The balanced equation for the generation of sugar from sunlight water and co2 is

Answers

Answer 1

The balanced equation for the generation of sugar from sunlight water and CO₂ is

6 CO₂ + 6 H₂O → C₆H₁₂O₆ + 6 O₂

carbon dioxide + water → sugar + oxygen

The process of photosynthesis occurs when the chlorophyll present in the leaves of plants absorb sunlight to make food in the presence of carbon dioxide (enters through the stomata of leaves) and water (absorbed from the roots). As a result of this reaction sugar and oxygen is formed. After that sugar is converted in to starch and oxygen is released into air.

Answer 2
Final answer:

Photosynthesis is the biological process that transforms sunlight, water, and CO2 into glucose and oxygen. The balanced equation for photosynthesis is 6CO₂ + 6H₂O + light energy --> C6H12O6 + 6O2. The process includes intermediate reactions that eventually form simple carbohydrate molecules.

Explanation:

The process that generates sugar from sunlight, water, and CO2 is called photosynthesis. The balanced chemical equation for photosynthesis is 6CO₂ + 6H₂O + light energy --> C6H12O6 + 6O2.

During photosynthesis, plants use sunlight energy to convert carbon dioxide gas (CO2) and water (H2O) into glucose (C6H12O6) and oxygen (O2). This process is complex and involves intermediate reactions and products.

Glyceraldehyde-3-phosphates, which are simple carbohydrate molecules that can be converted to glucose and various other sugar molecules, are formed during the course of the reaction.

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Related Questions

The drawing shows sodium and chloride ions positioned at the corners of a cube that is part of the crystal structure of sodium chloride (common table salt). the edges of the cube are each 0.281 nm (1 nm = 1 nanometer = 10−9 m) in length. what is the value of the angle θ the in the drawing?

Answers

To solve for this problem, first we have to calculate for the diagonal or the hypotenuse on the bottom face of the cube. We can do this by using the hypotenuse formula. Since all sides are of equal lengths therefore:

c^2 = a^2 + b^2

a = b

c^2 = 2 a^2

where a = 0.281 nm therefore:

c^2 = 2 (0.281 nm)^2

c = 0.3974 nm

 

Now using the diagonal and the one vertical side of the cube which is still equivalent to a, we use the tan function to find for the angle θ.

tan θ = opposite side / adjacent side

tan θ = a / c

θ = tan^-1 (0.281 / 0.3974)

θ = 35.26°

Final answer:

The crystal structure of sodium chloride and the calculation of the force on a lithium ion in a NaCl crystal lattice involves applying Coulomb's law to consider contributions of electrostatic forces from neighboring ions.

Explanation:

The question concerns the crystal structure of sodium chloride (NaCl), commonly known as table salt, and involves calculating the force on a lithium ion in the crystal lattice with defects. The edges of the cube in the NaCl crystal are provided as 0.281 nm, which is the distance between neighboring ions, and it is given that the ions form a face-centered cubic (FCC) structure. To find the angle θ in the drawing, one would need a diagram to assess the geometry between the ions.

As for the force on the lithium ion, you would apply Coulomb's law to calculate the electrostatic force exerted on it by its neighboring charged ions. Each neighboring ion contributes a vector force, and the total force on the lithium ion is the vector sum of these individual forces.

A reconstituted solution containing 500 mg of ganciclovir in 20 ml of sterile water for injection is added to 500 ml of 5% dextrose in water. the infusion is to be administered over 2 hours. if the infusion set delivers 15 drops/ml, what should the flow rate be to administer the bag over the designated time interval?

Answers

The flow of rate that you are asked for is the number of drops per time unit.

Usually it is counted the number of drops per minute, so I will aim to that.

1) Calculate the total volume.

Assuming additive volumes => final volume = volume of sterile water + volume of the dextrose solution

Final volume = 20 ml + 500 ml = 520 ml.

2) Calculate the number of drops in 520 ml, given that there are 15 drops in 1 ml:

=> 520 ml * 15 drops / ml = 7800 drops.

