When 7 moles of BaBr2 is reacted with excess K2SO4, how many moles of KBr are produced?BaBr2 + K2SO4 → 2KBr + BaSO4Mass of BaBr2 = 7 × molar mass of BaBr2 = 7 × (137.33 + 2 × 79.90) g mol−1 = 1375.31 gMass of K2SO4 required to react with 7 moles of BaBr2 = 7 × molar mass of K2SO4 = 7 × (39.10 + 2 × 32.06) g mol−1 = 847.42 g.
We know that K2SO4 is in excess, so it doesn't get used up in the reaction. The limiting reactant here is BaBr2.Therefore, the number of moles of BaBr2 = 7 moles and the number of moles of KBr = 2 × 7 = 14 moles.
Molar mass of KBr = 39.10 + 79.90 g mol−1 = 119.00 g mol−1Mass of 14 moles of KBr = 14 × 119.00 g mol−1 = 1666 gThe answer to the problem is that 14 moles of KBr will be produced from 7 moles of BaBr2.
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In a px orbital, the subscript x denotes the A. axis along which the orbital is aligned B. size of the orbital C. spin of the electron D. energy of the electron
The axis that the orbital is aligned with is indicated by the subscript x in a px orbital.
The correct statement is A.
The PX orbital is what?px orbital: A p atomic orbital that is located on the x-axis of the Cartesian coordinate system. A non-hybridized carbon atom's px, py, and pz atomic orbitals are located along the x, y, and z axes of the Cartesian coordinate system. Blue represents the atomic orbital of px. These orthogonal p atomic orbitals are.
PX and PY properties: what are they?Context. px. identifies properties that cannot have user input on an HTML form because they are special properties. py. Values can be entered by users on an HTML form because properties with names that begin with py are not special.
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which of the following elements has the greatest atomic radius?
A. potassium (K)
B. arsenic (As)
C. bromine (Br)
D. calcium (Ca)
Answer:
A. Potassium (K)
Explanation:
The trend of atomic radius goes:
As group number increases, radius decreases
As period number increases, radius increases
Answer:
francium
Explanation:
Atomic radii vary in a predictable way across the periodic table. As can be seen in the figures below, the atomic radius increases from top to bottom in a group, and decreases from left to right across a period. Thus, helium is the smallest element, and francium is the largest.
chlorhexidine and alexidine are: group of answer choices used to treat local hypoplasia. used widely in metallic salts. used in mouthrinses and are effective against plaque formation. chemicals present in metallic dust, which industrial workers may inhale. used in prophylaxis jets.
Chlorhexidine and alexidine are: used in mouthrinses and are effective against plaque formation.
Chlorhexidine is a disinfectant and antiseptic. It is used for preventing dental plaque, treating yeast infections of the mouth and cleaning wounds.
Chlorhexidine interacts with components of toothpaste and forms salts of low solubility and antibacterial activity.
Alexidine is an antimicrobial agent, used in mouth washes as antiplaque cleaner. It is better for use than chlorhexidine because it is relatively non-toxic
Chlorhexidine and alexidine were synthesized in 1950s.
They inhibit a dental plaque formation by 70%.
Dental plaque is a biofilm of microorganisms that grows in the mouth.
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18.69 (SYN) Suggest how you would synthesize each of the following, using cyclopentanone as one of the reagents. (a) O b) O CN
a) To synthesize the Oxygen using cyclopentanone, one could perform a Robinson annulation.
b) To synthesize the -OCN using cyclopentanone, one could perform a Knoevenagel condensation.
What do u mean by synthesize?Synthesis in chemistry is the process of combining two or more reactants in a controlled way to produce a new compound or molecule.
Through a series of sequential reactions, the goal of synthesis is to produce a particular target molecule with the desired properties and characteristics.
(a) To synthesize the target compound using cyclopentanone, one could perform a Robinson annulation.
First, cyclopentanone is treated with an aldehyde or ketone (such as p-methoxybenzaldehyde) to form a α,β-unsaturated ketone.
Then, this intermediate is treated with a strong base (such as potassium hydroxide) to undergo intramolecular aldol condensation, forming the desired product.
(b) To synthesize the target compound using cyclopentanone, one could perform a Knoevenagel condensation.
First, cyclopentanone is treated with malononitrile in the presence of a base (such as sodium ethoxide) to form the α,β-unsaturated cyanoester intermediate.
