Yellow is the correct answer .
What is Chlorophyll?
Chlorophyll is a green pigment that is essential for the process of photosynthesis in plants, algae, and some bacteria. It absorbs light energy from the sun and converts it into chemical energy, which is then used to produce organic compounds that the organism can use for energy and growth. Chlorophyll is found in specialized organelles called chloroplasts, which are present in the cells of photosynthetic organisms. There are several types of chlorophyll, but the most common types found in plants are chlorophyll a and chlorophyll b. Chlorophyll is also responsible for the green color of leaves and other photosynthetic tissues.
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A 50.0 mL sample of gas at 20.0 atm of pressure is compressed to 40.0 atm of pressure at constant temperature. What is the new volume? (4 points) 0.0100 mL 0.325 mL 25.0 mL 100. mL
The new volume of the gas is 25.0 mL, which is half of the original volume of 50.0 mL.
What is gas?Gas is a state of matter that is composed of particles with no definite shape or volume. It is composed of molecules that are in constant motion, colliding with each other and the walls of the container in which they reside. Gas can exist in either a gaseous or liquid state, depending on the temperature and pressure.
The change in volume of a gas is directly proportional to the change in pressure if the temperature is kept constant. This means that if the pressure is doubled, the volume of the gas is halved.
This means that if the pressure of the gas is increased from 20.0 atm to 40.0 atm, the volume of the gas is halved.
This means that the new volume of the gas is 25.0 mL, which is half of the original volume of 50.0 mL.
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Answer:
25.0 mL
Explanation:
we will use Boyle's law for this example. P1V1 = P2V2
p1 = 20.0
v1 = 50.0
p2 = 40.0
we are solving for V2
[tex]v2 = \frac{50 x 20}{40}[/tex]
= 25
what is the waist material liquid that is formed in the kidneys
Answer: Urine
Explanation: The kidneys are the organs that clean the blood stream, they filter about a half cup of blood every minute and they remove waste and extra unnecessary water from the blood stream, with this they produce urine that would be later expelled from the body.
In the equation:
Na₂CO3 + 2HCI → 2NaCl + H₂O + CO₂
How many moles of HCI are required to produce 15.91 g of CO₂
Answer:
0.7244 moles of HCI
Explanation:
To solve for the number of moles of HCI required to produce 15.91 g of CO₂, we need to use the balanced equation of the reaction:
Na₂CO₃ + 2HCI → 2NaCl + H₂O + CO₂
From the equation, we can see that 1 mole of Na₂CO₃ reacts with 2 moles of HCI to produce 1 mole of CO₂.
Since the desired amount of CO₂ is 15.91 g, we can convert it to moles:
15.91 g / 44.01 g/mol = 0.3622 mol CO₂
And since 1 mole of Na₂CO₃ reacts with 2 moles of HCI to produce 1 mole of CO₂, then 0.3622 mol CO₂ is produced from 0.3622 * 2 = 0.7244 moles of HCI.
Therefore, 0.7244 moles of HCI are required to produce 15.91 g of CO₂.
133/53l +0/-1e + ? answer
A nuclear reaction is indeed a process in nuclear physics including nuclear chemistry. Therefore, the reaction is ¹³³I₅₃ + ⁰e₋ [tex]\rightarrow[/tex] ¹³³Te₅₂.
What is nuclear reaction?A nuclear reaction is indeed a process in nuclear physics including nuclear chemistry wherein two nuclei, or perhaps a nucleus as well as an external quantum particle, collide to form one or even more new nuclides.
As a result, a nuclear reaction should result in the transformation with at least one nuclide. If a nuclear interacts with some other nucleus as well as particle and then separates without affecting the structure of any nuclide, this is referred to be a nucleotide interaction.
¹³³I₅₃ + ⁰e₋ [tex]\rightarrow[/tex] ¹³³Te₅₂
Therefore, the reaction is ¹³³I₅₃ + ⁰e₋ [tex]\rightarrow[/tex] ¹³³Te₅₂.
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Use Kinetic Molecular Theory to describe the effect of adding a gas to a container that cannot expand.
A) An increase in the number of gas particles in the container decreases the average energy of each particle and decreases the temperature of the gas.
B) An increase in the number of gas particles in the container causes the container to break.
C) An increase in the number of gas particles in the container only increases the number of moles but
does not change the behavior of the gas.
D) An increase in the number of gas particles in the container increases the number of collisions with the walls and increases the pressure of the gas.
Solving the Question
A) Incorrect. It is not guaranteed that adding gas particles to the container will decrease the kinetic energy, as we don't know what energy those particles have to begin with.
