Experiment Solution Electrodes - 0.1 M Naci 0.1 M NaBr 0.1 M Nal 0.1 M AgNO3 0.1 M CuSO4 0.1 M CuSO4 Graphite Graphite Graphite Graphite Graphite Copper two CS Scanned with CamScanner Solution pH* NaCl Observation at Cathode# breaking down bubbling NaBr Observation at Anode# bubbles turns yellow turns yellow (stronger) bubbles Nal bubbles silver forming AgNO3 CuSO4 (C electrode) CuSO4 (Cu electrode) turned red/orage bubbles gained copper no reaction

Answers

Answer 1

0.1M NaCl is breaking down at cathode and bubbles at anode, 0.1M NaBr is bubbling at cathode and turns yellow at anode, 0.1M NaI is make bubbles at cathode and turns yellow at anode, 0.1M of AgNO₃ is forming silver at cathode and make bubbles at anode, 0.1M of CuSO₄ is turned red or orange at cathode and make bubbles at anode, 0.1M CuSO₄ is gained copper at cathode and no reaction occurs at anode.

(1) When 0.1M NaCl is present in between two graphite electrode, cation Na⁺ and H⁺ comes to negative electrode cathode for reduction.

Thus as reduction potential of H⁺ is greater than Na⁺, thus H₂O is easily reduce to cathode and forming huge bubbles of H₂ gas as large amount of water is present near cathode.

Cathode reaction : 2H₂O + 2e⁻ → H₂ + 2OH⁻          

The positive anode attracts the negative H⁺ and Cl⁻. Only the chloride ion is discharge in appreciable amount i.e. Cl⁻ is oxidize to Cl₂ at anode. Thus a little bubbles comes out.

Anode reaction : 2Cl⁻ → Cl₂ + 2e⁻

(2) When 0.1M NaBr is present in between two graphite electrode, cathode reaction is reduction of H₂O producing H₂ gas bubbles.

Anode reaction is oxidation of Br⁻ to Br₂ pale yellow color.

Cathode : 2H₂O + 2e⁻ → H₂ + 2OH⁻

Anode : 2Br⁻ → Br₂ + 2e⁻

(3) When 0.1M of NaI is placed in between two graphite electrode, at cathode reduction of H₂O takes place forming bubbles of H₂ gas.

And at anode oxidation of I⁻ to I₂ takes place as oxidation potential of E°(I⁻/ I₂) is greater than E°(OH⁻/O₂,HO₂).

Cathode : 2H₂O + 2e⁻ → H₂ + 2OH⁻

Anode : 2I⁻ → I₂ + 2e⁻

(4) When 0.1M of AgNO₃ is added in between two graphite electrode, silver is deposited at the cathode, as E°(Ag⁺/Ag) = +0.80 v is greater than E°(H⁺/H₂) = 0.0 v. Thus Ag⁺ is easily reduces to cathode and silver is formed at cathode.

And at the anode H₂O molecules discharged and oxidized to form oxygen. Thus bubbles come from anode.

Cathode : Ag⁺ + e⁻ → Ag

Anode : 2H₂O + 4e⁻ → 4H⁺ + O₂

(5) When 0.1M of CuSO₄ is placed in between two graphite electrode, negative cathode attracts Cu²⁺ ions from CuSO₄ and H⁺ ions(H₂O). As the reduction potential of Cu²⁺ is greater than H⁺, thus Cu²⁺ is reduced to copper metal on the cathode surface. Thus cathode turned red or orange.

And at the anode H₂O is oxidize to bubble of O₂ gas.

Cathode : Cu²⁺ + 2e⁻ → Cu

Anode : 2H₂O + 4e⁻ → 4H⁺ + O₂

(6) When 0.1M CuSO₄ is placed in between two copper electrode, the negative cathode electrode attracts Cu²⁺ and H⁺ ions, The only copper ion is discharged. Thus copper is gained at the cathode.

Cathode : Cu²⁺ + 2e⁻ → Cu

The negative sulphate ions SO₄²⁻ or the traces of OH⁻ ions are attracted to the positive electrode. Both the OH⁻ and SO₄²⁻ ions are too stable and nothing happens to them because the copper anode is preferentially oxidize to discharge Cu²⁺ ions.

