Keep in mind that concentration (mol/L) = (# of moles) / (volume (L) )
Find the volume in litres is easy: 25.0mL + 55.5mL = 80.5 mL = 0.0805 L
Now we have to find the number of moles of Chlorine (Cl) moles of Cl in 25.0mL of NH4Cl = (25.0mL)(1 L/1000mL)(0.2450mol NH4Cl/1L)(1 mol Cl/1 mol NH4Cl) = 0.006125 mol
Cl moles of Cl in FeCl3= (55.5mL)(1 L/1000mL)(0.1655mol FeCl3/1 L)(3 mol Cl/ 1 mol FeCl3) = 0.02755575 mol Cl
Total moles Cl = 0.006125 + 0.02755575 = 0.03368075 mol Cl
Concentration = (0.03368075/0.0805) = 0.418 mol/L Cl
What is concentration of solutions?
The amount of solute that has been dissolved in a specific volume of solvent or solution is measured by the solution's concentration. A solution that contains a significant amount of dissolved solute is said to be concentrated. A solution is said to be dilute if it only contains a small amount of dissolved solute.
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Consider a buffer solution consisting of 0.35 M HNO2 and 0.50 M KNO2, which has an initial pH of 3.30 (Ka for HNO2 = 7.1 x 10-4). If 0.030 mol of HCl are added to 1.0 L of this solution, select all the options that correctly reflect the steps required to calculate the change in pH.
A water solvent-based solution with a pH change of 3.24 is made up of a combination of a weak acid and the conjugate base of the weak acid
The simple buffer solution is what?A simple buffer is a solution that combines a strong acid with a weak base in relatively high concentrations. These buffers are alkaline because their pH is higher than 7 at 298 K. Consider NH4OH and NH4Cl.
the operation of a buffer solution:Buffer solutions maintain a constant pH by neutralizing extra acids or bases. These compounds consist of a weak acid and its conjugate base, which exchange protons and hydroxide ions to produce water.
pH = -log(7.1×10−4×0.380.47)7.1×10-4×0.380.47 = 3.24
[H3O+] = 7.1 x 10-4 x 0.380.47
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The elementary steps for the catalyzed decomposition of dinitrogen monoxide are:
N2O (g) + NO (g) → N2 (g) + NO2 (g)
2 NO2 (g) → 2 NO (g) + O2 (g)
Which of the following statements are CORRECT?
1. The overall balanced reaction is 2 N2O (g) → 2 N2 (g) + O2 (g).
2. NO (g) is a catalyst for the reaction.
3. N2 (g) is a reaction intermediate.
4. NO2 (g) is a reaction intermediate.
A. 1, 2, and 4
B. 1, 2, and 3
C. 1 and 2
D. 1 only
E. 4 only
The correct option for the catalyzed decomposition for given dinitrogen monoxide are- A. 1, 2, and 4
Explain the formation of dinitrogen monoxide?Nitrous oxide, also referred to as laughing gas, nitrous, simply nos, is a chemical substance that has the formula N2O and is also known as dinitrogen oxide as well as dinitrogen monoxide.
It is a colorless, nonflammable gas that tastes and smells mildly sweet at normal temperature. It is used as a sedative during medical and dental operations to assist patients feel more at ease and to reduce their anxiety. The melting point of dinitrogen monoxide is -88.48 °C.The fundamental procedures for dinitrogen monoxide's catalyzed breakdown are:
N2O (g) + NO (g) → N2 (g) + NO2 (g)
2 NO2 (g) → 2 NO (g) + O2 (g)
Thus, the correct statements are-
1. The overall balanced reaction is 2 N2O (g) → 2 N2 (g) + O2 (g).
2. NO (g) is a catalyst for the reaction.
4. NO2 (g) is a reaction intermediate.
Therefore, A. 1, 2, and 4 is the correct option.
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which one of these is the correct answer ?
