What is the identity of a gas that has a density of 1.4975 g/L and a volume of 8.64 L at a pressure of 2.384 atm and with a temperature of 349.6 Kelvin

Answers

Answer 1
Answer: H2O (water)

Explanation:

The answer choices for this question are:

A) H2O
B) N2
C) SO2
D) NO3
E) Cl2

The solution of the problem is:

1) Data:

density, d = 1.4975 g/liter
volume, V = 8.64 liter
pressure, p = 2.384 atm
temperature, T = 349.6 K

2) Formulas:

d = m/V => m = d*V

n = m / molar mass => molar mass = m / n

pV = nRT => n = pV / RT

3) Solution

n = pV / RT = 2.384 atm * 8.64 liter / (0.0821 atm*liter/K*mol * 349.6K)

n = 0.7176 moles

m = dV = 1.4975 g/ liter * 8.64 liter = 12.9384 g

molar mass = m / n = 12.9384 g / 0.7176 moles = 18.03 g/mol

That molar mass corresponds to the molar mass of water, therefore the gas is H2O (water vapor).
Answer 2
Final answer:

The correct option is C.

The gas in question can most likely identified as SO2 (Sulfur Dioxide), based on a calculated molar mass of approximately 44.12 g/mol.

Explanation:

To find the identity of this gas, we can calculate the molar mass using the ideal gas law equation, which is PV = nRT, where P is the pressure in atm, V is the volume in L, n is the number of moles of gas, R is the ideal gas constant (0.0821 L.atm/K.mol) and T is the temperature in Kelvin.

However, we also know that the density of a gas can be represented as the molar mass divided by the molar volume (22.4 L at STP), so we can rearrange and solve the ideal gas law equation for the molar mass. Doing so gives us molar mass = density * R * T / P.

Substituting the given values into this equation we get molar mass = 1.4975g/L * 0.0821 L.atm/K.mol * 349.6 K / 2.384 atm = 44.12 g/mol.

Looking at the options you've provided, the molar mass closest to our calculated molar mass is SO2 or Sulfur Dioxide, which has a molar mass of 64.07 g/mol.

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The complete question is given below:

What is the identity of a gas that has a density of 1.4975 g/L and a volume of 8.64 L at a pressure of 2.384 atm and with a temperature of 349.6 Kelvin?

A) H2O B) N2 C) SO2 D) NO3 E) Cl2


Related Questions

Identify the housing option that has the lowest maintenance cost a single-family home b condominium c mobile home or d apartment

Answers

I think that the mobile home would have the lowest maintenance cost. But it all depends. You didn't give the information on where do the housing options take place so the cost may vary.

Answer:c mobile home

Explanation:

A mobile home is preconstructed structure, that can be run and transported to other location according to the choice of living place. This can be prepared from wood or other kind of cheap material which can keep the weight of mobile home low.

Thus mobile home is the lowest maintainace cost home for a single family.

Write the name of the following compound: H3PO4

Answers

Phosphoric acid, also known as orthophosphoric acid or phosphoric(V) acid, is a mineral acid with the chemical formula H3PO4

Explanation:

Since the given formula is [tex]H_{3}PO_{4}[/tex]. It consists of three hydrogen atoms, one phosphorous atom and four oxygen atoms.

[tex]H_{3}PO_{4}[/tex] is known as phosphoric acid. It is a weak acid and it dissociates to give hydrogen ions when dissolved in a solvent.

Phosphoric acid ([tex]H_{3}PO_{4}[/tex]) is also known as orthophosphoric acid.

Which of the following equilibrium systems most favors the products? a) CI2(g) + 2NO2(g) 2NO2CI(g); Keq = 1.8 b) N2(g) + 3H2(g) 2NH3(g); Keq = 345 c) 2HCI2(g) H2(g) + CI2(g); Keq = 2.0 × 10-7 d) CI2(g) + 2NO(g) 2NOCI(g); Keq = 3.7 × 108

Answers

CI2(g) + 2NO(g)  2NOCI(g); Keq = 3.7 × 10^8

Answer: The correct answer is Option d.

Explanation:

Equilibrium constant is defined as the ratio of concentration of products to the concentration of reactants each raised to the power their stoichiometric ratios. It is expressed as [tex]K_{eq}[/tex]

For a general chemical reaction:

[tex]aA+bB\rightarrow cC+dD[/tex]

The expression for [tex]K_{eq}[/tex] is written as:

[tex]K_{eq}=\frac{[C]^c[D]^d}{[A]^a[B]^b}[/tex]

There are 3 conditions:

When [tex]K_{eq}>1[/tex]; the reaction is product favored.When [tex]K_{eq}<1[/tex]; the reaction is reactant favored.When [tex]K_{eq}=1[/tex]; the reaction is in equilibrium.

