Why add ammonia to test solution in a penny saved is penny earned lab

Answers

Answer 1

Ammonia is added to the test solution in a penny-earned lab to test the behavior of the reaction on a penny.

What is the purpose of the penny lab?

The cause of this Penny Lab is to determine how soap on a penny affects the figure of drops that it can hold, compared with a penny with no soap. Water molecules are impelled to each other, so they tend to try to stick together (cohesion). When a copper penny is heated in a solution of sodium hydroxide solution assorted with zinc dust, small amounts of zinc dissolve into the surface of the penny. This causes the penny to look silver already there is now a layer of zinc over the outside of the penny.

So we can conclude that  In this activity you will see that soap decreases the surface tension of water by satiuate water droplets on top of a penny.

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Related Questions

A sample of gas with an initial volume of 29.1 Lat
a pressure of 719 mm Hg and a temperature of
306 K is compressed to a volume of 14.1 L and
warmed to a temperature of 372 K.

Answers

The pressure is 6.215mmHg

Pressure is force per unit area of surface

Here given data is

Initial volume V₁ = 29.1 L

Initial temprature T₁ = 306 K

Initial pressure P₁ = 719 mm Hg

Final volume V₂ = 4.1 L

Final temprature T₂ =  372 K

Final pressure P₂ = ?

We have to find final pressure = ?

So the formula is

P₁V₁/T₁ = P₂V₂/T₂

719 mm Hg×29.1 L/ 306 K = P₂×4.1 L/372 K

68.37 =  P₂×0.011

P₂ = 68.37/0.011

P₂ = 6.215mmHg

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What are the two substances produced through photosynthesis? A. water. B. sugars. C. oxygen. D. carbon dioxide.

Answers

Sugars and Oxygen are being produced.

Carbon dioxide + water = Glucose & Oxygen

What is the ppm concentration when 7.0 x 10 "-3g" of sodium chloride is dissolved in a solution with a volume of 2

Answers

The ppm concentration of the sodium chloride solution, given that 7.0×10⁻³ g is dissolved with a volume of 2 L is 60 ppm

How do I determine the concentration in ppm?

To obatin the concentration in ppm, we'll begin by obtaining the mole of the sodium chloride in the solution. This can be obtained as follow:

Mass of sodium chloride = 7.0×10⁻³ gMolar mass of sodium chloride = 58.5 g/molMole of sodium chloride =?

Mole = mass / molar mass

Mole of sodium chloride = 7.0×10⁻³ / 58.5

Mole of sodium chloride = 0.00012 mole

Finally, we shall determine the concentration in ppm. This can be obtained as follow:

Mole of sodium chloride = 0.00012 moleVolume of solution = 2 LConcentration (in ppm) =?

Concentration (in ppm) = (mole of solute / volume) × 10⁶

Concentration (in ppm) = (0.00012 / 2) × 10⁶

Concentration (in ppm) = 60 ppm

Thus, we can conclude that the ppm concentration is 60 ppm

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Which pair of molecules can form a hydrogen bond with one another

Answers

Here's some examples

CH, OH, FH, etc

Which two bones make up the jaw?

Answers

Explanation:

The lower jaw (mandible), which also shapes the lower face and chin, supports the bottom row of teeth. The bone that moves when the mouth opens and shuts is this one. The upper jaw's (maxilla) function is to support the nose, hold the upper teeth, and shape the middle of the face.

steric number of benzene​

Answers

The hybridization of benzene is sp² hybridizes the benzene is combination of carbon and hydrogen . the steric number of benzene of central atom carbon is 3.

The formula for the count of steric number is given as :

steric number = number of the lone pairs on the central metal atom + the number of atom bonded with the central atom. The benzene contain the 6 carbon atom an the 6 hydrogen atom. the central atom here is carbon.  the benzene have 12 sigma bonds and 3 pi bond mean double bond. The total number of covalent bond is 15.

