If 2.32 g of ethanol reacts with 10.6 g of oxygen, how many moles of water are produced?

Answers

Answer 1
0.151 moles Ethanol is C2H6O, and the balanced reaction is C2H6O + 3O2 ==> 2CO2 + 3H2O Now calculate the molar mass of C2H6O. Start with the atomic weights. Atomic weight carbon = 12.0107 Atomic weight hydrogen = 1.00794 Atomic weight oxygen = 15.999 Molar mass C2H6O = 2 * 12.0107 + 6 * 1.00794 + 15.999 = 46.06804 g/mol Molar mass O2 = 2 * 15.999 = 31.998 g/mol Determine how many moles of each reactant is available. Moles C2H6O = 2.32 g / 46.06804 g/mol = 0.050360293 mol Moles O2 = 10.6 g / 31.998 g/mol = 0.331270704 mol Looking at the balanced equation and the number of moles of each reactant, it's obvious that the limiting reactant is C2H6O, and since each mole of C2H6O will produce 3 moles of H2O, then we just need to multiply the number of moles of C2H6O we have by 3, giving 0.050360293 mol * 3 = 0.151080879 moles And of course, round to 3 significant figures, giving 0.151 moles.

Related Questions

How are muscles and bones related?

Answers

Muscles,tendons,and bones are related because tendons connect muscle to bone and ligaments connect bone to bone.Tendons connect your muscles to your skeleton so that your muscles will make the bones move to were you need it to go.

What is the ionic charge for the calcium ion in CaCO3?

Answers

The ionic charge of Calcium (Ca) in calcium carbonate (CaCO3) is 2+. CaCO3 has a neutral ionic charge sin CO3 has a 2- charge.

A stone is dropped from the roof of a building; 2.00s after that, a second stone is thrown straight down with an initial speed of 25.0m/s, and the two stones land at the same time. how long did it take the first stone to reach the ground? how high is the building? what are the speeds of the two stones just before they hit the ground?

Answers

a) -0.5(9.8)*t^2 = -25(t-2) - 0.5(9.8)(t-2)^2 
-4.9t^2 = -25t + 50 - 4.9(t^2-4t+4) 
0 = -25t+50+19.6t - 19.6 
5.4t = 30.4 
t = 5.62962963 s 

b) h = -4.9(5.62962963)^2 
h = -155.2943759 
the building is 155.2943759 m high 

c) speed 0of first stone 
= at 
= 9.8*5.62962963 
= 55.17037037 m/s 
speed of second stone
= v + at
= 25+9.8*3.62962963 
= 60.57037037 m/s

Final answer:

The first stone takes 2.00 seconds to reach the ground. The height of the building can be calculated using h = (1/2)gt^2. The speed of the first stone just before it hits the ground is given by v = gt.

Explanation:

Question:

A stone is dropped from the roof of a building; 2.00s after that, a second stone is thrown straight down with an initial speed of 25.0m/s, and the two stones land at the same time. How long did it take the first stone to reach the ground? How high is the building? What are the speeds of the two stones just before they hit the ground?

Answer:

For the first stone to reach the ground at the same time as the second stone, it must take 2.00 seconds. This is because both stones land at the same time, and the second stone was thrown after 2.00 seconds. The height of the building can be calculated using the equation h = (1/2)gt^2, where g is the acceleration due to gravity (9.8 m/s^2) and t is the time (2.00 seconds). The speed of the first stone just before it hits the ground is calculated using the equation v = gt, where g is the acceleration due to gravity (9.8 m/s^2) and t is the time (2.00 seconds). The speed of the second stone just before it hits the ground is given as 25.0 m/s.

) A round or oval hole through a bone, which contains blood vessels and/or nerves, is called a __________.

Answers

Final answer:

The term for a round or oval hole through a bone that contains blood vessels and/or nerves is a 'foramen'. These are present in various bones and allow for the passage of essential elements.

Explanation:

In biology, a round or oval hole through a bone that contains blood vessels and/or nerves is called a foramen. Examples include the foramen magnum in the base of the skull which allows the spinal cord to connect with the brain, and the mental foramen in the jawbone which allows nerves and blood vessels to pass. The presence of foramen in bones is vital as it allows for the passage of essential materials.

