2. a) Determine the theoretical values of the first and second ionization energies for the element whose value of Z is 18. b) Determine the electronic affinity value for the anion, A-, whose quantum numbers of differential electron are: (4, 1, 0, -1/2).
2. a) Determine the theoretical values of the first and second ionization energies for the element...
1. Be the element M +, whose quantum numbers of the differential electron (considering the neutral element) are: (5, 2, -1, -1/2), Determine the following: a) Electronic configuration b) Period c) Block d) Group or family and name of the group or family e) Locate it in the periodic table f) Determine the values of the four quantum numbers for your differential electron. g) Determine the values of the four quantum numbers for the first sub-level electron s found in...
please explain why
3. The first six ionization energies (kJ/mol) of a certain SECOND-ROW element are as follows: Ij = 1,086 12 = 2350 13 = 4620 14 = 6220 Is = 38,000 16 = 47,261 The most likely identity of this element is a) B b) 0 c) N d) Be e) C
Give the name of the element fitting each of the following descriptions. a. The element whose +3 cation has the same configuration as krypton. b. The element whose -2 anion has the same configuration as xenon. c. The element from the first 10 elements that would be most similar in properties to franicum. d. The Period 2 element having 4 valence electrons. e. The Period 4 element having a half filled p subshell in the valence shell. f. The Period...
Element J was found to have the following ionization energies (in kJ/mol) 1st IE 2nd IE 3rd IE 4th IE 5th IE 6th IE 631 1235 2389 7099 8844 10720 How many valence electrons does element J have? Explain. (2) If element J is found in the fourth period, identify element J. (1) Write the electronic configuration for element J. (1) Write complete sets of quantum numbers for each of the valence electrons (i.e. n, l, and ml) that you...
Rb : [kr] Rb++[Ar]4323d104p) b Why is the second ionization energy much greater than the first? Second ionization energy is always 4 times greater than the first. After removal of the second electron, rubidium has a configuration of noble gas. The second electron is removed from 4p, which is much closer to the nucleus than 58, Rb has a configuration of noble gas, which is stable. Submit What experiments could be done to provide some evidence that the correct formulation...
Question 1 (1 point) If the first four ionization energies of an element Z are 483, 5038, 10120, and 15640 kJ/mol. What is the most likely formula for the stable lon of Z OZ Oz* Oz2+ Oz2- Oz3+
4) Which element has the highest electronegativity? A) Ge B) O C) B D) Ca 5) Which element has the highest electron affinity? A) Ge В) 0 С) в D) Ca E)K 6) of the 3 elements fluorine, bromine, and calcium, has the highest ionization energy and _has the lowest ionization energy. (Note that we are considering the first ionization energy). A) bromine; calcium B) calcium; fluorine C) fluorine; bromine D) fluorine; calcium E) none of these 7) Based upon...
Rank the following in terms of decreasing first ionization energies? OB > Be > >N > Ne O Ne > > N > Be > B Ne > >N> B> Be O Ne > N >> B > Be O Ne > N> >Be > B Which electron configuration denotes an atom in its ground state? 0 0 0 All of the orbitals in a given electron shell have the same value as the quantum number O magnetic spin O...
1. Using the Slater rule, determine the effective nuclear charge of platinum. 2. For element M, whose electronic configuration of its differential electron is: (5, 2, +1, -1/2), answer: a) Which orbital has the greatest screen effect, 6s, 5d or 4f (based on your answer with mathematical calculations)? b) Determine the value of Z * for the M + ion
25. The first six ionization energies for the elements X and Y are shown in the table below. Identify possible names or Z numbers for the elements X and Y. Note: ionization energy units are not given, only the relative size of the lonization Energies. Ionization Energy Y first 175 100 395 225 second 3,400 3,900 9,875 12,750 3,625 4,700 10,675 13,500 third fourth fifth sixth
25. The first six ionization energies for the elements X and Y are shown...