The rate constant is mathematically given as
K2=2.67sec^{-1}
What is the Arrhenius equation?The rate constant for a particular reaction may be calculated with the use of the Arrhenius equation. This constant can be stated in terms of two distinct temperatures, T1 and T2, as follows:
[tex]ln(\frac{K2}{K1})= (\frac{Ea}{R})*(\frac{1}{T1}-\frac{1}{T2})[/tex]
Therefore
KT1= 0.0110^{-1}
T1= 21+273.15
T1= 294.15K
T2= 200
T2=200+273.15
T2= 473.15K
Ea= 35.5 Kj/Mol
Hence, in j/mol R Ea is
Ea=35.5*1000 j/mol R
[tex]ln(\frac{K2}{0.0110})= (\frac{35.5*1000}{8.314})*(\frac{1}{294.15}-\frac{1}{473.15}\\\\ln(\frac{K2}{0.0110})=5.492[/tex]
K2/0.0110 =e^(5.492)
K2/0.0110 =242.74
K2= 242.74*0.0110
K2=2.67sec^{-1}
In conclusion, rate constant
K2=2.67sec^{-1}
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The flask contains 10.0 mL of HCl and a few drops of phenolphthalein indicator. The buret contains 0.200 M NaOH. It requires 14.0 mL of the NaOH solution to reach the end point of the titration.
A buret filled with a titrant is held above a graduated cylinder containing an analyte solution.
What is the initial concentration of HCl
M₁V₁=M₂V₂
M₁ x 10 = 0.2 x 14
M₁ = 0.28
The remnants of an ancient fire in a cave in Peru showed a decay rate of 8.0 counts per minute per gram of carbon. Assuming that the decay rate in freshly cut wood is 12.7 counts per minute per gram of carbon, calculate the age of the remnants. The half life of 614C is 5730 years.
The age of the remnants is calculated as 3807 years.
What is the half life?The half life is the time taken for only half of the number of the radioactive atoms to remain.
Half life of carbon - 14 = 5730 years.
Initial count rate = 8.0 counts per minute per gram
Count rate at time t = 12.7 counts per minute per gram of carbon
Since;
0.693/t1/2 =2.303/t log (N/No)
0.693/5730 = 2.303/t log (12.7/8)
1.21 * 10^-4 = 2.303/t * 0.2
t = 2.303 * 0.2/1.21 * 10^-4
t = 0.4606/1.21 * 10^-4
t = 3807 years
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Identify the steps that are followed in taking a stratified random sample. i. Take a sample of size n/k from each strata, where n is sample size and k is the number of strata. ii. Determine what portion of the sample should come from each strata. iii. Measure the size of the strata as a proportion of the population. iv. Take a systematic sample from the population as a whole. Take random samples from each strata.
steps that are followed in taking a stratified random sample are
i. Take a sample of size n/k from each strata, where n is the sample size and k is the number of strata
iv. Take a systematic sample from the population as a whole. Take random samples from each strata.
Stratified random sampling is a sampling method that divides the population into smaller groups called layers. Groups or hierarchies are organized based on the common characteristics or attributes of the members in the group. The process of dividing the population into groups is called hierarchization.
Stratified Random Sample Example:
Suppose a research team wants to determine a GPA for a college student in the United States. The research team is having a hard time collecting data from all 21 million college students. We decided to use 4,000 students to extract a random sample of the population.
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What is the importance of the shape of a conical flask?
The shape allows the flask to be sealed with a bung for heating purposes, while also allowing a researcher the freedom to shake or stir the flask without spilling liquid.
Explanation:
Hope it helps you!!How many grams of ethylene glycol (C2H6O7) must be added to 1.00 kg of water to produce a solution that freezes at -5.00C
0.03 g of ethylene glycol (C2H6O7) must be added to 1.00 kg of water to produce a solution that freezes at -5.00C.
How to calculate the amount of solution with freezing point ?[tex]\Delta T_{f} = K_{f} m[/tex]
where,
ΔTf = Change in freezing point
Kf = molal freezing point depression constant of the solvent
m = moles of solute per kilogram of solvent.
Now,
[tex]\Delta T_{f} = K_{f} m[/tex]
[tex]\Delta T_{f} = K_{f} \times \frac{W_2}{M_2} \times \frac{1000}{W_1}[/tex] [-5.00°C = 273 + (-5.00) = 268 K] [tex]268 = 1.86 \times \frac{W_2}{62} \times \frac{1000}{0.001}[/tex] [1.00 kg = 0.001 g]
[tex]W_{2} = \frac{268 \times 62 \times 0.001}{1000 \times 1.86}[/tex]
= 0.03 g
Thus from the above conclusion we can say that 0.03 g of ethylene glycol (C2H6O7) must be added to 1.00 kg of water to produce a solution that freezes at -5.00C.
