Polymerization is the process of linking smaller molecules to form long chains of higher molecular weight. True or False

Answers

Answer 1
True is correct answer.


Polymerization is the process of linking it has a smaller molecules to form has a long chains of higher molecular weight.

Hope it helped you.

-Charlie
Answer 2

Answer:

True

Explanation:

Polymer is made up of monomers. Monomers are the building block of polymers.  

For example, formation of polyethylene from ethylene  

H₂C=CH₂ + H₂C=CH₂ → - CH₂-CH₂-CH₂-CH₂-

Ethylene molecules add to one another through addition reaction.  


Related Questions

Josh is studying pH calculations and tests a basic solution with a pH meter. He finds that the solution has a pH equal to 9.2. What is the pOH of the solution? A) 2.5 B) 4.8 C) 9.6 D) 10.2

Answers

pOH is a measurement of the hydroxide concentration of a solution, and is calculated by 14 - pH. Therefore, your answer is B, 4.8.

As the volume of a gas or liquid ______, its density decreases

Answers

Density is related to mass and volume as;

                                   Density  =  Mass / Volume

Above relationship shows that Density is directly proportional to Mass and inversely related to Volume. Therefore, increasing the mass increases density and vice versa, and decreasing volume will increase density and vice versa.

Result:
          As the volume of a gas or liquid Increases, its density decreases.

What are the costs and benefits of using solar energy

Answers

Advantages
Solar energy is a clean and renewable energy source.Once a solar panel is installed, solar energy can be produced free of charge.Solar energy will last forever whereas it is estimated that the world’s oil reserves will last for 30 to 40 years.Solar energy causes no pollution.Solar cells make absolutely no noise at all. On the other hand, the giant machines utilized for pumping oil are extremely noisy and therefore very impractical.Very little maintenance is needed to keep solar cells running. There are no moving parts in a solar cell which makes it impossible to really damage them.In the long term, there can be a high return on investment due to the amount of free energy a solar panel can produce, it is estimated that the average household will see 50% of their energy coming in from solar panels.

 
Disadvantages
Solar panels can be expensive to install resulting in a time-lag of many years for savings on energy bills to match initial investments.Electricity generation depends entirely on a countries exposure to sunlight; this could be limited by a countries climate.Solar power stations do not match the power output of similar sized conventional power stations; they can also be very expensive to build.Solar power is used to charge batteries so that solar powered devices can be used at night. The batteries can often be large and heavy, taking up space and needing to be replaced from time to time.

 

Solar energy offers environmental benefits, reduces electricity bills, and creates jobs, but comes with high initial costs and requires sunlight consistency. Technological improvements may decrease costs over time, but solar still requires subsidies to compete with conventional energies. Storage technology is critical for solar's future reliability and cost-effectiveness.

Solar energy is a renewable energy source with numerous benefits, such as the fact that it does not produce pollution and can reduce electricity bills over time. However, the initial cost of solar panels, installation, and maintenance can be quite high, and it requires a consistent supply of sunlight to be effective.

Technological advances are making solar energy more cost-effective, but it is still more expensive compared to fossil fuel-generated power in many regions. Moreover, despite the abundance of solar energy, the technology to store it, such as batteries, requires further development to make solar energy a more reliable source.

The necessity for a consistent supply of sunlight means that solar energy systems may still need conventional backup systems, adding to the overall cost. Nonetheless, solar panels offer the advantage of working during power grid outages, and solar energy can create jobs and positively impact economies. Over time, thanks to technological progress and economies of scale, solar energy is becoming more affordable and competitive with conventional energy sources.

The debate around subsidies stems from the high cost of solar energy, as even with government incentives, solar power is not yet as economical as fossil fuels in certain countries. However, many proponents argue that these subsidies are required to foster the development of renewable energy systems for a sustainable future.

2al(c2h3o2)3 + 3baso4 → al2(so4)3 + 3ba(c2h3o2)2 which type of chemical reaction does this equation represent? f synthesis g neutralization h oxidation-reduction j double-replacement

Answers

Answer is: j. double-replacement.
Double displacement reactions - cations and anions of the two reactants switch places and form two new compounds.
Neutralizationis is reaction in which an acid and a base react quantitatively with each other. In this reaction, there are no acids and bases, only salts.
Synthesis is reaction of two or more substances combining to make a more complex substance. In this example, there is more complex substance in products.
Oxidation-reduction reactions - change in the oxidation number between the reactants and the products. In this example there is no change in oxidation number of elements.

