The correct answer is: K3 = 1/K1 x 1/K2
Steps
The equilibrium expression for reaction 3 may be written using the equilibrium expressions for reactions 1 and 2 and the expression for K3.
First, we need to reverse the equation for reaction 1:
CH4(g) + H2O(g) ⇆ CO(g) + 3H2(g)
Next, we need to multiply the equation for reaction 2 by 3:
3CO2(g) + 3H2(g) ⇆ 3CO(g) + 3H2O(g)
Now we can add the two equations to obtain the equation for reaction 3:
CH4(g) + 2H2O(g) ⇆ CO2(g) + 4H2(g)
Just substituting the equilibrium equations for reactions 1 and 2 into the equation for reaction 3 will yield the equilibrium expression for reaction 3:
K3 = ([CO][H2]^4)/([CH4][H2O]^2[CO2])
Therefore, the correct answer is:
K3 = 1/K1 x 1/K2
What does reactional equilibrium mean?When there is no tendency for the amounts of reactants and products to fluctuate, a chemical reaction is in equilibrium. It is arbitrary which components are treated as reactants and which as products when we write a chemical reaction in a certain direction.Which two reactions are balanced?Both the forward and the reverse reactions take place as a system gets closer to equilibrium. The forward and reverse reactions are moving at the same speed when the system is in equilibrium. The amount of each reactant and product remains constant until equilibrium has been reached.learn more about equilibrium here
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Which of the following is a salt that could be generated by combining a weak acid and a weak base? Select the correct answer below:
a) NaCl
b) Na2SO4
c) NH4NO3
d) NH4F
Answer:
d) NH4F
Explanation:
Hello,
In this case, the base resulting from mixing a weak acid and a weak base is d) NH4F since ammonium hydroxide is a wear base and hydrofluoric acid is a weak acid.
Ammonium hydroxide is a weak base since it is not completely ionized in ammonium and hydroxyl ions:
\(NH_4OH\rightarrow NH_4^++OH^-\)
Moreover, hydrofluoric acid is a weak acid since it is not completely ionized in hydrogen and fluoride ions:
\(HF\rightleftharpoons H^++F^-\)
For the both of the substances, the limit is established by the basic and the acid dissociation constant respectively.
Regards.
1. Determine the reaction TYPE:2. Predict the product3. Use the names to write GOOD chemical formulas. (GOOD formulas have a NEUTRAL charge balanced using subscripts.)4. Balance the equation using coefficients C5H12 (burning) +_________________________________________
ANSWER
\(\begin{gathered} \text{ The balanced equation is } \\ \text{ C}_5H_{12(l)}\text{ }+\text{ 8CO}_{2(g)}\text{ }\rightarrow\text{ 5CO}_{2(g)}\text{ }+\text{ 6H}_2O_{(l)} \end{gathered}\)EXPLANATION
When an organic compound is burns in air, the type of reaction is called a combustion reaction.
The major products formed when an organic compound undergoes a combustion reaction are carbon dioxide and water.
To write a balanced equation for the reaction, follow the steps below
The combustion formula is written below as
\(\text{ C}_xH_y\text{ + x }+\frac{y}{4}O_2\rightarrow xCO_2\text{ + }\frac{y}{2}H_2O\)The compound given is pentane because it has 5 carbon atoms
\(\begin{gathered} \text{ C}_5H_{12}\text{ }+\text{ 5}+\frac{12}{4}O_2\text{ }\rightarrow\text{ 5CO}_2\text{ }+\text{ 6H}_2O \\ \\ \text{ C}_5H_{12(l)}\text{ }+\text{ 8CO}_{2(g)\text{ }}\text{ }\rightarrow\text{ 5CO}_{2(g)}\text{ }+\text{ 6H}_2O(l) \end{gathered}\)1. Identify any (if applicable):
• aromatic rings
• chiral centers
• all functional groups
2. For alcohol groups, specify whether each is primary, secondary, tertiary or phenolic.
For carboxylic acid groups, draw the conjugate base.
For amines, draw the conjugate acid.
For esters and amides, draw products of hydrolysis.
3. Identify all regions of the molecule that can participate in hydrogen bonding with water.
4. Identify what your molecule is used for.
The most charged oxygen atom that exists in the molecule of water (H2O) is covalently joined to hydrogen. As a result, the hydrogen nucleus on one water molecule interacts with that of oxygen on another water molecule via a dipole.