Thus, The hybridization of benzene is sp² hybridizes the benzene is combination of carbon and hydrogen . the steric number of benzene of central atom carbon is 3.

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A 22.46 gram sample of cobalt is heated in the presence of excess bromine. A metal bromide is formed with a mass of 113.8 g. Determine the empirical formula of the metal bromide.

Enter the elements in the order Co, Br

empirical formula =

Answers

The empirical formula of the metal bromide, given that 22.46 grams sample of cobalt is heated in the presence of excess bromine is CoBr₃

How do I determine the empirical formula of the metal bromide?

We'll begin by obtaining the mass of bromine in the compound. This can be obtained as follow:

Mass of cobalt = 22.46 gramsMass of metal bromide = 113.8 gramsMass of bromine =?

Mass of bromine = (Mass of metal bromide) - (Mass of cobalt)

Mass of bromine = 113.8 - 22.46

Mass of bromine = 91.34 grams

Finally, we shall determine the empirical formula of the metal bromide. Details below:

Mass of cobalt (Co) = 22.46 gramsMass of bromine (Br) = 91.34 gramsEmpirical formula =?

Divide by their molar mass

Co = 22.46 / 58.9 = 0.381

Br = 91.34 / 79.9 = 1.143

Divide by the smallest

Co = 0.381 / 0.381 = 1

Br = 1.143 / 0.381 = 3

Thus, we can conclude that the empirical formula of the metal bromide is CoBr₃

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in a newspaper, the prosecutor said, “Trace evidence is what was really important in this case. Without it, the suspect would not have been found guilty.” Based on this statement, what MOST likely happened in this case?


A.

The murder weapon was found at the suspect’s home.


B.

Multiple witnesses claimed to have seen the suspect commit the crime.


C.

A piece of the suspect’s hair was found on the victim’s body.


D.

There was video footage of the suspect leaving the victim’s home.

Answers

Trace evidence in the above case refers to the piece of the suspect’s hair that was found on the victim’s body.

Trace Evidence Analysis is the field  of forensic science that deals with the minute transfers of materials that cannot be seen with the human eye. The handling and analysis of trace evidence requires care and specialized techniques. Trace evidence may provide a link between the victim and a suspect, a victim and a scene, or the suspect and a scene.

Thus with the help of trace trace evidence we can identity the suspect.

It is not uncommon for people to shed hair throughout the day.  The ease of transfer of this type of evidence makes it very useful in criminal investigation.  Forensic testing of hairs involves identification of human versus animal hair and also the comparison of microscopic features to differentiate between hairs from different individuals.  Once comparison is completed, hair with follicular tags can be sent to the Nuclear DNA Unit for analysis.

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Explain why the arrangement of molecules affect the compressibility of the different states of matter.

Answers

Matter in the solid state maintains a fixed volume and shape, with component particles (atoms, molecules, or ions) close together and fixed into place, as the intermolecular forces are high.Matter in the liquid state maintains a fixed volume but has a variable shape that adapts to fit its container. Its particles are still close together but move freely, as their intermolecular forces are less than that in solids ut more than in gases.Matter in a Gaseous state has no fixed volume, shape, or size. Its particles are far apart and move freely and fill up the container in which they are kept. So the intermolecular forces are least in Gases.

How does the arrangement of the molecules differ in each state of matter?

Particles in a: gas is well separated with no regular arrangement. liquid are close together with no regular arrangement. solid are tightly packed, usually in a regular pattern.

How will you differentiate the compressibility of the three phases of matter?

Compressibility: It is the property of matter in which its volume is decreased by applying force.

Fluidity: Matter can flow. Filled a gas container: On filling, a gas takes the shape of the container. Shape: Having definite boundaries.

Thus, different states of matter are affected by the arrangement of molecules.

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You have 3.6 moles of C2H4O3 and excess O2. How many moles of O2 are required?

Answers

The number of moles of O₂ required to react with 3.6 moles of C₂H₄O₃ is 5.4 moles

How do I determine the mole of O₂ required?

