What is the energy of a photon of wavelength 5.50 x 10^-7m in joules

Answers

Answer 1

The wavelength is 3.975 × 10^-19 J.

What is wavelength?

Wavelength can be difined as the distance between two successive crests or throughs of a wave.

To find out the energy in joules given the wavelength of a photon we have to  Use the  Planck's equation E = h x c / λ and substitute the values of   the wavelength (λ), Planck's constant in joules (h = 6.6261 × 10⁻³⁴ J⋅s), and speed of light (c = 299792458 m/s). With these units, you'll get an energy result in joules (J).

Energy of photons,

E = hc/λ

(6.626 × 10-34Js) × (3 × 108ms-¹)/

5 x 10-7

= 3.975 × 10^-19 J

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Related Questions

List the 2 factors mentioned in 11.1 that determine an objects thermal energy.

Answers

Answer:

The thermal energy of matter depends on how fast its particles are moving on average, which is measured by temperature, and also on how many particles there are, which is measured by mass.

pressure has little effect on the solubility of liquids and solids because they are almost incompressible. True or False

Answers

It is a true statement that; pressure has little effect on the solubility of liquids and solids because they are almost incompressible.

What is compressibility?

We know that the term compressibility has to do with the change in the properties of an object by the mere application of pressure on the object that is under study. The factor of compressibility is what is going to determine whether or not a solid, liquid or gas can be able to have  a solubility that is affected by the pressure of the substance.

We have to bear in mind that when we are talking about pressure in science that our minds would have to go to the force per unit area of the substance that is under study in each particular case.

We know that the solid and the liquid  is not as compressible as the gas because the solid and the gas does have a fixed volume while the gas does not have a fixed volume thus it is going to take on the volume of the container that carries it.

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which phenomenon that goes unexplained by lewis structures is solved by applying molecular orbital theory?

Answers

Molecular Orbital Theory is used to explain phenomena that cannot be explained by Lewis Structures, such as the delocalization of electrons, the formation of molecular orbitals, and the stabilization of molecules.

Exploring the Benefits of Molecular Orbital Theory for Understanding Chemical Bonding

Molecular Orbital Theory provides a more elaborate description of chemical bonding than Lewis Structures by taking into account the wave-like nature of electrons. It uses quantum mechanics to explain the behavior of electrons in molecules, and the formation of molecular orbitals from the overlap of atomic orbitals. Molecular Orbital Theory also accounts for delocalization of electrons, which occurs when electrons spread across more than one atom, as well as the stabilization of molecules, which is the process of molecules forming more stable bonds. These phenomena, which cannot be explained by Lewis Structures, are solved by applying Molecular Orbital Theory.

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The gravitational force between two objects will be very small unless which of the following is true?

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The statement that is true is one of the objects must have a very large mass.

The more the scale of the masses, the more the scale of the gravitational pressure (additionally referred to as the gravity pressure). The gravitational pressure weakens swiftly with growing distance among masses. The gravitational pressure is extraordinarily difficult to discover until as a minimum one of the gadgets has quite a few mass.

The gravitational pressure among  gadgets is proportional to their hundreds and inversely proportional to the rectangular of the space among their centers.

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What are the four transition effects?

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The four electronic transition effects is :

σ -  σˣ transitionn -  σˣ transitionπ - πˣ transition n - πˣ transition

1) σ -  σˣ transition occurs in the saturated hydrocarbon in which only sigma bonds are formed and no non bonding electrons.

2) n -  σˣ transition occurs in which non bonding electrons are present.

3) π - πˣ transition  occurs in which the unsaturated hydrocarbons contain the double or triple bond.

4) n - πˣ transition , this type of transition occurs in which the non bonding electrons on the hetero atom. the electron excited to the antibonding orbital that is  πˣ .

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Consider the acid‑catalyzed hydration of 3‑methyl‑1‑butene. for each of the four steps, add one or two curved arrows to the reactant side to show the mechanism.

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The acid‑catalyzed hydration of 3‑methyl‑1‑butene. for each of the four steps, add one or two curved arrows to the reactant side to show the mechanism is followed by the Markownikov's rule.