The number of moles is 2.77 moles Option B
What is the heat of reaction?The heat of reaction, also known as the enthalpy of reaction, is the amount of heat absorbed or released when a chemical reaction takes place under constant pressure. It is defined as the difference between the enthalpy of the products and the enthalpy of the reactants.
The heat of reaction can be exothermic or endothermic. An exothermic reaction releases heat into the surroundings, resulting in a negative heat of reaction value. In contrast, an endothermic reaction absorbs heat from the surroundings, resulting in a positive heat of reaction value.
We can see that;
1 mole of MnO2 produces 151 kJ of heat
x moles of MnO2 would produce 418 kJ
x = 2.77 moles
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NH3(g) → N₂(g) + H₂(g)
-
How many moles of N₂ will be produced by the decomposition of 4.52 moles of ammonia?
HOW DO WE GET THERE?
How many moles of N₂ are produced from 4.52 mol NH3?
It is clear from the balanced chemical equation, that two moles of ammonia decompose to give one mole of nitrogen gas. Then, 4.52 moles will give 2.26 moles of nitrogen gas.
What is ammonia ?Ammonia is an inorganic gas formed by the combination of nitrogen gas and hydrogen gas. It is a reversible reaction and the ammonia gas can be decomposed to given the hydrogen and nitrogen gases as written below:
[tex]\rm 2NH_{3}\rightarrow 3H_{2} + N_{2}[/tex]
As per the balanced chemical equation of the decomposition of ammonia gas, it is clear that, 2 moles of ammonia gives on mole of N₂.
Then 4.52 moles of ammonia will give,
4.52 / 2 = 2.26 moles of N₂.
Therefore, 2.26 moles of N₂ is produced from 4.52 moles of NH₃.
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the compound known as diethyl ether, commonly referred to as ether, contains carbon, hydrogen, and oxygen. a 2.876 g 2.876 g sample of ether was combusted in an oxygen rich environment to produce 6.830 g 6.830 g of co2(g) co 2 ( g ) and 3.495 g 3.495 g of h2o(g) h 2 o ( g ) . insert subscripts to complete the empirical formula of ether.
The empirical formula of ether is C4H10O.
Define empirical formula.The empirical formula of a compound shows the simplest whole-number ratio of atoms present in the compound. To determine the empirical formula of diethyl ether (C2H5OC2H5), we need to know the mass of each element present in the compound.
In this problem, we are given the mass of diethyl ether that was combusted, which is 2.876 g. When diethyl ether is combusted in an oxygen-rich environment, it produces carbon dioxide and water. The masses of these products are also given: 6.830 g of carbon dioxide and 3.495 g of water.
We can start by calculating the mass of carbon in the original sample of ether. To do this, we use the molar mass of carbon dioxide (44.01 g/mol) and the stoichiometry of the combustion reaction:
2 C2H5OC2H5 + 7 O2 → 4 CO2 + 6 H2O
The balanced equation shows that for every two molecules of ether, four molecules of carbon dioxide are produced. Therefore, we can write:
2.876 g ether × (4 mol CO2 / 2 mol ether) × (1 mol C / 1 mol CO2) × (12.01 g / 1 mol C) = 5.716 g C
We can perform a similar calculation to determine the mass of hydrogen in the sample:
2.876 g ether × (6 mol H2O / 2 mol ether) × (2 mol H / 1 mol H2O) × (1.01 g / 1 mol H) = 4.352 g H
Finally, we can calculate the mass of oxygen by subtracting the masses of carbon and hydrogen from the total mass of the sample:
2.876 g ether - 5.716 g C - 4.352 g H = 0.808 g O
Now that we know the mass of each element, we can use these values to calculate the empirical formula. We divide each mass by the molar mass of the corresponding element, and then divide the resulting values by the smallest value to obtain whole-number ratios:
C: 5.716 g / 12.01 g/mol = 0.476 mol
H: 4.352 g / 1.01 g/mol = 4.31 mol
O: 0.808 g / 16.00 g/mol = 0.0505 mol
Dividing by the smallest value (0.0505 mol) gives the following ratios:
C: 9.43
H: 85.2
O: 1.00
To obtain whole-number ratios, we can divide each value by the smallest value:
C: 9.43 / 1.00 ≈ 9
H: 85.2 / 1.00 ≈ 85
O: 1.00 / 1.00 = 1
Therefore, the empirical formula of diethyl ether is C4H10O.
