Answer:
magnesium oxide
Explanation:
hope this helps
A balloon with a volume of 5.0 L is filled with a gas at 760 tore. If the pressure is reduced to 389 torr without a change in temperature. What will be the volume of the balloon?
Answer:
\(V_2=9.97L\)
Explanation:
Hello,
In this case, we can apply the Boyle's law in order to understand the pressure-volume relationship as an inversely proportional relationship:
\(P_1V_1=P_2V_2\)
Thus, we can solve for the resulting volume at the second state as follows:
\(V_2=\frac{P_1V_1}{P_2}=\frac{5.0L*760torr}{389tor} \\\\V_2=9.97L\)
Best regards.
Conversions
If you traded (converted)
15 Skittles for M&Ms,
how many M&Ms do you
have?
Conversion Factor
6 Skittles 4 Cookies
1 Cookies = 2 M&Ms
If you traded (converted) 15 Skittles for M&Ms, you will have 20 M&Ms
How to convert 15 Skittles to cookiesWe'll begin by converting 15 Skittles to cookies. This can be obtained as follow:
6 Skittles = 4 Cookies
Therefore,
15 Skittles = (15 Skittles × 4 cookies) / 6 skittles
15 Skittles = 10 cookies
How to convert 10 cookies to M&MsWe can convert 10 cookies to M&Ms as follow:
1 Cookies = 2 M&Ms
Therefore,
10 cookies = (10 cookies × 2 M&Ms) / 1 Cookies
10 cookies = 20 M&Ms
Thus, 15 Skittles is equivalent to 20 M&Ms
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What gas would you monitor during the phosynthesis to check the products?
A 125g sample of a mixture of salt and sand contains 12% salt.
a. How much salt (in g) does the sample contain?
b. How much sand (in g) does it contain?
What is in period 6 group 8
Answer:
Osmium
Explanation:
If you take a look at the attached image of a periodic table below, you will see that the element in the 6th period and 8th group is Osmium. Hope this helps!
What the name of this compound be: Na2CO3•4H2O?
The name "sodium carbonate" refers to the chemical formula Na2CO3, which consists of two sodium ions (Na+)
The compound Na2CO3•4H2O is called sodium carbonate decahydrate. It is a hydrate compound, indicating that it contains water molecules within its crystal structure. In this case, there are four water molecules associated with each molecule of sodium carbonate.
The name "sodium carbonate" refers to the chemical formula Na2CO3, which consists of two sodium ions (Na+) and one carbonate ion (CO3^2-). The "decahydrate" part of the name indicates the presence of ten water molecules (H2O) in the compound.
When sodium carbonate decahydrate is formed, each sodium carbonate molecule associates with four water molecules, resulting in the formula Na2CO3•4H2O. The water molecules are not chemically bonded to the sodium carbonate but rather held within the crystal lattice through weak intermolecular forces.
Sodium carbonate decahydrate is commonly known as soda ash or washing soda. It is used in various applications such as water treatment, glass manufacturing, detergent production, and pH regulation in swimming pools.
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2. In step 1 of the procedure we will use 10 mL of cold water (20 °C) to dissolve the salt. Will any benzoic acid dissolve in this water? How can this be detected with litmus paper?
Answer:
Explanation:
Benzoic acid is a weak acid and is slightly soluble in water. It will dissolve in cold water to a certain extent, but not completely. This can be detected by using litmus paper. Blue litmus paper will turn red when it comes into contact with an acidic solution, indicating the presence of benzoic acid. Therefore, it can be detected that benzoic acid will dissolve in cold water to a certain extent but not completely.
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A rare tropical plant was found to have medicinal properties. A search was conducted to find other plants that are closely related to the rare plant. Which
combination of characteristics would best identify the plant most closely related to the original one?
The combination of characteristics that would best identify the plant most closely related to the original rare plant is Leaf pigments, sequence of DNA bases, positive reaction to a specific enzyme
These characteristics provide a comprehensive approach to determine the genetic relatedness, biochemical similarities, and physiological traits of plants.