Anode : Cu → 2e⁻ + Cu²⁺

So, 0.1M NaCl is base, 0.1M NaBr is base, 0.1M NaI is base, 0.1M of AgNO₃ is acid, 0.1M of CuSO₄ is acid, 0.1M CuSO₄ isacid.

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Related Questions

Why do atronomer think the univere began with an exploion (the "Big
Bang Theory?"

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Answer:

Explanation: The best-supported theory of our universe's origin centers on an event known as the big bang. This theory was born of the observation that other galaxies are moving away from our own at great speed in all directions as if they had all been propelled by an ancient explosive force.

Preservatives commonly used to slow the development of off-flavors, odors, and color changes caused by oxidation.a. True
b. False

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True. Antioxidants are frequently added to foods that contain fat as preservatives to prevent or postpone the development of rancidity brought on by oxidation.

What food additives are used to prevent oxidation in many processed foods alcoholic beverages and drugs?Antioxidants are widely used as preservatives in foods containing fat to stop or delay the development of rancidity caused by oxidation. Tocopherols and ascorbic acid (vitamin C) are examples of natural antioxidants (vitamin E).Most food is spoiled by the oxidation process, especially foods with a lot of fat. When fats are exposed to air, they rapidly go rancid. The oxidation process is stopped or inhibited by antioxidants. Vitamin C ascorbic acid and ascorbates are the two most widely used antioxidant supplements.The phenolic chemicals butylated hydroxyanisole (BHA) and butylated hydroxytoluene (BHT), which are related, are frequently added to foods to preserve fats and oils and prevent them from going rancid.

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Why calcium chloride is a salt widely used UN us to melt ice on sidewalks and roads Why CaCl2 is better than nacl to melt snow?

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Calcium chloride is widely used to melt the ice on the sidewalks because it has a lower freezing point.

The mixture of calcium chloride and water is used to melt the ice on the roads in countries with extremely cold climates. Eutectic mixture is the name given to the calcium chloride (CaCl₂) and water combination.

Compared to sodium chloride, this combination has a much lower freezing point which makes it less preferable.

Although sodium chloride (NaCl) has a far greater freezing point than calcium chloride, it is still an excellent alternative for melting ice.

Because it makes cleaning the roadways simpler, calcium chloride is always preferable to sodium chloride.

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Omg help I’m being timed

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rip bro that timer prob done

Calculate the change in ph when 9. 00 ml of 0. 100 m hcl(aq) is added to 100. 0 ml of a buffer solution that is 0. 100 m in nh3(aq) and 0. 100 m in nh4cl(aq). Consult the table of ionization constants as needed.

Answers

The change in ph when 9.00 ml of 0.100 m HCl(aq) is added to 100.0 ml of a buffer solution that is 0.100 m in NH₃(aq) and 0.100 m in NH₄Cl(aq) is 0.0784

the change in pH can be calculate as follows

Calculate initial pH

Kb = 1.8*10⁻⁵

pKb = - log (Kb)

= - log(1.8*10⁻⁵)

= 4.745

pOH = pKb + log {[conjugate acid]/[base]}

= 4.745+ log {0.1/0.1}

= 4.745

PH = 14 - pOH

= 14 - 4.7447

= 9.2553

Calculate pH after adding HCl

mol of HCl added = 0.1M *9.0 mL = 0.9 mmol

NH₃ will react with H⁺ to form NH₄⁺

Before Reaction:

mol of NH₃ = 0.1 M *100.0 mL

mol of NH₃ = 10 mmol

mol of  NH₄⁺ = 0.1 M *100.0 mL

mol of NH₄+ = 10 mmol

after reaction,

mol of NH₃ = mol present initially - mol added

mmol of NH₃ = (10 - 0.9) mmol

mol of NH₃ = 9.1 mmol

mol of NH₄+ = mol present initially + mol added

mol of NH₄+ = (10 + 0.9) mmol

mol of NH₄+ = 10.9 mmol

since volume is both in numerator and denominator, we can use mol instead of concentration

Kb = 1.8*10⁻⁵

pKb = - log (Kb)

= - log(1.8*10⁻⁵)

= 4.745

After the reaction, the following equation holds true:

mol of NH₃ = mol present initially - mol added

mol of NH₃ = (10 - 0.9)

mol of NH₃ = 9.1 mmol

mol of NH₄+ = mol present initially + mol added

mol of NH₄+= (10 + 0.9)

