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Formula for lead azide

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Anonymous

14y ago
Updated: 8/16/2019

Formula: Pb(N3)2

empirical: PbN6

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14y ago

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Related Questions

What is the color of lead azide?

Lead (II) azide has the molecular formula of Pb(N3)2. Lead (II) azide has the molecular weight of 291.2 grams per mole.


What is the formula of lead azide?

Formula: Pb(N3)2empirical: PbN6


What is the empirical formula for sodium azide?

The empirical formula for sodium azide is NaN3.


What is the melting point of lead azide?

Lead azide's melting point is 350 C. It would also explode when it reaches this temperature.


What is the Difference between lead and azide?

Lead is a metal. It is the 82nd element. It forms the Pb2+ and Pb4+ ions. Azide is a negative ion with the formula N3-. It cannot occur on its own , it needs some positive ion to balance its charge (example the sodium ion Na+ to form sodium azide, NaN3). Compounds with this ion, called azides, are explosive.


What is the chemical formula for sodium azide?

NaN3


What is the formula of barium azide?

Formula: Ba(N3)2Empirical: BaN6


What is the boiling point of lead azide?

There is no boiling point of lead azide, as it would blow up when it reaches its melting and auto-ignition temperature of 350 Celsius


What is sodium azide?

Sodium azide is a chemical compound with the formula NaN₃. It is commonly used as a preservative and a bacteriostatic agent in laboratory settings. However, it is highly toxic and can release toxic fumes when in contact with certain metals.


What is NaN2 formula for?

NaN2 does not have a known chemical formula. It is likely a typo or error, as the correct formula for sodium azide is NaN3. Sodium azide is commonly used in airbags and as a reagent in organic synthesis.


What is the molecular weight of lead azide?

291,23 g/mol


What is Alkaline Potassium Iodide Azide?

Alkaline potassium iodide azide is a compound used in analytical chemistry for the colorimetric determination of lead. It is a reagent that reacts with lead to form a yellow color complex, which can be quantified to measure the concentration of lead in a sample. It is important to handle this compound with care due to its toxicity and potential to form explosive compounds.