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Find concentration of solution of 45g of glucose is dissolved in water to prepare 500g solution?
Answer:
9% solution by mass
Explanation:
If there is 500 gm of solution and 45 g of it is glucose then:
45/500 * 100% = 9 % solution
which of the following measurements are listed in the proper mathematical relationship?(Select all that apply)
A. PV = K
B. V/T = K
C. PV/T = K
D. P/V = K
The measurements which are listed in the proper mathematical relationship include:
PV=kV/T=kPV/T = kWhat is a Constant?This is used in mathematical expressions and has a constant value which doesn't change in expression.
Options A,B and C have the appropriate constants as pressure is usually multiplied by volume.
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Please refer to the picture. Thank you!
The reaction which shows the beta particle being emitted is:
¹⁶⁸₆₈Er ⇒ ¹⁶⁸₆₇Ho + β⁰₋₁
What is Beta decay?This involves the emission of a beta particle as a result of the ratio of neutrons to protons in the nucleus being too high.
The element which is produced as a result of the beta particle emission is referred to as Holmium.
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are oxidized to carboxylic acids with the ____________ , which is an oxidizing agent that contains silver oxide and aqueous ammonium hydroxide.
Aldehyde are oxidized to carboxylic acids with the Tollen's Reagent which is an oxidizing agent that contains silver oxide and aqueous ammonium hydroxide.
What is Aldehyde ?An Aldehyde is a functional group which contains the carbonyl group that is -C=O. The structure for aldehyde is R¹ - C = O - R² where R¹ and R² = H.
Example of Aldehyde is Methanal. The structure of Methanal is H - C = O - H.
What is Tollen's Reagent ?Tollens's Reagent is a classical reagent which is widely used in the detection of an aldehyde functional group, an alpha hydroxy ketone functional group and an aromatic aldehyde group in a given test substance.
Thus from the above conclusion we can say that Aldehyde are oxidized to carboxylic acids with the Tollen's Reagent which is an oxidizing agent that contains silver oxide and aqueous ammonium hydroxide.
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Disclaimer: The question was given incomplete on the portal. Here is the complete question.
Question: _________ are oxidized to carboxylic acids with the ________ which is an oxidizing agent that contains silver oxide and aqueous ammonium hydroxide.
A jet airplane reaches 892. KM/H on a certain flight. What does synthesis cover in 14.0 minutes? Set up the map but don’t do any of it just leave your answer as a math expression.
The distance traveled by the jet airplane at the given speed and time of motion is 207.84 km.
What is distance?
Distance is scalar quantity that measures how far apart objects or points are.
It can also be defined as the physical length or an estimation based on other criteria.
Distance covered by the jet airplaneThe distance traveled by the jet airplane at the given speed and time of motion is calculated as follows;
D = speed x time
D = (892 km/h) x (14/60 h)
D = (892 km/h) x (0.2333 h)
D = 207.84 km
Thus, the distance traveled by the jet airplane at the given speed and time of motion is 207.84 km.
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If the initial pressure of gas inside the balloon was 1.65 atm, what is the new pressure?
The new pressure of the gas is 4.95 atm.
What is the Boyles law?Boyles law states that the volume of a given mass of gas is inversely related to its pressure at constant temperature.
Given that;
V1 = 1.50 L
V2 = 0.50 L
P1 = 1.65 atm
Then;
P1V1 = P2V2
P2 = 1.65 atm * 1.50 L/ 0.50 L
P2 = 4.95 atm
The new pressure of the gas is found to be 4.95 atm.
Missing parts:
a balloon filled with a volume of 1.50 L is compressed to a volume of 0.50 L at a constant rate of temperature. if the initial pressure of the gas inside the balloon was 1.65 atm what is the new pressure?
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175 ml of a 1.6 m solution of kcl is diluted to a new volume of 1.0 l. what is the new concentration of the solution? (3 points)
0.13 m kcl
0.28 m kcl
0.85 m kcl
1.1 m kcl
175 ml of a 1.6 m solution of KCl is diluted to a new volume of 1.0 L. The new concentration of the solution is 0.28 m KCl.
Hence, Option (B) is correct answer.
What is Concentration ?Concentration is defined as the measure of how much substance there is mixed with another substance.