Since volume appears in both the numerator and denominator of the equation, we can use mol in place of concentration:

mmol of NH₄⁺ = 10.9 mmol

Kb = 1.8*10⁻⁵ pKb = -log(Kb) = -log(1.8*10⁻⁵) = 4.745

pOH = pKb + log [conjugate acid]/[base] = 4.745 + log [10.9/9.1] = 4.823

pH = 14 - pOH = 14 - 4.8231 = 9.1769

The reaction between NH₄+ and OH⁻ will produce NH₃ when mol of NaOH supplied is 0.1M *9.0 mL = 0.9 mmol.

NH₃ = 0.1 M * 100.0 mL mol of NH₃ = 10 mmol NH₄+ = 0.1 M * 100.0 mL mol of NH₄⁺ = 10 mmol

After reaction, the equation is:

Mol of NH₃ = Mol originally present + Mol of NH₃ added = (10 + 0.9).

mol of NH₃ = 10.9 mmol

mol of NH₄⁺ = mol initially present - mol added

mol of NH₄⁺ = (10 - 0.9)

Since volume is in both the numerator and the denominator

mol of NH₄⁺ = 9.1 mmol,

we can substitute mol for concentration.

Kb = 1.8*10⁻⁵

pKb = -log(Kb) = -log(1.8*10⁻⁵) = 4.745

Make use of:

pOH = pKb + log [conjugate acid]/[base] = 4.745 + log [9.1/10.9] = 4.666

occupy:

pH = 14 - pOH = 14 - 4.6663 = 9.3337

pH = final pH - initial pH

= 9.3337 - 9.2553

= 0.0784

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Why the reduction potential of Cu2+ is positive?

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When compared to H+/H, a positive result for Cu2+/Cu implies that the reduction occurs more quickly. It is a stronger oxidising agent as a result.

It also implies that Cu is unable to convert acidic H+ ions to H2 using this process. A species' propensity to gain electrons and become reduced is known as its reduction potential. It is expressed in volts or millivolts. Greater reduction potential is indicated by larger positive reduction potential readings. High enthalpy of atomization and low enthalpy of hydration characterise copper. Because the considerable energy required to convert Cu(s) to Cu(aq)2+ is not offset by hydration enthalpy, the value of E(Cu2+/Cu) is unusually positive. Cu2+ has a typical reduction potential of +0.34 For instance, Cu2+ possesses a positive charge and has lost two electrons. oxidise to bring about the loss of electrons in an atom or group of atoms during a chemical process.

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which transition state is more stable and why? select an answer and submit. for keyboard navigation, use the up/down arrow keys to select an answer. a the transition state that produces the markovnikov product is more stable because a partial positive charge is forming on tertiary carbon your answer b the transition state that produces the markovnikov product is more stable because a partial positive charge is forming on primary carbon c the transition state that produces the anti-markovnikov product is more stable because a partial positive charge is forming on tertiary carbon d the transition state that produces the anti-markovnikov product is more stable because a partial positive charge is forming on primary carbon

Answers

Answer:

The closer the transition state to the product, the more stable it is. It is because this transition state is closest to the final form of the product, which is usually stable

How many moles of O2 are in a
container with a volume of 67 L
at STP?

Answers

Hey, divide by 22.4, 67/22.4 = 2.99 moles of O2

draw the orbital diagram for a group 5a(15) element. how many unpaired electrons are present in the ground state of the atoms in group 4a(14)?l

Answers

There are two unpaired electrons present in the ground state of the atoms in group 4A(14) in the periodic table.

Electronic configuration explains the arrangement of the electrons in each subshell and each orbital of an atom. The general electronic configuration of group 4A elements is written as ns2np2. The total number of valence electrons in group 4A elements is four. Two electrons are present in s-orbital which is paired and two electrons are present in p-orbital which is unpaired. Therefore, the number of unpaired electrons present in the ground state of the atoms in Group 4A(14) is two. The electrons cannot be in the same orbital because of Hund's Rule which states that in a set of degenerate orbitals.