Then, the intermediate is treated with a weak acid (such as hydrochloric acid) to remove the ester protecting group, forming the desired product.
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What types of pros and cons might you need to consider when evaluating different energy sources, such as oil, gas, solar, and wind?
Despite being simpler to store and transport than other fossil fuels and renewables, natural gas has one significant storage drawback. Its volume is four times more than that of petrol. As a result, natural gas storage is substantially more expensive since more storage area is required.
How many solar panels are required to power a home?To fully offset power expenditures with solar, a typical home need between 17 and 21 solar panels. The amount of solar panels you require is determined by a few main criteria, including your geographic location and the specs of individual panels.
Renewable energy sources provide the majority of their energy at specific times of the day. Its electrical generation does not correspond with peak demand hours.
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Which bonds often bind different parts of a molecule into a specific three-dimensional shape?
A) Oxygen
B) Amino acid
C) Carbon
D) Hydrogen
Hydrogen bonds often bind different parts of a molecule into a specific three-dimensional shape.
The correct answer is D) Hydrogen. Hydrogen bonds often bind different parts of a molecule into a specific three-dimensional shape. Hydrogen bonds are attractive forces between a hydrogen atom bonded to an electronegative atom (such as oxygen or nitrogen) and another electronegative atom in a different part of the molecule. These bonds are relatively weak compared to covalent bonds but play a crucial role in determining the overall structure and properties of molecules. Hydrogen bonding can result in the formation of secondary structures in proteins such as alpha helices and beta sheets, as well as in the stabilization of DNA double helix. Hydrogen bonds also contribute to the specific folding patterns of complex molecules and the interaction between different molecules, influencing their solubility, reactivity, and biological activity.
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a. calculate the molarity and normality of a 140.0 mg/l solution of h2so4; find the concentration of the same solution in units of ""mg/l as caco3"".
1 L of the acid solution contains 142.85 mg of CaCO3.
Given, mass of H2SO4 = 140 mg / L
The molecular weight of H2SO4 = 98g / mol
Molarity = mass of H2SO4 / molecular weight of H2SO4 = 140/98 = 1.4285
Normality = Molarity x n factor n factor for H2SO4 = 2Molarity = 1.4285
Normality = 2 x 1.4285 = 2.857 mg / mL1 mol of H2SO4 = 98 g
Hence, 1 ml of H2SO4 = 98/1000 = 0.098gCaCO3 has a molecular weight of 100 g. Therefore, 1 mole of CaCO3 has a mass of 100 g. According to this, 1 mole of CaCO3 reacts with 2 moles of H2SO4.
The normality of the acid is 2.857.
Hence, 1 L of the acid will have 2.857 moles of H2SO4.To calculate the concentration in mg/L of the acid in terms of CaCO3, we need to first find the number of moles of CaCO3 that can be reacted with 2.857 moles of H2SO4.2 moles of H2SO4 react with 1 mole of CaCO3.Therefore, 2.857 moles of H2SO4 will react with:
1 mole of CaCO3/2 moles of H2SO4 = 1.4285 moles of CaCO3In 1 L of the acid, there are 1.4285 moles of CaCO3.The mass of 1.4285 moles of CaCO3 = 1.4285 x 100 = 142.85 g / L
Therefore, 1 L of the acid solution contains 142.85 mg of CaCO3.
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PLS HELP DUE IN ONE HOUR The atomic size of atoms increases as you move from top to bottom within a group of
the periodic table. Please explain why the size increases. Limit your response to one
sentence. Use your own words to answer.
Answer:
Within a group trend
Explanation:
The atomic radius of atoms generally increases from top to bottom within a group trend. As the atomic number increases down a group, there is again an increase in the positive nuclear charge. As the atomic number increases within a period, the atomic radius decreases.
how many atoms are in hydrogen
Answer:6.02
Explanation:
Answer:
there are about 6 atoms in hydrogen
the starting materials of dibenzalacetone synthesis are all colorless and turns to a clear yellow solution as it is mixed. which situation would have caused the clear yellow solution to remain as is at the end of 30 minutes?
The situation which would have caused the clear yellow solution to remain as is in dibenzalacetone synthesis at the end of 30 minutes can be due to Insufficient reactants, Inappropriate reaction conditions and Inhibition of the reaction.
