1. Text book problem 2.1 Plot the energy spectra from a tungsten tube with the following kVp values: 120 keV, 80 keV, 60 keV and 40 keV.
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Q: solve equation Fmag = evB = _______?_______ (in terms of me, v, r) for the speed of the electron…
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- AI answered the problem this way. Is this correct? From the text you've provided, it seems like the problem at hand is to calculate the wavelength of a photon emitted when singly ionized helium (He+) transitions from the n=3n=3 to n=2n=2 state. Since He+ is a single-electron ion, it behaves like a hydrogen atom, so we can apply the same equations and principles. The text mentions the Balmer series, which corresponds to transitions to n=2n=2. The Balmer-alpha line, often referred to as the Hydrogen-alpha or Hα line, corresponds to the transition from n=3n=3 to n=2n=2 in hydrogen, and its wavelength is 656 nm. Since the helium ion (He+) behaves similarly to hydrogen in this context, the answer to the problem would also be 656 nm. The emitted photon has a wavelength of 656 nm.Please explain in an in-depth answer with steps. I already have the answer but I don't understand it. A proton and an electron have the same de Broglie wavelength. How do their speeds compare?Solve equation ( Fmag = evB = me v^2/r) for the speed of the electron. Write in terms of variable me, e, r, B. v = _______?__________
- Part A Applying the Bohr model to a triply ionized beryllium atom (Be³+, Z = 4), find the shortest wavelength of the Lyman series for Be³+. Express your answer using four significant figures. ΠΫΠΙ ΑΣΦ λ = Submit Request Answer Part B |AE| = Applying the Bohr model to a triply ionized beryllium atom (Be³+, Z = 4), find the ionization energy required to remove the final electron in Be³+. Express your answer using three significant figures. 5 ΑΣΦ Submit ? Request Answer nm ? eVThe Balmer series, or Balmer lines in atomic physics, is one of a set of six named series describing the spectral line emissions of the hydrogen atom. The Balmer series is due to transitions of electrons to the energy level with n=2. Using the ideas and treatment seen in class, find the three largest wavelengths corresponding to lines of the Balmer series. Express your results in nm.Calculate the wavelength of an electron (mass= 9.109 x10-28 g) that is traveling 6.50 × 10³ m/s. i E