B) Incorrect. We are not given any information that reveals that the container will break.
C) Incorrect. Because there are more particles, more collisions will occur in the container, increasing the likelihood that bonds may form between particles. This deviates from ideal gas behaviour.
D) Correct. Adding particles will increase the number of collisions that occurs as well as the overall pressure.
AnswerOption D
a specie with initial concentration 1.4×10^-2 mol L-1 decay by first order kinetics with a rate constant 2.35×10^2L mol-1 s-1. what is the half-life if this specie?
The half life is 2.9 * 10^-3 s
What is a first order reaction?
A first-order reaction is a chemical reaction in which the rate of reaction is directly proportional to the concentration of one of the reactants. This means that the rate of reaction increases as the concentration of the reactant increases.
The mathematical expression for a first-order reaction is:
Rate = k[A]
where Rate is the rate of the reaction, k is the rate constant, and [A] is the concentration of the reactant that the reaction rate depends on. This equation is also known as the rate law for a first-order reaction.
Half life of a first order reaction;
0.693/k
k = Decay constant
Half life = 0.693/2.35×10^2
= 2.9 * 10^-3 s
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Once we factor in the stoichiometric coefficients in the balanced equation for a process, calculation of the standard entropy change for the process will involve: Select the correct answer below: O adding the sum of the standard entropy changes of the reactants to the sum of the standard entropy changes of the products O subtracting the sum of the standard entropy changes of the reactants from the sum of the standard entropy changes of the products O multiplying the sum of the standard entropy changes of the reactants by the sum of the standard entropy changes of the products O dividing the sum of the standard entropy changes of the reactants by the sum of the standard entropy changes of the products
The right response is option B, which involves subtracting the total of the standard entropy changes of the reactants from the total of the standard entropy changes of the products.
Calculating the standard entropy change for a process requires subtracting the sum of the standard entropy changes of the reactants from the sum of the standard entropy changes of the products after the stoichiometric coefficients are taken into account in the balanced equation for the process.
The formula S° = S°(products) - S°(reactants), where S° is the sum of the standard entropy changes of the reactants and products, may be used to determine the standard entropy change for a process. The stoichiometric coefficients in the balanced equation are automatically taken into account throughout the computation since the standard entropy change of the reactants is subtracted from the standard entropy change of the products.
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7.
(4 points) Determine the length in m of a 40. ft city bus given
that 1 ft = 30.48 cm and 1 cm = 0.01 m. Express your answer to the
correct number of significant figures.
The length of a 40ft city bus in metres is 12.2 metres.
How to convert length?Length is the distance measured along the longest dimension of an object.
Length can be measured in metres, centimetres, inches or yards. According to this question, the length of a city bus is 40 ft.
The unit of conversion of feet to metres is as follows:
1 foot = 0.305 metre
This means that 40 ft will be equivalent to 40 × 0.305 = 12.2 metres.
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(b) Levetiracetam is the (S) enantiomer of the memory-enhancing racemic drug called etiracetam. What do you think inspired the name of levetiracetam?
Since the configuration is such that we call it sinister (left). That inspired the name.
What is stereochemistry?The stereochemistry has to do with the study of the arrangement of the atoms and the groups that are in a compound. In this case, we can see that the compound that we have in the question has an (S) configuration and the meaning of this is that we can be able to arrange the priority groups from the left hand side as shown.
This can now explain to us that since the configuration is sinister then the name of the compound that is under study here can now be called Levetiracetam.
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4. How many moles are in 8x1023 molecules of
Sodium?
Answer:
Explanation:
The number of moles can be calculated by dividing the number of molecules by Avogadro's number (6.022 x 10^23 molecules/mol).
So, for 8 x 10^23 molecules of sodium, the number of moles would be:
8 x 10^23 molecules / 6.022 x 10^23 molecules/mol = 1.331 moles.
Therefore, there are 1.331 moles in 8 x 10^23 molecules of sodium.
With respect to the reaction shown,
BLANK # 1: type of compound that
will form
BLANK #2: name of the reaction
With respect to the reaction shown, the type of compound that will form is a hemiketal, and the name of the reaction is "hemiketal formation.
What are hemiacetals and hemiketals?A hemiketal is created when an alcohol reacts with a ketone, whereas a hemiacetal is created when an alcohol reacts with an aldehyde.
Organic substances called hemiacetal and hemiketal are hybrid molecules that have an ether group and a hydroxyl group in the same molecule.
The name of reaction that forms hemiketals and hemiacetals is called "hemiacetal formation" or "hemiketal formation," depending on the specific functional group involved.
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The concentration of a SO32- solution is determined by titrating it with a 0.1921 M solution of permanganate. The balanced net ionic equation for the reaction is shown below.