From the above expression, the equilibrium constant is directly dependent on product concentration. Thus, more is the concentration of product, more will be the equilibrium constant.

The highest values of [tex]K_{eq}[/tex] will favor the product more.

Hence, the correct answer is Option d.

A uranium and iron atom reside a distance r = 42.30 nm apart. the uranium atom is singly ionized; the iron atom is doubly ionized. calculate the distance r from the uranium atom necessary for an electron to reside in equilibrium. ignore the insignificant gravitational attraction between the particles

Answers

Using this equation:

E(U) = E(Fe) kq / r² = k2q / (R-r)² 1/r² = 2/(R-r)²

(R-r)² = 2r² 

R² - 2Rr + r² = 2r² 

r² + 2Rr - R² = 0 is a quadratic equation to solve 
r² + 84.6r - 1789 = 0 ► solving for the quadratic equation

r² x 10 + 84.6r x 10 - 1789 x 10 = 0 x 10

refining: 10r² + 846r - 17890 = 0
so a = 10, b = 846, and c = -17890

r = -846 + √846² - 4 x 10 (-17890) / 2 x 10

r = 17.52 nm

Two chemicals a and b are combined to form a chemical
c. the rate, or velocity, of the reaction is proportional to the product of the instantaneous amounts of a and b not converted to chemical
c. initially, there are 100 grams of a and 50 grams of b, and for each gram of b, 2 grams of a is used. it is observed that 15 grams of c is formed in 10 minutes. how much is formed in 40 minutes? (round your answer to one decimal place.) grams

Answers

-dB/dt = kAB = k(2B)(B) = 2kB^2
-dB/B^2 = 2kdt
Integrating: 1/B - 1/(B_0) = 2kt
At t = 10, if 15 g of C have formed, this must have consumed 10 g A and 5 g B. The remaining mass of B is 45 g.
1/45 - 1/50 = 2(k)(10)
k = 1.11 x 10^-4
Then substituting this value of k with t = 40:
1/B - 1/50 = 2(1.11 x 10^-4)(40)
1/B - 1/50 = 0.008889
1/B = 0.028889
B = 34.62 g remaining
Therefore, 50 - 34.62 = 15.38 g of B have been consumed.
Doubling, 30.76 g of A have been consumed.
This means that 15.38 + 30.76 = 46.15 g of C have been formed.

If 0.0262 mol of cacl2 is dissolved in water to make a 0.520 m solution, what is the volume of the solution?

Answers

Cacl2  dissolve   in  water   according  to the  following  equation

Cacl2 + H2O  =  Ca(OH) + Hcl
Volume=  moles/molarity
  The  reacting  ratio    between CaCl2  to  Ca(OH)  is   1:1
therefore  moles  of  solution   is  also  0.0262  moles hence  volume   is  =
0.0262mol/  0.52mol/l =  0.0504L  or50.4ml

When a ph probe is inserted into a solution containing the chloride ion it is neutral. what is the ph of a solution containing the fluoride ion? view available hint(s) when a ph probe is inserted into a solution containing the chloride ion it is neutral. what is the ph of a solution containing the fluoride ion? the solution will be weakly acidic the solution will be strongly acidic. the solution will be neutral. the solution will be weakly basic the solution will be strongly basic?

Answers

Hi!

When a ph probe is inserted into a solution containing the fluoride ion, the solution will be weakly basic. 

The fluoride ion behaves like a weak base in aqueous solution, following the reaction that is shown below:

F⁻ + H₂O ⇄ HF + OH⁻

The OH⁻ ions generated in this reaction will make the solution weakly basic. The pKb value of the fluoride ion is 10,8 meaning that it is a weak base (Stronger bases have lower pKb values). 

A solution containing fluoride ions will be weakly basic because fluoride reacts with water to produce hydroxide ions, raising the pH slightly above 7.

Unlike chloride ions, which make a neutral solution, fluoride ions make the solution weakly basic.

