There are two cations in K2S. Potassium (K) has a +1 charge, so there are two potassium (K) cations in the compound K2S.
Formula for potassium sulfide is K2S.
3.3 moles of K2S 3.3 moles of S-2 6.6 moles of K+1
The correct name for the compound K2S is potassium sulfide.
The formula for a compound formed between potassium and sulfur would be K2S, as potassium has a +1 charge and sulfur has a -2 charge. This results in a 2:1 ratio of potassium ions to sulfur ions to balance the charges in the compound.
The reaction between potassium iodide (KI) and barium sulfide (BaS) will produce potassium sulfide (K2S) and barium iodide (BaI2) as products. This reaction involves a double displacement reaction, where the cations and anions of the two compounds switch partners.
Formula for potassium sulfide is K2S.
3.3 moles of K2S 3.3 moles of S-2 6.6 moles of K+1
Potassium has many sulfide: K2S, K2S4, K2S2, K2S6, K2S3, K2S5. The most known is K2S.
The correct name for the compound K2S is potassium sulfide.
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If you have 2 moles of K+ for every mole of K2S and Molarity (M) is Moles per Liter. Then you know that you have .30 M of K2S. The way that you do that is setting up a series of conversion factors like so:(.15moles k2s/liter) x (2 moles of K/ 1 mole of K2S) = .30 moles k/ liter.The moles of K2S cancel out and you are left with moles of K per liter.
The formula for a compound formed between potassium and sulfur would be K2S, as potassium has a +1 charge and sulfur has a -2 charge. This results in a 2:1 ratio of potassium ions to sulfur ions to balance the charges in the compound.
The reaction between potassium iodide (KI) and barium sulfide (BaS) will produce potassium sulfide (K2S) and barium iodide (BaI2) as products. This reaction involves a double displacement reaction, where the cations and anions of the two compounds switch partners.
To find the number of grams in 3.3 moles of potassium sulfide (K2S), you need to calculate the molar mass of K2S, which is 110.26 g/mol. Then, you can multiply the molar mass by the number of moles to get the grams. In this case, 3.3 moles x 110.26 g/mol = 363.858 g.
It is K2S.
i don't know....... maybe the cation is sp3 hybridization?
No, K2S is not an ironic bond. K2S represents a chemical bond between a potassium (K) atom and a sulfur (S) atom, where they share electrons to form a stable compound. Irony refers to situations where the outcome is different from what is expected.