Problem 2
Astatine is the rarest naturally occurring element in the Earth's crust, with a total estimated mass of 30 g at any point in time; assume all astatine is the most stable naturally occurring isotope At. (a) Estimate how many At atoms occur naturally on Earth at any point in time. (b) Bismuth, obtained as a by-product of lead purification, is concentrated by adding magnesium and calcium to a lead–bismuth mixture; bismuth forms alloy A containing 7.91 % Ca and 9.60 % Mg by mass, with no lead. Determine the empirical formula of alloy A. (c) Alloy A reacts with chlorine gas to form bismuth and two ionic compounds B and C in a 2:1 ratio. Write the formulae of B and C. (d) Astatine is made by bombarding Bi with particles; the nuclei fuse to form At and two neutrons. Write the mass and atomic numbers of the astatine isotope. (e) Excess bismuth is removed with concentrated nitric acid, forming bismuth(III) nitrate, water and a colourless gas of molar mass 30.01 g mol. Write the equation. (f) BrAt is made in two steps: reacts with D to give only E, and E reacts with to give BrAt and D; the mass spectrum of E shows two major peaks of nearly equal intensity at m/z 205.82 and 207.82. Write the formulae of D and E. (g) 3.60 g of BrAt is synthesised; the half-life of this At isotope is 433 minutes. How long (to the nearest hour) until only 3.65 mg of BrAt remains?
Step 3 of 5: Nuclear equation
Analysis
Conservation of mass and atomic numbers: and , so the isotope is At.