When determining the pH of a solution containing fluoride ions (F¯), it is important to understand how fluoride interacts with water. Sodium fluoride (NaF) dissolves in water, producing fluoride ions, which then weakly react with water:

F¯ (aq) + H₂O (l) ⇒ HF (aq) + OH¯ (aq)

This reaction creates hydroxide ions (OH¯), making the solution weakly basic. Thus, while a chloride ion solution is neutral, a fluoride ion solution will have a pH slightly above 7 due to the weak base formed.

Write a speech aimed at year 7 to explain why some metals lose their shine over time but gold does not.

Answers

The reason of why some metals lose their shine over time but the gold does not is so simple that's because the corrosion and tarnish processes. Metals donate  electrons when exposed to atmosphere and tends to form oxide. and when the metal donate electrons the oxygen tends to accept this electrons and fill up its shell and form oxide and the metal lose its shine.when the oxide film contact with an aqueous medium metal oxide pairs with H2O and form rust.

But gold is a noble metal (like platinum and silver), it remains stable in its pure form and doesn't donate electrons so, no loss electrons and the oxide don't happen at all. So the gold is known for its resistance to oxidation. As the noble metals have a very low reaction rate with oxygen, So there is no rusting as the rusting is the result of the reaction of the oxygen with the metals.So there is no tarnish appears. that's why the gold doesn't lose its shine and keeps its pure form.

scientific description about the pizza dough doubles its size when it is placed in a warm place . how does this happen

Answers

Answer is: because carbon(IV) oxide is released.
For example if baking soda is used for the pizza dough, than on heat carbon(IV) oxide is product of chemical reaction:
2NaHCO₃ → Na₂CO₃ + CO₂ + H₂O.
If we use yeast (single-celled microorganism), also carbon(IV) oxide produced, because yeast turns sugars into carbon(IV) oxide.

For each item: classify organic or inorganic. NaCl: . phenol (C6H6;O): . C2H6: . Ca3(PO4)2: . formaldehyde (CH20): . MgCO3: .

Answers

NaCl - inorganic
Phenol - organic
C2H6 - organic
Ca3(PO4)2 - inorganic
CH2O - Organic
MgCO3 - Organic
Basically, if it has Carbon (other than a few) it is organic.

Explanation:

It is known that compound that contain carbon atom and hydrogen atom which are combined together are known as organic compounds. Carbon atom is the main element present in an organic compound.

For example, [tex]C_{6}H_{6}[/tex] is an organic compound.

Whereas compounds that does not contain carbon atom are known as inorganic compounds.

Thus, we can conclude that given compounds are classified as follows.

Organic compounds : [tex]C_{6}H_{6}[/tex], [tex]C_{2}H_{6}[/tex], [tex]CH_{2}O[/tex], and [tex]MgCO_{3}[/tex].

Inorganic compounds : [tex]Ca_{3}(PO_{4})_{2}[/tex].

If the solubility of o2 at 0.370 atm and 25 °c is 15.3 g/100 g h2o, what is the solubility of o2 at a pressure of 2.40 atm and 25 °c?

Answers

According to Henry's law:

C = K P         when,
C is the solubility of a gas at a constant temperature in a particular solvent.
K is the Henry law constant 
p is the pressure of the gas

we have the pressure and the solubility so we will get the K at first:
by substitution:
0.153 = K * 0.37atm 
K= 0.4
∴ C when P = 2.4 atm
∴ C = 0.37 * 2.4 atm = 0.888   = 88.8 g/100g H2O


Final answer:

The solubility of O2 in water is directly proportional to the partial pressure of the gas. To find the solubility of O2 at a pressure of 2.40 atm, we can use Henry's law and the given solubility at 0.370 atm.

Explanation:

Solubility of O2 in water at different pressures

The solubility of oxygen (O2) in water is directly proportional to the partial pressure of oxygen gas above the water. This relationship is described by Henry's law. According to Henry's law, the solubility of a gas is equal to the product of the Henry's law constant (kH) and the partial pressure of the gas. Therefore, to find the solubility of O2 at a pressure of 2.40 atm and 25 °C, we can use the following equation:

Solubility = kH * Pressure

Given that the solubility of O2 at 0.370 atm and 25 °C is 15.3 g/100 g H2O, we can rearrange the equation to solve for the Henry's law constant:

kH = Solubility / Pressure

Substituting the values into the equation, we get:

kH = (15.3 g/100 g H2O) / 0.370 atm

Solving this equation will give us the value of kH. Once we have the value of kH, we can use it to calculate the solubility of O2 at a pressure of 2.40 atm.

