A soft drink contains 28 mg of sodium in 305 g of H2O?
What the concentration of sodium in the soft drink in mass percent?

Answers

Answer 1

The concentration of sodium in the soft drink in mass percent is 9.179485 x 10⁻³ %.

Percentage by mass, mass %, is a measure of concentration that indicates the mass of solute per mass of solution. In other words, the mass percent of a component in the solution is defined as the ratio of the mass of the component to the mass of the solution, expressed as a percentage.

mass % = (mass of solute / mass of solution) x 100

In the case of a soft drink which contains 28 mg of sodium in 305 g of H₂O, sodium is the solute and the solution is the mixture of sodium and H₂O.

mass % = (mass of solute / mass of solution) x 100

mass % = (28 mg / 28 mg + 305 g) x 100

mass % = (28 mg / 305028 mg) x 100

mass % = (9.179485 x 10⁻⁵) x 100

mass % = 9.179485 x 10⁻³ %

Hence, the mass percent of sodium in the soft drink is 9.179485 x 10⁻³ %.

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Related Questions

Give IUPAC names for the following compounds:

Give IUPAC names for the following compounds:

Answers

Answer:

Explanation:

IUPAC nomenclature is based on naming a molecule's longest chain of carbons connected by single bonds, whether in a continuous chain or in a ring. All deviations, either multiple bonds or atoms other than carbon and hydrogen, are indicated by prefixes or suffixes according to a specific set of priorities

A sample of gas is inside a container. Classify each change based on whether it would increase or decrease the pressure
inside the container. Assume that variables not mentioned don't change.
Drag each tile to the correct
location.
Pressure Increases Pressure Decreases

Answers

The pressure will increase on increasing the temperature of container. is the correct answer

What is pressure ?

Pressure is a measure of the force applied perpendicular to a surface per unit area. The unit of pressure in the International System of Units (SI) is the pascal (Pa), but other units, such as atmospheres (atm), bar, torr, and pounds per square inch (psi), are also commonly used, depending on the context. Pressure can be generated by many different sources, including the weight of a column of a fluid, the compression of a gas, and the tension in a solid object. In physics and engineering, pressure is often used to describe the state of a fluid in a container, such as a gas in a cylinder or a liquid in a tank. In this context, pressure is related to the height of the fluid column and the density of the fluid.

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If 8.50 g of element A reacts with 5.50 g of element B to form compound AB, what mass of AB is formed, if no A or B is left in excess?

Answers

Answer:

massR = massP

massA + massB = massAB

18g + 4g = 22g

Explanation:

Calculate the energy of a photon having a wavelength of 7.71 x 10^-5 m.​

Answers

Answer:

Calculate the energy of a photon having a wavelength of 7.71 x 10^-5 m.​

Explanation:

Control of microbial growth in an operating room may involve which of the following?

Answers

Answer:

Usually involves the removal of

vegetative or non-endospore forming pathogens.

Explanation:

Usually involves the removal of

vegetative or non-endospore forming pathogens.

In covalent bonds, electrons are ____.

Answers

Answer:

electron transfer to occur to form ions.

For isotopic analysis, an ice core sample was heated to produce gaseous H2O. If 3.00 μg of gaseous H2O was injected into a mass spectrometer:
How many moles of water were injected? Answer: 1.67×10−7
If the sample contains 0.0156% deuterium, how many deuterium atoms were injected?

Answers

Answer:

1.67 × 10⁻⁷ mol H₂O

3.14 × 10¹³ atoms deuterium

Explanation:

How many moles of water were injected?

We have 3.00 μg of gaseous H₂O. To calculate the number of moles of water we will use the following relationships:

1 g = 10⁶ μgThe molar mass of water is 18.02 g/mol.

\(3.00 \mu g \times \frac{1g}{10^{6}\mu g } \times \frac{1mol}{18.02g} = 1.67 \times 10^{-7} mol\)

If the sample contains 0.0156% deuterium, how many deuterium atoms were injected?

We will use the following relationships:

1 mole of water contains 6.02 × 10²³ molecules of water.