40 POINTS!!!

8 Which equation represents what happens when a small amount of strong base is added to the buffer?

OH- + A- A2- + H2O


OH- + HA A- + H2O


H3O+ + A- HA + H2O


H3O+ + HA H2A+ + H2O

Answers

The answer to this question is OH- + HA ⇒ A- + H2O. The conjugate acid in the buffer, HA, neutralizes added strong base, OH-.
I agree with his answer. It is correct. However do you think you can help me with a question?

Blank c2h4 + blank o2 → blank co2 + blank h2o how many moles of o2 are in the chemical equation when balanced using the lowest whole numbers

Answers

The reaction is
C₂H₄ + O₂ → CO₂ + H₂O

To balance the equation, both side have same number of elements. Here,

In left hand side has                                            in right hand side has

           4 H atoms                                                       2 H atoms 

           2 C atoms                                                       1 C atom 

           2 O atoms                                                       3 O atoms 

First, we have to balance number of C atoms and number of H atoms in both side.  
To balance C atoms, '2' should be added before CO₂ and to balance H atoms, '2' should be added before H₂O. 
Then number of oxygen atoms is 2 x 2 + 2 = 6 in right hand side. So, 3 should be added before O₂ in left hand side.
After balancing the equation should be,

C₂H₄ + 3O₂ → 2CO₂ + 2H₂O


What was the action between the 2 atoms in an ionically bonded compound that caused that ionic bond to form in the first place? mutual electrons interlocked attraction between electron cloud of one atom and nucleus of the other opposite ions attracted each other sharing of outer shell electrons

Answers

Answer:
            Opposite ions attraction between the 2 atoms in an ionically bonded compound causes the ionic bond to form in the first place.

Explanation:
                   Ionic bond is the electrostatic forces of attraction between positively charged cations and negatively charged Anions. These forces are very stronger resulting in increasing several physical properties of Ionic compounds like melting point and boiling point e.t.c.

Example:

Sodium Chloride:
                           NaCl is formed by Na⁺ cation and Cl⁻ anion as follow,

Oxidation of Na;

                                      2 Na  →  2 Na⁺  +  2 e⁻

Reduction of Cl₂;

                                    Cl₂  +  2 e⁻  →  2 Cl⁻

Crystal Lattice formation is as follow,

                                  Na⁺  +  Cl⁻   →  NaCl

Answer:

opposite ions attract

What is the mole ratio of carbon dioxide to propane (C3H8) in the following equation?C3H8 + 5O2 Imported Asset 3CO2 + 4H2O

Answers

Final answer:

The mole ratio of carbon dioxide to propane in the reaction C3H8 + 5O2 -> 3CO2 + 4H2O is 3:1. This ratio indicates that for every one mole of propane combusted, three moles of carbon dioxide are produced.

Explanation:

The mole ratio of carbon dioxide (CO2) to propane (C3H8) in the chemical reaction equation, C3H8 + 5O2 -> 3CO2 + 4H2O, is 3:1. This ratio is derived from the coefficients of carbon dioxide and propane in the balanced equation. The coefficient of carbon dioxide is 3 and the coefficient of propane is 1. This means, for every one mole of propane burned, three moles of carbon dioxide are produced.

This ratio is crucial in stoichiometry which deals with the relationship between reactants and products in a chemical reaction. In practical applications, such as in combustion reactions or in calculating emissions, knowing this ratio is essential. Hence, understanding this concept is not only important in academic terms but also in real-world scenarios.

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4. How many moles of LiOH are needed to exactly neutralize 2.0 moles of H2SO4?