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Final answer:

A round or oval hole in a bone that accommodates blood vessels and/or nerves is called a foramen. An example of this is the nutrient foramen, through which an artery enters a bone to nourish it. Foramina permit the input and output of arteries and veins to the bone, and also facilitate communication for the bone tissue.

Explanation:

A round or oval hole through a bone, which contains blood vessels and/or nerves, is called a foramen. For example, the nutrient foramen is a small opening in the middle of the external surface of a bone's diaphysis, through which an artery enters the bone to provide nourishment. These foramina, the plural of foramen, allow the passage of arteries and veins to and from the bone, as well as nerves, providing the necessary nourishment and communication for the bone tissue.

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answer the following question by entering the numeric value with appropriate units. if the length of one side of a square is 12.0 m, what is the perimeter of the square?

Answers

Using the length given '12 m', because the shape of the object is a square all sides are congruent. 
Basically 12+12+12+12=48 or 12 x 4= 48
The answer is 48 m

If the length of one side of a square is 12.0 m,  the perimeter of the square will be 48.0 meters.

What is a square?

A square is a shape of geometry which have four sides and the condition for the sure that all side of it must be equal to each other in length width and height and the angles between the sides must be 90 degrees.

To calculate the perimeter the length of one side must be multiplied by 4 as squares have 4 sides with it so, 12 is multiplied by 4 and the result will be 48 meters. so, the parameter of the square will be 48 meters.

Therefore, the length of one side of a square is 12.0 m, and the perimeter of the square will be 48.0 meters.

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Suppose that your experimental formula is mg2o3. what are the implied charges on the ions in mg2o3? do these charges agree with those expected from trends in the periodic table? explain.

Answers

A. what are the implied charges on the ions in mg2o3?

Suppose that we have an element A with a charge “a+”, and element B with a charge “b-”. The chemical reaction would be:

A(a+) + B(b-) --> AbBa

So in this case, we can see that:

Mg has a charge of 3+ while O has a charge of 2-.

 

B. do these charges agree with those expected from trends in the periodic table

From the periodic table, we can see that Mg should only have a charge of 2+ and not 3+.

This might mean that Mg can take different oxidation states.

How many moles of methane are produced when 36.6 moles of carbon dioxide gas react with excess hydrogen gas?

Answers

Answer:

[tex]36.6molCH_4[/tex]

Explanation:

Hello,

The carried out chemical reaction is:

[tex]CO_2+4H_2-->CH_4+2H_2O[/tex]

With the given moles of carbon dioxide, one computes the required moles of methane by applying the following stoichiometric relationship based on the undergoing chemical reaction.

[tex]36.6molesCO_2*\frac{1molCH_4}{1molCO_2}=36.6molCH_4[/tex]

Best regards

Final answer:

In a theoretical or indirect conversion process not detailed in the examples, where carbon dioxide reacts with hydrogen to produce methane, 36.6 moles of carbon dioxide would produce 36.6 moles of methane, assuming a simple 1:1 stoichiometry for CO₂ to CH₄.

Explanation:

The question pertains to the reaction of carbon dioxide gas with hydrogen gas to produce methane. According to the information provided, one mole of methane molecules reacts with two moles of oxygen molecules to yield one mole of carbon dioxide molecules and two moles of water molecules. However, the direct reaction converting carbon dioxide to methane in the presence of hydrogen is not directly provided in the examples.

Given the stoichiometry mentioned, a direct conversion from carbon dioxide to methane isn't specified. Instead, the given reactions suggest the combustion of methane or its reaction with water, leading to the formation of carbon dioxide rather than its conversion back to methane.

Given this, it's assumed that the question implies a theoretical reverse process or a different reaction pathway (such as a methanation process that is not detailed in the examples given), which could convert carbon dioxide back to methane using hydrogen.