There are 2 hydrogen atoms per water molecule.

0.0156% of hydrogen atoms are deuterium atoms.

\(1.67 \times 10^{-7} molH_2O \times \frac{6.02 \times 10^{23}moleculesH_2O }{1molH_2O} \times \frac{2atomsH}{1moleculeH_2O} \times 0.0156 \% = 3.14 \times 10^{13} atomsD\)

The acid ionization equilibrium for the weak acid HF is represented by the equation above. To prepare a buffer with a pH=3.50, a student needs to mix 250.mL of 0.100MHF and 250.mL of 0.100MKF. If the student mistakenly mixes 250.mL of 0.0500MHF and 250.mL of 0.0500MKF, which of the following is the result of this error?

The buffer will have a lower capacity because of the smaller number of moles of HF and F− available to react if an acid or base is added.

The buffer will have a lower capacity because of the smaller number of moles of H F and F with a negative 1 charge available to react if an acid or base is added.


The buffer will have a lower capacity because the smaller amount of HF and F− will lower the pH of the buffer, and buffers of lower pH have a lower buffer capacity.

The buffer will have a lower capacity because the smaller amount of H F and F with a negative 1 charge will lower the p H of the buffer, and buffers of lower p H have a lower buffer capacity.


The buffer will have a higher capacity because a larger proportion of HF and F− will ionize at lower concentrations, resulting in the neutralization of any added acid or base.

The buffer will have a higher capacity because a larger proportion of H F and F with a negative 1 charge will ionize at lower concentrations, resulting in the neutralization of any added acid or base.


The buffer will have the same capacity because the large volume of the buffer solution dilutes any added acid or base

Answers

Answer:

4

Explanation:

From the options provided the result of the error is ( A ) ; The buffer will have a lower capacity because of the smaller number of moles of  HF and F⁻ available to react if an acid or base is added.

Considering the acid ionization equilibrium for the weak acid HF.

A buffer solution is a solution that its PH value remains unchanged when a small amount of acid or base to added to the solution, therefore when the moles of acid or base present in the buffer solution is high enough the buffer solution will have a high buffer capacity. from the mistake of the student the number of moles present is lesser which means that the buffer solution will have a lower capacity

Hence the buffer will have a lower capacity because of the smaller number of moles of HF and F⁻ available to react is an acid or base is added.

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The acid ionization equilibrium for the weak acid HF is represented by the equation above. To prepare

What is the molecular formula for a compound that is 33.38% sulfur and 66.62% oxygen and has a molar mass of 192.14g?

Answers

The empirical formula of a compound gives the whole number ratio of atoms of various elements. The molecular formula of the compound is S₂O₈.

What is Molecular formula?

The molecular formula of a compound is defined as the formula which gives the actual number of atoms of various elements present in one molecule of the compound.

Here 33.38 % 'S' = 33.38 g

66.62 % 'O' = 66.62 g

Number of moles (n) = Given mass / Molar mass

'n' of 'S' = 33.38 / 32 = 1.04 moles

'n' of 'O' = 66.62 / 16 = 4.16 moles

The ratio of number of atoms of 'S' and 'O' = 1 : 4

So empirical formula is SO₄.

Since the molar mass = 192.14g

Molecular formula = (SO₄)ₙ

192.14 = n × (32 + 4 × 16)

n = 2

Thus the molecular formula is S₂O₈ .

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Drag the tiles to the correct boxes to complete the pairs. Not all tiles will be used.
Match each SI unit to the quantity it measures.

Answers

The SI unit to the quantity it measures are:

mass - kilogram, gramtemperature - kelvintime - second, nanosecondelectric current - ampere

What is SI unit used for?

Mass: The mass of an object is a measure of its amount of matter. The SI unit of mass is the kilogram (kg) or gram (g).

Temperature: Temperature is a measure of the average kinetic energy of the particles in a substance. The SI unit of temperature is the kelvin (K).

Time: Time is a measure of the interval between two events. The SI unit of time is the second (s).

Electric current: Electric current is a measure of the flow of electric charge. The SI unit of electric current is the ampere (A).