Which molecular components can create a hydrogen connection with water?Hydrogen ties form between nearby oxygen and hydrogen atoms liquid adjacent water molecules in this instance of water. A bond called a hydrogen bond, it is generated via an attraction among two water molecule molecules.
Which chemical does not combine with moisture and yield hydrogen debts?Water exhibits H-bonding because it includes oxygen. Because hydrogen bonds are not present in the acid hydrochloric, it lacks oxygen, nitrogen, and fluorine. Therefore, option (d) — hydrochloric acid — is the correct response.
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A 15.0 L rigid container was charged with 0.5 atm of Krypton gas and 1.5 atm of chlorine gas at 350 C. The krypton and chlorine react to form tetrachloride. What mass of krypton tetrachloride can be produced assuming 100% yield?
The mass of krypton tetrachloride that can be produced assuming 100% yield is mathematically given as
molar mass=33.29g
What mass of krypton tetrachloride can be produced assuming 100% yield?Generally, the equation for ideal gas is mathematically given as
PV=nRT
Therefore
n=(0.50)(15.)/0.082*623
n=0.147mol
Hence for clorine
n=0.441mol
Given the reaction
Kr+2cl2---->KrCL4
Hence
molar mass=225.60*0.147
molar mass=33.29g
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Ryan finds a rock that has large crystals inside. What can Ryan most likely determine about the rock he found?
The rock was heated very slowly
The rock was weathered very quickly.
The rock was cooled very slowly
The rock was deposited very quickly
Which of the following BEST describes one of the main functions of proteins?
How is this effect of dissolved
substances important in nature?
Explanation:
Water is called the "universal solvent" because it is capable of dissolving more substances than any other liquid. This is important to every living thing on earth. It means that wherever water goes, either through the air, the ground, or through our bodies, it takes along valuable chemicals, minerals, and nutrients.
If 2.5 moles of CO2 is made from the reaction, how many moles of h2o is produced?
Answer:
The balanced chemical equation for the reaction of CO2 and H2 to produce H2O and CO is:
CO2 + 4H2 -> CH4 + 2H2O
From the equation, we can see that for every 1 mole of CO2 reacted, 2 moles of H2O are produced. Therefore, if 2.5 moles of CO2 are produced, the number of moles of H2O produced would be:
2.5 moles CO2 * (2 moles H2O / 1 mole CO2) = 5 moles H2O
Therefore, 5 moles of H2O would be produced when 2.5 moles of CO2 is produced.
On Earth he weighs 720 newtons. List of weights: 655 N; 1,872 N; 792 N; 36 N; and 661 N. What planets does he visit?
On Earth he weighs 720 newtons. 36N is the weight. Therefore, the correct option is option D among all the given options.
What is weight?The gravitational force of attraction exerted on an item by the presence of a huge second object, including the Earth or Moon. Weight is a result of the fundamental law of gravitation: whatever two things have the same weight.
They attract each other using a force that really is directly related to the sum of their masses as well as inversely related to the square of something like the distance separating them due to their masses.
F = mass ×4/9g
= 720 ×4/9
=36N
Therefore, the correct option is option D.
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Intravenous lidocaine therapy is started for a patient. The doctor's order says to add 1.0 grams of lidocaine to 250 mL of I.V. solution and deliver it to the patient at 4.0 mg/min. In this particular I.V., 20. drops = 1.0 mL. What is the flow rate in drops per minute?
The flow rate of the IV solution in drops per minute is 80 drops/min.
To determine the flow rate in drops per minute, we need to consider the conversion factors and relationships between different units.
First, let's convert the lidocaine dose from grams to milligrams, as the flow rate is given in milligrams per minute:
1 gram = 1000 milligrams
So, 1.0 gram of lidocaine is equal to 1000 milligrams.
Next, we can calculate the total volume of the IV solution in milliliters:
250 mL
To find the flow rate in milligrams per minute, we divide the dose by the total time:
Flow rate = Dose / Time
The dose is 1000 milligrams (1.0 gram) and the time is 1 minute.
