Decide whether each of the molecules in the table below is stable, in the exact form in which it is drawn, at pH = 1. If you decide at least one molecule is not stable, then redraw one of the unstable molecules in its stable form below the table. (If more than one molecule is unstable, you can pick any of them to redraw.) о stable Ostable unstable unstable OH OH ما stable O stable unstable HO O unstable
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- Decide whether each of the molecules in the table below is stable, in the exact form in which it is drawn, at pH = 2. If you decide at least one molecule is not stable, then redraw one of the unstable molecules in its stable form below the table. (If more than one molecule is unstable, you can pick any of them to redraw.) OH Ostable O unstable O stable O unstable OH OH u Ostable O unstable O stable O unstable 0 AJ :0 Ahm X trDecide whether each of the molecules in the table below is stable, in the exact form in which it is drawn, at pH=1. If you decide at least one molecule is not stable, then redraw one of the unstable molecules in its stable form below the table. (If more than one molecule is unstable, you can pick any of them to redraw.) OH HO Ostable of Ounstable OH Ostable Ounstable Ostable Ounstable O stable Ounstable : G Π P alo.Decide whether each of the molecules in the table below is stable, in the exact form in which it is drawn, at pH = 1. If you decide at least one molecule is not stable, then redraw one of the unstable molecules in its stable form below the table. (If more than one molecule is unstable, you can pick any of them to redraw.) OH O stable O unstable OH X 5 O stable O unstable O stable O stable O unstable OH O unstable OH
- Decide whether each of the molecules in the table below is stable, in the exact form in which it is drawn, at pH = 2. If you decide at least one molecule is not stable, then redraw one of the unstable molecules in its stable form below the table. (If more than one molecule is unstable, you can pick any of them to redraw.) e OH stable O unstable stable O unstable OH OH ge O stable O unstable O stable O unstable 0:0 X +7Decide whether each of the molecules in the table below is stable, in the exact form in which it is drawn, at pH=2. If you decide at least one molecule is not stable, then redraw one of the unstable molecules in its stable form below the table. (If more than one molecule is unstable, you can pick any of them to redraw.) OH OH HO Ostable Ounstable O stable Ounstable HO Click and drag to start drawing a structure. stable Ounstable O stable Ounstable ☐ X 口: G EX oloDecide whether each of the molecules in the table below is stable, in the exact form in which it is drawn, at pH = 2. If you decide at least one molecule is not stable, then redraw one of the unstable molecules in its stable form below the table. (If more than one molecule is unstable, you can pick any of them to redraw.) OH OH Ostable Ounstable Ostable unstable Ostable Ounstable OH 15 OH Ostable Click and drag to start drawing a structure. Ounstable O '7 X 0:0 X to S
- G Decide whether each of the molecules in the table below is stable, in the exact form in which it is drawn, at pH = 11. If you decide at least one molecule is not stable, then redraw one of the unstable molecules in its stable form below the table. (If more than one molecule is unstable, you can pick any of them to redraw.) X OH Ostable Ostable Ounstable Ounstable OH OH Ostable Ounstable stable Ounstable [H ח' :0 X GWhat is a triplet state? Are there molecules that have a triplet base state?You will not find “hydroxide” in the stockroom, but you will find sodium hydroxide (NaOH) andpotassium hydroxide (KOH). Lithium hydroxide (LiOH) is expensive and used in spacecraft airfilters since hydroxide reacts with carbon dioxide, and lithium is lighter than sodium or potassium.Cesium and francium hydroxides are very expensive and little used. Is this information consistentwith your answer to the previous question?
- Using the table of bond dissociation energies, the AH for the following reaction is CH4 + 20 2→ CO 2 + 2 H2O Bond D (kJ/mol) C-H 413 O=O 495 =0 799 463 -52 154 -1246 684 -808 kJ.Molecules must (absorb, liberate) energy to break theirbonds and (absorb, liberate) energy when their bonds arereformed.Thiocyanic acid (HSCN) is an inorganic acid (pKa = 1.1 at 25 °C) that can be classified as “strong” largely due to resonance stabilization of its conjugate base, thiocyanate (SCN– ). In the space provided below, draw Lewis electron dot structures of SCN- and all of its important resonance forms.