The acid‑catalyzed hydration of 3‑methyl‑1‑butene mechanism is given as follows :

CH₃ - CH - C = CH₂  ---->   CH₃ - CH - C - CH₂⁻   +   OH⁻   ---->  

          |      |                                      |      |

        CH₃   H                                 CH₃  H          

                                                                           

CH₃ - CH - CH - CH₂⁻   H⁺ ----->   CH₃ - CH - CH - CH₃

          |      |                                                 |     |

        CH₃  OH                                      CH₃    OH

The above mechanism is followed by the rule of the Markownikov's rule.

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based on its position in the periodic table, which atom would you predict to form an ionic compound with two bromine atoms?

Answers

The , calcium is on forming two bonds with two bromine atoms because it is a IIA group element.

What is periodic table?

All identified chemical elements are arranged in rows (referred to as periods) and columns (referred to as groups) according to increasing atomic number in the periodic table of chemical elements, also known as the periodic table.

What is bond?

In molecules, atoms are joined by chemical bonds. Atomic nuclei with positive charges interact with electrons with negative charges to form bonds (the positions of which in space are determined by quantum mechanics).

when an element reacts with two bromine atoms means ita valency is two.,i,e a metal can form two bonds.

So calcium is on forming two bonds with two bromine atoms because it is a IIA group element.

Na and Li are the IA group elements.so these two elements forming only one bond . i,e these are reacts with one bromine .

Al is 13th group element so it forms three bonds.

Carbon is a non-metal. it does not form ionic bond.

Therefore, calcium is on forming two bonds with two bromine atoms because it is a IIA group element.

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calculate the molality of a 15.0% by mass solution of mgcl2 in h2o. the density of this solution is 1.127 g/ml.

Answers

The molality of a 15.0% by mass solution of mgcl2 in h2o is 1.86 m.

Define molality.

The molality of a solution is defined as the number of moles of solute particles present in one kilogram of a solvent. In general, the molality expresses the concentration of a solution. In this case, water acts both as a solute and a solvent.

Given:

Mass solution of MgCl₂ in H₂O= 15%

Density= 1.127g/mL

To find:

Molality=?

Let's solve this question step by step:

Step 1: Calculate the mass of solute and solvent in 100 grams of solution

As it is given that 15.0% by mass solution of MgCl₂ (solute) in H₂O (water).

In 100 g of solution, there are 15.0 g of solute and 100.0 g - 15.0 g = 85.0 g of solvent.

Step 2: Calculate the moles corresponding to 15.0 g of MgCl₂

The molar mass of MgCl₂ is 95.21 g/mol.

Number of moles is given mass divided by the molar mass.

Number of moles= 15g/95.21 g/mol

=0.158 mol

Step 3: Convert the mass of water to kilograms.

As we know, 1 kg = 1,000 g.

=85/1000= 0.085 kg

Step 4: Calculate the molality of the solution.

Molality is a measure of the number of moles of solute in a solution corresponding to 1 kg or 1000 g of solvent.

Molality= 0.158 mol/0.085 kg

= 1.86 m.

Therefore, the molality of a 15.0% by mass solution of mgcl2 in h2o is 1.86 m.

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in the laboratory, a student dilutes 10.8 ml of a 6.60 m hydrobromic acid solution to a total volume of 250.0 ml. what is the concentration of the diluted solutio

Answers

The concentration of the diluted solution will be 0.017 M

It asks you to find the concentration, which is the safe to assume that the unit is Molarity (M). Also, the  unit was used in  the problem as well.

Molarity has the  units of moles/L so we have to work on getting to this point.

The problem states that you have the  10.8 mL of a 6.60 M concentration. First, we will need moles. To get the  moles, we use stoichiometry,

10.8 mL = 0.0108 L

0.00108 L x ( 6.6 moles/ L) = 0.07128 moles

0.00108 L x ( 6.6 moles/ L) = 0.07128 moles

This is how many moles are present inside the solution.

To find the new concentration, we divide the total number of moles by the new volume in the Liters:

0.07128 moles/0.25L = 0.01782 M

Rounding to two significant figures, we get 0.017 M.

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What are the three phases of the transition process?

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The three phases of transition process are melting, freezing and evaporation.