First, let us observed the balanced equation, to what we can obtain. This is shown below

2C₂H₄O₃ + 3O₂ -> 4CO₂ + 4H₂O

From the balanced equation above,

2 moles of C₂H₄O₃ reacted with 3 moles of O₂

With the above information from the balanced equation, we can determine the number of moles of O₂ required to react with 3.6 moles of C₂H₄O₃. This can be obtained as follow:

From the balanced equation above,

2 moles of C₂H₄O₃ reacted with 3 moles of O₂

Therefore,

3.6 moles of C₂H₄O₃ will react with = (3.6 × 3) / 2 = 5.4 moles of O₂

Thus, number of mole of O₂ required is 5.4 moles

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In two or more comeplete sentences explain how to ballance the chemical equation and classify its reaction type.___ P4+ O2---->___ P2O3

Answers

Answer:

Put a coefficient of 2 in front of P4. Then a coefficient of 6 in front of O2. Then a coefficient of 4 in front of P2O3.

Explanation:

This is a synthesis reaction because of the two different atoms form a compound

5.57 moles of O2 react with H₂ to form H2O. How many moles of H₂ are consumed in
the process?

Answers

The number of moles of H₂ consumed in the process is 11.14 moles.

How to calculate number of moles?

Stoichiometry is the study and calculation of quantitative (measurable) relationships of the reactants and products in chemical reactions.

The number of moles of a product or reactant can be calculated as follows:

The reaction between oxygen and hydrogen to give water is as follows:

2H₂ + O₂ = 2H₂O

Based on the above equation, 2 moles of hydrogen reacts with 1 mole of oxygen.

Hence, 5.57 moles of oxygen will react with 11.14 moles of hydrogen.

Therefore, 11.14 moles of hydrogen will be produced by 5.57 moles of oxygen.

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Choose the statement that best reflects how energy is involved with chemical bonds.

A. Energy is needed to break bonds.

B. Energy is released when bonds are broken.

C. Energy is formed in the breaking of bonds.

D. Energy plays no role in chemical bonds.

Answers

Energy is needed to break bonds, is the best exemplifies the interaction of energy with chemical bonds.

What is chemical bond?
An enduring attraction between ions or atoms known as a chemical bond is what allows molecules and crystals to form. The bond may be created by the sharing of electrons in covalent bonds or by the electrostatic attraction of two oppositely charged ions, as in ionic bonds. Covalent, ionic, and metallic bonds are examples of "strong bonds" or "primary bonds," whereas dipole-dipole interactions, the London dispersion force, and hydrogen bonding are examples of "weak bonds" or "secondary bonds." The sharing or exchange of electrons between the involved atoms results in strong chemical bonds. The negatively charged electrons that surround the nucleus as well as the positively charged protons that make up a nucleus are attracted to one another because opposite electric charges are attracted to one another.

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chemical reaction NaCl (aq) + AgNO3 (aq)

Answers

The given reaction is a double displacement reaction where, Cl and NO₃ group displaces between and sodium and silver atoms. The complete reaction is written as follows:

[tex]\rm NaCl (aq) + AgNO_{3} (aq) \rightarrow AgCl (s) + NaNO_{3} (aq)[/tex].

What is double displacement reactions?

There are various kinds of reactions classified based on the way of regrouping of atoms in the reactants.  In a double displacement reaction, two species from the reactant side are displaced of each other.

The reaction between sodium chloride and silver nitrate gives sodium nitrate in aqueous form and the precipitate of silver chloride. Here the groups nitrate and chlorine displaces between sodium and silver. Hence it is a double displacement reaction.

The net reaction represents the formation of the silver chloride precipitate.

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What is the mass of 1.81 x 1023
molecules of nitrogen, N2? The molar
mass of N2 is 28.02 g/mol.

Answers

The mass of nitrogen, N₂ that contains 1.81×10²³ molecules is 8.42 g

How do I determine the mass of nitrogen, N₂?