Answers

the balanced equation for the neutralisation reaction is as follows
2LiOH + H₂SO₄ ---> Li₂SO₄ + 2H₂O
stoichiometry of LiOH to H₂SO₄ is 2:1
both LiOH and H₂SO₄ are strong bases and strong acids respectively, therefore they completely ionise into their respective ions
1 mol of H₂SO₄ is neutralised by 2 mol of H₂SO₄
therefore 2.0 mol of H₂SO₄ is neutralised by - 2 x 2.0 = 4.0 mol of LiOH
4.0 mol of LiOH is required to neutralise 2.0 mol of H₂SO₄

Which is the correct equation for the reaction of magnesium with hydrochloric acid to produce hydrogen and magnesium chloride?
a.mg + 2 hcl → h2 + mgcl2
b.mg + hcl → h + mgcl
c.2 mg + 6 hcl → 3 h2 + 2 mgcl2
d.mg + 2 hcl → 2 h + mgcl2
e.mg + 3 hcl → 3 h + mgcl2?

Answers

Answer is: a. Mg + 2HCl → H₂ + MgCl₂.
Reduction hald reaction: 2H⁺ + 2e⁻→ H₂.
Oxidation half reaction: Mg⁰ → Mg²⁺ + 2e⁻.
In this chemical reaction, magnesium lost two electrons (oxidation, change oxidation number from 0 to +2) and hydrogen gain that two electrons (reduction, change oxidation number from +1 to 0).

What is the relationship between the size of an object and the amount of friction that is present

Answers

If an object is heavier with a greater mass, then its friction levels will also increase. This is due to the force of gravity. Speaking of its size, it depends on its weight. So basically, if the object is only physically big but has a low mass, then it barely has a relationship with friction. However, if it is big or small with a heavy weight, then the amount of friction will be more. 

Let me know if you need anything else. 
 
                   - Dotz :)

Final answer:

In static friction between solids, friction is proportional to the normal force rather than object size, and dependent on microscopic surface interactions. In fluid friction, the frictional force depends on the object's size, particularly its cross-sectional area, and velocity, affecting aerodynamics and energy efficiency.

Explanation:

The relationship between the size of an object and the amount of friction that is present depends on the type of friction involved. When considering static friction between two solid surfaces, the frictional force is generally proportional to the normal force, and not directly to the size or contact area of the object. Microscopic interactions such as the deformation of surface irregularities play a role in how much of the surface area actually comes into contact and contribute to friction. This means that as the normal force increases, such as with a heavier object, so does the frictional force up to the maximum static friction limit.

On the other hand, when considering fluid friction - such as air resistance or water resistance - the frictional force does indeed depend on the size of the object, particularly its cross-sectional area. Fluid friction increases with velocity and larger objects often experience more drag due to a larger area facing the flow, which is why streamlined designs are often used to minimize this effect. The increase in fluid friction with cross-sectional area can significantly affect the performance and energy efficiency of moving vehicles.

What is the periodic trend in atomic size and electronegativity as you move from left to right on the?

Answers

As you move from left to right on the periodic table, atomic size and electronegativity increase.

(Ionization energy increases from left to right on the periodic table, and electronegativity relates to ionization energy in that the higher the ionization energy, the higher the electronegativity.)

(Atomic radius increases from left to right on the periodic table due to the fact that electrons are gradually being added from left to right, meaning the amount of protons in the nucleus are increasing in order to keep the atom neutral, therefore atomic size/radius increases.)

How many grams of cacl2 are needed to make 713.9 g of a solution that is 29.0% (m/m) calcium chloride in water? note that mass is not technically the same thing as weight, but % (m/m) has the same meaning as % (w/w)?

Answers

The grams of CaCl2 needed to make 713.9 g of solution that is 29.0 %(m/m)is calculated as below
convert 29% into fraction = 29/100

therefore the mass of CaCl2  needed

=713 solution x 29/100=206.77 grams of CaCl2 is needed

can producers function without sunlight? Why or Why not?

Answers

The answer is no because producers need the energy from the sun in order to produce. Hope this helped!