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A student mixes 5.00 mL of 2.00 x 10-3 M Fe(NO3)3 with 5.00 mL of 2.00 x 10-3 M KSCN. She finds that in the equilibrium mixture the of concentration of FeSCN2+ is 1.40 x 10-4 M.
a) What is the initial concentration in solution of the Fe3+ and SCN- ?
b) What is the equilibrium constant for the reaction?
part a.)
The initial concentration in solution of the Fe3+ and SCN- is:
moles of Fe3+ = (2.00 x 10^-3 M) x (5.00 x 10^-3 L) = 1.00 x 10^-5 mol
moles of SCN- = (2.00 x 10^-3 M) x (5.00 x 10^-3 L) = 1.00 x 10^-5 mol
part b)
The equilibrium constant for the reaction is 1.54 x 10^10.
How do we calculate?Fe(NO3)3(aq) + 3KSCN(aq) ⇌ Fe(SCN)3(aq) + 3KNO3(aq)
b)
Therefore, the equilibrium concentration of Fe(SCN)2+ is also 1.40 x 10^-4 M.
Applying law of mass action, the equilibrium constant expression for the reaction is:
Kc = [Fe(SCN)2+] / ([Fe3+] [SCN-]3)
Kc = (1.40 x 10^-4) / [(1.00 x 10^-5) (1.00 x 10^-5)^3]
Kc = 1.54 x 10^10
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In the following reaction 10.7x1024 atoms of lithium reacts with nickel (II) bromide to produce what mass in grams of nickel?
2Li + NiBr2 --> 2LiBr + Ni
10.7 x 1024 atoms of lithium reacts with nickel (II) bromide to produce 1.04 x 10-1 g of nickel.
What is lithium?Lithium is a chemical element with symbol Li and atomic number 3. It is a soft, silvery-white alkali metal and is the lightest of all metals. It is the least dense solid element and is the only alkali metal that does not react with air at room temperature. Lithium is highly reactive and flammable, and is used in many applications such as batteries, lubricants, pharmaceuticals, glass, ceramics, and nuclear weapons. It is used in the treatment of bipolar disorder, and its compounds are used in specialized glass and ceramics.
The mass of nickel produced in the reaction can be determined by using the atomic mass of each element. The atomic mass of lithium is 6.94 g/mol and the atomic mass of nickel is 58.69 g/mol. Using Avogadro's number, which is 6.022 x 1023 atoms/mol, we can calculate the mass of nickel produced in the reaction.
10.7 x 1024 atoms of lithium = 10.7 x 1024 / 6.022 x 1023 moles of lithium = 1.78 x 10-1 moles of lithium
1.78 x 10-1 moles of lithium x 58.69 g/mol of nickel = 1.04 x 10-1 g of nickel
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What questions might a scientist ask about the structure of the atom based on these discoveries?
Thin sheets of gold foil were bombarded with positively charged alpha particles. Most alpha particles passed right through the foil. However, a handful of them were dispersed in various directions.
What is atom renowned for?The fundamental component of chemistry is the atom. It is the smallest piece of matter that can be separated without releasing electrically charged particles. It is also the smallest piece of stuff with the characteristics of a chemical element.
Why was atom discontinued?We've made the decision to retire Atom in addition to further our dedication to bringing quick and dependable software development to the internet via Microsoft Visual Studio Code & GitHub Codespaces, even though the goal of expanding the software maker community still exists.
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During a chemistry lab exercise, a student isolates a compound at stp. In her lab report, she has identified it as an ionic compound. If it is an ionic compound, it will likely have a _________boiling point and be a _______ at stp.
