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Interpretation : Argon is used in everyday lighting even though krypton and xenon produce whiter light and last longer to be hypothesized.
Concept Introduction : The elements of group 18 are called a noble gas. Helium, neon, argon, krypton, xenon, and radon are among the elements of group 18.
Argon is used in everyday lighting because of its inertness and it is perfectly fitting into the filament of the atmosphere.
Different lighting applications use argon, neon, krypton, and xenon.
Compared to conventional argon bulbs, krypton and xenon bulbs are brighter, sharper, and stand for a longer time. These bulbs are frequently used in flashlights, chandeliers, and the headlights of high-end automobiles.
Everyday lightbulbs like those in lights contain argon. The inert nature of argon makes it the perfect atmosphere for filament.
Chapter EH Solutions
Glencoe Chemistry: Matter and Change, Student Edition
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- Can you please explain to me this problem im very confused and lost. Help me step by step and in detail im soo lost.arrow_forward2) There are many forms of cancer, all of which involve abnormal cell growth. The growth and production of cells, called cell proliferation, is known to involve an enzyme called protein farnesyltransferase (PFTase). It is thought that inhibitors pf PFTase may be useful as anticancer drugs. The following molecule showed moderate activity as a potential PFTase inhibitor. Draw all stereoisomers of this compound. HO OHarrow_forwardConsidering rotation around the bond highlighted in red, draw the Newman projection for the most stable and least stable conformations when viewed down the red bond in the direction of the arrow. Part 1 of 2 H₁₂C H H Draw the Newman projection for the most stable conformation. Select a template to begin. Part 2 of 2 Draw the Newman projection for the least stable conformation. G 心arrow_forward
- personality of each of them in terms of nucleophile vs. electrophile (some can be considered acids/bases but we are not looking at that here). Note you may have to use your growing intuition to figure out the personality of one of the molecules below but I believe in you! Rationalize it out based on what we have called strong versus weak electrophiles in past mechanisms. Consider using the memes below to help guide your understanding! A OH O B CH3 C Molecule A: [Select] Molecule B: [Select] Molecule C: [Select] Molecule D: [Select] > H D OHarrow_forward4) Which oxygen atom in the structure below is most basic / nucleophilic? Please explain by discussing the electron density around each oxygen atom. Show at least three resonance structures for the compound. оогоarrow_forwardCan you show me this problem. Turn them into lewis dot structures for me please and then answer the question because I cant seem to comprehend it/ The diagrams on the picture look too small I guess.arrow_forward
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