Leaf pigments can indicate similarities in the biochemical pathways and metabolic processes of the plants. The sequence of DNA bases, obtained through DNA sequencing, provides a direct measure of genetic similarity between plants. A positive reaction to a specific enzyme suggests shared biochemical functions and evolutionary relationships.
By considering leaf pigments, DNA sequence, and enzymatic reactions, researchers can gather valuable information about the genetic, biochemical, and physiological traits of plants, helping to identify those that are most closely related to the original rare plant and potentially possess similar medicinal properties.
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The question is incomplete, the complete question probably is-
A rare tropical plant was found to have medicinal properties. A search was conducted to find other plants that are closely related to the rare plant. Which combination of characteristics would best identify the plant most closely related to the original one?
A. shape of seeds, number of flower petals, leaf pigments
B. number of flower petals, positive reaction to a specific enzyme
C. leaf pigments, sequence of DNA bases, positive reaction to a specific enzyme
D. presence of DNA bases, internal stem structure, shape of seeds
Methylene Chloride (MC) is a common ingredient of paint removers. Besides being an irritant, it also may be absorbed through skin. When using this paint remover chemical protective clothing should be worn. If thick butyl rubber gloves (0.1 cm thick) are used, D in butyl rubber is 110 x 10-8 cm2/s, and surface concentrations are 0.44, and 0.02 g/cm3. If the surface of a glove is 50 cm2, the amount of MC transported through the glove in 3 hours will be: Answer in grams (g).
Answer:
2.5 g
Explanation:
First we have to calculate the diffusion flux (J). To calculate, we use the formula:
\(J=-D\frac{dC}{dx}=-D\frac{C_2-C_1}{x_2-x_1}\\ \\Given\ that:\\\\x_2-x_1=0.1\ cm,D=110*10^{-8}cm^2/s,C_2=0.02g/cm^3,C_1=0.44g/cm^3\\\\Substituting:\\\\J=-110*10^{-8}(\frac{0.02-0.44}{0.1} )=4.62*10^{-6}g/cm^2s\\\\But, J=\frac{M}{At}\\ \\t=3\ hours=10800\ s,A=50\ cm^2\\\\Substituting:\\\\4.62*10^{-6}=\frac{M}{50*10800}\\ \\M=4.62*10^{-6}*50*10800\\\\M=2.5\ g\)
prop-1-yne + 2HBr/H2O2 = A;
A + 2H2O = B;
B + K2CO3(aq) = C;
C + heat = D;
D + HBr = E.
find the compounds A, B, C, D and E
Based on the given reactions, the compounds are as follows:
A: The specific product formed from the reaction between prop-1-yne and either 2HBr or H2O2.
B: The product formed when compound A reacts with 2H2O.
C: The product formed when compound B reacts with K2CO3(aq).
D: The product formed from the heat-induced reaction of compound C.
E: The product formed when compound D reacts with HBr.
Based on the given reactions, let's analyze the compounds involved:
Reaction 1: prop-1-yne + 2HBr/H2O2 = A
The reactant prop-1-yne reacts with either 2HBr or H2O2 to form compound A. The specific product formed will depend on the reaction conditions.
Reaction 2: A + 2H2O = B
Compound A reacts with 2H2O (water) to form compound B.
Reaction 3: B + K2CO3(aq) = C
Compound B reacts with K2CO3(aq) (potassium carbonate dissolved in water) to form compound C.
Reaction 4: C + heat = D
Compound C undergoes a heat-induced reaction to form compound D.
Reaction 5: D + HBr = E
Compound D reacts with HBr (hydrobromic acid) to form compound E.
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Consider sample (A) containing 5.99 x 1023 molecules (formula units) of ammonium carbonateand sample (B) containing 93.5 g of ammonium carbonate. Which sample contains more molesof ammonium carbonate? You must support your answer with calculation(s).