Typically, in a methanation reaction, carbon dioxide (CO₂) reacts with hydrogen (H₂) to produce methane (CH₄) and water. If we assume a simple stoichiometry of 1:1 for CO₂ to CH₄ in a direct or catalyzed process, then 36.6 moles of carbon dioxide would theoretically produce 36.6 moles of methane under conditions allowing for complete conversion.

Write the balanced equation for the neutralization reaction between h2so4 with naoh

Answers

since it is a neutralizing reaction then the product will be H2O and salt so
H2SO4+NaOH-->NaSO4+H2O
so balancing
H2SO4+2NaOH--->Na2SO4+2H2O
H2SO4 or hydrogen sulfate is an acid and NaOH or sodium hydroxide is a base or an alkali. The reaction between an acid and a base or alkali produces a salt and water. The reaction between these substances is shown below:
H2SO4 (aq) + 2NaOH (aq)------>2H20 (L) + Na2SO4 (aq). The salt produced in this reaction is sodium sulfate. 

PLEASE HELP ASAP!!..WILL GIVE BRAINLIEST AND FIVE STARS!

Which characteristic of life is demonstrated when human skin heals after it has been cut?
A.
acquiring energy


B.
reproducing


C.
maintaining structure


D.
camouflage

Answers

This would be maintaining structure, because it is maintaining the structure of the skin this way.

It wouldn't be acquiring energy because by generating new skin it wouldn't be acquiring energy.

It wouldn't be reproducing because making new skin isn't reproducing, cough, yea.

Camouflage, why is this a choice anyways tho?

Predict the mass of iron (III) sulfide produced when 3.0 g of iron filings react completely with 2.5 g of yellow sulfur solid, S8(s).

Answers

The complete balanced chemical reaction to this would be:

2 Fe  +  3/8 S8  -->  Fe2S3

 

First convert mass into number of moles.

moles Fe = 3 g / (55.845 g/mol) = 0.05372 mol Fe

moles S8 = 2.5 g / (256.52 g/mol) = 0.0097458 mol S8

 

Then we find the limiting reactant. The limiting reactant is the one which has lower (moles/coefficient) ratio.

Fe = 0.05372 / 2 = 0.02686

S8 = 0.0097458 / (3/8) = 0.02599

 

So since S8 has lower ratio, therefore it is the limiting reactant so we base our calculation from it. From the reaction, we get 1 mole of Fe2S3 for every 3/8 mol of S8, therefore:

moles Fe2S3 = 0.0097458 mol S8 * (1 mole Fe2S3 / 3/8 mol S8)

moles Fe2S3 = 0.02599 mol

 

The molar mass of Fe2S3 is 207.9 g/mol, so the mass is:

mass Fe2S3 = 0.02599 mol * 207.9 g/mol

mass Fe2S3 = 5.4 grams

The answer is D

Just had this question

Of the molecules below, the bond in __________ is the most polar. hbr hi hcl hf

Answers

There's a trend in electronegativity. The bottom left of periodic table is the lowest (0.7) and the upper right is the highest (4.0). The most polar is the greatest difference in electronegavity. hbr- 1~ , hi- 0.5~ ,hcl - 1.3~ , hf-1.8 so,hf is the answer

Calculate the number of moles of magnesium, chlorine, and oxygen atoms in 4.50 moles of magnesium perchlorate, mg(clo4)2. express the number of moles of mg, cl, and o atoms numerically, separated by commas.

Answers

4.50, 9.00, 36.00 First, count the number of atoms of each element in a single molecule of Mg(ClO4)2. Mg = 1 atom Cl = 1 * 2 = 2 atoms O = 4 * 2 = 8 atoms Now multiply the number of atoms of each element per molecule of the compound by the number of moles of the compound. So Mg = 1 * 4.50 = 4.50 Cl = 2 * 4.50 = 9.00 O = 8 * 4.50 = 36.00 So the answer is 4.50, 9.00, 36.00

A compound is found to contain 38.65 % carbon, 16.25 % hydrogen, and 45.09 % nitrogen by mass. what is the empirical formula for this compound?