The starting materials of dibenzalacetone synthesis are all colorless and turn into a clear yellow solution as they are mixed. The situation that would have caused the clear yellow solution to remain as is at the end of 30 minutes is the reaction having gone to completion. The formation of dibenzalacetone involves the aldol condensation of two moles of benzaldehyde with one mole of acetone.
The reaction is carried out in the presence of a base such as NaOH, which removes the acidic alpha-hydrogens of benzaldehyde and acetone to form the enolate ions. These ions are then condensed to form dibenzalacetone. In a successful reaction, the clear yellow solution will eventually become cloudy as dibenzalacetone forms as a solid precipitate. This can occur if not all of the starting materials were properly mixed or if the reaction did not proceed to completion due to factors such as insufficient heating or the presence of impurities.
Insufficient reactants: If there are not enough starting materials present, the reaction may not proceed to completion, and the yellow solution will not change. Inappropriate reaction conditions: Factors such as temperature, solvent, or pH could affect the reaction. If any of these factors are not optimal, the reaction may not proceed efficiently, leading to an unchanged yellow solution.
Inhibition of the reaction: The presence of any impurities or contaminants in the starting materials or the reaction mixture could potentially inhibit the reaction, causing the yellow solution to remain unchanged. To address these situations, ensure that you have the correct amounts of starting materials, follow the recommended reaction conditions, and work with clean and pure chemicals and equipment.
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Which is a property of a covalent compound?
A.being shaped easily
B.good electrical conductivity
C.low melting point
Answer:
c: low melting point
Explanation:
melting point is dependent on intermolecular forces. in covalent compounds, electrons are shared more equally. this means there is less separation of positive and negative charges within the molecules.
If a car travels 20 miles in 2 hours, how fast is the car driving?
Answer: distance by time
20/2=10
Explanation:
22) Name the neutral element with this orbital diagram.
Answer:
Sn (Tin)
Explanation:
H2 produced by the above reaction? Calculate the mass of NaCl required producing
35.5g of H2?
To produce 35.5g of H2, approximately 2055.49g of NaCl is required.
To calculate the mass of NaCl required to produce 35.5g of H2, we need to determine the stoichiometry of the reaction and use the molar mass of NaCl.
The balanced equation for the reaction is:
2NaCl + 2H2O -> 2NaOH + H2
From the balanced equation, we can see that for every 2 moles of NaCl, 1 mole of H2 is produced. We can use the molar mass of H2 (2.016g/mol) to convert the given mass of H2 into moles:
moles of H2 = mass of H2 / molar mass of H2
moles of H2 = 35.5g / 2.016g/mol
moles of H2 = 17.6 mol
Since the stoichiometry of the reaction is 2 moles of NaCl to 1 mole of H2, we can set up the following ratio:
moles of NaCl / moles of H2 = 2 / 1
Rearranging the equation to solve for moles of NaCl:
moles of NaCl = (moles of H2 * 2) / 1
moles of NaCl = (17.6 mol * 2) / 1
moles of NaCl = 35.2 mol
Now, we can calculate the mass of NaCl required using the molar mass of NaCl (58.44g/mol):
mass of NaCl = moles of NaCl * molar mass of NaCl
mass of NaCl = 35.2 mol * 58.44g/mol
mass of NaCl = 2055.49g
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Which of the following is an isotope of carbon? (Atomic number 6)
A. 7 protons, 6 neutrons, 8 electrons
B. 7 protons, 8 neutrons, 6 electrons
C.8 protons, 6 neutrons, 7 electrons
D. 6 protons, 8 neutrons, 7 electrons
Answer:
it's A
Explanation:
100 on test5tttttttttttttttt
Phosphoric acid (H3PO4) in water solution at 25 °C with a concentration of 0. 21 kg mol/m³ is passing through a porous ceramic filter. The thickness of the filter is 4. 2 mm, and its tortuosity numerical value is 13 times the numerical value of its void fraction. The mass transfer rate was estimated to be 1. 4 x 10-9 kg mol H3PO4/ s. M².
a) Predict the diffusion coefficient of Phosphoric acid in water using the Wilke-Chang method.
[CO1, PO1,C4]
b) Calculate the Phosphoric acid concentration at the other side of the ceramic filter.
[CO1, PO1, C4]
The Wilke-Chang method is used to predict the diffusion coefficient of Phosphoric acid in water. The Wilke-Chang method is a widely used empirical equation to estimate the diffusion coefficient of a solute in a solvent.