Flow rate = 1000 mg / 1 min = 1000 mg/min
Now, to determine the flow rate in drops per minute, we need to convert the IV solution volume from milliliters to drops. Given that 20 drops = 1.0 mL, we can set up a conversion factor:
20 drops / 1 mL
To find the flow rate in drops per minute, we multiply the flow rate in milligrams per minute by the conversion factor:
Flow rate (drops/min) = Flow rate (mg/min) * Conversion factor
Flow rate (drops/min) = 1000 mg/min * (20 drops / 1 mL)
Now we need to convert milliliters to drops:
Flow rate (drops/min) = 1000 mg/min * (20 drops / 250 mL)
Simplifying the expression:
Flow rate (drops/min) = 1000 mg/min * (4/50)
Flow rate (drops/min) = 80 drops/min
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Which 3 laws combine to make the Combined Gas Law?
Answer:
Boyle's Law, Charles' Law, and Gay-Lussac's Law
Explanation:
Answer:
Boyle's Law, Charles's Law, and Gay-Lussac's Law
Explanation:
Give the measurement following sig fig rules for tools. Do not forget the unit after your number measurement.
Answer:
Explanation:
You are not really helped by what is hold the liquid. Beakers and cylinders come on a lot of sizes. I hate to be crabby about things like that, but you really need to be aware that the question is slightly flawed (not your fault).
The beaker, you'd be like to get 1 sig digit. You have to be awfully careful about claiming more. So the and is 50 mL, but that mL is a guess and the 50 is not totally accurate, but what would you say the second digit is? 48 or 47? You don't really know. Maybe even 49.
The graduated cylinder is a little better. Read the bottom of the meniscus (the bottom of the 1/2 bubble). I think you can get 2 sig digs., so the answer is 36 mL. But everything also depends on what you have been told.
6. How many moles are in 8.30 x 1023 molecules of CO₂?
a.
b.
C.
d.
1.37
2.8
55.5
100
PLEASE HELP ASAP I NEED HEP PLEASE ITS DUE TODAY
(May not be 100% correct as there may be more context, but I hope this helps! Have a nice day!)
We can tell it won't be Claim 1 as Claim 1 compares a reddish-brown substance to a gray/white substance.
I am going to go with Claim 3 is most supported by the evidence because of the three descriptions of the different substances, none of them match.
A piece of copper has a mass of 290 g. How many atoms does the sample contain?
A piece of copper that has a mass of 290 g has 2.748 *10²⁴ molecules.
What is a mole ?A mole is a unit of measurement which relates the molar mass to the amount of the number of atoms and molecules .
1 mole = 6.022 *10²³ molecules or atoms
Molecular weight of copper = 63.55
290 g of Copper = 290/63.55 = 4.56 moles
1 mole has 6.022 *10²³ molecules or atoms
4.56 mole has 4.56 *6.022*10²³ molecules or atoms
= 2.748 *10²⁴ molecules.
A piece of copper that has a mass of 290 g has 2.748 *10²⁴ molecules.
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Aluminum has a density of 2.70 g/mL. Calculate the mass (in grams) of a piece of aluminum having a volume of 238 mL .
Answer:
mass in gram = 642.6 g
Explanation:
Given data:
Density of aluminum = 2.70 g/mL
Volume of aluminum = 238 mL
Mass in gram = ?
Solution:
Density:
Density is equal to the mass of substance divided by its volume. The symbol used for density is called rho. It is represented by ρ. However letter D can also be used to represent the density.
SI unit of density is Kg/m3.
Other units are given below,
g/cm3, g/mL , kg/L
Formula:
d =m/v
d = density
m=mass
V=volume
Now we will put the values in formula.
2.70 g/mL = m/ 238 mL
m = 2.70 g/mL × 238 mL
m = 642.6 g
Question 1
Given the equation: Q = mcAT
Q = heat (in Joules)
m = mass (in grams)
C = 4.18 (specific heat capacity)
AT change in temperature (°C)
How many Joules of heat energy are absorbed when 200 grams of water are heated from 20 C to 60 C.
The amount of heat energy absorbed when 200 grams of water are heated from 20 C to 60 C is 33,440 Joules.
To find the amount of heat energy absorbed when 200 grams of water are heated from 20 C to 60 C, we can use the equation Q = mcAT.
First, we need to find the value of m, which is the mass of the water in grams. In this case, it is given as 200 grams.