3) That must be administered over 2 hours, which is 120 minutes.

So, calculate the flow rate as the number of drops divided by the time in minutes:

flow rate = 7800 drops / 120 minutes = 65 drops / minute.

Answer: 65 drops / minute

Calculate the vapor pressure of water above a solution prepared by dissolving 28.5 g of glycerin (c3h8o3) in 135 g of water at 343 k. (the vapor pressure of water at 343 k is 233.7 torr.)

Answers

Final answer:

The vapor pressure of water above a solution prepared by dissolving glycerin in water at 343K is equal to the vapor pressure of pure water at the same temperature, which is 233.7 Torr, as glycerin is nonvolatile.

Explanation:

In this problem, we're asked to calculate the vapor pressure of water above a solution of glycerin in water. The key concept here is Raoult's Law, which states that the vapor pressure of a solvent above a solution (in this case water) is directly proportional to the mole fraction of that solvent in the solution.

Glycerin (C3H8O3) is essentially nonvolatile, meaning it does not contribute to the vapor pressure. Therefore, the vapor pressure of the solvent (water) is not altered by the addition of the glycerin. Essentially, the vapor pressure of the water in the solution is the same as the vapor pressure of pure water at the same temperature.

The given vapor pressure of pure water at 343 K is 233.7 Torr. Hence, the vapor pressure of water above the solution prepared by dissolving 28.5 g of glycerin in 135 g of water at the same temperature is also 233.7 Torr.

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The vapor pressure of water above a solution containing 28.5 g of glycerin and 135 g of water at 343 K is calculated using Raoult's Law. The resulting vapor pressure is 224.352 torr.

Calculation of Vapor Pressure

To calculate the vapor pressure of water above a solution containing 28.5 g of glycerin ([tex]C_3H_8O_3[/tex]) and 135 g of water at 343 K, we use Raoult's Law.

Molar mass of glycerin ([tex]C_3H_8O_3[/tex]) = 3(12.01) + 8(1.008) + 3(16.00) = 92.094 g/mol

Moles of glycerin =
28.5 g / 92.094 g/mol = 0.309 moles

Molar mass of water (H2O) = 2(1.008) + 16.00 = 18.016 g/mol

Moles of water =
135 g / 18.016 g/mol = 7.495 moles

Calculate the mole fraction of water:

Mole fraction of water ([tex]X_{water[/tex]) = moles of water / (moles of water + moles of glycerin)

[tex]X_{water[/tex] = 7.495 moles / (7.495 + 0.309) = 0.960

Use Raoult's Law to find the vapor pressure of the solution.

Raoult's Law:
[tex]P_{solution[/tex]= [tex]X_{water[/tex]* [tex]P_{water[/tex]

[tex]P_{solution[/tex]= 0.960 * 233.7 torr = 224.352 torr

Therefore, the vapor pressure of water above the solution at 343 K is 224.352 torr.

Which sentence correctly sequences the underlined verbs? We will not receive the final pieces that we needed to complete the collection. We will not receive the final pieces that we had needed to complete the collection. We have not received the final pieces that we will need to complete the collection.

Answers

The sentence that correctly sequences the underlined verbs is: "We have not received the final pieces that we will need to complete the collection."

A verb is a word that expresses an action, occurrence, or state of being.

This sentence correctly uses the present perfect tense ("have not received") to indicate that the action of receiving the final pieces is still ongoing, and it uses the future tense ("will need") to indicate that the pieces are necessary for a future action (completing the collection).

Therefore, "We have not received the final pieces that we will need to complete the collection." is the sentence that correctly sequence the underlined verb.

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What reaction shows one element taking the place of another in a compound?

Answers

A single-replacement reaction

The stomach lining is made up of deep muscular grooves. How do you think these structures help the stomach to break down food

Answers

the curves absorb the food and sort of squish it and make it easier to digest then the food goes into the stomach acid and kind of burns and become and little softer or in other words by allowing the stomach to stretch in order to accommodate large meals and get grip and move food during the digestion process.  

