The two products derived from ethylene are polyethylene resin and ethylene glycol.
Ethylene is the simplest form of organic compounds and is also known as an alkene. It contains carbon-carbon double bonds.
Ethylene is colourless and is also flammable. It also has a sweet taste and odour.
Ethylene belongs to a group of plant growth regulators which are widely used for ripening fruits and for the production of more flowers and fruits.
Ethylene is an important industrial organic chemical.
Therefore, The two products derived from ethylene are polyethylene resin and ethylene glycol.
Learn more about Ethylene, here:
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Answer:
Freon, Phosgene, and Benzene are three examples of products derived from ethylene. Hope this helps :)
Explanation:
Answer:
Iron can not form iron(i) selenide however it can form iron(ii) selenide.
Explanation:
The possible oxidation states of iron are +2 and +3.
Iron can form iron (ii) selenide.
The formula of iron (ii) selenide is FeSe.
In iron (ii) selenide the oxidation state of iron is +2.
The ratio of both atoms are 1:1.
Its molecular weight is 134.82 g/mol.
It is toxic compound.
Its melting point is 965°C.
Its density is 4.72 g/cm³.
Iron can also form iron (iii) selenide.
The formula of iron (iii) selenide is Fe₂Se₃.
In iron (iii) selenide the oxidation state of iron is +3.
The ration of both atoms are 2:3.
It also known as ferric selenide.
Its molecular weight is 348.57 g/mol.
B: our solar system
C: chocolate chip cookie
dough
D: the Milky Way galaxy
A. Plum Pudding
This is also a simple google search
Sr(s) + F₂(g) → SrF₂(s)
Sr(s) + F₂(g) → SrF₂(s)
Solid Strontium reacts with Fluorine gas in a synthesis reaction to form Strontium Fluoride. The balanced chemical equation is Sr (s) + F2 (g) -> SrF2 (s).
The reaction of solid strontium (Sr) with fluorine gas (F2) is a synthesis reaction, and it forms strontium fluoride (SrF2). The balanced chemical equation for this reaction is:
Sr (s) + F2 (g) → SrF2 (s)
In this equation, 's' stands for solid, 'g' stands for gas, and the arrow ( → ) indicates the direction of the reaction from reactants to products.
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The force being applied toward the right is greater. So the box will move in the direction of the greater force being applied. The box will move toward the right. Hope this helps!!!