Next, we need to find the value of AT, which is the change in temperature in degrees Celsius.
This can be calculated by subtracting the initial temperature from the final temperature, which gives us 60 C - 20 C = 40 C.
The specific heat capacity of water, C, is given as 4.18 Joules per gram per degree Celsius.
Now we can plug in the values into the equation:
Q = mcAT
Q = (200 g) x (4.18 J/g°C) x (40°C)
Q = 33,440 J
Therefore, the amount of heat energy absorbed when 200 grams of water are heated from 20 C to 60 C is 33,440 Joules.
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How many calories of energy are found in 8.3 grams or Fat? Every gram of fat
can produce 38 KJ of energy.
Answer: asd asd asd asdasdasdasd
How many atoms are in 12 g of Carbon-12 (12C)?
There are approximately 6.022 × 10^23 atoms in 12 grams of Carbon-12 (12C).
The number of atoms in a given amount of a substance can be calculated using Avogadro's number, which represents the number of atoms or molecules in one mole of a substance. Avogadro's number is approximately 6.022 × 10^23.
Carbon-12 is a specific isotope of carbon, with an atomic mass of 12 atomic mass units (amu). One mole of Carbon-12 has a mass of 12 grams. Since one mole of any substance contains Avogadro's number of particles, in the case of Carbon-12, it contains 6.022 × 10^23 atoms.
Therefore, if we have 12 grams of Carbon-12, which is equal to one mole, we can conclude that there are approximately 6.022 × 10^23 atoms in this amount of Carbon-12.
In summary, 12 grams of Carbon-12 contains approximately 6.022 × 10^23 atoms. Avogadro's number allows us to relate the mass of a substance to the number of atoms or molecules it contains, providing a fundamental concept in chemistry and enabling us to quantify and understand the microscopic world of atoms and molecules.
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Predict the products of the following acid-base reactions and predict whether the equilibrium lies to the left or to the right. CH3COO + H3O
The products of the reaction between acetate ion and hydronium ion are acetic acid and water.The equilibrium lies to the left side of the reaction.
The equilibrium lies to the left side of the reaction as when the concentration of acetate or hydronium ion is increased the reversible reaction is favored leading to the formation of acetic acid and water.
What are the factors affecting equilibrium direction?Factors affecting equilibrium direction are as follows:
1)Change in concentration:When the concentration of any component is altered,equilibrium direction changes to minimize the effect of concentration change.
When the concentration of reactants is increased, reaction proceeds in forward direction and when concentration of products is increased, reaction proceeds in backward direction.
2)Change in temperature:Increase in temperature causes equilibrium to move in direction of endothermic reaction while decrease in temperature causes equilibrium to move in direction of exothermic reactions.
3)Change in pressure:An increase in pressure causes the reaction to reverse as the number of mole's of gas on reactant's side is decreased.
A decrease in pressure causes the reaction to move forward as the number of moles of gas on product side is reduced.
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What is the de Broglie wavelength of an electron traveling at 1.59×105m/s ?
The de Broglie wavelength of an electron traveling at 1.59×105m/s is 0.4547 x 10⁻⁹ m.
What is an electron ?The elementary electric charge of the electron is a negative one, making it a subatomic particle. Due to their lack of known components or substructure, electrons, which are part of the first generation of the lepton particle family, are typically regarded to be elementary particles.
The length scale at which a particle's wave-like characteristics are significant is indicated by its de Broglie wavelength. The symbol or dB is typically used to indicate the De Broglie wavelength. The de Broglie wavelength for a particle with momentum p is given by dB = hp.
λ = h/mv
Where,
λ = wavelength of electron
m = mass of electron = 9.11e-31 kg
v = speed of electron = 1.59 × 10⁵ m/s
h = constant
Therefore,
λ = (6.626x10⁻³⁴J-s) ÷ [(9.11e-31 kg) (1.59 x 10⁵ m/s)]
λ = 0.4547 x 10⁻⁹ m
Thus, The de Broglie wavelength of an electron traveling at 1.59×105m/s is 0.4547 x 10⁻⁹ m.
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What is the final temperature when 625 grams of water at 75.0 deg C loses 7.96 x 10^4 J? (hint: remember ΔT = Tfinal - Tinitial )
The final temperature of the water is 71.99°C.
