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To what extent do the electronic configurations decide the stability of oxidation states in the first series of the transition elements? Illustrate your answer with examples.
Chemistry 102
Chapter 8
The d-and f-Block Elements
Transition Metals
University of Central Florida
Drexel University
University of Toronto
Lectures
03:07
A liquid is a nearly incom…
04:38
A liquid is a state of mat…
02:04
How does the electron conf…
00:22
Which of the first transit…
01:22
How do the electron config…
02:17
04:43
Explain why transition met…
00:58
What are the oxidation sta…
01:59
04:29
Which of the transition el…
02:24
03:44
What two first-row transit…
podcast series, We're taking a look at electron configuration. We are able to look at how and why electron configuration drives reactivity as well as some of the chemical and physical properties of our elements as a result off their electron configuration due to that placement any periodic table. So what we're looking at here is our main group elements that are able to form ions where they gain or lose electrons so we can gain all those electrons. Generate irons is that either positive or negative charges associated with them. So then the electron configurations off these irons can be determined by removing electrons from the valence shell. In the case of cat ions, In the case of an ions, we have gained electrons. Food need toe add electrons to the electron configuration count, so these irons attained the same number of electrons as closest to a noble gas configuration. Just ask to and P six that would be uneducated of a full valence shell. So therefore, the electron configurations of irons is derived from mainly the group elements trying to obtain stability. So we are favorable iron configurations driven by stability
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