The compound will likely have a high boiling point and be a solid at STP. Ionic compounds are compounds composed of strong electrostatic bonds between a cation (positive ion) and an anion (negative ion).
These strong electrostatic bonds require a large amount of energy to break, resulting in a high boiling point. This high boiling point is due to the strong bond between the cation and anion, and the need to break these bonds in order for the compound to go from the solid to the liquid phase. Additionally, due to the strong electrostatic bonds, the compound is likely to be a solid at STP. These strong forces require high amounts of energy to break the bond, resulting in a high boiling point. At STP, the electrostatic forces will be strong enough to keep the ions in a solid state.
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Without checking the detailed numbers, please arrange the ionic compounds CsI, MgO, NaCl, and AlN in order of increasing lattice energy.
For the above compounds, the order of increasing lattice energy is MgO, NaCl, CsI, and AlN.
Which is ionic? MgO or NaCl?Because the ionic species in MgO have greater charge (Mg+2 and O2- as opposed to Na+ and Cl-), the ionic bond is stronger than it is in NaCl. As a result, MgO has greater ionic connections than NaCl. MgO is hence more ionic than NaCl.
whose MgO lattice energy is the highest?The size of the ions involved has an inverse relationship with lattice energy in ionic compounds. MgO has the highest lattice energy because Mg2+, the smallest of the four ions (because anion is the same in all), is present.
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A biochemist carefully measures the molarity of trypticase in 58.mL of cell growth medium to be 12. μM. Unfortunately, a careless graduate student forgets to cover the container of growth medium and a substantial amount of the solvent evaporates. The volume of the cell growth medium falls to 16.mL. Calculate the new molarity of trypticase in the cell growth medium.
Molarity = (moles of solute / volume of solution). Since the moles of solute (trypticase) stays the same, the molarity increases when the volume of solution decreases.
What is the volume ?The volume of a word is an expression of the amount of content in a written piece. It can be measured in terms of the number of words, pages, or characters contained within a text. A text with a high volume will contain more content than a text with a low volume. Plagiarism-free writing is essential for a text to have a high volume, as plagiarized content does not contribute to the overall value of the piece.
The new molarity of trypticase in the cell growth medium would be 48 μM.
Molarity = (moles of solute / volume of solution)
Molarity (original) = (12 μM / 58 mL)
Molarity (new) = moles of solute (original) / volume of solution (new)
Molarity (new) = (12 μM * 58 mL) / 16 mL
Molarity (new) = 48 μM
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write the balanced dissociation equation for solid barium hydroxide in aqueous solution. if it does not dissociate, simply write only nr. be sure to include the proper phases for all species within the reaction.
The balanced dissociation equation for solid barium hydroxide in aqueous solution is: Ba(OH)2(s) → Ba2+(aq) + 2OH-(aq)
What happens when solid barium hydroxide dissociated in aqueous solution?Strong base barium hydroxide (Ba(OH)2) totally dissociates in water to form barium ions (Ba2+) and hydroxide ions (OH-). One molecule of barium hydroxide splits into two hydroxide ions and one barium ion in this process. The hydroxide ion has a charge of -1 and is opposite to the barium ion, which has a charge of +2. Strong base dissociation in water, where the solid substance entirely dissolves into ions, is exemplified by this process. To demonstrate how the solid barium hydroxide dissolves in water to create ions, the proper phases for each species involved in the reaction are shown.
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10 Think and answer Scientists discovered layers of sed that was once a seabed. They also discovered several fossils in the layers. Which fossils do you think will be older - those found in the top layers or those found in the bottom layer? Why?
Sedimentary rocks and volcanic lava are the fossils that will be older, found in the top layers o in the bottom layer.
What is sedimentary rock?The lithified counterparts of sediments are sedimentary rocks. They are primarily created by hardening unconsolidated sediments that already exist via cementing, compacting, as well as other means. Nevertheless, certain types of sedimentary rock do not display an intermediate life as sediment and instead precipitate immediately towards their solid sedimentary form.