In a phase transition process, matter changes from one phase to another. The three phases of transition process are discussed below:

Melting: The change of state from solid to liquid is known as melting. The process by which ice changes into water is known as melting.

Freezing: The change of state of matter from liquid to solid state is known as freezing. The process of conversion of liquid water into ice is an example of freezing.

Evaporation: The change of state of matter from liquid to gaseous state is known as evaporation. The vapours released as a result of boiling of water is an example of evaporation.

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how to balance this chemical equation _____ Ca + _____ H2O --> _____ Ca(OH)2 + ____ H2

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How do you use covalent bond in a sentence?

Answers

Covalent bond, in chemistry, the interatomic linkage that results from the sharing of an electron pair between two atoms. The binding arises from the electrostatic attraction of their nuclei for the same electrons. A covalent bond forms when the bonded atoms have a lower total energy than that of widely separated atoms.

Molecules that have covalent linkages include the inorganic substances hydrogen, nitrogen, chlorine, water, and ammonia (H2, N2, Cl2, H2O, NH3) together with all organic compounds. In structural representations of molecules, covalent bonds are indicated by solid lines connecting pairs of atoms as shown in attached figure below.

In attached figure below; A single line indicates a bond between two atoms (i.e., involving one electron pair), double lines (=) indicate a double bond between two atoms (i.e., involving two electron pairs), and triple lines (≡) represent a triple bond, as found, for example, in carbon monoxide (C≡O). Single bonds consist of one sigma (σ) bond, double bonds have one σ and one pi (π) bond, and triple bonds have one σ and two π bonds.

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a mixture of gases contains 0.310 mol ch4, 0.270 mol c2h6, and 0.300 mol c3h8. the total pressure is 1.30 atm. calculate the partial pressures of the gases.

Answers

The partial pressure of a mixture of gases contains 0.310mol ch4, 0.270mol c2h6, and 0.300 c3h8 with total pressure 1.30atm are 0.476atm (for CH4), 0.390atm (for C2H6), 0.433atm (for C3H8).

What is partial pressure?

In a mixture of gases, each constituent gas has a partial pressure of that constituent gas as if it alone occupied the entire volume of the original mixture at the same temperature.

Now, let's calculate the partial pressure for each gas.

Given from the question

0.310 mol CH4

0.270 mol C2H6

0.300 mol C3H8

The total pressure is 1.30 atm

Partial pressure = mole fraction * total pressure

Total moles of gas = 0.310 + 0.270 + 0.300 = 0.88 moles

Partial pressure of CH4

= (CH4 mol / total moles) * total pressure
= (0.310 / 0.88) * 1.3

= 0.458atm (rounded)

Partial pressure of C2H6

= (C2H6 mol / total moles) * total pressure
= (0.270 / 0.88) * 1.3

= 0.399atm (rounded)

Partial pressure of C3H8

= (C3H8 mol / total moles) * total pressure
= (0.300 / 0.88) * 1.3

= 0.443atm (rounded)

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What is the reaction quotient, q, for this system when [h2] = 0. 200 m, [i2] = 0. 100 m, and [hi] = 3. 00 m?.

Answers

The reaction quotient, q, for this system when [h2] = 0. 200 m, [i2] = 0. 100 m, and [hi] = 3. 00 m is 450.

The reaction quotient, or Q, is a measure of the relative concentrations of the reactants and products in a chemical reaction. It is defined as the product of the concentrations of the products divided by the product of the concentrations of the reactants. In general, Q is used to determine whether a reaction is at equilibrium or not. If Q is equal to the equilibrium constant, K, then the reaction is at equilibrium. If Q is greater than K, then the reaction will proceed in the forward direction to reach equilibrium, while if Q is less than K, then the reaction will proceed in the reverse direction to reach equilibrium.

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If the mercury in a barometer raises 15. 5 centimeters due to a change in ambient pressure, what is the corresponding change in pressure in atm?.

Answers

The corresponding change in pressure in 0.2026 atm.

A change in pressure is a change in the amount of force applied to an area over a given surface. Pressure is measured in units called pascals (Pa). An increase in pressure occurs when more force is applied to the same area, or when the same amount of force is applied to a smaller area.

A decrease in pressure occurs when less force is applied to the same area, or when the same amount of force is applied to a larger area.