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Complete question:

Drag the tiles to the correct boxes to complete the pairs. Not all tiles will be used.

Match each SI unit to the quantity it measures.

Drag the tiles to the correct boxes to complete the pairs. Not all tiles will be used. Match each SI

2.
Which mixture could be a useful buffer in a solution?

acetic acid (CH3CO2H) and hydrochloric acid (HCl)
sodium hydroxide (NaOH) and elemental sodium (Na)
ammonia (NH3) and ammonium chloride (NH4Cl)
acetic acid (CH3CO2H) and ammonia (NH3)


Pls answer quickly

Answers

Ammonia (\(NH_3\)) and ammonium chloride (\(NH_4Cl\)) mixture could be a useful buffer in a solution. Option C

A buffer is a solution that can resist changes in pH when small amounts of acid or base are added. It consists of a weak acid and its conjugate base or a weak base and its conjugate acid. The buffer system works by the principle of Le Chatelier's principle, where the equilibrium is shifted to counteract the changes caused by the addition of an acid or a base.

In option A, acetic acid (\(CH_3CO_2H\)) is a weak acid, but hydrochloric acid (HCl) is a strong acid. This combination does not form a buffer because HCl is completely dissociated in water and cannot provide a significant concentration of its conjugate base.

Option B consists of sodium hydroxide (NaOH), which is a strong base, and elemental sodium (Na), which is a metal. This combination does not form a buffer as there is no weak acid-base pair involved.

Option D contains acetic acid (\(CH_3CO_2H\)), a weak acid, and ammonia (\(NH_3\)), a weak base. Although they are weak acid and base, they do not form a buffer system together as they are both weak acids or bases and lack the required conjugate acid-base pair.

Option C, ammonia (\(NH_3\)), is a weak base, and ammonium chloride (\(NH_4Cl\)) is its conjugate acid. This combination can form a buffer system. When ammonia reacts with water, it forms ammonium ions (NH4+) and hydroxide ions (OH-).

The ammonium ions act as the weak acid, while the ammonia acts as the weak base. The addition of a small amount of acid will be counteracted by the ammonium ions, and the addition of a small amount of base will be counteracted by the ammonia, thus maintaining the pH of the solution relatively stable.

Therefore, option C, consisting of ammonia (\(NH_3\)) and ammonium chloride (\(NH_4Cl\)), is the suitable mixture that could be a useful buffer in a solution.

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He observed the model each day but they are not in order what would be the right order

He observed the model each day but they are not in order what would be the right order

Answers

Answer:

\(2\text{ , 3,1}\)

Explanation:

Here, we want to order the steps of the model

a) The first thing that would happen here is the evaporation of the liquid. This is a result of elevated temperature. The elevation of temperature will cause the liquid to evaporate

b) Since the elevated temperature cannot be maintained, what we have next would be a condensation. This leads to the water presence on the walls of the jar

c) The next thing here is precipitation. The condensed molecules will run down the wall of the jar

how many atoms are in 4 H2PO4

Answers

Answer:

7

Explanation:

just add p has 1 o has 4 and h has 2

Relate the temperature of atmospheric gases to the production of rain.

Answers

Better temperatures can growth the quantity of water vapor withinside the air, that could growth the probability of precipitation.

Different factors, inclusive of air pressure, wind, and atmospheric instability, additionally play a function withinside the formation of rain, and the connection among temperature and precipitation may be complicated. The temperature of atmospheric gases could have a substantial effect at the manufacturing of rain. The environment is a complicated device that performs a vital function with inside the Earth`s water cycle, which incorporates the system of precipitation, inclusive of rain. Precipitation takes place while water vapor with inside the air condenses into liquid droplets or ice crystals, which fall to the floor as rain, snow, or hail. The temperature of the environment impacts the quantity of water vapor that the air can preserve. As temperature increases, the air can preserve extra water vapor, that could cause better tiers of humidity. When the air will become saturated with water vapor, it reaches its dew point, and the extra water vapor condenses into liquid droplets or ice crystals, that could shape clouds and subsequently precipitation. In addition, international warming, that's inflicting an growth in atmospheric temperatures, can cause modifications in precipitation styles and extra severe climate events. Understanding the connection among temperature and precipitation is vital for predicting and mitigating the affects of weather change.