Layers or beds are formed by the deposition of volcanic lava flows and sedimentary rocks comprised of mud, sand, gravel, or fossilized shells. The layers just at bottom of the pile typically older than that of the ones at the top because they accumulate over time.
Therefore, sedimentary rocks and volcanic lava are the fossils that will be older, found in the top layers o in the bottom layer.
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How many BONDS are there?
The chemical bonds are generally of two types, they are ionic and covalent bonds. Here the number of bonds in the given compound is 4.
What is a chemical bond?A chemical bond can be defined as the attractive force which holds the constituent atoms or ions of a molecular species together. Bonds arise from the electrostatic forces between the positively charged atomic nuclei and the negatively charged electrons.
The ionic bond is formed by the complete transfer of one or more electrons from one atom to another whereas the covalent bond is formed by the sharing of an electron pair between the atoms.
Here CCl₄ is a covalent compound which contains four non-polar covalent bonds between carbon and chlorine atoms. Here by sharing the electrons, 'C' attains the electronic configuration of 'Ne' and 'Cl' attains the configuration of 'Ar'.
Thus there are 4 bonds in CCl₄.
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6. The half-life of a radioactive substance is 15 years. How long
will take 40 kg to decay to a mass of 10 kg?
A. 60 years
B. 30 years~
c. 12 years
D. 15 years
The time taken to decay is 30 years
What is half life in radioactivity?In radioactivity, the half-life is the time it takes for half of the radioactive atoms in a sample to decay or disintegrate. The concept of half-life is important in understanding the behavior of radioactive materials and is used to describe the rate of radioactive decay.
Radioactive decay is a random process, which means that the time it takes for an individual atom to decay is unpredictable.
We know that;
N/No = (1/2)^t/t1/2
N = mass at time t
No = initial mass
t = time taken
t1/2 = half life
Thus we have that;
10/40 = (1/2)^t/15
(1/2)^2 = (1/2)^t/15
2 = t/15
t = 30 years
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A 300-mg sample of technetium-99m is used for a diagnostic test. If téchnetium-99m has an effective half-life of 4.8 hours, how much of the
technetium-99m remains 96 hours after the test?
Express your answer to two significant figures and include the appropriate units.
Valae
Units
?
Answer:
i like butting hole
Explanation:
mkrkr
Describe a procedure for making rock candy using sucrose. At 20°C, the solubility of sucrose is 230.9 g/100 g H2O. At 50°C, it is 260.4 g/100 g H2O. At 100°C, it is 487 g/100 g H2O.
Answer:The solubility of a substance in water is defined as the maximum amount of solute that can be dissolved in 100 g of water at a given temperature. Hence, the solubility of sugar in water at 20â °C is 204 g.
Explanation:The solubility of a substance in water is defined as the maximum amount of solute that can be dissolved in 100 g of water at a given temperature. Hence, the solubility of sugar in water at 20â °C is 204 g.
Propane gas reacts with oxygen gas to give carbon dioxide gas and water vapor (gas). If you mix propane and oxygen in the correct stoichiometric ratio, and if the total pressure of the mixture is 300 mm hg, what are the partial pressures of.
Propane gas partial pressure is 300 mm.
Propane gas reaction - C3H8(g)+5O2(g)→3CO2(g)+4H2O(g)
As propane gas is a three-carbon alkali. It has a standard temperature and pressure. It can be compressed into a transport liquid. As per, the gas reacts with the air that is oxygen and gives carbon dioxide. We mix it with the correct ratio then the pressure mix is equal to 300 mm.
The answer is a partial pressure of propane gas 51mmHg and a part of the oxygen gas to be 249 mm. The propane gas is mixed with the oxygen gas and the gas reacts to give out carbon dioxide and thus measuring their correct stoichiometric ratio.