A compound consists of 72.2% magnesium and 27.8% nitrogen by mass. what is the empirical formula

Answers

MgThe  empirical  formula   is  calculated as follows
fin the  moles of each  element
moles =  %  composition/ molar mass

magnesium(Mg) =  72.2/24 = 3moles
Nitrogen(N) = 27.8/14  = 1.986 moles

find the  moles  ration by  dividing each mole  by the smallest mole ( 1.986 moles)

that is 

magnesium)Mg)  = 3/1.986 =  1.5
Nitrogen (N)=  1.986/1.986 =1
multiply  both  the mole  ratio to remove the decimal

magnesium (Mg) = 1.5 x2 = 3
nitrogen (N)= 1 x2 =2

therefore  the empirical formula = Mg3N2

Which statements are true of precipitation reactions?


Check all that apply.


A. They are also double-replacement reactions.

B. The products are liquids.

C. All of the solids are removed from the solution.

D. They are also redox reactions.

Answers

In precipitation reactions, components of two compounds exchange to form a new, insoluble solid product, making them double-replacement reactions; however, not all products are liquids, nor does the reaction always involve a redox process. Option A is correct.

When considering which statements are true of precipitation reactions, we can confirm that:

They are also double-replacement reactions. This is true because in precipitation reactions, cations and anions from two different reactants exchange partners to form two new products, and typically one of these products is an insoluble solid that precipitates.

The products are liquids. This is not necessarily true as the defining characteristic of a precipitation reaction is the formation of a solid precipitate.

All of the solids are removed from the solution. While a solid precipitate forms and is often removed from the reaction mixture, this statement doesn't accurately describe the chemical nature of the reaction itself.

They are also redox reactions. Not all precipitation reactions are redox reactions; redox reactions involve the transfer of electrons, whereas precipitation reactions involve the exchange of ions without necessarily involving a change in oxidation state.

Hence, A. is the correct option.

What is an important component of atp that is needed to transfer and release energy directly?
a.nitrogen
b.phosphate
c.uracil
d.zinc?

Answers

Answer is: b.phosphate.
ATP is short for adenosine triphosphate
Adenosine triphosphate converts to either the adenosine diphosphate (ADP) or adenosine monophosphate (AMP), in this process energy is released. 
ATP is made of three components: the triphosphate, the sugar ribose and a nitrogenous base (adenine).

Select all that apply.
The spectrum of Star X is compared to a reference hydrogen spectrum. What can be concluded about Star X?
A. Star X is showing radial motion.
B. Star X is moving toward the Earth.
C. Star X is moving away from the Earth.
D. Star X may be moving, but its motion is not radial.

Answers

the answer is option D.Star X may be moving but its motion is not radial.

Star X may be moving, but its motion is not radial. Therefore, option (D) is correct.

Comparing the spectrum of Star X to a reference hydrogen spectrum can provide information about the motion of the star. If the spectral lines of Star X are shifted towards shorter wavelengths (blueshifted) compared to the reference hydrogen spectrum, it indicates that the star is moving towards the observer (Earth) due to the Doppler effect. Conversely, if the spectral lines are shifted towards longer wavelengths (redshifted) compared to the reference spectrum, it indicates that the star is moving away from the observer (Earth).

However, the given information does not specify whether the spectral lines are blueshifted or redshifted, so no definitive conclusion can be made about the direction of motion. Therefore, the correct option is D. Star X may be moving, but its motion is not radial.

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If the relative activities of two metals are known, which metal is more easily oxidized?

Answers

Reactive activities of the metals can be identified from its reduction or oxidation potential values. Metal with higher value of reduction potential has greater tendency to undergo reduction as compared to other metal. Likewise, metal with higher value of oxidation potential, has greater tendency undergo oxidation as compared to  the other counter metal. 

The number of moles of solute dissolved per liter of solution; also known as molar concentration.

Answers

This is the definition of Molarity.

How many moles of carbon dioxide will form if 5.5 moles of C3H8 is burned

Answers

We have that the mol of CO₂. formed  is mathematically given as

The reaction will form 16.2 mol of CO₂.

Chemical Reaction

Generally the equation for the Chemical Reaction  is mathematically given as

C₃H₈ + 5O₂ ----> 3CO₂ + 4H₂O

You want to convert moles of C₃H₈ to moles of CO₂

The molar ratio is 3 mol CO₂:1 mol C₃H₈

Moles of CO2= 5.5 mol C₃H₈ * (3 mol CO₂/1 mol C₃H₈)  

Moles of CO2=16.2

Therefore

The reaction will form 16.2 mol of CO₂.