Answers

Final answer:

By assuming a 100g sample based on percentage by mass, we find the number of moles for each element (Carbon, Hydrogen, Nitrogen) and then express these amounts in the smallest possible ratio. The empirical formula of the compound is thus C5H7N.

Explanation:

Given the percentages by mass, we can assume a 100 gram sample of the compound. Therefore, we have 38.65 grams of Carbon (C), 16.25 grams of Hydrogen (H), and 45.09 grams of Nitrogen (N). We can convert these masses to moles by dividing by the atomic masses of C, H and N, which are approximately 12.01 g/mol, 1.01 g/mol and 14.01 g/mol respectively. This yields approximately 3.22 moles of Carbon, 16.09 moles of Hydrogen and 3.22 moles of Nitrogen.

In order to determine the empirical formula, we need to express these mole amounts in the lowest possible ratio. It can be seen that all of them can be divided by the smallest amount, which is 3.22. This would equal to 1 for Carbon and Nitrogen and 5 for Hydrogen. Therefore, the empirical formula of this compound is C1H5N1 or simply C5H7N.

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How many grams of copper (II) chloride dihydrate would be requires to react completely with 1.20 g of aluminum

Answers

11.37g of copper (II) chloride dihydrate would be required to react completely with 1.20 g of aluminum.

What is the balanced molecular equation?

A balanced molecular equation consists of an equal number of atoms of each element on the both reactant and product sides.

The reaction between copper (II) chloride dihydrate and aluminum has a balanced molecular equation as:

3CuCl₂.2H₂O  + 2Al  →  2AlCl₃ + 3Cu + 6H₂O

From the above equation, we can say that the 3 moles of copper (II) chloride dihydrate reacts with 2 moles of Al.

Given, the mass of aluminum = 1.20g

The number of moles of aluminum = Mass/molar mass

Number of moles of Al = 1.20/26.98 =  0.0455 mol

If  2 moles of aluminum react with copper (II) chloride dihydrate  = 3 mol

0.0445 mol of Al will react with copper (II) chloride dihydrate

= (3/2) × 0.0445 = 0.0667 mol

The molecular mass of the copper (II) chloride dihydrate  = 170.48g/mol

The mass of 0.667 mol of copper (II) chloride dihydrate will be:

= 0.0667 × 170.48

= 11.37 g

Therefore, the 1.20 grams of aluminum will react with 11.37 grams of copper (II) chloride dihydrate completely.

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What observations led to the periodic law? what observations led to the periodic law? observation that certain elements possess such property as radioactivity observation that the all halogen elements have similar properties observation that the all metals have similar properties observation that the properties of elements recur and certain elements have similar properties?

Answers

Final answer:

The periodic law was derived from the observation of recurring similar properties among elements when arranged by atomic mass, which then shifted to atomic number. This led to the development of the modern periodic table where elements are grouped based on their properties, as demonstrated by groups of elements like the halogens exhibiting closely related characteristics.

Explanation:

The observations that led to the periodic law were predicated on the identification of patterns in the properties of elements when arranged by increasing atomic mass, which was later refined to atomic number. Early chemists noticed that elements with similar properties occurred at regular intervals, a concept known as periodicity. Dmitri Mendeleev, in particular, played a pivotal role, noting the regular occurrence of properties and organizing elements into a table accordingly, even leaving gaps for then-undiscovered elements, predicting their existence and properties. His work was critical in developing the modern periodic table, where elements are positioned in order of increasing atomic number, and housed in groups and periods where elements in the same group exhibit similar chemical properties.

Examples confirming periodic law include the observation that all halogen elements in group 17 show similar properties, such as being non-metals and forming salts with metals. Additionally, the observation that all metals display metallic characteristics and parallel reactivity patterns supported the formulation of the periodic table. Moreover, advancements like the discovery of radioactivity, while not a direct observation leading to the periodic law, provided further insight into the atomic structure and properties of elements.

What dissolved species are present in a solution of NaClO4?