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You are titrating a solution of sodium hydroxide of unknown concentration with a solution of phosphoric acid that has a concentration of 0. 220 m. Starting with 24. 0 ml of the sodium hydroxide solution, you use 19. 4 ml of the acid to titrate the base to completion. Calculate the concentration of the sodium hydroxide solution.

Answers

The concentration of the sodium hydroxide solution after titration is 0.816M.

Calculate the concentration of the base by using the equation for neutralization reaction.

n₁M₁V₁ = n₂M₂V₂

Where,

n₁, M₁ and V₁ are the are the n-factor, molarity and volume of acid (H₃PO₄).

n₂, M₂ and V₂ are the n-factor, molarity and volume of base (NaOH).

Given,

n₁ = 3

M₁ = 0.220 M

V₁ = 24 mL

n₂ = 1

M₂ = ?

V₂ = 19.4 mL

Substituting the values we get,

n₁M₁V₁ = n₂M₂V₂

⇒ 3 × 0.22 × 24 = 1 × M₂ × 19.4

⇒ M₂ = (3 × 0.22 × 24) / 19.4

⇒ M₂ = 0.816 mL

Hence, the value of the concentration of the base is 0.816 mL.

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In aqueous solution, classify the compounds as strong acids, weak acids, strong bases, weak bases other. H3PO4, HF, LiOH, Ba(OH)2, (CH3)3N, NH3, CH3, COOH, NaCl, HNO3, HCl, CsOH, H2CO3, H2SO4,HCN, Ca(OH)2, Hi, NO3, HCN, H2CO3.

Answers

Here is the classification of each compound:

Strong acids: HI, HNO₃, HCl, and  H₂SO₄Weak acids: H₃PO₄, HF, CH₃COOH, HCN, and H₂CO₃Strong base: LiOH, Ba(OH)₂, CsOH, and Ca(OH)₂Weak base: (CH₃)₃N, NH₃, and NO₃Others: NaCl

Acid is a substance that, in an aqueous solution, is ionized and gives  H⁺ ions when dissociates. Strong acids are substances that are completely ionized in solution, while weak acids are only partially ionized.

Base is a substance that, in an aqueous solution, is ionized and gives OH⁻ ions when dissociates. Strong bases are completely ionized, while weak bases are only partially ionized.

Since weak acids and weak bases don't go 100% to completion, their reactions are reversible reactions (written using ⇄ symbols instead of the usual arrow).

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a sample of pure fe2o3 contains 14.8 g of oxygen atoms. calculate the total grams of fe2o3. the molar mass of fe2o3 is 159.69 g/mol.

Answers

The total grams of Fe2O3 are 49.2 g Fe2O3.

What is gramme?

The gramme is a unit of mass in the International System of Units (SI) that is equal to one thousandth of a kilogramme. It was originally known as the gramme.

The inorganic substance with the formula Fe2O3 is known as iron(III) oxide or ferric oxide. It is one of the three primary oxides of iron, the other two being the rare iron(II) oxide (FeO) and the naturally occurring iron(II,III) oxide (Fe3O4) found in the mineral magnetite. The primary iron source for the steel industry is Fe2O3, which is the mineral hematite. Acids easily penetrate Fe2O3. Rust is frequently referred to as Iron(III) oxide, and to some extent this term is helpful because of the similarities in composition and a number of its features; nevertheless, in chemistry, rust is a poorly defined substance that is defined as Hydrous ferric oxide.

? g Fe2O3 = 14.8 g O ×1 mol O/15.9994 g O×1 mol Fe2O3/3 mol O×159.69 g Fe2O3/1 mol Fe2O3

                 = 49.2 g Fe2O3

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Is chlorine polar or nonpolar bond?

Answers

Chlorine is a non-polar bond. An example of a non-polar bond is the bond in chlorine.

Chlorine contains two chlorine atoms. The electrons are shared equally because the electronegativity difference between the two atoms is zero.

When two atoms share electrons evenly, a type of chemical bond known as a non-polar covalent link is created. The number of electrons shared by the neighboring atoms in an atom will therefore be equal. Because of the largest minor difference in electronegativity, the covalent bond is also referred to as nonpolar.

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What is the pressure of a tire at 25°C if the pressure is 1.5 m when the temperature is 15°C?