According to the transparency how is nitrogen returned to the atmosphere

Answers

According to transparency, nitrogen is returned to the atmosphere through a process called denitrification.

The process goes as follows:
Ammonification: This occurs when the decomposers break down the the wastes of the organisms and release the nitrogen that these organisms contained in the form of ammonia
Nitrification: This occurs when the ammonia is oxidized into nitrites which further oxidize into nitrates by the bacteria in the soil
Denitrification: This occurs when anaerobic bacteria break down these nitrates, thus, producing nitrogen into the atmosphere.

How does fluorine (F) differ from iodine (I)?

Answers

at room temp, iodine is a solid while fluorine is a gas. (hope that helps!)

Which of the following metals is the most stable?
A. Potassium
B. Zinc
C. Silver
D. Gold

Answers

Answer:

gold

Explanation:

Final answer:

Among the options listed, gold is the most stable metal. It's resistant to oxidation and corrosion, unlike the other metals. This is why it's often found in its native form and used for various purposes.

Explanation:

The stability of a metal is determined by its resistance to oxidation or corrosion, and by this standard, gold (option D) is the most stable metal among those listed. Gold does not easily react with other substances in the environment, making it highly resistant to corrosion and oxidation. This property is why gold is often found in its native form in nature, not combined with other elements, and why it's used for jewelry and in various industrial applications.

On the other hand, metals like potassium (option A) are highly reactive, readily oxidizing in air or reacting violently with water. Zinc (option B) and silver (option C) are less reactive than potassium, but still more reactive compared to gold.

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How can a sample of uranium-235 that has critical mass be induced to react? it must be spilt with a laser. it must be fused to a helium nucleus. it must be bombarded with neutrons. it must be shot with light speed electrons?

Answers

It must be bombarded with neutrons
it needs to undergo the process of fission which requires it to be bombarded with fast moving neutrons so your answer would be C.it must be bombarded with neutrons

What is the molecular weight of one mole of H2CO3? g/mole

Answers

The answer is 62.026 g/mole

Answer:

The answer to the question is 62.026.

"if the average global intake of vegetables is 2,300 calories per day, how many liters of water are needed to produce these vegetable calories"

Answers

2,300 liters of water will be needed to produce the vegetables. Research had shown that underground water has more water drawn from them for human use than the water that flow into them naturally. It was reported that 2.300 liters of water is needed to produce 2,300 calories of vegetable food; 1,569,500 liters of water are needed for yearly food production.

How many kilowatt-hours of electricity are used to produce 4.50 kg of magnesium in the electrolysis of molten mgcl2 with an applied emf of 5.00 v?

Answers

First, we need to determine the half reaction of magnesium. It would be expressed as:

Mg2+ + 2e- = Mg

Given the mass of magnesium metal that is produced, we calculate the total charge of the electrolysis by the relations we can get from the half reaction. We do as follows:

4.50 kg Mg ( 1000 g / 1 kg ) ( 1 mol / 24.305 g ) ( 2 mol e- / 1 mol Mg ) ( 96500 C / 1 mol e- ) = 35733388.2 C

We are given the applied EMF in units of V. This value is equal to J/C. So, 5 V is equal to 5 J/C.

35733388.2 C (5 J/C) = 178666941 J
178666941 J ( 1 kW-h / 3.6x10^6 J ) = 49.63 kW-h

The kilowatt-hours of electricity are used to produce 4.50 kg of magnesium in the electrolysis of molten MgCl₂ with an applied emf of 5.00 v is 49.63 kW-h. It can be find by knowing the half reaction of magnesium.

What is Half Reaction ?

A half reaction is either the oxidation or reduction reaction component of a redox reaction.

Let's determine the half reaction of magnesium ;

Mg²⁺ + 2e- => Mg

Given the mass of magnesium metal that is produced, we calculate the total charge of the electrolysis by the relations we can get from the half reaction. We do as follows :

4.50 kg Mg ( 1000 g / 1 kg ) ( 1 mol / 24.305 g ) ( 2 mol e- / 1 mol Mg ) (96500 C / 1 mol e-) = 35733388.2 C

We are given the applied EMF in units of V. This value is equal to J/C. So, 5 V is equal to 5 J/C.