From Avogadro's hypothesis,

6.02×10²³ molecules = 1 mole of nitrogen, N₂

But

1 mole of nitrogen, N₂ = 28.02 g

Thus,

6.02×10²³ molecules = 28.02 g of nitrogen, N₂

With the above information, we can obtain the mass of nitrogen, N₂ that contains 1.81×10²³ molecules as follow:

6.02×10²³ molecules = 28.02 g of nitrogen, N₂

Therefore,

1.81×10²³ molecules = (1.81×10²³ × 28.02) / 6.02×10²³

1.81×10²³ molecules = 8.42 g of nitrogen, N₂

Thus, we can conclude that the mass of nitrogen, N₂ is 8.42 g

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A beaker weighed 53.10g. To the isolated beaker was added 5.348g of iron pellets and 56.1g of hydrochloride acid. What was the total mass of the beaker and the products after reaction?

Answers

114.5 g is the total mass of the beaker .

Total mass of beaker=53.10g+5.348g+ 56.1g

Total mass=114.5 g

Mass is used in physics to specific inertia, a fundamental function of all remember. basically, it's far a mass of rely's resistance to changing its course or pace in response to the software of a force.

The exchange that an applied force produces is smaller the extra mass a body has. The kilogram, the unit of mass within the international machine of gadgets, corresponds to 6.62607015 1034 joule seconds using Planck's consistent (SI). One joule is produced by way of multiplying one kilogram by means of one rectangular meter per 2d.

The kilogram is decided by genuine measurements of Planck's regular on account that the second one and the meter have formerly been described in phrases of other bodily constants.

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Tricarbon Octasulfide: How many carbons?
* Tricarbon Octasulfide: How many carbons

Answers

The Tricarbon Octasulfide:  number of carbons is 3.

The tricarbon octasulfide is C₃S₈. The tricabon octasulfide contains three carbons in the molecular formula. carbon is the element with the chemical symbol C is place in the group 14 and the period second in the periodic table. the atomic number of carbon is six. tri carbon is an inorganic compound with the chemical formula C₃ having three carbon atoms. carbon is used as the fuel in the form of coal , methane . carbon is a non metal and the state of carbon is solid state at room temperature.

Thus, The Tricarbon Octasulfide:  number of carbons is 3.

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The rock sample on the left is basalt, a type of igneous rock. Heat and intense
pressure changed the basalt into blueschist, a type of metamorphic rock.
Which characteristics of the rock sample changed?

Answers

The rock sample on the left is basalt, a type of igneous rock. Heat and intense pressure changed the basalt into blueschist, a type of metamorphic rock glaucophane schist

Blueschist facies is determined by the particular temprature and pressure condition required to metamorphose basalt to form blueschist and felsic rock and pelitic sediment which are subjected to blueschist facies condition will form different mineral assemblages then metamorphosed and blueschist facies rock are generally formed in subduction zones where oceanic crust is being stuffed into a trench that will become true blueschist once they were pressure cooked and also called glaucophane schist and is a metavolcanic rock that with similar composition at high pressure and low temprature

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If 2.5 ggiven off? of KCLO3 were heated in a test tube, how many grams of oxygen gas should be

Answers

Answer:

1.46878825 g O_3

Explanation:

the balanced equation is:

2 KClO_3 = 2 KCl + 3 O_2

using stoichiometry, you can find the amount of O_2 produced from 2.5 g KClO_3

2.5 g KClO_3 x (1 mol / 122.55 g KClO_3) x (3 mol O_3 / 2 mol KClO_3) x (48 g O_3 / 1 mol O_3) = 1.46878825 g O_3

A periods number on the periodic table corresponds to the number of:_____.

Answers

Explanation:

highest principal quantum number of the elements in the period

A periods number on the periodic table corresponds to the number of principal quantum number.

What does principal quantum number signify?