You have an aqueous solution where [OH-] = 1 x 10^-13 mol/L.

A.Calculate the hydrogen ion concentration [H+]. Show all work.
B.Calculate the pH. Show all work.
C.Is this solution an acid, base, or neutral and how do you know?

I honestly have no clue how to do this... please help... I will help you one something!! PLEASE

Answers

1) Answer is: the hydrogen ion concentration is 1·10⁻¹ mol/L.
[OH⁻] = 1·10⁻¹³ mol/L, equilibrium concentration of hydroxide anion.
[H⁺] is the concentration of hydrogen ions.
[OH⁻] · [H⁺] = 10⁻¹⁴ mol²/L², ionicproduct of water on room temperature.
[H⁺] = 10⁻¹⁴ mol²/L² ÷  1·10⁻¹³ mol/L.
[H⁺] = 10⁻¹ mol/L = 0,1 mol/L.

2) pH = -log[H⁺], approximately the negative of the base 10 logarithm of the molar concentration of hydrogen ions
pH = -log(10⁻¹ mol/L).
pH = 1.
This solution is acid, because pH value (potential of hydrogen) is less than seven. If pH is greater than seven, slotion is base and if pH is equal seven, solution is neutral.

The hydrogen ion concentration [H⁺] is 0.1 mol/L, making the pH of the solution 1. This pH level indicates that the solution is acidic.

Let's work through the problem step by step:

A. Calculate the hydrogen ion concentration [H⁺]

We know that the product of hydrogen ion concentration [H⁺] and hydroxide ion concentration [OH⁻] in water is equal to 1 x 10⁻¹⁴ at 25°C. This is represented by the equation:

[H⁺] * [OH⁻] = 1 x 10⁻¹⁴

Given that [OH⁻] = 1 x 10⁻¹³ mol/L, we can rearrange the equation to solve for [H⁺]:

[H⁺] = 1 x 10⁻¹⁴ / [OH⁻]

Substituting the given value:

[H⁺] = 1 x 10⁻¹⁴ / 1 x 10⁻¹³ = 1 x 10⁻¹ = 0.1 mol/L

B. Calculate the pH

The pH of a solution is calculated using the formula:

pH = -log[H⁺]

Substituting the value for [H⁺]:

pH = -log(0.1) = 1

C. Identify if the solution is an acid, base, or neutral

A solution with a pH less than 7 is acidic, a pH greater than 7 is basic, and a pH of 7 is neutral.

Since the pH of this solution is 1, it is an acidic solution.

What is the partial pressure of argon, par, in the flask? express your answer to three significant figures and include the appropriate unit?

Answers

given which are missing in your question:
the flask is filled with 1.45 g of argon at 25 C° 
So according to this formula (Partial pressure):
PV= nRT
first, we need n, and we can get by substitution by:
n =  1.45/mass weight of argon
   = 1.45 / 39.948 = 0.0363 mol of Ar
we have R constant = 0.0821
and T in kelvin = 25 + 273 = 298
and V = 1 L
∴ P * 1 = 0.0363* 0.0821 * 298 = 0.888 atm

Which term is the name for when both organisms benefit from a relationship?

Answers

symbiosis or mutualism 
the answer is mutalism

What is the boiling point of oxygen? a. 100 degrees C c. -57 degrees C b. 8 degrees C d. -183 degrees C Please select the best answer from the choices provided A B C D

Answers

-183 degrees C is the answer

In what physical state does acetic acid exist at 393 k?

Answers

The answer is gas state
- when the boiling point of acetic acid = 118 C°
So to know the state we should convert the acetic acid temperature from Kelvin to C° 
when T by Kelvin = 393 K, So it will be 393 - 273 = 120 C°
So the temperature here is higher than the boiling point 
∴ the answer will be gas state

Final answer:

At 393 K, which is 119.85°C, acetic acid exists in a liquid state, as it is above its melting point and below its boiling point.

Explanation:

Acetic acid, also known by its systematic name ethanoic acid, exists in different physical states depending on the temperature. Pure acetic acid solidifies at 16.6°C and is referred to as glacial acetic acid because it often solidified in cold laboratories lending the appearance of ice. At 393 K (which is equivalent to 119.85°C), acetic acid is well above its melting point and well below its boiling point of about 118°C. Hence, at 393 K, acetic acid would exist in a liquid state. It is important to note that the compound forms dimers due to strong intermolecular hydrogen bonding, which affects its physical properties, including melting and boiling points.