Answers

Ideal gas law is valid only for ideal gas not for vanderwaal gas. Therefore, the pressure of a tire at 25°C if the pressure is 1.5 atm when the temperature is 15°C is 1.55 atm.

What is ideal gas equation?

Ideal gas equation is the mathematical expression that relates pressure volume and temperature. There is no force of attraction between the particles.

Mathematically the relation between Pressure, temperature and volume can be given as

PV=nRT

Rearranging the equation we get

P₁÷T₁=P₂÷T₂

where,

P = pressure

T =temperature

R = Gas constant = 0.0821 L.atm/K.mol

Substituting all the given values, we get

P₁÷T₁=P₂÷T₂

1.5 ÷288=P₂÷298K

P₂=1.55 atm

Therefore, the pressure of a tire at 25°C if the pressure is 1.5 atm when the temperature is 15°C is 1.55 atm.

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What is the formula of gas?

Answers

The equations describing these laws are special cases of the ideal gas law, PV = nRT, where P is the pressure of the gas, V is its volume, n is the number of moles of the gas, T is its kelvin temperature, and R is the ideal (universal) gas constant.

By rearranging the ideal gas law, P=n(RTV)=nconst, it can be demonstrated that the pressure of a sample of gas is directly proportional to the number of moles of gas present when volume and temperature are maintained constant. The common measurement of pressure is the pascal (Pa). The kilopascal is the most practical measure for measuring commonplace gas pressures since a pascal is a relatively tiny unit of pressure (kPa). There are 1000 pascals in a kilopascal. The atmosphere is yet another widely used pressure measurement unit (atm).

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integrating concepts the reaction of vanadium(ii) oxide with iron(iii) oxide results in the formation of vanadium(v) oxide and iron(ii) oxide. write the balanced chemical equation.

Answers

The balanced chemical equation:

2VO + 3fe2O₃ → V2O₅ + 6FeO

What is balanced chemical reaction?

A chemical equation is said to be balanced if the same amount of atoms of each type are involved in the reaction on both the reactant and product sides. A chemical equation that is in balance will have an equal amount of mass and change.

On the left and right sides of the reaction arrow in a balanced equation, the same number of each type of atom is present. The products go on the right side of the arrow when writing a balanced equation, and the reactants go on the left.

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(1.) A botanist in a laboratory is attempting to grow pothos plants at a faster rate. In order for the plants to grow faster, they must absorb 7.51 x 10° J of energy. What frequency of light is needed to produce a faster growing plant?

(2.) What is the wavelength needed to produce a faster growing plant?

Answers

According to the electromagnetic spectrum and the E= hcυ , the frequency of light is 3.77×10²⁶ s[tex]^-1[/tex] and wavelength of light is 26.5×10[tex]^-[/tex][tex]^28[/tex] m.

What is electromagnetic spectrum?

The electromagnetic spectrum consists of electromagnetic radiation  which consists of waves made up of electromagnetic field which are capable of propogating through space and carry the radiant electromagnetic energy.

The radiation are composed of electromagnetic waves which are synchronized oscillations of electric and magnetic fields . They are created due to change which is periodic in electric as well as magnetic fields.

In  the given problem, frequency of light is calculated as, υ=E/hc which is υ=75.1/6.626×10[tex]^-[/tex]³⁴×3×10⁸=3.77×10²⁶ per second and as wavelength is reciprocal of frequency that is λ=1/υ=1/3.77×10²⁶=26.5×10[tex]^-28[/tex] m.

Thus the frequency and wavelength of light is 3.77×10²⁶ per second and 26.5×10[tex]^-28[/tex] m respectively.

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A metalloid acts as a conductor at what temperature

Answers

Answer: high temperatures

Explanation:

It varies.

Why does chlorine have a lower melting point than phosphorus?

Answers

If we compare the size of chlorine and phosphorous, along the period, size of the atom decreases.

So, size of chlorine is smaller thank the phosphorous.

Due to the smaller molecule size of chlorine with comparatively weaker van der Waals attractions, and so chlorine will have a lower melting and boiling point than phosphorus.

Whereas, Phosphorous has 4 atoms of phosphorous making it bigger in size than the molecule chlorine.

It has more number of electrons, hence stronger will be the  Van Der Waal's forces of attraction, so a higher melting point.

As higher energy will be needed to overcome these intermolecular forces.