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Help me to solve this chemistry practical..

Help me to solve this chemistry practical..

Answers


Answer is UwU…………..,…….

how many atoms of titanium are in 11.3 moles

Answers

Answer:

I don’t mnow

Explanation:

Pls help with the problem attached:

Pls help with the problem attached:

Answers

Mg 2+(aq) + 2NO2 -(aq)  ⇒ Mg(NO2)2 (aq)

What is enthalpy?

In a thermodynamic system, energy is measured by enthalpy. Enthalpy is a measure of a system's overall heat content and is equal to the system's internal energy plus the sum of its volume and pressure.

The amount of heat released or absorbed during a reaction that takes place under constant pressure is referred to as the enthalpy change. The sign for it is H, which can be read as "delta H." If the system's enthalpy drops relative to the reaction, the reaction is preferred. A balanced chemical equation is followed by and on the same line as the enthalpy change for the reaction.

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Electrons have what charge?

Answers

negative charge. hope this helps

Answer:

negative charge

Explanation:

protons have a positive, nuetrons have a neutral charge , and electrons have a negative.

How is motion involved in your lives?​

Answers

Answer:

By walking and stuff, duh.

Explanation:

We walk, motion.

We drive, motion.

We eat, motion.

We talk, motion.

What are two basic aspects of science?

Answers

The Two Aspects of Science: Control over nature and understanding of nature must both be held in equal honor.

Question 5 of 10
When you think about whether most people are basically good or basically
bad, you are:
A. repeating beliefs you learned from your family.
B. exploring your own beliefs.
C. deciding what actions to take in your life.
OD. accepting the values of others.
SUBMIT

Answers

When you think about whether most people are basically good or basically

bad, you are exploring your own beliefs.

A person's beliefs will influence how they make decisions and react to circumstances. Most often, beliefs are established throughout childhood or other formative experiences.According to psychology, Beliefs can be positive or negative. Finding one's core beliefs can be difficult at times. It can take a lot of introspection, and some people might need a therapist's help to uncover their core beliefs.The downward arrow method can be used to identify your core beliefs. This entails tracing each idea back to the fundamental belief it was based on.You might occasionally make unfair or unjust assumptions about someone as a result of your attitudes and beliefs.

therefore, according to the above-explained points, the above statement justifies the point of exploring your own beliefs.

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What are the coefficients that would correctly balanced reaction

Answers

Li2CO3 + Ca3(PO4)2 = Li3PO4 + CaCO3

Answer: As a consequence, chemical equations must be balanced, meaning that the number and kinds of atoms must be the same on both sides of the reaction arrow. The numbers placed in front of formulas to balance equations are called coefficients, and they multiply all the atoms in a formula.

Which of the following is an incorrect representation for a neutral atom?

36Li
613C
3063Cu
1530P

Answers

This representation suggests that the element is phosphorus (P) with a mass number of 30, which is incorrect. The correct mass number for phosphorus is approximately 30.97. The incorrect representation for a neutral atom is 36Li

To determine the correct representation for a neutral atom, we need to consider the atomic number (Z) and mass number (A) of the element. The atomic number represents the number of protons in the nucleus, while the mass number represents the sum of protons and neutrons.

Let's analyze the given representations:

36Li:

This representation suggests that the element is lithium (Li) with a mass number of 36, which is incorrect. The correct mass number for lithium is approximately 6.94.

613C:

This representation suggests that the element is carbon (C) with a mass number of 13, which is correct. Carbon has different isotopes, and 13C represents one of its stable isotopes.

3063Cu:

This representation suggests that the element is copper (Cu) with a mass number of 63, which is correct. Copper has different isotopes, and 63Cu represents one of its stable isotopes.

1530P:

This representation suggests that the element is phosphorus (P) with a mass number of 30, which is incorrect. The correct mass number for phosphorus is approximately 30.97.