How to find the concentration ?To find the concentration use the dilution formula
C₁V₁ = C₂V₂
where,
C₁ = Concentration of starting solution
C₂ = Concentration of final solution
V₁ = Volume of the starting solution
V₂ = Volume of the final solution
Now put the values in above formula we get
C₁V₁ = C₂V₂
1.6 × 0.175 = C₂ × 1.0
0.28 = C₂ × 1.0
C₂ = 0.28
Thus from the above conclusion we can say that 175 ml of a 1.6 m solution of KCl is diluted to a new volume of 1.0 L. The new concentration of the solution is 0.28 m KCl.
Hence, Option (B) is correct answer.
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III. Look at Figure which shows solutions taken in test tubes A, B, C and D. What colour is expected when a piece of red litmus paper is dropped in each test tube? Nature of the solutions is given in the table for your help.
Neutral ----> No Change
Basic ----> Colour will change to
blue
Acidic ----> No change
Neutral ----> No change
hope this will the right answer &
Please attach a photo of the table next time.
☆...hope this helps...☆
_♡_mashi_♡_
Q: How many of the molecules shown contain only one covalent bond?
Cl₂ H₂ HCl N₂ O₂
A. 2 B. 3 C. 4 D. 5
Answer:
cl2 - 1 bond
HCl.- 1 bond
N2 - 3 bond
o2 - 2 bond
Cl requires one electron to complete it's octave so it share it's one electron with other chlorine and make a single covalent bond H has one electron and Cl requires one so both form one single bond N requires 3 electrons so it form 3 bonds with other N oxygen requires 2 electrons so it forms 2 bond with other oxygen2. Which of the following shows the correct, balanced equation for the reaction shown below?
CH4+0₂H₂O + CO₂
O CH, + O, → CHO
O CH4 +20₂ → 2 H₂O + CO₂ OCH, + O2 → H2O +CO,
OCH4 +0₂ → CH₂0
The balanced equation is [tex]\text{CH}_{4}+2\text{O}_{2} \longrightarrow \text{CO}_{2}+2\text{H}_{2}\text{O}[/tex].
The correct balanced chemical equation is CH₄ + 2 O₂[tex]\rightarrow[/tex] CO₂ + 2 H₂O.
What is chemical equation?Chemical equation is a symbolic representation of a chemical reaction which is written in the form of symbols and chemical formulas.The reactants are present on the left hand side while the products are present on the right hand side.
A plus sign is present between reactants and products if they are more than one in any case and an arrow is present pointing towards the product side which indicates the direction of the reaction .There are coefficients present next to the chemical symbols and formulas .
The first chemical equation was put forth by Jean Beguin in 1615.By making use of chemical equations the direction of reaction ,state of reactants and products can be stated. In the chemical equations even the temperature to be maintained and catalyst can be mentioned.
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An enzyme _____. An enzyme _____. can bind to nearly any molecule is an organic catalyst increases the the activation energy of a reaction is a inorganic catalyst is a source of energy for endergonic reactions
An enzyme is an organic catalyst that can bind to nearly any molecule is an organic catalyst increases the activation energy of a reaction is an inorganic catalyst is a source of energy for endergonic reactions
Enzymes are substances that act as catalysts for living organisms and regulate the rate at which chemical reactions take place without a change in the process. The biological processes that occur in all living organisms are chemical reactions, most of which are controlled by enzymes.
Enzyme functions as an organic catalyst. A catalyst is a chemical that participates in a chemical reaction but is not modified by it. Many enzymes work by lowering the activation energy of the reaction.
Enzymes are called biocatalysts because they speed up the biochemical reactions of living organisms. Enzymes are called biocatalysts because they promote chemical reactions without changing the equilibrium state.
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Chlorine and bromine have very similar chemical properties. This is best explained by the fact that both elements:
What is the similarity between chlorine and bromine?
Chlorine and bromine have very similar chemical properties and are best explained by the fact that they both belong to the category of halogens.
Similarities shared by halogens:
Chemical elements are represented as periods and groups on a periodic table. Chemical elements with comparable properties make up each category. Halogens are group 17 elements that are primarily non-metallic.
In the case of halogens, each element's atom possesses seven valence electrons, [tex]ns^{2} np^{5}[/tex], in which n stands for the energy level. The electron configuration of chlorine is [tex][Ne]3s^{2} 3p^{5}[/tex], and the electron configuration of bromine is [tex][Ar]3d^{10}4s^{2} 4p^{5}[/tex].
Because of comparable electron configurations, elements of the same group have similar properties. The number of valence electrons, which are located in the outermost (highest energy) s and p orbitals, is particularly similar.
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If 65.39 g of zinc are mixed with some unknown mass of hydrochloride acid, 136.29 g of zncl2 are formed along with 2.00 g of hydrogen gas. what mass of hydrochloric acid was used?
How much hydrogen chloride acid was used?