Step by step solutions:
1. Convert Molecules of sample A into moles:1 mole of A contains 6.022x10^23 molecules
∴ x moles A contains 5.99x10^23 molecules
Then, moles of A = (5.99x10^23 /6.022x10^23 )molecules
=5.99/6.02
=0.995moles of A Sample
2. Convert Mass of Sample B into moles :
Given that -
Mass = 93.5g
Mol Mass Ammonium carbonate (NH4)2CO3= 96,09 g/mol
∴ moles B = mass /molecular mass
=93.5g /96.09g/mol
=0.973 moles of sample B
3. Compare the moles of Sample A and B
Conclusion: Sample A has 0.995 moles, this is bigger that the moles of Sample B that has 0.973 moles.
In a lab, a student mixes 25.0 ml of 0.115 M aluminum sulfate with 34.0 ml of 0.0975 M Lead (III) nitrate. Calculate the grams of the precipitate that is formed.
Answer:
In a lab, a student mixes 25.0 ml of 0.115 M aluminum sulfate with 34.0 ml of 0.0975 M Lead (III) nitrate. Calculate the grams of the precipitate that is formed.
Explanation:
PLS HALP ASAP points
Answer:
50 N ( left)
Explanation:
Given data:
The force on right side = 450 N
The force on left side = 500 N
Net force = ?
Solution:
F (net) = 500 N - 450 N
F (net) = 50 N ( left)
The radius of Pt atom in an fcc structure is 0.1386 nm. Pt has atomic mass of 195.09 g/mol. Calculate the density of this fcc structure. The Avogadro’s number NAis 6.022 x 1023 per mole
Answer:
21.51g/cm³
Explanation:
To answer this question we need to know that, in 1 unit FCC cell:
Edge length = √8 * R
Volume = 8√8 * R³
And there are 4 atoms per unit cell
The mass of the 4 atoms of the cell, in grams, is:
4 atom * (1mol / 6.022x10²³atom) * (195.09g / mol) = 1.2958x10⁻²¹g
Volume in cm³:
0.1386nm * (1x10⁻⁷cm / 1nm) = 1.386x10⁻⁸cm
Volume = 8√8 * (1.386x10⁻⁸cm)³
Volume = 6.02455x10⁻²³cm³
And density, the ratio of mass and volume, is:
1.2958x10⁻²¹g / 6.02455x10⁻²³cm³ =
21.51g/cm³
Identify the type of reaction. Complete the equations with the correct reactants then balance each equation.
The balanced equations are Cd (g) + S\(_8\) (g) → CdS (g), K\(_2\)CO\(_3\) → K\(_2\)O + CO\(_2\). and a Na + HOH → NaOH + H\(_2\). Cd (g) + S\(_8\) (g) → CdS (g) is combination reaction.
An equation per a chemical reaction is said to be balanced if both the reactants plus the products have the same number of atoms and total charge for each component of the reaction. In other words, both sides between the reaction have an equal balance of mass and charge. The balanced equations are Cd (g) + S\(_8\) (g) → CdS (g), K\(_2\)CO\(_3\) → K\(_2\)O + CO\(_2\). and a Na + HOH → NaOH + H\(_2\).
Cd (g) + S\(_8\) (g) → CdS (g) = combination reaction
K\(_2\)CO\(_3\) → K\(_2\)O + CO\(_2\) = decomposition reaction
Na + HOH → NaOH + H\(_2\) = Hydration reaction
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Which of the following atoms has a full outer shell?
answer choices:
A. N−2
B. Ca
C. Mg+2
D. Li−1
The shells are present outside the nucleus of an atom, where the electrons are said to be present. The atom of Mg²⁺ has a full outer shell. Thus, option C is correct.
What is an atom?An atom is the unit of the molecule that comprises sub-atomic particles, electrons, protons, and neutrons. The electron is present in the shells of the atom and can be completely filled by forming the bonds.
Magnesium has atomic number 12 and its electronic configuration is given as 2, 8, 2. When it gives or donates 2 electrons it becomes positively charged and now has completely filled outer shell.
Therefore, option C. Mg²⁺ has a full outer shell.