Fick's Law of diffusion states that the mass transfer rate of a solute across a porous membrane is proportional to the concentration gradient and the diffusion coefficient.
a. It takes into account the molecular weight, viscosity, and density of the solute and solvent. By plugging in the relevant values for Phosphoric acid and water, we can calculate the diffusion coefficient.
To calculate the diffusion coefficient of Phosphoric acid in water using the Wilke-Chang method, we need to know the molecular weight of Phosphoric acid (H3PO4) and water. The molecular weight of H3PO4 is 98 g/mol, and the molecular weight of water is 18 g/mol.
The Wilke-Chang equation is given by:
D = (1 / Φ) * [(1/M1 + 1/M2) / (√(1/μ1) + √(1/μ2))] * (T / P)
where D is the diffusion coefficient, Φ is the void fraction of the ceramic filter, M1 and M2 are the molecular weights of the solute and solvent, μ1 and μ2 are the viscosities of the solute and solvent, and T is the temperature in Kelvin.
b. We have the mass transfer rate and the thickness of the ceramic filter, so by rearranging Fick's Law equation, we can calculate the concentration at the other side of the filter.
The equation is given by:
J = -D * ∆C/∆x
where J is the mass transfer rate, D is the diffusion coefficient, ∆C is the change in concentration, and ∆x is the thickness of the ceramic filter.
We have the mass transfer rate (1.4 x 10^(-9) kg mol H3PO4/s.m²) and the thickness of the ceramic filter (4.2 mm = 0.0042 m), so by rearranging the equation, we can calculate the change in concentration (∆C) and then use it to find the concentration at the other side of the ceramic filter.
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When scientists analyze the rock record, they look for fossils evidence. how are scientist able to determine that the majority of all organisms are now exitinct?
An organism is considered extinct if the fossil evidence reveals the remains of one that is no longer present-day. As a result, scientists might conclude that the majority of Earth's animals are already extinct because they have noted that certain qualities and traits are absent from species that are still alive.
What is extinction?The phrase "extinction" refers to the end of a particular type of organism or a set of types, typically a species. Although the ability to reproduce and bounce back may have been lost earlier, the death of the last individual of the species is widely considered to be the moment of extinction.
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what does table salt mean
Salt suitable for sprinkling on food at meals.
Why doesn't the Earth usually feel solar winds?
A. because of the aurora borealis
B. because of its strong magnetic field
C. because of strong magnetic activity inside the Sun
D. because they contain electromagnetic radiation
the decomposition of hi(g)hi(g) at 298k298k is represented by the equilibrium equation above. when 100.torr100.torr of hi(g)hi(g) is added to a previously evacuated, rigid container and allowed to reach equilibrium, the partial pressure of i2(g)i2(g) is approximately 3.7torr3.7torr. if the initial pressure of hi(g)hi(g) is increased to 200.torr 200.torr and the process is repeated at the same temperature, which of the following correctly predicts the equilibrium partial pressure of i2(g)i2(g), and why?
PI2 ≈ 7.4 torrPI2 ≈ 7.4 torrs because it is directly proportional to the initial pressure of HIHI.
At equilibrium, the forward and reverse reactions occur at the same rate. Once equilibrium is reached, the amounts of each reactant and product remain constant. The equilibrium constant equation is a mathematical relationship that describes how the concentrations of products vary with the concentrations of reactants.
The state of a system whose properties are fixed under unvarying external conditions is called the equilibrium state. Chemical equilibria are dynamic in nature because reactants turn into products and products turn into reactants even after equilibrium is reached. However, the speed of forward and backward reactions is the same. Examples of balance include A book placed on the table. A car that moves at a constant speed. A chemical reaction in which the forward and reverse reaction rates are equal.
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A compound A has the molecular formula C7H13ClN2OC7H13ClN2O. How many rings and/or π bonds does it contain?
Compound A that has the molecular formula C₇H₁₃ClN₂OC7₇H₁₃ClN₂O contains either 2 rings, 2 π bonds, or 1 ring and 1 π bond.
To determine the number of rings and/or π bonds in compound A with the molecular formula C₇H₁₃ClN₂OC7₇H₁₃ClN₂O, we can use the degree of unsaturation (DU) formula. The DU formula is:
DU = C - (H + X - N)/2 + 1
where C is the number of carbons, H is the number of hydrogens, X is the number of halogens, and N is the number of nitrogens.