Convert 15.5 centimeters to millimeters (1 cm = 10 mm).

15.5 cm = 155 mm

Use the formula: Pressure (in atm) = (Height in mm) / 760.

Pressure = (155 mm) / 760

Pressure = 0.2026 atm

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a 4.4 g sample of gas occupies 2.24 l of volume at stp. without thinking too hard, what is the mw of the gas, and name two gases that would have this mw. write out your logic.

Answers

As a result, gas's molecular weight is 44g/mol. It is the gas's (Carbon dioxide) molecular weight.

What is Molecular Weight?

The total atomic weights of the atoms in a molecule are measured by its molecular weight. To calculate stoichiometry in chemical equations and reactions, chemists employ molecular weight. M.W. or MW are two frequent abbreviations for molecular weight. Atomic mass units (amu), Daltons, or a unitless expression can be used to indicate molecular weight (Da).

The mass of the isotope carbon-12, which is given a value of 12 amu, serves as the reference point for defining both atomic weight and molecular weight. Because there are many carbon isotopes, the atomic weight of carbon is not exactly 12.

A mole of any gas at STP takes up a volume of 22.4l

at STP, a gas fills a volume of 2.24l

Calculating the quantity of moles of gas in step two

Consequently, the amount of gas in moles

= 0.1 moles

This is equivalent to carbon dioxide's molecular weight.

=44g/mol

As a result, gas's molecular weight is 44g/mol. It is the gas's (Carbon dioxide) molecular weight.

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Given the thermochemical equation, calculate the heat evolved when 74. 6 g of sulfur dioxide (molar mass = 64. 07 g/mol) is converted to sulfur dioxide.

Answers

The heat evolved for sulfur dioxide to convert to sulfur trioxide is - 115.39 kJ. The answer is C.

See the attachment for the full question. First, we calculate the number of moles of sulfur dioxide (SO₂)

Mass = m = 74.6 g Molar mass = 64.07 g/moln = m ÷ molar mass
n = 74.6 ÷ 64.07
n = 1.164 mol

From the thermochemical equation, we know that to convert 1 mol of sulfur dioxide needs - 99.1 kJ.

The heat that is needed = number of moles × - 99.1 kJ

= 1.164 mol × - 99.1 kJ/mol

= - 115.387 kJ

≈ - 115.39 kJ

C

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Why does the trend for atomic radius decrease across a period?

Answers

The trend for atomic radius decrease across a period because the number of shells will remains the same but number of electrons increases in the shell so, the effective nuclear charge increases and size decreases.

The atomic radius decreases when we move from left to right in the periodic table this is because of the reason that the number of shells remains the same  across the period and the only the number of electrons will increases so. that the effective nuclear charge increases increase. the nucleus will strongly attract the electrons .

Thus, because of number of shells will remains the same but number of electrons increases in the shell so, the effective nuclear charge increases and size decreases.

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question 1 options: light in color, clear to white, hardness of 3, with 3 good planes of cleavage that meet at 60 and 120 degrees. ill react to

Answers

The unknown Compound is Calcite

It is light in colour,clear to white, have hardness of 3.

What is so special about Calcite?

CaCO3 is the chemical formula of the mineral calcite, which forms rocks. It occurs often in igneous, metamorphic, and sedimentary rocks all throughout the world. Calcite, the most prevalent type of calcium carbonate, is renowned for the variety and exquisite growth of its crystals. These most frequently appear as scalenohedra and frequently twin, occasionally generating heart-shaped, butterfly-like twins. Rhombohedral terminations are a frequent feature of crystals; those with shallow terminations are known as nailhead spar. Optically spar is a type of highly clear calcite. Calcite can grow into stunning crystals, but it is typically enormous.

The unknown Compound is Calcite

It is light in colour,clear to white, have hardness of 3.

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a student weighs out a 4.60 g sample of , transfers it to a 125 ml volumetric flask, adds enough water to dissolve it and then adds water to the 125 ml tick mark. what is the molarity of zinc sulfate in the resulting solution?