Which describes the results of the double slit experiment? Check all that apply.

Answers

Waves produced a diffraction pattern.

Results supported the wave theory of light.

Answer:

Waves produced a diffraction pattern.

Results supported the wave theory of light.

Explanation:

i got it right

If the molar mass of the compound in problem 3 is 73.8 grams/mole? what is the molecular formula ?

Answers

The molecular formula would be Li2CO3
Final answer:

To find the molecular formula, divide the given molar mass by the empirical formula mass of the compound and multiply the empirical formula by the resulting value. In this case, the molecular formula is 2 times the empirical formula.

Explanation:

The molar mass of a compound can be used to determine its molecular formula. To find the molecular formula, we divide the given molar mass by the empirical formula mass of the compound. If the resulting value is a whole number, then the empirical formula is also the molecular formula. If it is not a whole number, we need to multiply the empirical formula by the integer value closest to the resulting value to obtain the molecular formula.

In this case, since the molar mass is given as 73.8 grams/mole, and the calculated empirical formula mass is 176.124 g/mol, we find that 73.8 g/mol divided by 176.124 g/mol is equal to 0.419. Since this is not a whole number, we need to multiply the empirical formula by 2 since 2 is the integer that is closest to 0.419. Therefore, the molecular formula is 2 times the empirical formula.

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Tin has many possible isotopes. three of these isotopes are 115sn, 117sn, and 126sn. what is the mass number of each? how many protons, neutrons, and electrons are present in each?

Answers

Isotopes of an atom is the same atom but the difference between them is that the number of neutrons in the nucleus would differ, depending on the mass number. So let's take a look at your problem and breakdown Tin.

A stable atom of Tin (Sn):
Atomic number: 50
Protons: 50
Electrons:50
Neutrons: 69
Mass Number: 119 (rounded-off)

The Mass number is equal to the sum of protons and neutrons.
Now in an isotope, everything is the same, except for the number of neutrons. We can solve for how many neutrons an isotope has base on the mass number. 

A = p + n
Where A= Mass number
            p = proton
            n = neutron

To get the number of neutron just get the difference between the mass number and proton.
n = A - p

For your given, the mass number is already indicated.

*Note that isotopes have the same number of electrons, protons and atomic number as the original atom. 
 
1. 115 Sn or Tin 115 
Atomic number: 50 
Protons:    50
Electrons: 50 
Neutrons: ?
Mass number: 115

Now we get the number of neutrons:

n = A - p
n = 115 - 50
n  = 65

So 115Sn has a mass number of 115, 50 protons, 50 electrons and 65 neutrons.

2. 117 Sn or Tin-117
Atomic number: 50 
Protons:    50
Electrons: 50 
Neutrons: ?
Mass number: 117

Now we get the number of neutrons:

n = A - p
n = 117 - 50
n  = 67

So 117Sn has a mass number of 117, 50 protons, 50 electrons and 67 neutrons.

3. 126 Sn or Tin-126
Atomic number: 50 
Protons:    50
Electrons: 50 
Neutrons: ?
Mass number: 126

Now we get the number of neutrons:

n = A - p
n = 126 - 50
n  = 76

So 126Sn has a mass number of 126, 50 protons, 50 electrons and 76 neutrons.
Final answer:

The atomic number of tin is 50, and the mass numbers of the tin isotopes are 115, 117, and 126. Each isotope has 50 protons, and the number of neutrons varies for each isotope. All isotopes of tin have 50 electrons.

Explanation:

The atomic number of an element represents the number of protons in the nucleus. So, for tin, which has an atomic number of 50, it means there are 50 protons in its nucleus.

The mass number of an isotope is the sum of the number of protons and neutrons in the nucleus. For the isotopes given, 115Sn has a mass number of 115, 117Sn has a mass number of 117, and 126Sn has a mass number of 126.

Since the number of protons in an atom is equal to the atomic number, each isotope of tin will have 50 protons. The number of neutrons is equal to the mass number minus the atomic number. So, 115Sn has 65 neutrons, 117Sn has 67 neutrons, and 126Sn has 76 neutrons. The number of electrons in a neutral atom is equal to the number of protons, so each isotope will also have 50 electrons.

A student was titrating the calcium and water solution and notice the formation of bubbles in the flask. which description would best describe what is occuring?

Answers

Final answer:

Bubbles forming during a reaction involving calcium and water suggests a chemical reaction is occurring, likely the formation of solid calcium hydroxide or the release of carbon dioxide gas if an acid is present.

