Question: Part I (G&D 1): Write Matlab Code to model the characteristics of Hydrogen and Hydrogen- Like Ions. Carefully label all your graphs. Units of length

Part I (G&D 1): Write Matlab Code to model the characteristics of Hydrogen and Hydrogen- Like Ions. Carefully label all your graphs. Units of length for your graphs should be meters or nanometers (where appropriate), and units of energy should be electron volts (eV). 1). Write a code that calculates the radii of atoms and ions in the n'th quantum level. Calculate and fill in a table of radii for the first four energy states of H, He+ and Li+2. 2) Write a code that calculates the energy differences between levels in Hydrogen and the wavelength of emitted photons for electrons transitioning from a higher energy level to a lower one. Calculate and graph the energy and wavelengths of photons emitted from an excited H atom starting from the n=10 to n=9; n= 10 to n=8..., n=10 to n=1. Indicate the type of light emitted (UV, visible, IR, etc). This should be a bar graph, not a continuous graph. Part I (G&D 1): Write Matlab Code to model the characteristics of Hydrogen and Hydrogen- Like Ions. Carefully label all your graphs. Units of length for your graphs should be meters or nanometers (where appropriate), and units of energy should be electron volts (eV). 1). Write a code that calculates the radii of atoms and ions in the n'th quantum level. Calculate and fill in a table of radii for the first four energy states of H, He+ and Li+2. 2) Write a code that calculates the energy differences between levels in Hydrogen and the wavelength of emitted photons for electrons transitioning from a higher energy level to a lower one. Calculate and graph the energy and wavelengths of photons emitted from an excited H atom starting from the n=10 to n=9; n= 10 to n=8..., n=10 to n=1. Indicate the type of light emitted (UV, visible, IR, etc). This should be a bar graph, not a continuous graph
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