For compound A, we have C = 7, H = 13, X = 1 (for the Cl), and N = 2. Plugging these values into the formula, we get:
DU = 7 - (13 + 1 - 2)/2 + 1
= 7 - 6 + 1
= 2
Since the degree of unsaturation is 2, compound A contains either 2 rings, 2 π bonds, or 1 ring and 1 π bond.
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a force of 29 N and acceleration is 0.4 m/s what is the combined mass
Answer:
72.5Kg
Explanation:
that is the procedure above
Name the two minerals involved in the formation of wollastonite
Suppose you have measured the kinetics of the reaction, 2A+B→C. You measure the change in the B-concentration with time and determine the rate law is zeroth order in A and zeroth order in B and has a rate constant of k=0.0739Ms −1
. If the A-concentration is 0.20M and the B-concentration is 0.15M, what is the rate (in M s −1
) ? Note: answer must be entered in E-notation, for example 1.23EO (not 4.23 ) and 1.23E−1 (not θ.123 ). (value ±6% ) QUESTION 3 Suppose you have measured the kinetics of the reaction, 2 A+B→C+2D at room temperature using the method of initial rates. A table summarizing the results of four different experimental trails is shown below: Based on these data, if you assume the rate law is of the mathematical form, rate =kA ∗
B V
the value of x is and the value of y is
The rate of the reaction, 2A+B→C, with zeroth order in A and zeroth order in B, and a rate constant of \(k=0.0739 Ms^{−1} , is 0.0739 Ms^{−1}\).
The rate of the reaction can be determined using the rate law equation and the given concentrations of A and B.
The rate law equation for the given reaction is rate =\(k[A]^x[B]^y\), where [A] and [B] represent the concentrations of A and B, respectively, and k is the rate constant.
In this case, the rate law is zeroth order in A and zeroth order in B, which means that the concentrations of A and B do not affect the rate of the reaction. Therefore, x and y in the rate law equation are both zero.
To calculate the rate, substitute the values into the rate law equation:
rate = \(k[A]^x[B]^y\)
= \(k[0.20M]^0[0.15M]^0\)
= k
Given that the rate constant k is 0.0739 \(Ms^{-1}\), the rate of the reaction is also 0.0739\(Ms^{−1}\).
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3. Which statement describes the types of data
scientists can obtain directly from observing
this fossil?
A. the exact time the organism lived
B. the color of the living organism
C. where the organism lived
D. the physical structures of the organism
There are numerous ways that fossils can form, but the majority occur when a living thing—such as a plant or animal—dies and is swiftly buried by sediment—such as mud, sand, or volcanic ash and rock.
Thus, Only the hard bones or shells are left behind when soft tissues degrade, yet in some cases an organism's soft tissues can be retained and animals.
More sediment, volcanic ash, or lava may accumulate over the organism after it has been buried, and eventually all the layers harden into rock.
These once-living organisms are only revealed to us from within the stones when the process of erosion takes place, when the rocks are worn back down and washed away and fossil.
Thus, There are numerous ways that fossils can form, but the majority occur when a living thing—such as a plant or animal—dies and is swiftly buried by sediment—such as mud, sand, or volcanic ash and rock.
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what is M2 ?how does FOMCs could affect M2 and why ?
M2 refers to the money supply measure known as M2 money stock.
The FOMC's decisions and actions can impact M2 through its control over interest rates, open market operations, and the influence on economic conditions and confidence. Changes in monetary policy by the FOMC aim to manage the money supply and promote price stability, economic growth, and employment.
M2 is a broad measure of the money supply that includes cash, checking and savings deposits, money market funds, and other time deposits.
The Federal Open Market Committee (FOMC) is a committee within the U.S. Federal Reserve System that is responsible for making decisions regarding monetary policy, including setting interest rates and implementing measures to manage the money supply.
The actions taken by the FOMC can have an impact on M2 and the broader money supply in the economy. Here's how:
1. Open Market Operations: The FOMC conducts open market operations by buying or selling government securities in the open market. When the FOMC buys government securities, it injects money into the banking system, increasing bank reserves and potentially leading to an expansion of M2.