35733388.2 C (5 J/C) = 178666941 J

178666941 J ( 1 kW-h / 3.6x10^6 J ) = 49.63 kW-h

Hence, The kilowatt-hours of electricity are used to produce 4.50 kg of magnesium in the electrolysis of molten MgCl₂ with an applied emf of 5.00 v is 49.63 kW-h.

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If poison is suspected in deaths how would you proceed with the investigation

Answers

follow the leads and check where the victim eat and drank last 

What 3 characteristics of matter does chemistry deal with?

Answers

Chemistry is concerned with:

1) Composition
The composition of matter helps determine how it will behave chemically and physically, and is studied in chemistry

2) Structure
The structure of a certain element or compound also governs how the substance behaves, making it another vital aspect of chemistry

3) Behavior
The behavior of substances is studied in order to have explanations presented for it, expanding our understanding.

Radiocarbon measurements made in 1988 on the shroud of turin showed a decay rate of 14.2 disintegrations/min per gram of carbon. this is in comparison to the decay rate in the then current living organisms of 15.3 disintegrations/min per gram of carbon. given a half-life of 5730 years for carbon-14, what year is the artifact from?

Answers

We may use the equation:
A = A₀exp(-k*t)

Where k is the radioactive decay constant and related to half-life as:
t(half) = ln(2)/k

Substituting k from the second equation, and putting the values:

14.2 = 15.3 * exp(-ln(2)* t / 5,730)
t = 617 years

The artifact is 617 years old, which means it is from 1371.

A voltaic cell consists of a nickel electrode in a solution containing Ni2+ ions, and a copper electrode in a solution containing Cu2+ ions. Which is the cell potential? a. E subscript c e l l space end subscript superscript 0 space end superscript equals minus 0.59 V b. E subscript c e l l space end subscript superscript 0 space end superscript equals plus 0.59 V c. E subscript c e l l space end subscript superscript 0 space end superscript equals minus 0.09 V d. E subscript c e l l space end subscript superscript 0 space end superscript equals plus 0.09 V

Answers

First, we write the half equations for the reduction of the chemical species present:

Cu⁺² + 2e → Cu; E° = 0.34 V
Ni⁺² + 2e → Ni; E° = - 0.23 V

In order to determine the potential of the cell, we find the difference between the two values. For this:

E(cell) = 0.34 - (-0.23)
E(cell) = 0.57 V

The second option is correct. (The difference in values is due to different values in literature, and it is negligible)
Final answer:

The cell potential of a voltaic cell depends on the difference in reduction potential between the two half-cells. In this case, the copper electrode has a higher reduction potential than the nickel electrode, resulting in a positive cell potential of +0.59 V.

Explanation:

The cell potential of a voltaic cell can be determined by the difference in reduction potential between the two half-cells. In this case, the reduction potential of copper is higher than that of nickel. The copper electrode will be reduced while the nickel electrode will be oxidized. The standard cell potential for this voltaic cell is +0.59 V. Therefore, the correct answer is option b) Ecell0 = +0.59 V.

Which factor is generally responsible for high melting points?

Answers

The factor that is generally responsible for higher melting point is intermolecular forces.

Answer:

High intermolecular forces of attraction.

Explanation:

When the molecules are attracted to each other, it takes more energy (heat) to break that attraction apart. In order to take a substance from a solid to a liquid, you must break these attractions.

Which of the following would have the highest viscosity? water honey salad oil alcohol

Answers

honey im 100 percent sure
honey should be it, but let me know if it was wrong somehow

The total bonding energy for the products of a reaction is 2535 kJ/mol and the bonding energy of the reactants is 1375 kJ/mol. Calculate the change in enthalpy, and classify the reaction as endothermic or exothermic.