Answers

Assuming that the solution is simply an aqueous solution so that it is purely made of NaClO4 (the solute) and water (the solvent), then I believe the dissolved species would only be the ions of NaClO4, these are:

 

Na+

ClO4 -

Solid aluminum hydroxide reacts with a solution of hydrobromic acid. write a balanced molecular equation and a balanced net ionic equation, including the states of each species.

Answers

To find the balanced molecular equation, we need to find the symbols for each element and their charges and then balanced the equation. This comes out to: Al(OH)3(aq) + 3HBR(aq) ---> AlBr3(aq) + 3H2O(l) The net ionic equation is adding the charges and separating them into basic components. Al3+ + 3OH- + 3H+ + 3BR- --> Al3+ + 3Br + H3O+ We can cancel out the aluminum and bromine to get: 3OH-(aq) + 3H+(aq) --> 3H2O(l)
Final answer:

The balanced molecular equation for the reaction between aluminum hydroxide and hydrobromic acid is Al(OH)3 + 3HBr → AlBr3 + 3H2O, while the balanced net ionic equation is Al(OH)3 + 3H+ → Al3+ + 3H2O. This represents an acid-base neutralization reaction.

Explanation:

The reaction between solid aluminum hydroxide (Al(OH)3) and hydrobromic acid (HBr) results in the formation of aluminum bromide (AlBr3) and water (H2O). The balanced molecular equation for this reaction is: Al(OH)3 (s) + 3HBr (aq) → AlBr3 (aq) + 3H2O (l).

Moving on to the balanced net ionic equation, remember that strong acids such as hydrobromic acid ionize completely in water. Therefore, we have Al(OH)3 (s) + 3H+ (aq) + 3Br- (aq) → Al3+ (aq) + 3Br- (aq) + 3H2O (l). By cancelling out the similar ions on both sides of the equation, we are left with the net ionic equation which is: Al(OH)3 (s) + 3H+ (aq) → Al3+ (aq) + 3H2O (l).

It is important to note that the (s) denotes a solid, the (aq) a species in an aqueous solution and the (l) a liquid. This chemical reaction represents a typical acid-base neutralization process, where a base (here aluminum hydroxide) reacts with an acid (hydrobromic acid) to produce a salt (aluminum bromide) and water.

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Of the​ rock's original​ uranium-235 remains. how old is the​ rock

Answers

2.1 billion years
2,139,000,000 to be exact

Part c how long does it take to raise the temperature of the air in a good-sized living room (3.00m×5.00m×8.00m) by 10.0∘c? note that the specific heat of air is 1006 j/(kg⋅∘c) and the density of air is 1.20kg/m3.

Answers

Final answer:

To find out how long it takes to heat a room, calculate the mass of air using room volume and air density, then use the heat equation with the specific heat of air. The missing piece is the heater's power, which is essential for calculating the exact time.

Explanation:

To calculate how long it takes to raise the temperature of the air in a good-sized living room (3.00m×5.00m×8.00m) by 10.0°C, given that the specific heat of air is 1006 J/(kg·°C) and the density of air is 1.20kg/m3, we firstly need to calculate the volume of the room. The volume is obtained by multiplying the room's dimensions (V = length × width × height), which is 120 m3. Using the density of air, we find the mass of the air in the room (m = density × volume), resulting in 144 kg of air. Next, we apply the formula for heat (Q = mcΔT) to determine the amount of energy required to heat the air, where ΔT is the temperature change. With the given specific heat capacity (c) and the desired temperature increase (ΔT = 10°C), we find Q. Unfortunately, without the power (wattage) of the heating device, we can't directly calculate the time (t) required for the temperature increase. However, the initial steps show how to prepare for such a calculation once the heating power is known.

Decide whether each molecule is stable or not. decide whether each molecule would be diamagnetic or paramagnetic. calculate each molecule bond order.

Answers

Incomplete question?

Why is it important to form sparingly soluble salt in gravimetric analysis?

Answers

All solids that dissociate into ions exhibit some limit to their solubilities, but those whose saturated solutions exceed about 0.01 mol L–1 cannot be treated by simple equilibrium constants owing to ion-pair formation that greatly complicates their behavior. For this reason, most of what follows in this lesson is limited to salts that fall into the "sparingly soluble" category.