Vander Waal forces of attraction  is the attraction of intermolecular forces between molecules.

There are two kinds of Van der Waals forces:

Weak London dispersion forces and

Stronger dipole-dipole forces.

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will a precipitate form when 20.0 ml of 0.10 m ba(no3)2(aq) and 50.0 ml of 0.10 m na2co3 (aq) are mixed together? ksp baco3

Answers

A precipitate will form when 20.0 ml of 0.10 m ba(no3)2(aq) and 50.0 ml of 0.10 m na2co3 (aq) are mixed together.

What is a precipitate?

In aqueous solution, precipitation is the process of turning a soluble substance into an insoluble solid from a supersaturated solution.Precipitation of a compound can occur when its concentration exceeds its solubility. This may be due to temperature changes, solvent evaporation, or mixing of solvents. Precipitation occurs faster from a highly oversaturated solution.Chemical reaction forming a precipitate. When the barium chloride solution reacts with sulfuric acid, a white precipitate of barium sulfate is formed. Potassium iodide solution reacts with lead(II) nitrate solution to form a yellow lead(II) iodide precipitate.

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Explain why the spectrum produced by a 1-gram sample of element z would have the same spectral lines at the same wavelengths as the spectrum produced by a 2-gram sample of element z.

Answers

The spectrum produced by a 1-gram sample of element z would have the same spectral lines at the same wavelengths as the spectrum produced by a 2-gram sample of element z because the position of the spectral lines does not depend on the amount of mass. but of the type of atom or molecule that produces them.

What are spectral lines?

They are dark or bright lines in a uniform and continuous spectrum, the result of an excess or deficiency of photons in a narrow range of frequencies, compared to other nearby frequencies.

Spectral lines correspond to a certain atom

Due to the intrinsic property that each atom has to emit a single spectral line, these lines have been very useful to identify the chemical composition of any medium that allows light to pass through it.

The use of spectroscopy

The spectral lines also depend on the physical conditions of the gas, hence they are used to determine the physical characteristics and chemical composition of stars and other celestial bodies, for which there is no other method of analysis.

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A plant is left in a protected greenhouse that pumps in fresh carbon dioxide. The plant also has access to sunlight and can make its own sugar. However, the plant is beginning to die. What is most likely missing?.

Answers

For the plant, it can be too hot or too cold. Water is not required by the plant. Carbon dioxide is not necessary for the plant. In order to photosynthesize their food, plants first utilize CO2, but they also use oxygen.

What is photosynthesis?

The plant can produce its own sugar and has access to sunlight. The plant can produce its own sugar and has access to sunlight. But the plant is starting to wither. The process by which plants convert carbon dioxide, water, and sunshine into oxygen and sugar-based energy is known as photosynthesis. Once they have carbon dioxide and water, they can use solar energy to create food. Another gas called oxygen is a byproduct of the production of plant nourishment. The leaves emit this oxygen into the atmosphere.

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the titration of 25.00 ml of 0.2215 m hcl required 28.84 ml of naoh for neutralization. what is the molarity of the naoh?

Answers

The molarity of sodium hydroxide is  0.192 M

This is a acid-base titration between a strong acid and a strong base, therefore, this reaction is completely done, and the reaction is the following:

NaOH + HCl -------> NaCl + H2O

Assuming a 1:1 mole ratio, the following is true:

1 mole NaOH = 1 mole HCl

Expressing in concentration and volume:

Mb * Vb = Ma * Va

We have the concentration and volume of the acid, and the volume of the base, so we can solve for the concentration:

Mb* 28.84 = 0.2215*25

Mb = [tex]\frac{0.2215*25}{28.84}[/tex]

Mb = 0.192 M

This is the concentration of the NaOH solution

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Which group is most likely to react with the halogens?

Answers

Group 1 and Group 2 metals

How many electrons are in the outermost shell of the ge4+ ion in its ground state?.

Answers

There are eighteen electrons in the outermost shell of the Ge4+ ion in its ground state.

Electron configuration of germanium

The electronic configuration shows that the last shell of germanium has four electrons and the d orbital has a total of ten electrons, but the ionic state of the element changes depending on the bond formation.

Electron configuration of the Ge4+ ion

The germanium atom donates two electrons in the 4p orbital and two electrons in the 4s orbital to convert the germanium ion (Ge4+).

