Ethane is a simple hydrocarbon molecule consisting of two carbon atoms and six hydrogen atoms (C2H6). In the context of polyethylene, ethane serves as the monomer that undergoes polymerization, a chemical process where multiple ethane molecules are linked together to form long chains of polyethylene. Thus, ethane acts as the building block from which the larger polymer structure is created.
Ethane does not have any molecule of carbon dioxide. However when ethane undergoes combustion then two molecules of carbon dioxide are formed (as ethane contains two carbon atoms).
a monomer Polymers are composed of monomers.
I am presuming that you are asking how many carbon dioxide (CO2) molecules will be formed when two ethane (C2H6) molecules burn in a plentiful supply of oxygen. The following balanced equation is that of the burning of ethane in a plentiful supply of oxygen: C2H6 + 3.5O2 -----> 2CO2 + 3H2O. The number before each of the molecules in the equation tells us how many there are in this reaction. This means that for every one ethane molecule that is burnt, two carbon dioxide molecules are produced.
Ethane and methane do not contain functional groups. They are simple hydrocarbons consisting of only carbon and hydrogen atoms bonded together. Functional groups are specific arrangements of atoms in organic molecules that determine their chemical properties.
Polymers formed from ethene include polyethylene (PE) and ethylene-vinyl acetate (EVA). These polymers have a wide range of applications due to their flexibility, durability, and resistance to moisture and chemicals. Polyethylene is commonly used in packaging, while EVA is used in footwear, adhesives, and solar cell encapsulation.
In polyethylene, ethane molecules are converted into ethylene molecules through a process called cracking. Ethylene molecules are then polymerized to form the long chains of polyethylene. Ethane serves as the starting material for the production of ethylene, which is the building block of polyethylene.
The monomer
Polyethylene is the polymer formed when lots of ethane molecules are joined together through a process called polymerization. It is a widely used plastic material in various applications due to its versatility and flexibility.
You think probable to polymerization.
Low-density polyethylene: (C2H4)n where the n subscript is a general way of expressing that the mer repeats n times. In most cases the LDPE will have a wide range of n values for all the different polymer molecules but they will mostly fall in a certain range. LDPE usually has an average molecular weight of 10,000 to 30,000
Ethane does not have any molecule of carbon dioxide. However when ethane undergoes combustion then two molecules of carbon dioxide are formed (as ethane contains two carbon atoms).
a monomer Polymers are composed of monomers.
To find the number of molecules of ethane in 0.334 grams, you would first convert the mass to moles using the molar mass of ethane. Then, you can use Avogadro's number (6.022 x 10^23 molecules/mol) to find the number of molecules in that number of moles.
To determine the number of molecules in 60 g of ethane, you need to first calculate the number of moles of ethane using its molar mass (30 g/mol). Then, you can convert moles to molecules using Avogadro's number, which is 6.022 x 10^23 molecules/mol.
I am presuming that you are asking how many carbon dioxide (CO2) molecules will be formed when two ethane (C2H6) molecules burn in a plentiful supply of oxygen. The following balanced equation is that of the burning of ethane in a plentiful supply of oxygen: C2H6 + 3.5O2 -----> 2CO2 + 3H2O. The number before each of the molecules in the equation tells us how many there are in this reaction. This means that for every one ethane molecule that is burnt, two carbon dioxide molecules are produced.
Ethane and methane do not contain functional groups. They are simple hydrocarbons consisting of only carbon and hydrogen atoms bonded together. Functional groups are specific arrangements of atoms in organic molecules that determine their chemical properties.
30 g of ethane will have 6.023 x 1023 molecules of ethane So, 5.5 g will have 1.104 x 1023 molecules of ethane Since there are two carbon atoms, in one molecule of ethane, 5.5 g of ethane will have 2.208 x 1023 atoms of carbon.