The gas produces a total pressure mix of 300 mg Hg and thus partial pressure is around 51 and that for oxygen is 249 mm. The partial pressure of a gas is 51 mmHg and part of the oxygen gas is 249 mm hg. That of water vapours of 171 mmHg.
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Problem #4: Interpret reactions in terms of representative particles, then write balanced chemical
equations and compare with your results. Determine limiting and excess reagent and the amount of
unreacted excess reactant.
a) 3 atoms of carbon combine with 4 molecules of hydrogen to produce methane (CH4)
b) 7 molecules of hydrogen and 2 molecules of nitrogen gases react to produce ammonia
c) 4 molecules of hydrogen and 5 molecules of chlorine react.
Answer:
a) The balanced chemical equation for the reaction is:
3C (s) + 4H2 (g) → CH4 (g)
In this reaction, 3 carbon atoms combine with 4 molecules of hydrogen to produce one molecule of methane. The representative particles in this reaction are atoms of carbon and molecules of hydrogen and methane.
b) The balanced chemical equation for the reaction is:
2N2 (g) + 7H2 (g) → 2NH3 (g)
In this reaction, 7 molecules of hydrogen react with 2 molecules of nitrogen gas to produce 2 molecules of ammonia. The representative particles in this reaction are molecules of hydrogen, nitrogen, and ammonia.
c) The balanced chemical equation for the reaction is:
H2 (g) + Cl2 (g) → 2HCl (g)
In this reaction, 4 molecules of hydrogen react with 5 molecules of chlorine gas to produce 10 molecules of hydrogen chloride. The representative particles in this reaction are molecules of hydrogen, chlorine, and hydrogen chloride.
To determine the limiting and excess reagents and the amount of unreacted excess reactant, we need to know the initial amounts of each reactant. Without this information, we cannot determine the limiting and excess reagents or the amount of unreacted excess reactant.
2 LiOH(s) + CO2(g) à Li2CO3(s) + H2O(l)
If you have 655 grams of lithium hydroxide:
1. What is the actual mole ratio?
2. What is the actual gram ratio?
3. What mass of CO2 can 655 g LiOH absorb?
4. What mass of H2O will be available for use?
Answer:
Approx. 1200g
Explanation:
You have given the stoichiometric equation:
2LiOH(s)+CO2(g)→Li2CO3(s)+H2O(l)
.And this unequivocally tells us that each mole of carbon dioxide required 2 moles of lithium hydroxide:
Moles of LiOH = 1.3×103⋅g/23.95⋅g⋅mol−1=54.3⋅mol
And thus
27.1⋅mol
CO2 can be absorbed:
27.×44.01gmol−1≅1.2 kg
Explanation:
The mass of a single nickel atom is 9.75×10-23 grams. How many nickel atoms would there be in 211 milligrams of nickel?
Balance the chemical equation
N2O5 -> N2 + O2
The balanced chemical equation for the decomposition of dinitrogen pentoxide(N₂O₅) into nitrogen gas (N₂) and oxygen gas (O₂) is: 2 N₂O₅ → 2 N₂ + 5O₂.
What is reaction?In chemistry, a reaction refers to a process in which one or more substances, called reactants, are transformed into one or more different substances, called products. Reactions can be caused by a variety of factors, such as heat, light, or the presence of a catalyst, and they can occur in a wide range of physical states, including gases, liquids, and solids. There are many different types of chemical reactions, which can be classified based on their mechanisms, the nature of the reactants, and the properties of the products. For example, a reaction can be classified as a redox reaction if there is a transfer of electrons between the reactants, or as an acid-base reaction if there is a transfer of protons between the reactants.
Here,
This equation is balanced because it has the same number of atoms of each element on both the reactant and product side. On the left side, there are 2 nitrogen atoms, 10 oxygen atoms, and 2 molecules of N₂O₅. On the right side, there are 2 nitrogen atoms, 10 oxygen atoms, and 1 molecule of O₂ and 1 molecule of N₂.