Compare green and red light from the visible spectrum. which has: the longer wavelength? the greater frequency? the greater energy?

Answers

The spectrum goes as follows:
red, orange, yellow, green, blue, indigo and violet
Red has the lowest frequency.
Since frequency is inversely proportional to the wavelength, therefore, red has the longest wavelength.

Now, consider, the equation:
E = (hc) / lambda
Since the energy is inversely proportional to the wavelength, therefore, red will have the lowest energy.

Based on this, for the mentioned question:
1- Red has longer wavelength
2- Green has greater frequency
3- Green has greater energy
Red light will have the longer wavelength (in fact, has the longest wavelength in the visible spectrum). As frequency is the inverse of wavelength, this means that green will have the greater frequency. In addition, since frequency and energy have a direct relationship, green light will also have the greater amount of energy.

Co(s) is placed into a solution containing Au+(aq). A redox reaction occurs, the products of which are Co3+(aq) and Au(s), what is the balanced redox equation?

Answers

The reaction described above is a single-replacement reaction as Co was able to replace Au in the solution. The redox reaction involves a process in which one agent is reduced while the other one is oxidized. The ionic equation can be expressed as,

           Co(s) + Au⁺(aq) --> Co³⁺(aq) + Au(s)

If we are to balance the equation such that equal number of electrons will be in both sides of the equation, this will become.

       Co(s) + 3Au⁺(aq) --> Co³⁺ + 3Au(s)

What information can be gained from running a gas chromatogram?

Answers

Chromatography is an analytical technique that is used to separate the components of a mixture between two states (a stationary and a mobile one).

In chromatography of gases, the mobile phase is gas while the stationary phase is liquid or solid on solid support.

The information that can be gained from running a gas chromatogram is:
1- The retention time
2- The proportion of the components found in the sample 
Gas chromatography is a common type of chromatography used with analytical chemistry for separating and even analyzing compounds for uses. This is helpful without having to decompose them, only vaporizing them and analyzing. It has practical uses, such as measuring toxins in compositions or isolating pure gases or compounds.

when carbon undergoes sp2 hybridization it forms

Answers

When carbon undergoes sp2 hybridization it forms methane ? I believe.

Final answer:

When a carbon atom undergoes sp2 hybridization, it forms molecules with a trigonal planar shape, such as in ethene where it forms a double bond.

Explanation:

In Chemistry, when a carbon atom undergoes sp2 hybridization, it results in the formation of molecules with trigonal planar geometry. Here, one s atomic orbital combines with two p atomic orbitals to form the sp2 hybrid orbitals. These hybrid orbitals arrange themselves in a plane at an angle of 120 degrees to each other, forming a trigonal planar shape.

For instance, in ethene, each carbon atom is sp2 hybridized. The sp2 orbitals and one p orbital are singly occupied. The hybrid orbitals overlap to form sigma (σ) bonds, while the p orbitals on each carbon atom overlap side by side (above and below the plane of the molecule) to form a pi (π) bond, leading to the formation of a C=C double bond.

The molecule's final geometric arrangement is a direct result of the number of electrons in the atom's outermost p orbital, the repulsion between these electrons, and the formation of stable bonds.

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Look at the Lewis structures of the following molecules and predict their 3-D shapes according to the VSEPR theory. Part A Silane (SiH4)

Answers

3D structure: tetrahedral

The Lewis structure of silane (SiH₄) consists of a central silicon atom bonded to four hydrogen atoms. According to VSEPR theory, it has a tetrahedral geometry with no lone pairs on the central atom and bond angles near 109.5 degrees.

The student's question pertains to predicting the 3-D shapes of molecules using Valence Shell Electron Pair Repulsion (VSEPR) theory, specifically for the molecule silane (SiH₄). To predict the molecular geometry using VSEPR, we start by drawing the Lewis structure for silane, where silicon (Si) is at the center with four hydrogen atoms (H) bonded to it, each sharing a pair of electrons to complete the Si valence shell.

