Calculate the hydrogen ions and electron densities in the 109 Hz plasma fraction.
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Calculate the hydrogen ions and electron densities in the 109 Hz plasma fraction.

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- 1. Pressure and bulk modules of an electron gas. (a) Derive a relation connecting the 3 pressure and volume of an electron gas at OK. Hint: Use the result of U == the relation between & and electron concentration. The result may be written as 200 3V 5p B = = p= 10U 3 9V of the electron gas contribution to B. NE N&F and . др (b) Show that the bulk modules B = -V. of an electron gas at OK is av . 5 (c) Estimate for potassium, using Table 1 of the textbook, the valueCalculate the fraction of atom sites that are vacant for the material at its melting temperature of 570 K. The energy for vacancy formation is 0.56 eV/atom, and Boltzmann's constant, K=8.62x105 eV/atom-K. O a. 1.11 x10-5 O b. 1.36 x10-5 O c. 1.32 x10-5 O d. 1.22 x10-5True/False The particle transport loss due to diffusion in a circular tube is dependent on tube diameter and particle diffusivity.
- A Geiger-Muller tube is a type of gas-filled radiation detector. It can detect particles like X-rays, alpha particles, and beta rays (electrons). This is useful in quantizing the activity of a radioactive source or determining if an area containing radioactive material is safe to enter. If a Geiger counter is filled with 1 mol of argon gas at pressure P = 1.0620 × 10ª Pa and temperature T = 20.0 °C, what is the density p of the gas in this Geiger tube in grams per cubic centimeter? The atomic mass of argon is aa, = 39.948 g/mol. g/cm3#3Pls help on this question.