What element is represented by the following electron configuration?
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- Using complete subshell notation ( 1s22s22p6, and so forth), predict the electron configurations of the following ions. (a) N3- (b) Ca2+ (c) S- (d) Cs2+ (e) Cr2+ (f)Gd3+arrow_forwardWrite complete electron configurations for atoms whose electron configurations end as follows. a. 4p2 b. 3d10 c. 5s1 d. 4p6arrow_forwardGive the symbol of the element of lowest atomic number that has (a) an f subshell with 7 electrons. (b) twelve d electrons. (c) three 3p electrons. (d) a completed p subshell.arrow_forward
- The electron configuration of the isotope 16O is 1s22s22p4. What is the electron configuration of the isotope 18O?arrow_forwardAre the following statements true for the hydrogen atom only, true for all atoms, or not true for any atoms? a. The principal quantum number completely determines the energy of a given electron. b. The angular momentum quantum number, l, determines the shapes of the atomic orbitals. c. The magnetic quantum number, ml, determines the direction that the atomic orbitals point in space.arrow_forwardGive electron configurations according to the Bohr model for each of the following elements. Try to not use Figure 3.11, but instead determine the configuration based on your knowledge of the number of electrons in each atom and the maximum number of electrons in each Bohr orbit. Indicate which of these elements you expect to be the most reactive and the least reactive. a. B b. Si c. Ca d. F e. Ararrow_forward
- Based on the Aufbau principle and the n + rule, which of following statements is correct? (a) the 4s orbital fills before the 4p orbitals (b) the 5d orbitals fill before the 6s orbital (c) the 3d orbitals fill before the 3p orbitals (d) the 4f orbitals fill before the 5p orbitalsarrow_forwardGive electron configurations according to the Bohr model for each of the following elements. Indicate which of these elements you expect to be the most reactive and the least reactive. a. He b. Al c. Be d. Ne e. Oarrow_forwardIonization energy is the energy required to remove an electron from an atom in the gas phase. The ionization energy of gold is 890.1 kJ/mol. Is light with a wavelength of 225 nm capable of ionizing a gold atom (removing an electron) in the gas phase? (l mol gold = 6.022 1023 atoms gold.)arrow_forward
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