The orbit or shell in which an electron is placed in relation to the atom's nucleus is described by its primary quantum number.

The letter n designates this level.

Energy levels, subshells, and atomic orbitals can all be used to describe the configuration of electrons surrounding an atom's nucleus.

The total number of shells in which electrons are found in an atom is equal to the row, or period, number that an element occupies on the periodic table. The periodic table's period (or row) to which an atom belongs is represented by the greatest energy level number (1–7) for its electrons.

Hence, Each period in the periodic table corresponds to a principal energy level.

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SC.8.P
2. Construct Arguments Suppose you are a
construction worker. You use aluminum for a
window frame, copper for wiring, and iron for
nails. Use the properties of these materials to
justify their specific uses.

Answers

The aluminum use for a window frame , copper for wiring and iron for nail because of they are malleable , ductile, good conductor of electricity and high energy efficiency.

The aluminum is used for window because aluminum is malleable and the aluminum have high energy efficiency.  The copper is used as for the wiring because the copper is the good conductor of the electricity. The iron is use for the nail because iron is hard and have the tendency to resist the corrosion.

Thus, The aluminum use for a window frame , copper for wiring and iron for nail because of they are malleable , ductile , good conductor of electricity and high energy efficiency.

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Develop your understanding: Open the Isotopes screen, then explore to develop your own ideas about “isotopes”


1. Which element does the image below represent?
Please harry please

Answers

To see the number of atoms of an element in a given molecule we need to multiply stoichiometry to the number that is written on the foot of the element that is stoichiometry. First image represent oxygen element and second picture represent fluorine element.

What is atom?

Atom is the smallest particle of any element, molecule or compound. Atom can not be further divided. Atoms contains nucleus in its center and electron that revolve around the atom in fixed orbit.

In first image the number of protons are 8 which is of oxygen element. In second image the number of protons are 9 which is of Fluorine element.

Therefore,  first image represent oxygen element and second picture represent fluorine element.

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A sample of ideal gas is in a sealed container. The pressure of the gas is 735 torr , and the temperature is 6 ∘C . If the temperature changes to 74 ∘C with no change in volume or amount of gas, what is the new pressure, P2 , of the gas inside the container?
Express your answer with the appropriate units.

Answers

The final pressure of the gas is 914 torr. This is obtained by the use of the ideal gas equation and its parameters.

What is the ne pressure?

The ideal gases are those kind of gases to which we can be able to apply the ideal conditions. Let us recall that the laws of the ideal gas pertains to the gases that are in the ideal condition. This implies that the gases are at a low pressure and a high temperature.

Now we have that;

Initial pressure P1 = 735 torr

Final pressure of the gas P2 = ??

Initial temperature of the gas T1  =  6 ∘C or 279 K

Final temperature of the gas T2 =  74 ∘C  or 347 K

Then by the use of the formula;

P1/T1 = P2/T2

P1T2 = P2T1

P2 = P1T2/T1

P2 = 735 *  347 /279

P2 = 914 torr

The pressure that the gas would have at the end of the process is 914 torr.

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Please help I need help like right now!!
There are 0.0449 mole LiCIO4 and 0.135 mol H2O in the sample. Step 3: Divide each by the smallest number of moles to get the ratio.
What is the ratio of LICIO4:H2O? ?] mol LiClO4: [ ? ] mol H2O

Answers

The whole number mole ratio of LiCIO₄ to H₂O in the sample of the compound is 1 : 3.

What is the mole ratio of a reaction?

The mole ratio of the reaction is the ratio in which moles of reactants combine to form moles of product.

The mole ratio of the given reaction is calculated below as follows:

Moles of LiCIO₄ present in the sample of the compound = 0.0449 mole LiCIO₄

Moles of H₂O present in the sample of the compound = 0.135 mol H₂O

To get the whole number mole ratio, we divide each mole of substance present in the sample by the smallest number of moles.