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A 25.0 g sample of N2 gas, has a volume of 50.0 L and a pressure of 630. mm of Hg. What is the temperature of the gas? Universal Gas Constant, R = 62.4 L.mm Hg/mole.K
Answer:
565.4 K
Explanation:
Remember PV = nRT
630 * 50 = 25/28 * 62.4 T
T = 565.4 kelvin
hydrogen come from the Latin word which is hydro and genes can you tell me the meaning of hydro and genes. Help please
Combining "hydro" and "genes" in the context of the Latin roots, we can interpret it as "water origin" or "water-related origin."
The term "hydro" in Latin means "water." It is derived from the Greek word "hydor," which also signifies water. "Hydro" is commonly used as a prefix in scientific terms related to water or hydrogen. In the context of chemistry, "hydro" often denotes a compound or process involving water or hydrogen atoms. For example, hydrocarbon refers to organic compounds composed solely of hydrogen and carbon atoms.
On the other hand, "genes" in Latin is derived from the Greek word "genos," which translates to "origin" or "birth." In biology, the term "genes" refers to the segments of DNA that contain instructions for the development and functioning of living organisms. Genes determine various traits, such as physical characteristics, behavior, and susceptibility to certain diseases. They play a fundamental role in the transmission of hereditary information from one generation to another.
This interpretation aligns with the understanding that hydrogen, which is essential for life and abundant in water, plays a vital role in various biological and chemical processes.
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Why does it mean by methane molecule is symmetrical?
A methane molecule (CH4) is considered symmetrical because it possesses a symmetric structure and exhibits symmetry operations.
Symmetry refers to a balanced arrangement of elements that can be divided into equal parts by a plane, axis, or center. In the case of methane, it exhibits several symmetrical characteristics.
Firstly, methane has a tetrahedral molecular geometry, with the carbon atom at the center and four hydrogen atoms positioned around it. This geometry ensures that the molecule is symmetrical in terms of its spatial arrangement.
Each hydrogen atom is located at one of the vertices of the tetrahedron, forming equal angles and distances with respect to the central carbon atom. This symmetry is maintained regardless of the orientation of the molecule.
Additionally, methane possesses rotational symmetry. It can be rotated around any of the carbon-hydrogen bonds, and the molecule will retain its overall appearance.
The symmetry of methane arises from its molecular structure and the equal distribution of electron density around the central carbon atom. The four hydrogen atoms are bonded to the carbon through sigma bonds, which have a cylindrical symmetry. This balanced arrangement of the atoms contributes to the overall symmetry of the molecule.
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moles of each product that would form as a result of the decomposition of aspirin
The decomposition of aspirin (acetylsalicylic acid,\(C_{9} H_{8} O_{4}\)) can occur through the hydrolysis reaction, resulting in the formation of acetic acid (\(CH_{3} COOH\)) and salicylic acid (\(C_{7} H_{6}O_{3}\)).
The decomposition of aspirin (acetylsalicylic acid, \(C_{9} H_{8} O_{4}\)) can occur through the hydrolysis reaction, resulting in the formation of acetic acid (\(CH_{3} COOH\)) and salicylic acid (\(C_{7} H_{6}O_{3}\)). To determine the moles of each product formed, we need to consider the balanced chemical equation for the reaction:
\(C_{9} H_{8} O_{4} = > C_{7} H_{6}O_{3} +CH_{3} COOH\)
From the equation, we can see that for every 1 mole of aspirin, 1 mole of salicylic acid and 1 mole of acetic acid are produced.
Therefore, the moles of salicylic acid and acetic acid formed will be equal to the number of moles of aspirin that decomposes. If we know the amount of aspirin in moles, we can directly calculate the moles of each product based on stoichiometry.
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What will weigh more when a chemical change is complete
when a chemical change is complete the reactant before the chemical reaction and the product after the chemical reactant will weigh same.
According to the law of mass of conservation : the mass in the chemical reaction is neither be created nor be destroyed. This means the the total mass of the reactant before the chemical reaction and the mass of the product after the reaction is same. we can say that atoms in the reactant side is equal to the atoms in the product side.
Thus, when a chemical change is complete the reactant before the chemical reaction and the product after the chemical reactant will weigh same.