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Consider the following reactions: A ⇌ B, K₁=5.90 A ⇌ C, K₂=2.00 What is K for the reaction C ⇌ B?
Answer:
2.95
Explanation:
To find K for the reaction C ⇌ B, we need to use the equilibrium constant expression for this reaction, which is:
K = [B]/[C]
We can relate the concentrations of B and C to the concentration of A using the equilibrium constants K1 and K2 and the law of mass action, which states that the product of the concentrations of the products raised to their stoichiometric coefficients divided by the product of the concentrations of the reactants raised to their stoichiometric coefficients is equal to the equilibrium constant for the reaction. Using this law, we can write:
K1 = [B]/[A]
K2 = [C]/[A]
We can rearrange these equations to solve for [A] in terms of [B] and [C]:
[A] = [B]/K1
[A] = [C]/K2
Setting these two expressions for [A] equal to each other and solving for [B]/[C], we get:
[B]/[C] = K1/K2
Substituting this expression for [B]/[C] into the expression for K, we get:
K = [B]/[C] = K1/K2
Plugging in the values for K1 and K2, we get:
K = 5.90/2.00 = 2.95
Therefore, the equilibrium constant for the reaction C ⇌ B is 2.95.
calculate the amount of energy available to a tertiary consumer in the following ecosystem: 150,000 j of energy produced by algae in the aquatic ecosystem
In an ecosystem, 0.0015 joules of energy is available to tertiary consumer in the aquatic ecosystem.
What is an ecosystem?Ecosystem is defined as a system which consists of all living organisms and the physical components with which the living beings interact. The abiotic and biotic components are linked to each other through nutrient cycles and flow of energy.
Energy enters the system through the process of photosynthesis .Animals play an important role in transfer of energy as they feed on each other.As a result of this transfer of matter and energy takes place through the system .Living organisms also influence the quantity of biomass present.By decomposition of dead plants and animals by microbes nutrients are released back in to the soil.
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which of the following would be an observation you could make to indicate that a reaction had taken place? check all that apply.
A. an increase in volume
B. a decrease in volume
C. a rise in temperature
D. a drop in temperature
The following observations could indicate that a reaction had taken place:
C. A rise in temperature
D. A drop in temperature
What is a reactionA change in temperature can indicate that energy has been released or absorbed during the reaction, which can be an indicator that a chemical reaction has taken place.
Changes in volume, on the other hand, are not always an indicator that a chemical reaction has occurred, as they could also be due to physical changes (such as changes in pressure or the addition/removal of a gas). Therefore, A and B alone are not sufficient to indicate that a reaction has taken place.
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which of the following statements regarding membranes is true? which of the following statements regarding membranes is true? both faces of membranes tend to have similar compositions. transverse diffusion occurs rapidly. bilayer formation is largely driven by the hydrophobic effect. lateral diffusion is largely dependent on an enzyme-mediated process.
It is accurate what is said about membranes below: an enzyme-mediated mechanism is mostly responsible for lateral diffusion.
What is the difference between hydrophilic and hydrophobic substances?A substance can be either hydrophobic or hydrophilic. Given that the word "hydr" is derived from the Greek word "hydor," which means "water," hydrophobic materials are "water-fearing" and do not blend with water, whereas hydrodynamic materials are "water-loving" and have a propensity to become wetted by water.
What does hydrophobic substance mean?Non-polar substances with a low affinity for water are referred to as hydrophobic substances and are water-repellent. As opposed to a hydrophobic interaction, which is indicated by a contact angle larger than 90°, a hydrophilic interaction is indicated by a contact angle less than 90°.
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Balanced the equation for this reaction, and answer the questions.
___ N2 + ___ H2 ➞ ___ NH3
a) If 25.0 g N2 and 18.75 g H2 are used for this reaction, which reactant will be the limiting reactant? Show your
proof.
b) How much of the excess reactant will be left over?