72.916 g of hydrochloric acid was used.
Given:
Mass of Zn = 65.39 g
Mass of [tex]ZnCl_{2}[/tex] =136.29 g
Mass of [tex]H_{2}[/tex] = 2 g
Equation:
The chemical equation for the reaction of zinc with hydrochloric acid:
Zn + 2HCl → Zn [tex]Cl_{2}[/tex] + [tex]H_{2}[/tex]
Hydrogen gas is created when zinc combines with hydrochloric acid, which causes the process to bubble ferociously. Another sign that a chemical reaction is taking place is the generation of a gas.
Calculation:
A number of equivalents equate:
Number of equivalents = [tex]\frac{given mass}{Molecular Mass}[/tex] x 1000 x equivalent factor
[tex]\frac{x}{36.458}[/tex] x 1000 x 1 = [tex]\frac{136.29}{136.286}[/tex] x 1000 x 2
[tex]x[/tex] = 36.458 x 2
[tex]x[/tex] = 72.916
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what makes carcinogens so dangerous?
Answer:
A carcinogen is any substance that promotes carcinogenesis, which is a type of deadly cancer to humans so essentially you are asking why a cancer-causing substance is dangerous...
Carcinogens cause genetic abnormalities that become tumors. So I suppose they are really dangerous because they heavily increase the likelihood of developing cancerous tumors :)
Answer:
Carcinongens usually can cause the change in the genetic information (DNA) which leads to mutation. The mutation can make the organs out of control of reproduction and cause cancer.
Explanation:
Carcinogens can be chemicals, or anything that induce cancer.
What is hyperconjugation
Hyperconjugation is the interaction between bonds in organic compounds.
What is hyperconjugation?Hyperconjugation is the relationship or interaction that exist between multiple bonds molecules and single bond molecules in organic compounds.
Therefore, Hyperconjugation is the interaction between bonds in organic compounds.
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Drag the tiles to the correct boxes to complete the pairs.
Match each orbiting body to its attribute.
varies greatly in size
from one to the next
has a characteristic
glow
usually burns up if it
enters Earth's atmosphere
primarily made of hydrogen
and helium
comet
arrowRight
meteoroid
arrowRight
gas giant
arrowRight
asteroid
The match up of the left to the right column is;
1. Asteroid - A) varies greatly in size from one to the next
2. Gas Giant - B)atmosphere is primarily made of hydrogen and helium
3. Comet- C) has a characteristic glow
4. Meteoroid - D) usually burns up if it enters the earth's atmosphere
What is asteroid and meteoroid?An asteroid is known to be a kind of a small rocky object that is said to often orbits the Sun.
Note that an meteor is known or regarded as what occurs if ]a small piece of an asteroid or comet, known to be a meteoroid, burns up when they enter Earth's atmosphere.
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Answer:
edmentum :)
Explanation:
An oxygen (O2) molecule is adsorbed on a patch of surface (see sketch at right). This patch is known to contain 324 adsorption sites. The (O2) molecule has enough energy to move from site to site, so it could be on any one of them. Suppose additional surface becomes exposed, so that 400 adsorption sites are now available for the molecule. Calculate the change in entropy. One way an O, molecule could be adsorbed on a patch of surface with 16 sites Round your answer to 3 significant digits,
The change in entropy is 2.91 x 10-24 J/K
For an ideal gas,
The entropy of a molecule, S = KB ln(W)
KB – Boltzmann constant (1.38065 x 10-23 J/K)
W – Equivalent microstates of the molecule.
Winitial = 324
Wfinal = 400
Sfinal – Sinital = KB ln(Wfinal) - KB ln(Winital)
ΔS = KB ln(Wfinal / Winital)
= (1.38065 x 10-23 J/K) * ln(400/324)
= 2.91 x 10-24 J/K
In the ideal gas law, the temperature of the hydrogen gas is determined if the volume and pressure of the gas are known.
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The ___________ of a chemical reaction shows how much product was actually made compared with the amount of product that was expected. A. percent yield B. atom economy C. actual yield D. exponential yield
The Actual yield of a chemical reaction shows the amount of product actually made
What is actual yield ?Actual yield in a chemical reaction is the exact amount of products that is produced in a chemical reaction other than the expected amount of products ( theoretical yield ) from the chemical reaction.
Hence we can conclude that the actual yield of a chemical reaction shows the amount of product actually made.
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Answer:
B.) Atom economy
Explanation:
Got it right on founders edtell
An acid is used to bring the pH of a solution from pH 9 to pH 6. How many times more acidic is the final solution than the initial solution? Select one: a. 100 b. 10 c. 3 d. 1000
An acid is used to bring the pH of a solution from pH 9 to pH 6 the many times more acidic is the final solution than the initial solution is that of option b. 10 .