Answers

change in enthalpy= -1160
the reaction is exothermic as enthalpy change is negative

Answer is: 1160 kJ/mol, endothermic.

the change in enthalpy = the total bonding energy for the products of a reaction - the bonding energy of the reactants.

the change in enthalpy = 2535 kJ/mol - 1375 kJ/mol.

the change in enthalpy = 1160 kJ/mol.

There are two types of reaction:

1) endothermic reaction (chemical reaction that absorbs more energy than it releases).

2) exothermic reaction (chemical reaction that releases more energy than it absorbs).

Which of the following is not true regarding carbon? Carbon 12 is radioactive. Carbon can form long chains and rings. Carbon will bond with other carbon atoms. Carbon will readily bond with hydrogen and oxygen

Answers

the Carbon 12 one. Carbon 12 is NOT radioactive.

Answer:  Carbon 12 is radioactive

Explanation:  Carbon has 3 isotopes out ofwhich carbon 12 isotope has high abundance and carbon 14 has least abundnace in nature.

Thus, Carbon 12 is not radioactive instead Carbon 14 is radioactive.

Carbon is the only element which has the highest ability to form long chains and rings with carbon atom itself. This property is known is CATENATION.

Although sulphur and phosphorus are also known to have the property of the catenation but the carbon has the highest ability.

Yes , carbon can easily and readily bond with hydrogen forming CH4 and the long series. And with oxygen it can form CO2 through covalent bonding.

Silver tarnishes as silver metal reacts with hydrogen sulfide, H2S, in the air. In this reaction, dark silver sulfide, Au2S, covers the surface of silver. When silver is polished, this coating of silver sulfide can be removed from the surface. This makes the silver shiny again. Enter the coefficients that balance the tarnishing reaction equation. (Type 1 for no coefficient.)Ag(s) + H2S(g) → Ag2S(s) + H2(g)

Answers

Balanced the tarnishing equation:

2Ag(s) + 1H₂S(g) → 1Ag₂S(s) + 1H₂(g).

According to principle of mass conservation, number of atoms must be equal on both side of balanced chemical reaction.

There are two silver atoms, two hydrogen atoms and one sulfur atom on both side of balanced chemical reaction.

The coefficients that will balance the tarnishing reaction equation are: 2, 1, 1,1

What is a chemical equation

Chemical equations are representations of chemical reactions using symbols and formula of the reactants and products.

The reactants are located on the left side while the products are located on the right side.

Reactants —> Products

The balancing of chemical equations follows the law of conservation of matter which states that matter can neither be created nor destroyed during a chemical reaction but can be transferred from one form to another.

Thus, we can obtain the coefficients that will balance the tarnishing reaction equation by simply balancing the equation:

How to balance the equation

Ag(s) + H₂S(g) → Ag₂S(s) + H₂(g)

There are 2 atoms of Ag on the right side and 1 atom on the left side. It can be balanced by writing 2 before Ag as shown below:

2Ag(s) + H₂S(g) → Ag₂S(s) + H₂(g)

Thus, the equation is balanced.

The coefficients are: 2, 1, 1, 1

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A substance that decreases hand increases ph when it dissociates in water is called

Answers

A substance that decreases hand increases ph when it dissociates in water is called a base

A base is a substance containing (OH)- group (hydroxide group) in its formula. This means that when a base is dissociated in water, hydroxide group (OH)- will be released in the water which leads to the decrease in the concentration of the hydrogen and increases the pH.

On the other hand, an acid contains H+ in its formula. This means that when acid dissociates in water, hydrogen is releases, thus, increasing hydrogen concentration and decreasing pH value.


What is produced when benzene reacts with chlorine in the presence of an iron catalyst?

Answers

When benzene react with chlorine in the presence of an iron catalyst CHLORO-BENZENE IS FORMED. Hydrogen chloride is also formed. Chloro-benzene is used in the production of other chemicals, insecticides, dyes, as solvent for drugs, adhesives, paints, etc. 

Mary performs this calculation (3.0)(2.0) how many significant figures should her answer have?