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Convert 0.200 mol of sodium bicarbonate to grams of sodium bicarbonate?
Answer:
\(m_{NaHCO_3}=16.8gNaHCO_3\)
Explanation:
Hello!
In this case, since the molecular formula of sodium bicarbonate is:
\(NaHCO_3\)
We realize it has a molar mass of 84.007 g/mol; therefore, as we need the mass in 0.200 moles of sodium bicarbonate, we develop the following setup:
\(m_{NaHCO_3}=0.200NaHCO_3*\frac{84.007gNaHCO_3}{1molNaHCO_3}\)
Thus, we obtain:
\(m_{NaHCO_3}=16.8gNaHCO_3\)
Best regards!
If one mol of gas = 22.4 at STP how many liters is occupied by 3.65 moles of oxygen gas at STP
1 mole gas at STP = 22.4 L
so volume of oxygen at STP:
\(\tt = 3.65\times 22.4~L=81.76~L\)
If a student weighs out 0.600 g of potassium hydrogen phthalate (MW 204.22 g/mol) and titrates it with sodium hydroxide solution, what is the molarity of the sodium hydroxide solution if it takes 32.21 mL of it to titrate the potassium hydrogen phthalate?
Hint: one mole of hydrogen phthalate reacts with one mole of sodium hydroxide.
The molarity of the sodium hydroxide solution is 0.09111 M.
What is Molarity?
Molarity is a measure of the concentration of a solution. It is defined as the number of moles of solute dissolved in one liter of solution.
Molarity is an important concept in chemistry because it allows us to quantify the amount of solute in a solution and to make predictions about the behavior of the solution in various chemical reactions.
First, we can calculate the number of moles of potassium hydrogen phthalate using its molecular weight:
moles of KHP = mass / molecular weight
moles of KHP = 0.600 g / 204.22 g/mol
moles of KHP = 0.002938 mol
Since one mole of KHP reacts with one mole of NaOH, we know that there are also 0.002938 moles of NaOH in the titrated solution. We can calculate the molarity of the NaOH solution using the formula:
molarity = moles of solute / volume of solution (in liters)
First, we need to convert the volume of the NaOH solution from milliliters to liters:
volume of NaOH solution = 32.21 mL = 0.03221 L
Now we can calculate the molarity of the NaOH solution:
molarity = 0.002938 mol / 0.03221 L
molarity = 0.09111 M
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What is the correct conversion factor when converting from moles to liters?
The correct conversion factor when converting from moles to liters is the molar volume at a given temperature and pressure.
This value is dependent on the ideal gas law and can be determined using the ideal gas equation PV = nRT, where P represents pressure, V represents volume, n represents the number of moles, R is the ideal gas constant, and T is the temperature in Kelvin.
The molar volume of an ideal gas at standard temperature and pressure (STP), which is 0 degrees Celsius (273.15 Kelvin) and 1 atmosphere (101.3 kilopascals), is approximately 22.4 liters per mole.
Therefore, to convert moles to liters, you can multiply the number of moles by the molar volume at STP, which gives you the volume in liters.
It's important to note that the molar volume is an approximation and assumes ideal gas behavior.
Additionally, if you are working with gases at different temperatures and pressures, you would need to use the appropriate molar volume value corresponding to the given conditions.
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Find energy is the wavelength is 5.2x10^-7m (Show work)
Answer:
E = 3.825×10⁻¹⁹ J
Explanation:
Wavelength of photon = 5.2 ×10⁻⁷m
Energy of photon = ?
Solution:
Formula:
E = hc/λ
h = plancks constant = 6.63×10⁻³⁴ Js
c = speed of wave = 3×10⁸ m/s
by putting values,
E = 6.63×10⁻³⁴ Js ×3×10⁸ m/s / 5.2 ×10⁻⁷m
E = 19.89×10⁻²⁶ J.m / 5.2 ×10⁻⁷m
E = 3.825×10⁻¹⁹ J
2. Which test for iron(II) ions is conclusive
Answer:
please brainlist answer
Explanation:
The addition of K 3 Fe(CN) 6 to a solution causes the formation of a deep blue precipitate which indicates that iron(II) ions are present.
