Chemistry, 04.02.2020 01:58, elarracadas22
Calculate the mass defect and the binding energy/nucleon of the nuclide^9 4 be, which has a mass of 9.012 182 24 amu. the mass of a proton is 1.007 276 47 amu and the mass of a neutron is 1.008 664 90. one amu = 1.6605 x 10^-27 kg and the speed of light is 3.00 x 10^8 m/s.
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Chemistry, 22.06.2019 14:30, joejoefofana
Consider the reduction reactions and their equilibrium constants. cu+(aq)+eββ½βββcu(s)pb2+(aq)+2eββ½βββ pb(s)fe3+(aq)+3eββ½βββfe(=6.2Γ108=4. 0Γ10β5=9.3Γ10β3 cu + ( aq ) + e β β½ β β β cu ( s ) k =6.2Γ 10 8 pb 2 + ( aq ) +2 e β β½ β β β pb ( s ) k =4.0Γ 10 β 5 fe 3 + ( aq ) +3 e β β½ β β β fe ( s ) k =9.3Γ 10 β 3 arrange these ions from strongest to weakest oxidizing agent.
Answers: 3
Calculate the mass defect and the binding energy/nucleon of the nuclide^9 4 be, which has a mass of...
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