Answers

Mary should have 2 significant figures in her answer.

Mary performs this calculation (3.0)(2.0). Her answer have two significant figure.

Hence, option B is correct answer.

What is Significant Figure ?

Significant Figure is used to identify a number that is presented in the form of digits.

What are some rules for significant figures ?All the non-zero digits are significant. Example 186452 has six significant digit. Every zeros which occur between the any two non-zero digits are significant. Example 102.0065 has seven significant digits. Every zeros which are on right of a decimal point and left of a non-zero is never significant. Example 0.00654 has three significant digits. Every zero which are right of a number is significant. Example 5.0 has two significant digits.

Mary perform this calculation (3.0) (2.0) and get the result 6.0 which has 2 significant digits.

Thus, from above conclusion we can say that Mary performs this calculation (3.0)(2.0). Her answer have two significant figure.

Hence, option B is correct answer.

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What element is oxidized in the following reaction? Zn + CuSO4 yields ZnSO4 + Cu

Answers

To determine which element is being oxidized, this is one approach that can be used.

Note: oxidation numbers are very similar to ionic charges, or charges that form as metals and nonmetals, undergo chemical bonding.

1) To note down the oxidation numbers for all elements/atoms in the substances, and then observe that if it is increasing then it is being oxidized, if it is reducing then it would be being reduced.

Zn + CuSO4 -> ZnSO4 + Cu

O +2 -2 -> +2 -2 0

Ignore the -2 as these are spectator ions that do not undergo the change, and are not part of the main reaction occurring.

Here we can see that Zn goes from 0 to +2, thus it would be oxidized, while Cu goes from +2 to 0, thus is reduced.

An element is said to be oxidized when they chemically react with an oxygen atom. In the reaction between zinc and copper sulfate, the zinc element is said to be oxidized.

What is oxidation?

In a redox reaction the atoms and molecules losses and gains electron to change their oxidation state by completely transferring their electrons to another atom in the reaction mixture.

Oxidation is the process of redox where the atom losses its electron which can be said as an increase in its oxidation number by giving away its electron or by the addition of oxygen.

The balanced reaction is given as,

Zn + CuSO₄ → ZnSO₄ + Cu

Here, the oxidation number of zinc changes from 0 to +2, and of copper from +2 to 0. It can be inferred that zinc got oxidized, while copper got reduced.

Therefore, in the reaction zinc got oxidized.

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If r⃗ =bt2i^+ct3j^, where b and c are positive constants, when does the velocity vector make an angle of 45.0∘ with the x- and y-axes?

Answers

The displacement function is given by : r = bt2i + ct3j meters
The velocity function is the derivative of the displacement:
v = r' = 2bti + 3ct2j meter / second

Now, for  the velocity vector make an angle of 45.0∘ with the x- and y-axes, the i and j components have to be equal:
2bt = 3ct2 (Now solve for t)
2bt = t (3ct)
either t = zero (rejected)
or t = 2b / 3c seconds (accepted)
Final answer:

The velocity vector for r⟶ = bt^2î + ct^3ï makes an angle of 45 degrees with the x- and y-axes when the time t equals 2b/(3c), found by setting the magnitudes of the x and y components of the velocity vector equal to each other.

Explanation:

To determine when the velocity vector makes an angle of 45 degrees with the x- and y-axes for the given position vector r⟶ = bt^2î + ct^3ï, where b and c are positive constants, we first need to find the velocity vector by differentiating the position vector with respect to time.

The velocity vector v⟶ is given by: v⟶ = dr⟶/dt = 2btî + 3ct^2ï. An angle of 45 degrees between the velocity vector and the axes means the components along the x- and y-axes must be equal. This occurs when 2bt = 3ct^2, which simplifies to t = 2b/(3c). Therefore, the velocity vector makes a 45-degree angle with the axes at this specific time t.

Which substance listed below is a polar molecule? all of the compounds nh41+ sicl4 cl2o none of the compounds?