The conclusive test for iron(II) ions is the test by the use of potassium hexacyanoferrate III solution.
In qualitative analysis certain reagents are used to test for the presence of certain cations or anions. Those reagents react in a certain way with those reagents. Usually, a positive test may involve a color change, formation of a precipitate or evolution of a gas.
In the case of iron(II) ions, potassium hexacyanoferrate III solution is used in the conclusive qualitative test for the ion. A positive test involves the appearance of a deep blue precipitate.
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Diego did a scientific investigation to determine the additive that would form the longest-lasting bubbles. First, he combined 1 liter of water with 200 milliliters of liquid detergent to make a bubble solution. Then, he placed an equal amount of this solution into 5 separate bowls. Diego did not add anything to the first bowl. He added 20 milliliters of a different substance to each of the four remaining bowls. He added glycerin to the second bowl, lemon juice to the third bowl, sugar to the fourth bowl, and corn syrup to the fifth bowl. Diego used a bubble-blowing machine in a temperature-controlled room to make bubbles of each kind separately so that they would be formed the same way each time. He used a timer to measure how long the bubbles of each kind lasted before they burst. He repeated the experiment four times and recorded the average time that each kind of bubble lasted in the table below. Bubble Blowing Experiment Substance Added to Bubble Solution Average Length of Time Bubbles Lasted none 29 seconds glycerin 174 seconds lemon juice 89 seconds sugar 23 seconds corn syrup 41 seconds Which of the following was a constant, or a factor kept the same throughout the experiment? the ratio of water to liquid detergent used to make the bubble solution the method used to form the bubbles the kind of substance added to the bubble solution the temperature at which the bubbles were formed the method used to time how long the bubbles lasted the length of time the bubbles lasted
The constant, or factor kept the same throughout the experiment, was the method used to form the bubbles.
What is experiment?An experiment is described as a procedure carried out to support or refute a hypothesis, or determine the efficacy or likelihood of something previously untried.
Diego combined 1 liter of water with 200 milliliters of liquid detergent to make a bubble solution after which he placed an equal amount of this solution into 5 separate bowls.
Diego used a bubble-blowing machine in a temperature-controlled room to make bubbles of each kind separately.
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Prepare one solution that has 0.12 M of FeCl3 and 0.40 M of HCl with the reagents 3 M HCl and Solid FeCL3 * 6H20. Provide the calculations and protocol to make the solution in a lab.
To prepare a 0.12 M solution of FeCl₃, the amount of solid FeCl₃ to be dissolved in a given volume of solvent will be 9.72 grams.
Given,
Molarity of FeCl₃ (M)= 0.12 M
The molecular weight (m) of FeCl₃ is = 162 gm
The volume of the solution (V) to be prepared is =500 ml
The amount of FeCl₃ to be dissolved to make a 0.12 M solution is= x
So,
MV= x ÷ m × 1000
0.12× 500 = x ÷ 162 × 1000
x = 60 × 162 ÷ 1000
x= 9.72 gm
So 9.72 grams of FeCl₃ is dissolved to make 500 ml of 0.12 M solution.
For preparing 0.4 M HCl from 4M HCL:
If we need to make 500 ml of solution with 0.4M of HCL, then we use the formula:
M₁V₁= M₂V₂
0.4 × 500= 4 × x
x= 50 ml
So 50 ml of 4M HCL is taken to make 0.4 M HCL.
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why were gold and copper the first forms of matter investigated by humans??
Gold and copper were the first forms of matter investigated by humans because they were pretty and have a shiny appearance.
Gold and copper have a shiny face and they were used in the production of ornaments and jewelry. Along with jewelry many other precious items were made from gold and copper. Gold and copper were so valuable forms of matter and they are also economically used by many countries. Gold was mostly used in making of ornaments and copper was used in making of frames.
In today's modern world mainly gold is one of the most precious element which is obtained for economical use.
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