Answers

the molarity of zinc sulfate in the resulting solution is 0.24 M

Calculation :

n=m/M

n(NaI)=4.60g/(149.89g/mol)=0.030mol(NaI)​)

C=n/V

C(NaI)=0.030mol/0.125L=0.24M

The answer is 0.24 M

Molarity (also called molarity, bulk concentration, or substance concentration) is a measure of the concentration of a chemical species, especially a solute, in solution, expressed as the amount of substance per unit volume of solution. In chemistry, the most commonly used unit of molarity is moles per liter, symbolized in SI units as mol/L or mol/dm3. A solution with a concentration of 1 mol/L is called 1 molar, commonly called 1 M.

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Given the ionic formula what is the charge on ion x2o

Answers

The charge on ion with ionic formula  x₂o  is zero as the sum of charges in a compound is equal to zero.

What is an ion?

An ion is defined as an atom or a molecule which has a net electrical charge. There are 2 types of ions :1) cation 2) anion . The cation is the positively charged ion and anion is the negatively charged ion . As they are oppositely charged they attract each resulting in the formation of ionic bond.

Ions consisting of single atom are mono-atomic ions while which consists of two or more ions are called as poly-atomic ions . They are created by chemical interactions . They are very reactive in their gaseous state and rapidly react with oppositely charged ions resulting in neutral molecules.

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a 0.85 mol sample of a gas at 27 oc is in a rigid container with a volume of 1.65 l. what is the pressure of the gas in atm?

Answers

The pressure of the gas is 1285.6atm

Since,

T=27°C+273.15=3000.15K

n=0.85mol

V=1.65L

R=8.3144598

From ideal gas law

P= nRT/V

P=0.85×8.3144598×300.15/1.65

P=1285.6 atm

What is the ideal gas law?

The ideal gas law, also known as the general gas equation, is the equation of state for an academic  ideal gas.Although the ideal gas law has some limitations, it's an approximation of  numerous  feasts under  numerous conditions. Benoit Paul Émile Clapeyron formulated the ideal gas law in 1834 as a combination of Charles' empirical law, Boyle's law, Avogadro's law, and Gay- Lussac's law. The ideal gas law states that the product of the pressure and the volume of one gram patch of an ideal gas is equal to the product of the absolute temperature of the gas.

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45 g of CAC L2 are dissolved in enough water for the molarity of a solution is 1. 5 a.m. what is the volume of milliliters of the solution

Answers

The concentration terms are molality, normality and mole fraction. Molarity can be used to find out the ionic strength of any solution. Therefore, the volume in milliliters of solution is 260ml.

What is molarity?

Molarity can be calculated by dividing number of moles of solute by volume of solution in liter. Molarity is affected by temperature. Its unit is mole/liter. It measure the concentration of any solute in a solution.

Mathematically,

Molarity= number of moles of solute/volume of solution in litre (1)

Where,

moles= given weight /by molecular weight

         =45 g  ÷110.98 g/mol

         =0.40 moles

Molarity=  1. 5M

Substituting values in equation 1

1. 5=0.40/volume

Volume = 0.26L=260ml

Therefore, the volume in milliliters of solution is 260ml.

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answer the question.........
mb wrg subject but its biology

Answers

The description of nonpoint source pollution is dirty drainage from city roadways.

The correct option is A.

What is pollution?

Pollution describes the presence of substances in the environment that are harmful to the living organisms present in that environment.

Pollution may be classified based on the source of the pollution into:

point source pollution - point source pollution refers to pollution whose origin or source point is easily identifiable such as sewage from homes and industries or smoke from industriesnon-point source pollution - non-point source pollution refers to pollution whose source point is not easily identifiable, rather, it occurs as a result of the runoff or water snow that then carries pollutants from various sources as they flow. For example, after a flood, the flood water carries several pollutants with it as it flows over drainages and the ground.

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What pattern do you notice about the number of orbitals of each of the elements in the same row?

Answers

The pattern about the number of orbitals of each of the elements in the same row that the number of atomic orbitals is constant among all the elements in a period.

As an illustration, the first period's top row of elements each has one orbital for each electron. There are two orbitals for the electrons in every element in the second row (second period). Each row in the table adds an orbital as you descend it.

Starting from the innermost nucleus, the numbers of protons and neutrons increase with each successive element in the cycle.

