Objective: Record and interpret the Balmer series of lines for hydrogen other line spectra in the visible region
The line spectra of light-emitting atoms are uniquely characteristic for each specific chemical element, although they become ...
more
Objective: Record and interpret the Balmer series of lines for hydrogen other line spectra in the visible region
The line spectra of light-emitting atoms are uniquely characteristic for each specific chemical element, although they become ...
more
Objective: Carry out high-precision measurements of absorption and emission lines
The resolution of a spectrometer is often assessed in terms of whether the two sodium D-lines can be distinguished. This experiment uses a digital spectrometer ...
more
Objective: Carry out high-precision measurements of absorption and emission lines
The resolution of a spectrometer is often assessed in terms of whether the two sodium D-lines can be distinguished. This experiment uses a digital spectrometer ...
more
• Record and evaluate the Franck-Hertz curve for mercury.
• Determining the separation ΔU of current maxima or minima.
• Compare the voltage intervals with the excitation energies of mercury ...
more
• Record and evaluate the Franck-Hertz curve for neon and observe emission of light.
• Compare the distribution of current maxima with the excitation energies of neon atoms.
• Observe the light ...
more
• Record and evaluate the Franck-Hertz curve for neon and observe emission of light.
• Compare the distribution of current maxima with the excitation energies of neon atoms.
• Observe the light ...
more
• Measure the collector current IR as a function of the accelerating voltage UA.
• Compare the positions of the current maxima with the known critical potentials of the helium atom.
• Identify ...
more
Objective: Record and interpret the Balmer series of lines for hydrogen other line spectra in the visible region
The line spectra of light-emitting atoms are uniquely characteristic for each specific chemical element, although they become ...
more
• Record and evaluate the Franck-Hertz curve for mercury.
• Determining the separation ΔU of current maxima or minima.
• Compare the voltage intervals with the excitation energies of mercury ...
more
• Measure the collector current IR as a function of the accelerating voltage UA.
• Compare the positions of the current maxima with the known critical potentials of the helium atom.
• Identify ...
more