Therefore, the incorrect representation for a neutral atom is 36Li, as it does not match the known properties of lithium.

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For the following reaction at equilibrium (400 °C), describe the effect on the equilibrium amount of Cl2(g) if additional O2(g) is added to the mixture at constant volume?

For the following reaction at equilibrium (400 C), describe the effect on the equilibrium amount of Cl2(g)

Answers

The addition of \(O_2(g)\) will shift the equilibrium towards the right side of the reaction and will consume \(Cl_2(g)\).

For the given reaction at equilibrium (400 °C), the effect on the equilibrium amount of \(Cl_2(g)\) if additional \(O_2(g)\)) is added to the mixture at constant volume can be determined by the Le Chatelier's principle.Le Chatelier's principle states that if a system in equilibrium is subjected to a stress, the system adjusts itself in such a way that it counteracts the stress and a new equilibrium is established.The given reaction is:\(Cl_2(g)\) + \(O_2(g)\) ⇌ 2ClO(g)When additional \(O_2\) is added to the mixture at constant volume, the concentration of O2(g) increases. According to Le Chatelier's principle, the system will adjust itself to counteract this increase in concentration by decreasing the concentration of \(O_2(g)\). This can be achieved by consuming \(O_2(g)\) to produce more ClO(g).The reaction shifts to the right to counteract the increase in concentration of \(O_2(g)\). As a result, the equilibrium amount of \(Cl_2(g)\) decreases, and the equilibrium amount of ClO(g) increases. Therefore, the addition of \(O_2(g)\) will shift the equilibrium towards the right side of the reaction and will consume \(Cl_2(g)\).Hence, the effect of adding \(O_2\) to the mixture will decrease the amount of \(Cl_2(g)\) at equilibrium while increasing the amount of ClO(g).Summary: If additional \(O_2\) is added to the mixture at constant volume, the concentration of \(O_2(g)\) increases. According to Le Chatelier's principle, the system will adjust itself to counteract this increase in concentration by consuming \(O_2(g)\) to produce more ClO(g). As a result, the equilibrium amount of \(Cl_2(g)\) decreases, and the equilibrium amount of ClO(g) increases. Therefore, the addition of \(O_2(g)\) will shift the equilibrium towards the right side of the reaction and will consume \(Cl_2(g)\).

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If you have a gas sample with an initial pressure of 16 atm, an initial volume of 20 L and a temperature of 500 K, what will the final temperature be if you change the pressure to 4 atm and the volume to 35 L?

Answers

Answer:

T₂ = 218.75 K

Explanation:

Given data:

Initial volume = 20 L

Initial pressure = 16 atm

Initial temperature = 500 K

Final temperature = ?

Final volume = 35 L

Final pressure = 4 atm

Formula:  

P₁V₁/T₁ = P₂V₂/T₂  

P₁ = Initial pressure

V₁ = Initial volume

T₁ = Initial temperature

P₂ = Final pressure

V₂ = Final volume

T₂ = Final temperature

by putting values,

P₁V₁/T₁ = P₂V₂/T₂  

T₂  = P₂V₂ T₁/ P₁V₁

T₂ = 4 atm × 35 L × 500 K / 16 atm × 20 L  

T₂ = 70000 atm .L. K / 320 atm.L

T₂ = 218.75 K

7. What is the volume of the
composite
solid?
4 in.
3 in.
3 in.

7. What is the volume of thecompositesolid?4 in.3 in.3 in.

Answers

Answer:

The volume of Component 1 is 36 cubic inches.

Explanation:

To calculate the volume of a composite solid, we need to determine the individual volumes of the different components and then add them together.

In this case, the composite solid consists of multiple components with the following dimensions:

Component 1:

Length: 4 inches

Width: 3 inches

Height: 3 inches

To find the volume of Component 1, we multiply the length, width, and height together:

Volume of Component 1 = Length x Width x Height = 4 in x 3 in x 3 in = 36 cubic inches

Therefore, the volume of Component 1 is 36 cubic inches.

Please provide the dimensions of the remaining components of the composite solid, and I will calculate the total volume by summing up the individual volumes.