So, you notice that the elements in a row possess similar characteristics.

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if you weigh out 0.205 g of salicylic acid, what is the theoretical yield for aspirin?

Answers

The aspirin yield is 0.266 g in theory.Aspirin binds to and acetylates serine residues in the active site of cyclooxygenase enzymes, which reduces the generation of prostaglandin.

What is the aspirin theoretical yield?

Aspirin binds to and acetylates serine residues in the active site of cyclooxygenase enzymes, which reduces the generation of prostaglandin. Serine is an amino acid that the body uses to produce proteins.

Calculation:

Given,

Salicylic acid mass used: 0.205 g

Salicylic acid's molecular weight is 138.12 g.

Aspirin has a molar mass of 180.16 g.

Given mass or molar mass Equals moles of salicylic acid

= 0.205/138.12

= 0.00148 mole

Aspirin is produced from one mole of salicylic acid.

Salicylic acid will therefore yield = 0.00148 180.16 moles.

0.266 grams of aspirin

The aspirin potential yield is therefore 0.266 g.

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how many molecules are in 9.4 moles of ibuprofen?

Answers

The number of molecules in 9.4 moles of ibuprofen is equal to  5.66 × 10²⁴.

What is a mole?

A mole of a substance can be described as an international standard unit that is used to calculate a given count of any particles. The particles that are counted in the unit of the mole are as chemically identical entities, individually distinct.

A mole can be used to calculate atoms, molecules, ions, or other particular particles. The 6.023 × 10 ²³ number of units present in one mole is known as Avogadro’s constant.

Given, the number of moles of ibuprofen = 9.4 mol

The number of molecules of ibuprofen in one mole = 6.023 × 10²³

The number of molecules of ibuprofen in 9.4 moles = 6.023 × 10²³ ×9.4

Number of molcules of ibuprofen = 5.66 × 10²⁴ molecules

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HELPPPPPPPPPPPPPPPPP please ily

Data Analysis LAB

1. Interpret Does the addition of silver bromide (AgBr) ions to NPVP improve the antimicrobial properties of the composite?


2. Interpret Which composite reduced the E. coli population to zero? How long does it take for each substance to reduce the bacteria population to zero?


3. Conclude Does a composite polymer containing NPVP and silver bromide show antimicro bial properties? Explain your answer.

Answers

From the graphical representation of the analysis, it is clear that the population of E coli bacteria decreases over  time with the AgBr concentration within the polymer.

What is silver bromide?

Silver bromide is an ionic compound formed by loss of one electron rom the silver metal to the bromine atom. Metallic silver and silver compounds are reported to be exhibiting anti -microbial properties.

Scientific experiments shown that silver is a potent antibacterial agent. Silver works in the cell membranes of bacterial making holes there and kill it.

From the given graph. It is clear that the addition of silver bromide has not improved the antibacterial property. The composite AgBr/43% NPVP shows higher anti-microbial property.

Silver nitrate shows higher antibacterial property than AgBr. It takes 100 -150 min to reduce the bacterial population significantly for each composites.

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which would be more moles- 414.64 grams of iron (3) nitrate or 6.4 x1023 atoms of Mg(OH)2

Answers

Simply divide the sample's weight by its molecular weight to determine its mole count. The remainder is equivalent to the quantity of moles. Example: What number of moles are there in 300 grams of sodium bicarbonate? 84 grams per mole is the molecular weight of sodium bicarbonate.

What is the sum in moles of 6.02 x10 23 atoms?

As a result, the mass of one mole of water is 18.02 g, or 6.022 x 10 23 molecules.

How many moles is iron nitrate made of?

There are 3 nitrate particles in a single equation unit of iron(III) nitrate. One mole of iron(III) nitrate contains three moles of nitrate ions.

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Is volume always 22.4 at STP?

Answers

Yes, volume is always 22.4 L at STP.

STP is commonly used to define standard conditions for temperature and pressure which is important for the measurements and documentation of chemical and physical processes.

This empirical relationship can be derived from the kinetic theory of gases under the assumption of a perfect (ideal) gas.

The law applies approximately to real gases at sufficiently low pressures and high temperatures.

At STP, all gases have the same volume for 1 mole of gas, and this volume is always 22 L.

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