The final temperature when 625 grams of water at 75.0°C loses 7.96 x 10⁴ J can be found using the specific heat capacity equation:
q = mcΔT
where q is the amount of heat transferred, m is the mass of the substance, c is the specific heat capacity, and ΔT is the change in temperature.
First, we need to determine the specific heat capacity of water, which is 4.18 J/g°C. Then we can rearrange the equation to solve for ΔT:
ΔT = q / (mc)
Substituting the given values, we get:
ΔT = (7.96 x 10⁴ J) / (625 g x 4.18 J/g°C)
ΔT = 3.01°C
Therefore, the final temperature is:
Tfinal = Tinitial - ΔT
Tfinal = 75.0°C - 3.01°C
Tfinal = 71.99°C
As a result, the water's ultimate temperature is 71.99°C.
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Which statements describe inorganic compounds? Check all that apply
Inorganic compounds contain carbon
Inorganic compounds usually lack carbon
Inorganic compounds are not associated with or made from living things,
Inorganic compounds include fruits and vegetables,
Inorganic compounds include salt and water
Answer:
b, c, e
Explanation:
Inorganic compounds usually lack carbon.
Inorganic compounds are not associated with or made from living things.
Inorganic compounds include salt and water.
Answer:
yes the answer id bce
Explanation:
Guys I really need to you answer this question for me pleaseeeee. Describe one situation in which forces are created.
The application of force in the direction of the motion of an object. The second scenario involves applying force to a moving item that is traveling in the opposite direction.
What is force ?A force is an influence that has the power to alter an object's motion. An object with mass can change its velocity, or accelerate, as a result of a force. A force has both a direction and a magnitude.
Force is used to describe a body's tendency to modify or change its state as a result of an external cause. When force is applied, the body can also alter its size, shape, and direction.
A push or pull that an object experiences as a result of interacting with another item is known as a force. Every time two items interact, a force is exerted on each of the objects. The force is no longer felt by the two objects when the interaction ends.
Thus, Force applied to an item in motion that originates in any direction constitutes the third situation where force is created.
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Classify the scenarios by the type of error they demonstrate. Systematic error Random error Answer Bank The volume of water in a 50 mL graduated cylinder is recorded by several students in a group. Their recorded volumes are similar, but vary by +0.01 mL. A student weighs a single sample of salt 5 times on the same balance and records 5 measurements that are all different, but within 0.006 g of the initial value. A solid salt compound used for an experiment is contaminated with sugar. A balance consistently reads 0.050 g higher than a set of calibration standards. The percent transmittance of the same solution is measured to be 44.6%, 44.3%, 44.8%, and 44.3%. An incorrectly calibrated instrument gives readings that are consistently low for a set of experiments.
In scientific measurements, errors can be classified into two main types: systematic errors and random errors. systematic errors can be corrected, random errors can only be reduced by improving the measurement.
Classification of Errors in Scientific MeasurementsIn scientific measurements, errors can be classified into two main types: systematic errors and random errors. Systematic errors are those errors that have a consistent pattern and are introduced by flaws in the measurement process or equipment. An example of a systematic error is an incorrectly calibrated instrument, which gives readings that are consistently low for a set of experiments. Another example is a balance that consistently reads 0.050 g higher than a set of calibration standards. On the other hand, random errors are those that are caused by unpredictable fluctuations in the measurement process and have no consistent pattern. An example of a random error is the measurement of the percent transmittance of the same solution, which was measured to be 44.6%, 44.3%, 44.8%, and 44.3%. A student weighing a single sample of salt 5 times on the same balance and recording 5 measurements that are all different, but within 0.006 g of the initial value, also demonstrates a random error.
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What is the mass of a rectangular piece of copper 24.4cm x 11.4 cm x 7.9 cm? The density of copper is 8.92g/cm3.
The mass of the rectangular piece of copper is 18,869 g (approx).In conclusion, the mass of a rectangular piece of copper with dimensions 24.4cm x 11.4 cm x 7.9 cm and a density of 8.92 g/cm³ is 18,869 g (approx.).
The given dimensions of the rectangular piece of copper are:Length = 24.4 cmWidth = 11.4 cmHeight = 7.9 cmThe formula to calculate the mass of an object is given by;
Mass = Density x Volume
Here, the density of copper is given as 8.92 g/cm³.