Ge – 4e– → Ge4+

The electronic configuration of the germanium ion (Ge4+) is:

1s2 2s2 2p6 3s2 3p6 3d10.

Electrons in the last shell of the Ge4+ ion

The electron configuration shows that the Ge4+ ion has three shells and the last shell has 18 electrons.

In other words, there are eighteen valence electrons in the germanium Ge4+ ion.

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What patterns do you notice in the periodic table?

Answers

In the periodic table, we notice that elements move up or down a column, they are grouped together into groupings with comparable chemical properties.

The periodic table is reflected in the patterns and trends in its rows and columns. Elements are grouped together into groups that have similar chemical characteristics as they move up or down a column. The atoms trend smaller or larger in size, and their reactivities fluctuate left to right within a row.

Beyond periods and groups, the periodic table divides elements into four groups called blocks: the s block, the p block, the d block, and the f block. These groups provide more information about the arrangement of the electrons, who their likely neighbors are in the table, and which electrons are their valence electrons.

So, Elements are grouped together into groups with similar chemical properties as they progress up or down a column.

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a penny has a total of 3.1g. Zinc makes up 2.9g of the penny. What is the % by mass of zinc in the penny?

Answers

Answer:

Answer: 93.54%Explanation: Divide the mass of the zinc by the total mass of the penny. 2.9/3.1=0.9354To get to a percent, multiply by 100.

Explanation:

93.54% of zinc in the penny when a penny has a total mass of 3.1 grams and zinc makes up 2.9 g of the penny.

What is mass?

Mass is simply the measure of the amount of matter in a body.

Divide the mass of the zinc by the total mass of the penny.

=0.9354

To get to a percent, multiply by 100.

0.9354 x 100 = 93.54

Thus, the mass of the zinc in the penny is 93.54%.

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for a given molecule, when the molecule deviates from its non-ideal geometry, the non-ideal geometry is lower in energy than the ideal geometry

Answers

The structure of a molecule like CH 2O (AX 3), whose double bond repels single bonds more potently than single bonds repel each other, is given below. As a result, the geometry is not perfect.

What leads to a departure from the optimal bond angle?

A molecule shape's actual bond angles can differ for a variety of reasons. The size of the participating atoms, the presence of lone pairs, numerous bonds, and big groups bound to the core atom

Why does a molecule experience distortion in perfect geometry?

Since a lone pair of electrons requires more space than a bonding pair does, the molecular geometry is altered to provide the lone pair with more room, which leads to narrower bond angles than in the ideal geometry.

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A 12-ounce can of soda contains 14 grams of sugar. How many grams of sugar are in 1 ounce of soda?.

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In 1 ounce of soda, there are 1.17 sugar grams. if 14 grams of sugar are present in a 12-ounce a can soda

Describe the division method.

A bunch of items are divided into equal portions using the division method. Multiplications are the exact opposite of divisions. For instance, dividing by two (20) means dividing it into two (10-piece) equal groups. The inverse of multiplication is division. When you multiply three groups of four to produce twelve, you get four in each group when you split twelve into three equal groups.

In light of this, a 12-ounce a can Coke has 14 sugar grams.

Considering that, a 12-ounce soda can has 14 sugar grams. So, 1 ounce of soda has 14/12 = 1.17 grams of soda.

As a result, 1.17 sugar grams are present in 1 ounce of soda.

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How do you predict the number of bonds?

Answers

Covalent bonds are made by sharing of electrons to complete the octet or doublet of the atom to attain stability.

Covalent bond refers to the mutual sharing of one or more pairs of electrons between two atoms.

These electrons simultaneously attract the atomic nuclei of the two atoms participating in the covalent bond.

A covalent bond is formed only when the electronegativity difference of two atoms is too small so that an electron transfer to form ions will not occur.

Number of bonds for a neutral atom = (Number of electrons in the complete valence shell i.e. 2 or 8 electrons) - (Number of valence electrons of the atom)

for example:

Number of bonds for a neutral carbon = (Number of electrons in the complete valence shell i.e. 2 or 8 electrons) - (Number of valence electrons of the carbon)

which means,

Number of bonds for carbon atom = 8 - 4

Number of bonds for carbon atom = 4

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