Which is greater acidic a pH of 6 or a pH of 8?A pH much less than 7 is acidic. A pH more than 7 is simple. The pH scale is logarithmic and as a result, every entire pH fee underneath 7 is ten instances greater acidic than the subsequent better fee.pH much less than 7 is acidic. A pH more than 7 is simple. The pH scale is logarithmic and as a result, every entire pH fee underneath 7 is ten instances greater acidic than the subsequent better.
The pH is a degree of the attention of hydrogen ions, the acidity or alkalinity of a solution. The pH scale is commonly among zero and 14. Aqueous answers at 25 ° C with a pH of much less than 7 are acidic and simple or alkaline solution are people with a pH of more than 7.
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Lawrencium-262 has a half-life of 4 hr. How much of a 40 mg sample remains after 12 hours?
Answer:
5 mg
Explanation:
If one half life is 4 hours, then 3 half lives is 12 hours.
This means that the sample will decay to 1/8 of its original amount.
So, the answer is 40(1/8) = 5 mg.
Set up the math. But don’t do any of it. Just leave your answer as a math expression. Also be should you’re answering includes all the correct unit symbols.
Answer:
See below
Explanation:
9 m * 2.16 kg/ m = ___________ kg ( see how the 'm' cancels out?)
A barium hydroxide solution is prepared by dissolving 2.81 g of Ba(OH)2 in water to make 25.6 mL of solution. What is the concentration of the solution in units of molarity
The concentration of the solution in units of molarity is 0.64 M and the concentration of the solution in terms of g/mL is 0.10976 g/mL.
What is the concentration of the solution?The measure of the amount of the solute dissolved in the given amount of the solvent or solution is said to be the concentration of the solution.
It is given by the expression,
Concentration of the solution = mass of the solute/total volume of the solution
Units: g/mL
What is the concentration of the solution in units of molarity?The concentration of the solution in units of molarity is given by the expression,
Molarity = (no. of moles of the solute)/(Volume in L)
Units: moles/L
Calculation:It is given that the solute is barium hydroxide - Ba(OH)₂
The mass of Ba(OH)₂ = 2.81 g
When in dissolved in water, the total volume of the solution = 25.6 mL
The molar mass of Ba(OH)₂ = 171.34 g/mol
Then,
No. of moles = (mass of Ba(OH)₂)/(molar mass of Ba(OH)₂)
i.e.,
No. of moles = [tex]\frac{2.81}{171.34}[/tex] = 0.0164 mole
Concentration = mass of the solute/total volume
I.e., C = [tex]\frac{2.81}{25.6}[/tex] = 0.10976 g/mL
Then the concentration of the solution in units of molarity is,
Molarity = (no. of moles)/(Volume of the solution in L)
⇒ Molarity = [tex]\frac{0.0164}{25.6/1000}[/tex] = 0.64 M
Therefore, the concentration of the solution in units of molarity is 0.64 M.
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Question 12(Multiple Choice Worth 1 points)
[OSS.01] The picture below shows an early model of the solar system.
Saturn
Jupiter
Mara
Sun
Vanua
Mercury
Moon
Stars
Source http://dawn.iol.nasa.gov/DawnClassrooms/1 hist dawn/history discovery/Exploration outside_box.pdf
Why is this model useful to scientists?
2- chloro,2,3- dihydroxy-3,4-dimethyl pentane structure of the organic compound
Answer:
As denoted by the prefix, pent-, the parent chain should have 5 carbons. The numbers specify one which carbon in the parent chain (the pentane) the branch should be on. For instance, the chlorine branch should be on the second carbon.
Remember,
Chloro = Cl
Hydroxy = OH
Methyl = CH₃ (represented by a straight line)
A 120-milliliter mixture of Chemical X and water contained 40 percent Chemical X. A part of the mixture was removed and replaced with an equal quantity of water. If the resulting mixture contained 10 percent Chemical X, what is the volume of the mixture that was removed
The volume of the mixture that was removed is 90ml
Given that chemical percentage present in 120 ml of mixture = 40%
and resulting mixture contained 10% of Chemical X = 120 * 0.1 = 12ml
Volume is the quantity of three-dimensional space occupied by a liquid, solid, or gas. Common units used to express volume include liters, cubic meters, gallons, milliliters, teaspoons, and ounces, though many other units exist.
Let us assume that y be the volume of mixture removed
Therefore, we can re-write the equation as
0.4(120 - y) = 12
y = 90ml
Hence, 90ml was removed from the mixture
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The answer is 90 ml removed