Following the VSEPR theory, the molecule adopts a shape that minimizes electron pair repulsions, which, in the case of silane with four bonded atoms and no lone pairs on the central atom, results in a tetrahedral geometry. The Lewis structure illustrates this with four single bonds extending from the silicon atom towards the hydrogen atoms. Any lone pairs (which silane doesn't have) would also be considered to provide a full understanding of the molecule's geometry.

Considering the application of VSEPR theory, recall that the VSEPR theory accurately predicts the tetrahedral shape for methane (CH₄), which is structurally analogous to silane (SiH₄). Therefore, we can conclude that the 3-D shape of silane will also be tetrahedral, with bond angles close to 109.5 degrees between the bonds.

Which of the substances are largely ionic nonpolar covalent polar covalent?

Answers

An example of a substance with a covalent bond can be found with Ozone or O3 which is the bonding of three oxygen atoms. An example of an ionic bond can be found with table salt or Sodium Chloride which is more commonly known as NaCl. Ionic bonds have a charge.

The coase theorem will will breakdown when​ ____________. ​(select all that​ apply)

Answers

The Coase Theorem holds that, when property rights are involved, people tend to make choices that are the most mutually beneficial. The theorem tends to break down when there are high transactional costs, many agents are in the market, and the property rights become vague.

To carry out a particular reaction, you determine that you need 0.0500 moles of ammonium chloride. What volume of the solution described above will you need to complete the reaction without any leftover NH4Cl?

Answers

Final answer:

To obtain 0.0500 moles of NH4Cl from a 1.00 M solution, we need 50.0 mL of the solution. This is calculated by dividing the moles needed by the molarity of the solution.

Explanation:

To determine the volume of ammonium chloride (NH4Cl) solution needed, we first need to know the molarity of the solution. The molarity can be calculated using the formula: Molarity (M) = Moles of solute / Volume of solution (in liters).

In the given information, a 5.36-g sample of NH4Cl is added to make a solution of 0.100 L. The molar mass of NH4Cl is approximately 53.49 g/mol, so 5.36 g is about 0.100 moles. Therefore, the molarity of the NH4Cl solution is 0.100 moles / 0.100 L = 1.00 M.

If we need 0.0500 moles of NH4Cl for the reaction, we can use the molarity to calculate the needed volume: Volume = Moles / Molarity = 0.0500 moles / 1.00 M = 0.0500 L or 50.0 mL. Therefore, we need 50.0 mL of the NH4Cl solution to provide the 0.0500 moles needed for the reaction.

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Final answer:

To complete the reaction without any leftover NH4Cl, you will need a volume of 0.500 L or 500 mL of the solution.

Explanation:

To calculate the volume of the solution needed, we can use the formula: volume (in liters) = moles / molarity. In this case, the moles of ammonium chloride is given as 0.0500. We can calculate the molarity by dividing the moles by the volume in liters. The given volume of the solution is 0.5000 L. So, the molarity will be:

Molarity = Moles / Volume = 0.0500 moles / 0.5000 L = 0.100 M

Now, we have the molarity, which is 0.100 M. To find the required volume of the solution, we can rearrange the formula: volume = moles / molarity. Substituting the given values, the volume will be:

Volume = Moles / Molarity = 0.0500 moles / 0.100 M = 0.500 L or 500 mL

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Which characteristic of life is demonstrated when oak trees make many acorns that can become new oak trees?

Answers

Reproduction is the characteristic of life is demonstrated when oak trees make many acorns that can become new oak trees.

what are the features of oak tree ?

Oak trees has the majestic branches consist of huge areas, having notable characteristics, its  height which reach from heights of up to 100 feet, and having the width of up to 150 feet.

The oak family is the largest family consist of  600 species, divided into White oak which is a dark grayish-brown color and the branches of the white oak are not twisted, produce acorns with colorings that range from light green to tan, and rich green leaves.

Red Oak tree have bright red color and the feature like recognizable thick golden hairs that grown along the underside of its leaves.

Black Oak  is dark-colored trunk for which this tree is named.  Another classic feature  with twisted branches and root system, contoured shape of the black oak.

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