Answers

Answer:

[tex]NH_4^+[/tex] and [tex]SiCl_4[/tex]

Explanation:

Hello,

In this case, in order to know whether a molecule is polar or not, the difference between the electronegativities of the bonding elements must be within the rank 0.7 and 1.6. In this manner, such difference is computed as follows for the given compounds:

- [tex]NH_4^+[/tex] --> [tex]\Delta E=3.0-2.1=0.9[/tex]

- [tex]SiCl_4[/tex] --> [tex]\Delta E=3.0-1.8=1.2[/tex]

- [tex]Cl_2O[/tex] --> [tex]\Delta E=3.5-3.0=0.5[/tex]

In such a way, both [tex]NH_4^+[/tex] and [tex]SiCl_4[/tex] are polar molecules unlike [tex]Cl_2O[/tex] which is apolar.

Best regards.

Final answer:

Among the provided options, Cl2O is the polar molecule due to an uneven distribution of electron charge resulting from the difference in electronegativity between Oxygen and Chlorine atoms.

Explanation:

In the given list, Cl2O (Dichlorine monoxide) is the polar molecule. A molecule is polar when it has an uneven distribution of electron charge resulting in regions of partially positive and partially negative charges. In Cl2O, oxygen is more electronegative than chlorine thus the shared electrons are more attracted towards the oxygen atom, creating a dipole, and thus making the molecule polar.

Additional Information

SiCl4 (Silicon tetrachloride) is a nonpolar molecule because the four Chlorine (Cl) atoms are evenly distributed around the Silicon (Si) atom, ensuring a balanced charge. As for NH4^+ (Ammonium), it is an ion, not a molecule, so it is not eligible for being polar or nonpolar.

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improvements in which area would help reduce the possibility of damage to the environment when using uranium as a fuel?

Answers

I think it would be better control of fusion reactions.

Answer:

Improvements in the area of uranium extraction would contribute to reducing the possibility of environmental damage by using uranium as fuel.

Explanation:

Having a uranium rod as a nuclear fuel generating energy in a fission reactor is not simple, it is a complex and costly process since the uranium ore is extracted, generating in its different stages negative environmental impacts through waste and shipments of radioactive material.

Improvements in uranium extraction would significantly reduce the environmental impact of this process, mainly in water.

Have a nice day!

In a combustion reaction, 46.0g of ethanol reacts with 96.0 g of oxygen to produce water and carbon dioxide. If 54.0 g of water is produced, what mass of carbon dioxide is produced?

Answers

The basic law of mass conservation states that, the total mass of products of a chemical reaction should be equal to the total mass of reactants in the same reaction.

Applying this law to the above problem, we find that:
Total mass of reactants = 46 + 96 = 142 grams
This means that the total mass of products (water + carbon dioxide) should be also 142 grams
Since 52 grams of water is produced, therefore,
mass of carbon dioxide = 142 - 52 = 90 grams

Final answer:

The mass of carbon dioxide produced in the combustion reaction of ethanol with oxygen, given that 54.0 g of water is produced, is 88.0 g.

Explanation:

In a combustion reaction of ethanol (C₂H₅OH), which reacts with oxygen (O₂) to produce water (H₂O) and carbon dioxide (CO₂), the mass of carbon dioxide produced can be calculated using the law of conservation of mass. The balanced chemical equation for the combustion of ethanol is:

C₂H₅OH (l) + 3O₂ (g) → 2CO₂ (g) + 3H₂O (g)

Given 46.0 g of ethanol reacts with 96.0 g of oxygen, and 54.0 g of water is produced, we can deduce the mass of carbon dioxide. By the conservation of mass, the total mass of reactants must be equal to the total mass of products:

Mass of reactants = Mass of products

46.0 g (ethanol) + 96.0 g (oxygen) = Mass of water + Mass of carbon dioxide

142.0 g (total reactants) = 54.0 g (water) + Mass of carbon dioxide

Mass of carbon dioxide = 142.0 g - 54.0 g = 88.0 g of CO₂

Therefore, the mass of carbon dioxide produced in this reaction is 88.0 g.

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