The water in a garden hose flows at a rate of 10.0 liters per minute. What is the flow rate in gallons per hour? (1gal=3.79L)

Answers

The water in a garden hose flows at a rate of 10.0 liters per minute. Therefore, 158 gal/hr is the flow rate in gallons per hour.

What is flow rate?

Flow rate is the amount of liquid that travels in a given length of time. Furthermore, the flow rate is affected by the channel through which the liquid is travelling, the area of the pipe, as well as the velocity of something like the liquid. Furthermore, the formula is. Fluid dynamic rate = pipe or channel area x liquid velocity.

The volume flow value is the rate of liquid (water flow rate formula) passing through every place in an area over time.

1 gal = 3.79 L

60 min = 1 hr

10.0 L/min x 60 min/hr x 1 gal/3.79 L = 158 gal/hr

Therefore, 158 gal/hr is the flow rate in gallons per hour.

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A mixture of 135.9 g of P and 140.4 g of O2 reacts completely to form P4O6 and P4O10. Find the masses of P4O6 and P4O10
that are formed by the reaction.
mass of P4O6
:
g
mass of P4O10
:
g

Answers

First answer would be 964.6
Second would be 1245.6

A sample of ammonia, NH3, has a mass of 78.25 g. Calculate the number of ammonia molecules in the sample.
number of molecules:

Answers

There are approximately \(2.76 * 10^{24\) ammonia molecules in the given sample.

To calculate the number of ammonia molecules in the sample, we need to use Avogadro's number and the molar mass of ammonia.

The molar mass of ammonia \((NH_3)\) can be calculated by adding up the atomic masses of nitrogen (N) and hydrogen (H):

Molar mass of \(NH_3\) = (1 x atomic mass of N) + (3 x atomic mass of H)

              = (1 x 14.01 g/mol) + (3 x 1.01 g/mol)

              = 14.01 g/mol + 3.03 g/mol

              = 17.04 g/mol

Now, we can calculate the number of moles of ammonia in the sample using the formula:

Number of moles = Mass of the sample / Molar mass

Number of moles = 78.25 g / 17.04 g/mol

              ≈ 4.5865 mol (rounded to four decimal places)

Finally, we can use Avogadro's number, which represents the number of particles (atoms, molecules, etc.) in one mole of a substance. Avogadro's number is approximately \(6.022 * 10^{23\) particles/mol.

Number of ammonia molecules = Number of moles x Avogadro's number

Number of ammonia molecules ≈ 4.5865 mol x (\(6.022 * 10^{23\) molecules/mol)

                           ≈ \(2.76 * 10^{24\) molecules (rounded to two significant figures)

Therefore, the provided sample contains roughly \(2.76 * 10^{24\) ammonia molecules.

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The number of ammonia molecules in the sample is approximately 2.764 x \(10^{24}\) molecules.

To calculate the number of ammonia molecules in a given sample, we need to use Avogadro's number and the molar mass of ammonia.

The molar mass of ammonia (NH3) is calculated as follows:

Molar mass of N = 14.01 g/mol

Molar mass of H = 1.01 g/mol

Total molar mass of NH3 = 14.01 g/mol + (3 * 1.01 g/mol) = 17.03 g/mol

Now, we can calculate the number of moles of ammonia in the sample:

Number of moles = Mass of sample / Molar mass of NH3

Number of moles = 78.25 g / 17.03 g/mol = 4.594 moles

Next, we use Avogadro's number, which states that there are 6.022 x \(10^{23}\) molecules in one mole of a substance.

Number of molecules = Number of moles * Avogadro's number

Number of molecules = 4.594 moles * 6.022 x \(10^{23}\) molecules/mol = 2.764 x \(10^{24}\) molecules

Therefore, there are approximately 2.764 x \(10^{24}\) ammonia molecules in the given sample of 78.25 g.

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the sentence or answer the question.
1. What kinds of particles were emitted by the radioactive source? What was there charge?

Answers

positively charged alpha particles, negatively charged beta particles, gamma rays, or x-rays
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