Therefore, the first step is to calculate the volume of the rectangular piece of copper.The formula to calculate the volume of a rectangular object is given by:
Volume = Length x Width x Height
So,Volume = 24.4 cm x 11.4 cm x 7.9 cm= 2115.432 cm³Now we will use the mass formula:
Mass = Density x Volume= 8.92 g/cm³ x 2115.432 cm³= 18,869.27824 g= 18,869 g (approx.)
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c) Discuss precision and Accuracy as they relate to types of errors.
what is the answer
Precision relates to the consistency and reproducibility of measurements, while accuracy reflects how close measurements are to the true value.
Precision and accuracy are two important concepts in the context of errors in measurements. While they both pertain to the quality of data, they refer to different aspects.
Precision refers to the degree of consistency or reproducibility in a series of measurements. It reflects the scatter or spread of data points around the average value. If the measurements have low scatter and are tightly clustered, they are considered precise. On the other hand, if the measurements have a high scatter and are widely dispersed, they are considered imprecise.
Accuracy, on the other hand, refers to the closeness of measurements to the true or target value. It represents how well the measured values align with the actual value. Accuracy is achieved when measurements have a small systematic or constant error, which is the difference between the average measured value and the true value.
Errors in measurements can be classified into two types: random errors and systematic errors.
Random errors are associated with the inherent limitations of measurement instruments or fluctuations in the measurement process. They lead to imprecise data and affect the precision of measurements. Random errors can be reduced by repeating measurements and calculating the average to minimize the effect of individual errors.
Systematic errors, on the other hand, are caused by consistent biases or inaccuracies in the measurement process. They affect the accuracy of measurements and lead to a deviation from the true value. Systematic errors can arise from factors such as instrumental calibration issues, environmental conditions, or experimental techniques. These errors need to be identified and minimized to improve the accuracy of measurements.
In summary, precision refers to the degree of consistency or reproducibility of measurements, while accuracy refers to the closeness of measurements to the true value. Random errors affect precision, while systematic errors affect accuracy. To ensure high-quality measurements, both precision and accuracy need to be considered and appropriate techniques should be employed to minimize errors.
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When cyclohexene is mixed in a test tube with a sulfonitric mixture (h2SO4/HNO3) a pale yellow solution is formed, which suddenly explodes, becoming dark brown. What products are formed and why does this happen?
When cyclohexene is mixed with a sulfonitric mixture (H2SO4/HNO3), it reacts to form nitrocyclohexane and sulfur dioxide.
This reaction proceeds in two steps. Firstly, cyclohexene undergoes electrophilic addition with the nitronium ion (NO2+), which is generated from the reaction between HNO3 and H2SO4. This results in the formation of nitrocyclohexane, giving the initial pale yellow color to the solution.
In the second step, nitrocyclohexane reacts with the excess sulfuric acid present in the mixture. This step is highly exothermic, releasing a significant amount of energy. The sudden release of energy causes an explosion. The exact mechanism of the explosive reaction is complex, involving the generation of reactive intermediates. It is believed that the reaction proceeds via a radical mechanism, where nitrocyclohexane decomposes into highly reactive nitrogen and carbon-centered radicals. These radicals further react with sulfur dioxide, which is produced in the reaction, to form stable compounds. As a result, the solution turns dark brown after the explosion.
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True or False, Gases take both the volume and the shape of their container
I looks like it might be false
Answer:
true
Explanation:
because the forces of attraction are very weak in gases and the molecule are in random motion thats why they have no definite shape and volume and they occupy the shape and volume of container
In cold climates, solutes are often spread on ice to make it melt. Sodium chloride (NaCl), calcium chloride (CaCl2), and glucose (C6H12O6) are all possible solutes. If you ignore all factors except which substance would lower the freezing point of water the most, which substance would be most effective? Answer choices:CaCl2 because it produces the most particles when it dissolves. NaCl because it is ionic. C6H12O6 because it is a molecular compound. Any substance that dissolves in water would work equally well.
NaCl because it is ionic.
Explanation:According to the question, solute are spread on ice in order to make it melt. The substance that would lower the freezing point of water the most is salt (NaCl) due to its ionic nature.
The more the ions that dissociate in the water, the lower the freezing point becomes.