Answer:
(a) The molar mass of N2 is 28 g/mol, and the molar mass of H2 is 2 g/mol.
n(N2) = 25.0 g / 28 g/mol = 0.893 mol
n(H2) = 18.75 g / 2 g/mol = 9.375 mol
calculate the maximum amount of product that can be formed from each reactant:
From N2: n(NH3) = 0.893 mol N2 x (2 mol NH3 / 1 mol N2) = 1.786 mol NH3
From H2: n(NH3) = 9.375 mol H2 x (2 mol NH3 / 3 mol H2) = 6.25 mol NH3
Therefore, the limiting reactant is N2
(B) For N2: 0.893 mol - 0.893 mol = 0 mol
For H2: 9.375 mol - (0.893 mol x 3 mol H2 / 1 mol N2) = 6.696 mol
Therefore, 6.696 mol of H2 will be left over. To convert this to a mass, we can use the molar mass of H2:
m(H2) = 6.696 mol x 2 g/mol = 13.392 g H2
Answer:
Balanced equation: N2 + 3 H2 ➞ 2NH3.
a) The limiting reactant is H2
b) The excess reactant is N2
Explanation:
hydrogen will be the limiting reagent as 3 moles are hydrogen are used up for every one mole of nitrogen to form ammonia
which of the following options describe the correct format used to represent an ionic compound? select all that apply.
For binary ionic compounds (ionic compounds that include only two kinds of elements), the compounds are named via writing the title of the cation first observed with the aid of the name of the anion. For example, KCl, an ionic compound that incorporates K⁺ and Cl⁻ ions, is named potassium chloride.
Which of the following describes an ionic compound?Answer and Explanation: Option A is the right reply as ionic compounds are made of positively-charged cations and negatively-charged anions. The ensuing electrostatic appeal between the oppositely charged ions is what creates the ionic bond.
What are the 4 kinds of ionic compounds?Binary Ionic Compounds Containing a Metal and a Nonmetal. A binary compound is a compound formed from two one-of-a-kind elements. ...
Ionic Compounds Containing a Metal and a Polyatomic Ion. Metals combine with polyatomic ions to provide ionic compounds. ...
Acids and Acid Salts. ...
Binary Compounds Between Two Nonmetals.
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2. lithium hydroxide Formula: ______________________ (hint: Li+1 and OH-1)
Molar mass: Li = x _____ (subscript) =
O = x _____ (subscript) =
H = x _____ (subscript) =
Formula mass = Add Li + O + H =

The formula of lithium hydroxide is LiOH.
The molar mass of LiOH = 24 g/mol
What is the molar mass of a compound?The mass of 1 mole of a chemical is indicated by its molar mass.
It provides you with the amount of grams per mole of a substance, to put it another way. Hence, grams/mole are the units for molar mass.
The mass of a specific chemical element or chemical compound (g) divided by the amount of substance is known as the molar mass (mol). By multiplying the standard atomic masses (in g/mol) of the constituent atoms, one can determine the molar mass of a compound.
The molar mass of lithium hydroxide, LiOH is derived as folows:
Molar mass = 7 + 16 + 1
Molar mass of LiOH = 24 g/mol
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How many grams make up 2.1 x 10^23 atoms of Titanium?
Answer:
≈16.67 grams
Explanation:
To solve this problem, we need to use the atomic mass of titanium to convert the number of atoms to grams. The atomic mass of titanium is 47.867 g/mol, which means that one mole of titanium atoms has a mass of 47.867 grams.
We are given the number of atoms of titanium, which is 2.1 x 10^23. We can use Avogadro's number to convert this to the number of moles of titanium:
2.1 x 10^23 atoms / (6.022 x 10^23 atoms/mol) = 0.349 moles
Now we can use the molar mass of titanium to convert moles to grams:
0.349 moles x 47.867 g/mol = 16.67 grams
Therefore, 2.1 x 10^23 atoms of titanium have a mass of approximately 16.67 grams.