Explanation:

The student has observed the formation of bubbles while titrating a solution of calcium and water. This observation indicates that a chemical reaction is taking place. When solid calcium oxide reacts with liquid water, as per the information provided, the result is the formation of solid calcium hydroxide. This exothermic reaction may release gas and cause bubbling. Another possibility could be the formation of calcium carbonate and the release of carbon dioxide gas when reacting with an acid, which also leads to bubbling.

The pH scale runs from 0 to 14, and is an indication of how acidic or basic a solution is. A pH close to zero indicates a(n) _______ solution, and a pH near 14 indicates a(n) _______ solution.

Answers

acidic, basic. Also, 7 is neutral. Hope it helps! :)

Explanation:

A pH scale is a scale which helps in identifying whether a given substance is basic, acidic or neutral in nature.

So, when a substance has pH value less then 7 then it means the substance is acidic in nature. Whereas when a substance has pH value more then 7 then it means the substance is basic in nature.

On the other hand, if pH value of a substance is equal to 7 then it means the substance is neutral in nature.

Hence, we can conclude that the pH scale runs from 0 to 14, and is an indication of how acidic or basic a solution is. A pH close to zero indicates an acidic solution, and a pH near 14 indicates a basic solution.

Ammonia rapidly reacts with hydrogen chloride, making ammonium chloride. Calculate the number of grams of excess reactant when 6.01 g of NH3 reacts with 4.91 g of HCl.

Answers

the equation for the reaction is as follows;
NH₃ + HCl --> NH4Cl
one of the 2 reactants have been added in excess, to find out which reactant is in excess we need to find the number of moles of each reactant

NH₃ moles reacted - 6.01 g / 17 g/mol
                               = 0.35 mol
HCl moles reacted = 4.91 g / 36.5 g/mol
                               = 0.13 mol
the stoichiometry of NH₃ : HCl = 1:1
therefore the number of moles reacted should be equal, however NH₃ there are more moles than HCl which means that NH₃ has reacted in excess
the number of NH₃ moles that would have reacted = 0.13 mol
The mass of NH₃ reacted = 0.13 mol * 17 g/mol
                                         = 2.21 g
the excess amount of reactant is = 6.01 g - 2.21 g
                                                     = 3.8 g
the answer is 3.8 g

When 6.01 g of NH₃ reacts with 4.91 g of HCl, there are 3.71 grams of excess NH₃. HCl is the limiting reactant in this reaction based on the number of moles available.

The reaction between ammonia (NH₃) and hydrogen chloride (HCl) to form ammonium chloride (NH₄Cl) is described by the balanced equation:

NH₃ + HCl → NH₄Cl

First, we need to determine the number of moles of each reactant.

Molar mass of NH₃ = 14.01 (N) + 3 × 1.01 (H) = 17.04 g/mol

Moles of NH₃ = 6.01 g / 17.04 g/mol = 0.3526 moles

Molar mass of HCl = 1.01 (H) + 35.45 (Cl) = 36.46 g/mol

Moles of HCl = 4.91 g / 36.46 g/mol = 0.1347 moles

From the balanced equation, the mole ratio of NH₃ to HCl is 1:1, meaning they react on a 1:1 basis. Therefore, HCl is the limiting reactant because we have fewer moles of HCl than NH₃.

Since the reaction is 1:1, 0.1347 moles of HCl will fully react with 0.1347 moles of NH₃. We started with 0.3526 moles of NH₃ and used up 0.1347 moles:

Moles of NH₃ remaining = 0.3526 - 0.1347 = 0.2179 moles

To find the mass of the excess NH₃:

Mass of excess NH₃ = 0.2179 moles × 17.04 g/mol = 3.71 g

Therefore, when 6.01 g of NH₃ reacts with 4.91 g of HCl, there are 3.71 grams of excess NH₃.


All organisms need energy from food in order to survive. Plants produce their own food through photosynthesis. Animals must find external sources for food.

Which of the following is true?
A.
Plants are autotrophs, and animals are heterotrophs.
B.
Plants and animals are both autotrophs.
C.
Plants and animals are both heterotrophs.
D.
Plants are heterotrophs, and animals are autotrophs.

Answers

A. plants are autotrophs and animals are heterotrophs
the correct answer is A

A mixture of ch4 and h2o is passed over a nickel catalyst at 1000. k. the emerging gas is collected in a 5.00-l flask and is found to contain 8.32 g of co, 2.63 g of h2, 42.3 g of ch4, and 49.2 g of h2o. assuming that equilibrium has been reached, calculate kc and kp for the reaction.