Mole ratio of  LiCIO₄ = 0.0449 mole / 0.0449 mole

Mole ratio of  LiCIO₄ = 1

Mole ratio of  H₂O = 0.135 / 0.0449

Mole ratio of  H₂O = 3

Hence mole ratio of  LiCIO₄ to H₂O in the sample = 1 : 3

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Question attached, chemistry :(

Answers

Answer:

jar 1 = barium chloride

jar 2 = potassium bromide

jar 3 = calcium iodide

Explanation:

Electronegativity (EN): A measure of an atom's ability to attract electrons (or electron density) toward itself. On the Pauling scale, fluorine is the most electronegative element (EN = 4.0) and cesium and francium are the least electronegative elements (EN = 0.7).

ASAP PLEASEEEEE HELP
Leaving the doors open while the air conditioner is on in a home represents?

A. an loop system

B. an open system

C. an closed system

D. an isolated system​

Answers

I think it’s B, an open system

Option B: an open system

How many moles of Mn are there in a sample of Mn that contains 3.80×1024 atoms?

Answers

There are moles of Mn in a sample of Mn that contains 3.80 × 10²⁴ atom is 6.31 moles.

How to calculate number of moles?

The number of moles in a substance can be calculated by dividing the number of atoms of that substance by Avogadro's number, which is equivalent to 6.02 × 10²³ atoms.

No of moles = no of atoms ÷ 6.02 × 10²³

According to this question, there are 3.80 × 10²⁴ atoms in manganese element. The number of moles in this substance is as follows:

no of moles = 3.80 × 10²⁴ ÷ 6.02 × 10²³

no of moles = 6.31 moles

Therefore, 6.31 moles is present in 3.80 × 10²⁴ atoms of manganese.

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If 6.92 mol of C5H12 reacts with excess O2, how many moles of CO2 will be produced by the following combustion reaction? C5H12+8O2⟶6H2O+5CO2

Answers

If 6.92 mol of C₅H₁₂ reacts with excess O₂, number of moles of CO₂ will be produced by the following combustion reaction is 34.6 mol.

The balanced reaction is given as:

C₅H₁₂   +   8O₂   --->   5CO₂   +    6 H₂O

Moles of C₅H₁₂  = 6.92 mol

1 mole of C₅H₁₂  produces 5 moles of CO₂

therefore , 6.92 mol of C₅H₁₂ = 5 × 6.92 mol

                                                = 34.6 mol of CO₂

number of moles of CO₂  = 34.6 mol

Thus, If 6.92 mol of C₅H₁₂ reacts with excess O₂, number of moles of CO₂ will be produced by the following combustion reaction is 34.6 mol.

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Calculate the molecular formula for a compound whose empirical formula is CH2O and molar mass is 150.0 g/mol.
Step 1: Calculate the molar mass for the empirical formula.
What is the molar mass of CH2O?
(C=12.01 amu, H=1.01 amu, O=16.00 amu) [?] g/mol CH₂O

Answers

The molecular formula is (CH2O)5 when the scale factor is 5 and the empirical formula is CH2O.

Considering the question given above, the following data were obtained:

Empirical formula = CH₂O

Molar mass of compound = 150 g/mol

Scaling factor (n) =?

Empirical formula × n = molar mass

[CH₂O]n = 150

[12 + (2×1) + 16]n = 150

[12 + 2 + 16]n = 150

30n = 150

Divide both sides by 30

n = 5

Therefore, the scaling factor is 5

A scale factor is a ratio between corresponding measurements of an object and a representation of that object.In chemistry, the empirical formula of a chemical compound is the simplest whole-number ratio of atoms present in a compound. .

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Repeat these steps for a Carbon-14 nucleus. Describe the similarities and differences you see.

Answers

Explanation:

Explanation:

Nucleons can be either protons or neutrons contained in an atom, and since Carbon-14, has a mass number of 14, it is evident that it contains 14 nucleons, as the mass number of an element is the sum of the protons and neutrons of an element

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