2. Interest Rate Policy: The FOMC sets the target federal funds rate, which is the interest rate at which depository institutions lend and borrow funds from each other overnight. By adjusting the federal funds rate, the FOMC influences borrowing costs for banks and, in turn, affects their lending practices. Changes in interest rates can impact the demand for loans and affect the growth of M2.
3. Impact on Confidence and Spending: The FOMC's actions and communications can influence consumer and business confidence. When the FOMC signals a more accommodative monetary policy stance, it can encourage borrowing and spending, potentially leading to an increase in the growth of M2.
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Decide whether each proposed multiplication or division is possible from the image below and restore the results if they are I don’t need an explanation just the answer please
The question presents a table with many multiplications using different units (mass and velocity) and requires us to decide whether the operations presented are possible.
To solve this question, we should keep in mind this general rule: for units reffering to the same measurement (for example: mass, volume, distance etc.), we are able to multiply the units as long as they are the same. For example: g x g, L x L, m x m. If units are about the same measurement but still different, we should convert one of them in order to make them the same.
On the other hand, when we are talking about division, if we have the same unit on the operator and denominator position, we will have a result as "1" - then we need to analyze the entire value.
Now, considering the operations presented in the question:
On the first one, we have kg multiplied by kg. Although it isn't usual to see square kg (kg^2), we are able to make this operation:
\(9.0\text{ kg }\times5.0\text{ kg}=45kg^2\)On the second line, we have square g multiplied by kg. In this case, since the first unit is square, we can assume they are not about the same measurement. Thus, we can't complete this operation.
On the third line, there is a division and we should proceed as a normal operation (although the unit km/s isn't usual):
\(\frac{5.6\text{ km}}{7.0\text{ s}}=0.8\text{ km/s}\)In summary, the answers should be:
1) Is it possible? YES / Result = 45 kg^2
2) Is it possible? NO
3) Is it possible? YES / Result = 0.8 km/s
Which waves carries the most energy?
HURRY PLZZ!!!!
I NEED HELP FAST!!!
GOD BLESS!!!
THE SUBJECT IS SCIENCE I CAN´T FIND IT!!!!!!!!!!!
Answer: D Because it is moving at a fast pace
Explanation:
What are the most common types of buffer overflow attacks?
The most frequent form of buffer overflow attack, called a stack overflow, involves a buffer overflow in the top of the stack. This kind of attack targets information on the heap, an open memory pool.
Why do cybercriminals employ buffer overflow?When a hacker takes advantage of the code mistake to carry out a malicious action and breach the affected system, it is called a buffer overflow attack. The hacker changes the app's execution path and overwrites some of its memory.
What kind of attacks use buffer overflows?When more data is loaded into a fixed-length memory than the reader can hold, it overflows or overruns. which, by overflowing into neighboring memory space, corrupts or overwrites the data stored in that region, which must go someplace.
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When copper wire is placed into a silver(I) nitrate solution, silver crystals and copper(I) nitrate solution form. If a 20.0g sample of copper is used, determine the theoretical yield of silver. If 60.0g silver is actually recovered, determine the percent yield of the reactions.
Answer:
Theoretical yield of silver = 67.97 g Ag
Percent yield of the reaction = 88.3%
Explanation:
This reaction forms copper(II) nitrate instead of copper(I) nitrate.
First, we have to write the balanced chemical equation for the reaction of copper (Cu) with silver(I) nitrate (AgNO₃) to give silver (Ag) and copper(I) nitrate (CuNO₃):
Cu(s) + 2AgNO₃(aq) → 2Ag(s) + Cu(NO₃)₂(aq)
From the equation, 1 mol of Cu(s) produces 2 moles of Ag(s). We convert the moles to mass with the molecular weight (MW) of the compounds:
MW(Cu) = 63.5 g/mol
mass of Cu = 1 mol Cu x 63.5 g/mol = 63.5 g Cu
MW(Ag) = 107.9 g/mol
mass of Ag = 2 mol Ag x 107.9 g/mol = 215.8 g Ag
Thus, we have the conversion factor: 215.8 g Ag/63.5 g Cu
- From 20.0 g Cu, the following amount of Ag will be obtained:
20.0 g Cu x 215.8 g Ag/63.5 g Cu = 67.97 g Ag (theoretical amount)
- For an actual amount of 60.0 g of Ag, we calculate the percent yield as follows:
%yield = actual amount/theoretical amount x 100 =
= 60.0 g/67.97 g x 100 = 88.3 %