERN Large Electron Positron Collider in 1983 ( ≈ 8×10^-9 J )
≈ 1.3 × initial per beam operating energy of the CERN Large Electron Positron Collider in 1983 ( ≈ 8×10^-9 J )

Comparison as kinetic energy for 63 GeV

 ≈ ( 0.063 ≈ 1/16 ) × approximate kinetic energy of a flying mosquito ( ≈ 1.6×10^-7 J )
≈ ( 0.063 ≈ 1/16 ) × approximate kinetic energy of a flying mosquito ( ≈ 1.6×10^-7 J )

Absorber material properties

atomic number (Z) | 25 atomic mass number (A) | 54.938044 〈Z/A〉 | 0.4550581 nuclear collision length (λ_T) | 81.4 g/cm^2 nuclear interaction length (λ_I) | 131.4 g/cm^2 radiation length (X_0) | 14.64 g/cm^2 minimum ionization (- dE/ dx |_ min) | 1.428 MeV/(g/cm^2) density | 7.3 g/cm^3 mean excitation energy | 272 eV Molière radius | 13.74 g/cm^2 pion collision length | 106.7 g/cm^2 pion interaction length | 160.2 g/cm^2 plasma energy | 53.02 eV
atomic number (Z) | 25 atomic mass number (A) | 54.938044 〈Z/A〉 | 0.4550581 nuclear collision length (λ_T) | 81.4 g/cm^2 nuclear interaction length (λ_I) | 131.4 g/cm^2 radiation length (X_0) | 14.64 g/cm^2 minimum ionization (- dE/ dx |_ min) | 1.428 MeV/(g/cm^2) density | 7.3 g/cm^3 mean excitation energy | 272 eV Molière radius | 13.74 g/cm^2 pion collision length | 106.7 g/cm^2 pion interaction length | 160.2 g/cm^2 plasma energy | 53.02 eV