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Final answer:

When 5.5 moles of propane are burned, 16.5 moles of carbon dioxide will be produced, based on the balanced chemical equation for the combustion of propane.

Explanation:

To determine how many moles of carbon dioxide will form if 5.5 moles of C3H8 (propane) is burned, we need the balanced chemical equation for the combustion of propane:

C3H8 + 5O2 → 3CO2 + 4H2O

According to the equation, the combustion of 1 mole of propane produces 3 moles of CO2. Thus, the combustion of 5.5 moles of propane will produce 3 times 5.5 moles of CO2, which equals 16.5 moles.

Therefore, 16.5 moles of carbon dioxide (CO2) will be produced when 5.5 moles of propane (C3H8) are burned completely in the presence of sufficient oxygen.

How do you do part Di?

Answers

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similarlattice energies, Give two reasons why the lattice energies of the oxidesare similar. .... The structures oftwo compounds commonly found in food, lauric acid, C12H2O2, and .

go to this site it's the answer sheets just find the problem your on

Calculate the final pressure inside a scuba tank after it cools from 100c to 25.0c. The initial pressure in the tank is 130.0 atm

Answers



Seeing that we use pressure and temperature the first thing to do is convert Celsius to Kelvin. Then we plug the pressure and temperature into the formula p1/t1=p2/t2. We then use algebra to find the new pressure to be 103.860

The final pressure inside a scuba tank after cooling from 100 °C to 25.0 °C and an initial pressure of 130.0 atm is 103.82 atm.

Given:
Initial temperature, T1 = 100 °C = 373 K
Final temperature, T2 = 25.0 °C = 298 K
Initial pressure, P1 = 130.0 atm

Using the Combined Gas Law:
P1V1/T1 = P2V2/T2
130.0 atm x V1 / 373 K = P2 x V1 / 298 K

Calculating:
130.0 atm / 373 K = P2 / 298 K
P2 = (130.0 atm x 298 K) / 373 K
P2 = 103.82 atm

Therefore, the final pressure inside the scuba tank after cooling to 25.0 °C is 103.82 atm.

What type of bond exists in a water molecule?

Answers

2 HYDROGEN 1 OXYGEN IS YOUR ANSWER HOPE THIS HELP 
 Covalent bonds are the bonds between the atoms within the same water molecule. Hydrogen bonds are the bondsbetween two water molecules. All molecules have covalentbonds, but only some molecules have hydrogenbonds

When the ph of the extracellular fluid declines, the kidneys?

Answers

The answer is the kidneys reabsorb more potassium ions.   When the ph of the extracellular fluid declines, the kidneys reabsorb more potassium ions.  

What is the formula of the ion formed when sodium achieves a stable electron configuration?

Answers

Sodium is a group 1 element, so it forms a cation with a +1 charge by losing one electron, so it will become Na+

Lithium-6 has a mass of 6.0151 amu and lithium-7 has a mass of 7.0160 amu. The relative abundance of Li-6 is 7.42% and the relative abundance of Li-7 is 92.58%. Based on this data alone, calculate the average atomic mass for lithium to the correct number of significant digits.

Answers

Average atomic mass is the weighted average atomic masses with regard to the relative abundance of the isotopes 
average atomic mass of Li = relative abundance of Li-6 x mass of Li-6 + relative abundance of Li-7 x mass of Li-7
average atomic mass of Li = (7.42% x 6.0151 a.m.u) + (92.58% x 7.0160 a.m.u)
                                           = 0.446 + 6.495
                                           = 6.941 amu
average atomic mass of Li is 6.941 amu

The average atomic mass for lithium, given that Lithium-6 has a mass of 6.0151 amu and lithium-7 has a mass of 7.0160 amu, is 6.9417 amu

How to determine the atomic mass of lithium?

From the question given above, the following data were obtained?

Mass of Lithium-6 = 6.0151 amuAbundance of Lithium-6 (1st%) = 7.42%Mass of lithium-7 = 7.0160 amuAbundance of lithium-7 (2nd%) = 92.58%Average atomic mass of lithium =?