Answers

                    
According to that Kc is an equilibrium constant in terms of molar concentrations.
and Kc = [C]^c *[D]^d / [A]^a * [B]^b >>>> (1)
in the general reaction:
aA + bB ↔ cC + dD 
and, from our balanced equation:
CH4 + H2O ⇔ Co + 3H2 >>> (2)
So, we need to calculate the concentrations (molarity) of the products and reactants:
the Molarity of CH4 = no. of moles/volume (L)
 and no. of moles = weigh / Molecular weight = 42.3 / 16 = 2.643 moles
so the molarity of CH4 = 2.643 / 5 = 0.528 molar
the molarity of H20 = (49.2 / 18) / 5 =  0.546 molar
the molarity of CO = (8.32/28) / 5 = 0.059 molar
the molarity of H2 = (2.63 / 2) / 5 = 0.263 molar 
By substitution in (1) according to (2);
∴ Kc = [0.059]*[0.263]^3 / ( [0.528]*[0.546]) = 3.7 * 10 ^-3  >>>> (3)
Kp = Kc (RT)^(Δn) >>> (4)
where R is the gas constant = 0.0821,
and Δn is the change in moles in gas= (3(H2) + 1 (CO) - (1 H2O + 1 CH4) = 2
by substition in (4):
∴ Kp = 3.7*10^-3 (0.0821* 1000)^2= 24.939



Kc is approximately 0.00362, and Kp is approximately 2.167 based on molar concentrations and gas collected data.

To accurately calculate the equilibrium constants [tex]\( K_c \)[/tex] and [tex]\( K_p \)[/tex] for the given reaction, we need to follow the steps correctly:

[tex]\[ \text{CH}_4(\text{g}) + \text{H}_2\text{O}(\text{g}) \leftrightarrow \text{CO}(\text{g}) + 3\text{H}_2(\text{g}) \][/tex]

1. Molar Masses:

- [tex]\(\text{CH}_4\):[/tex] 16.04 g/mol

- [tex]\(\text{H}_2\text{O}\)[/tex] : 18.02 g/mol

- [tex]\(\text{CO}\):[/tex] 28.01 g/mol

- [tex]\(\text{H}_2\):[/tex] 2.02 g/mol

2. Calculate Moles of Each Substance:

[tex]\(\text{CH}_4\): \( \frac{42.3 \, \text{g}}{16.04 \, \text{g/mol}} = 2.638 \, \text{moles} \)\\ \(\text{H}_2\text{O}\): \( \frac{49.2 \, \text{g}}{18.02 \, \text{g/mol}} = 2.730 \, \text{moles} \)\\\(\text{CO}\): \( \frac{8.32 \, \text{g}}{28.01 \, \text{g/mol}} = 0.297 \, \text{moles} \)\\\(\text{H}_2\): \( \frac{2.63 \, \text{g}}{2.02 \, \text{g/mol}} = 1.301 \, \text{moles} \)[/tex]

3. Calculate Concentrations:

[tex]- \([ \text{CH}_4 ] = \frac{2.638 \, \text{moles}}{5.00 \, \text{L}} = 0.528 \text{M} \)\\\\- \([ \text{H}_2\text{O} ] = \frac{2.730 \, \text{moles}}{5.00 \, \text{L}} = 0.546 \, \text{M} \) \\\\- \([ \text{CO} ] = \frac{0.297 \, \text{moles}}{5.00 \, \text{L}} = 0.0594 \, \text{M} \)\\\\- \([ \text{H}_2 ] = \frac{1.301 \, \text{moles}}{5.00 \, \text{L}} = 0.260 \, \text{M} \)[/tex]

4. Calculate [tex]K_c[/tex]

[tex]\[ K_c = \frac{[ \text{CO} ][ \text{H}_2 ]^3}{[ \text{CH}_4 ][ \text{H}_2\text{O} ]} \][/tex]

[tex]\[ K_c = \frac{(0.0594) \times (0.260)^3}{(0.528) \times (0.546)} \][/tex]

[tex]\[ K_c = \frac{0.0594 \times 0.017576}{0.288288} \][/tex]

[tex]\[ K_c = \frac{0.0010431744}{0.288288} \][/tex]

[tex]\[ K_c \approx 0.00362 \][/tex]

5. Calculate [tex]K_p[/tex]

[tex]\[ K_p = K_c \left( RT \right)^{\Delta n} \][/tex]

- [tex]\(\Delta n = \text{moles of products} - \text{moles of reactants} = (1 + 3) - (1 + 1) = 2\)[/tex]

- Assuming [tex]\( T = 298 \, \text{K} \)[/tex] (standard temperature) and [tex]( R = 0.0821 \, \text{L atm/(mol K)} \):[/tex]

[tex]\[ K_p = 0.00362 \left( 0.0821 \times 298 \right)^2 \][/tex]

[tex]\[ K_p = 0.00362 \left( 24.4658 \right)^2 \][/tex]

[tex]\[ K_p = 0.00362 \times 598.5877 \][/tex]

[tex]\[ K_p \approx 2.167 \][/tex]

Conclusion:

[tex]\( K_c \approx 0.00362 \)\\\\ \( K_p \approx 2.167 \)[/tex]

In summary, Kc is approximately 0.00362, and Kp is approximately 2.167

write the balanced equation for: Aqueous solutions of phosphoric acid and cesium hydroxide react to produce aqueous cesium dihydrogen phosphate and liquid water

Answers

 Cesium  hydroxide  react  with  phosphoric  acid  to  form   cesium  dihydrogen  phosphate  and  liquid  water
 the  word  equation  is  as   follows
cesium   hydroxide+  phosphoric  acid-->  cesium  dihydrogen  +  water

the  balanced  chemical  equation

H3PO4+  CsOH ---->CsH2PO4   +H2O (the  equation  is  balanced   since the  number  of  molecules  in  both  reactant  side   and  product   side  are  equal
Final answer:

The balanced chemical equation for the reaction between phosphoric acid and cesium hydroxide to produce cesium dihydrogen phosphate and water is 3 CsOH(aq) + H3PO4(aq) → Cs3PO4(aq) + 3 H2O(l).

Explanation:

The balanced chemical equation for the reaction between aqueous solutions of phosphoric acid (H3PO4) and cesium hydroxide (CsOH) to produce aqueous cesium dihydrogen phosphate (CsH2PO4) and liquid water (H2O) is as follows:

3 CsOH(aq) + H3PO4(aq) → Cs3PO4(aq) + 3 H2O(l)

This reaction is an example of an acid-base neutralization, resulting in the formation of a salt (cesium dihydrogen phosphate) and water.

why did the president say the humans need to stay in space wall-e

Answers

In the distant future, earth was no longer habitable by humans due to extreme pollution and excessive waste. Humans were not allowed to go back to earth due to the severity of the planet's condition and they dwell in space for hundreds of years while WALL-E, short for Waste Allocation Load Lifter Earth-class, was the only robot left to clean the planet, little by little.

Why is airborne and water borne chemicals both local and global issues

Answers

Air and water borne chemicals are both local and global issues because of the potential hazard they may pose to human life and their ability to travel and affect more than one countries or regions.
One such example is the growth of the ozone layer in the 1980s over Antarctica. CFC used globally became concentrated at the south pole and caused the depletion of the layer. The hole appeared in Antarctica even though there are no industries or even individuals there to emit these gases.

Which of the following are greenhouse gases? Select all that apply. Oxygen, carbon dioxide, nitrous oxide, nitrogen

Answers

Carbon dioxide and nitrous oxide

Answer:The green house gases are: carbon dioxide, nitrous oxide

Explanation:

Green house gases are the atmospheric gases which absorbs and emit radiant energy. These gases are responsible green house effect and rise in temperature of planet earth.For example: carbon-dioxide,nitrous oxide, methane, , water vapors etc. There also man made green house gases like: chloro-fluorocarbons , hydro-fluorocarbons etc.

How did convection currents cause the plates to move

Answers

Convection currents in the mantle are powered by the heat from the earth's core. The convection cells move in a circular motion in the mantle as the plumes or currents of magma rises and falls due to heating and cooling. This circular motion will affect the base of the crust and drag the crustal plates along. The movement however is very slow, as plates only move a few centimeters or inches per year. 

Changes in the price level affect which components of aggregate demand?

a. only consumption and investment

b. only consumption and net exports

c. only investment

d. consumption, investment, and net exports

Answers

The correct option is D.
Aggregate demand refers to the total demand for goods and services within a particular market. The components of aggregate demand include: consumption, investment, government spending and net export. Changes in the price level affect consumption, investment and net export.
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