Average atomic mass = [(Mass of 1st × 1st%) / 100] + [(Mass of 2nd × 2nd%) / 100]

= [(6.0151 × 7.42) / 100] + [(7.0160 × 92.58) / 100]

= 0.4463 + 6.4954

= 6.9417 amu

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What is the iupac name for the organic compound that reacts with br2?

Answers

There are many organic organic compounds which tends to reacts with Br₂. Specifically speaking two classes of organic compounds are very well known for their reaction with Br₂. Those two classes are alkenes and alkynes. Both belongs to unsaturated hydrocarbons
This reaction of Unsaturated Hydrocarbons with Br₂ are generally used for the identification of Unsaturation

Examples:
                          H₂C=CH₂  +  Br₂   →   Br-CH₂-CH₂-Br

In above reaction Ethene on reaction with Br₂ produces 1,2-Dibromoethane. In this reaction the color of Br₂ (yellow-brown) disappears as the reaction proceeds.

                               HC≡CH  +  2 Br₂   →  Br₂HC-CHBr₂

In this reaction acetylene (alkyne) reacts with two moles of Br₂ to produce 1,1,2,2-Tetrabromoethane.

Hence, every alkene and alkyne for example, Ethene, 1-Butene, 2-Butene 1-Pentene, 2-Pentene, Acetylene, 1-Butyne, 2-Butyne, 1-Pentyne, 2-Pentyne, e.t.c can react with Br₂.

Final answer:

The IUPAC name for the bromine-substituted organic compound depends on its structure; for the compound given, it is 2-bromobutanoic acid. Other examples include 2-bromopentane and 4-bromo-2-methylhexane. Hydroboration and radical addition reactions are key concepts related to the reactivity of compounds with bromine.

Explanation:

The student's question seems to focus on organic chemistry, specifically on the naming and reactivity of organic compounds with bromine ([tex]Br_{2}[/tex]).

The IUPAC name for the compound with a bromine atom at the alpha-carbon ([tex]C_{2}[/tex]) in the IUPAC system is 2-bromobutanoic acid, also known as alpha-bromobutyric acid in the common system. An example of a reaction with diborane and ethene is hydroboration, which leads to the synthesis of organoboron compounds. The organic reaction between ethene and bromine forms 1,2-dibromoethane, whereas ethane does not react with bromine under normal conditions.

In the case of 3-Bromobut-1-ene reacting with hydrogen gas, the product is butane. Radical addition reactions, such as the addition of HBr to 1-butene, can produce different products depending on the presence of peroxides. This phenomenon is an example of conflicting regioselectivity in organic chemistry.

When determining the IUPAC names of compounds, multiple examples are demonstrated ranging from 2-bromopentane to 4-bromo-2-methylhexane, highlighting the importance of the longest carbon chain and correct placement of substituents in naming.

What could be a potential limiting factor for a population of deer?

Answers

A potential limiting factor for a population of deer could be a unbalance in the food chain they are a part of. For example when there are more things that eat them or less things of what they eat. 

Difference between nitrogen fixatio and dentrification

Answers

nitrogen fixation means form nitrits and dentrification means nitrits will not formed
Final answer:

Nitrogen fixation is the conversion of atmospheric nitrogen into biologically useful chemicals by microorganisms. Denitrification is the process by which bacteria convert nitrates into nitrogen gas. These processes have different functions in the nitrogen cycle.

Explanation:

Nitrogen fixation is the process where organisms convert atmospheric nitrogen into biologically useful chemicals. To date, the only known kind of biological organisms capable of nitrogen fixation are microorganisms. These organisms employ enzymes called nitrogenases, which contain iron and molybdenum. Many of these microorganisms live in a symbiotic relationship with plants, with the best-known example being the presence of rhizobia in the root nodules of legumes.

In contrast, denitrification is the process by which denitrifying bacteria convert nitrates (NO3) into nitrogen gas (N₂). Denitrifying bacteria utilize nitrate as an electron acceptor and break it down into nitrogen gas through an anaerobic respiration process. This process happens in anaerobic environments, like waterlogged soils or wetlands.

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