2 MnO4-(aq) + 5 SO32-(aq)+6 H3O+(aq)2 Mn2+(aq) + 5 SO42-(aq)+9 H2O(l)
In one experiment, 20.22 mL of the 0.1921 M MnO4- solution is required to react completely with 25.00 mL of the SO32- solution. Calculate the concentration of the SO32- solution.
? M
Based on given titration reaction, following are the values asked -
a) 0.3237M of the SO₃⁻ solution.
b) Permanganate solution
c) 0.008093M
What is titration?Titration is a typical laboratory technique for quantitative chemical analysis used to calculate the concentration of an identified analyte.
a) Based in the reaction, 2 moles of MnO₄⁻ react with 5 moles of SO₃⁻. Moles of permanganate used in titration are:
0.02389L×0.1355mol/L = 0.003237moles of MnO₄⁻. The moles of SO₃⁻ are:
0.003237moles of MnO₄⁻ × (5 moles of SO₃⁻ / 2 moles of MnO₄⁻) = 0.008093 moles of SO₃⁻
As volume of the solution is 25.00mL, the concentration of the solution is:
0.008093 moles of SO₃⁻ / 0.02500L = 0.3237M of the SO₃⁻ solution.
b) In a titration, the solution that is in the buret (Titrant), is the solution of known concentration, for the problem, permanganate solution
c) The moles of the Mn²⁺ solution are the same of MnO₄⁻. That is:
0.003237moles. As the volume of the new solution is 400mL, the concentration of the solution is:
[ Mn²⁺] = 0.003237moles / 0.400L = 0.008093M
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1.How do models help scientists predict and describe the structure of molecules?
Models help the scientists in prediction of structure of molecules as per molecular geometry of molecules.
What is molecular geometry?Molecular geometry can be defined as a three -dimensional arrangement of atoms which constitute the molecule.It includes parameters like bond length,bond angle and torsional angles.
It influences many properties of molecules like reactivity,polarity color,magnetism .The molecular geometry can be determined by various spectroscopic methods and diffraction methods , some of which are infrared,microwave and Raman spectroscopy.
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Explain why magnesium and aluminium react in a similar way?
In a breathalyzer, ethanol is detected through a reaction with the yellow-
orange dichromate ion in which the green chromium(III) ion is produced in
the presence of acid. The following balanced chemical equation
summarizes the reaction:
3 CH3CH₂OH(aq) + 2 Cr₂O72- (aq) + 16 H (aq) → 3 CH3COOH (aq) + 4 Cr³+
(aq)+11 H2O (D)
Which of these processes occurs the fastest?
The fastest process in the reaction described in the balanced chemical equation is the production of the green chromium(III) ion in the presence of acid.
What is involved ethanol reaction?The ethanol reaction involved in a breathalyzer is a chemical reaction between ethanol (CH3CH2OH) and the yellow-orange dichromate ion (Cr2O72-). In the presence of acid, the ethanol reacts with the dichromate ion to produce green chromium(III) ion (Cr³+) and acetic acid (CH3COOH).
The reaction between ethanol and dichromate ion is used in breathalyzers to detect the presence of ethanol in a person's breath. A breathalyzer is a device used to measure the alcohol concentration in a person's breath.
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When 25 mol of nitrogen reacts with 25 mol of hydrogen according to this reaction:
____ N2 + ____ H2 → ____ NH3
a. What is the limiting reactant?
b. What is the excess reactant?
c. How many moles of NH3 will be produced?
In the reaction N2 (g) + 3H2 (g) 2NH3 (g) Hydrogen will be the limiting reagent if equal amounts of each reactant are utilized since it is required to produce ammonia at a rate of 3 moles of hydrogen for every mole of nitrogen.
What does a limiting agent do?A reactant that is entirely consumed when a chemical reaction is finished is the limiting reagent. Due to the need for this reagent, the amount of product that can be produced is constrained.An ingredient in a chemical reaction known as the limiting reactant or limiting reagent controls how much product is produced. Calculating the theoretical yield of a reaction requires knowing which reactant is the limiting one.For more information on limiting agent kindly visit to
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When isopropanol (c3h8o) burns in oxygen, carbon dioxide, water, and heat are produced.
Answer: True
Explanation:
This is the standard process for all Carbon based Combustion reactions.
The compound is burned with some quantity of Oxygen, and it reacts to form some amount of water and carbon dioxide.
I did some of the boxes just need to figure out what the rest are. (LeChatelier’s Principle)
According to Lechatliers principle, as the concentration of HCl is decreasing, the reaction will shift to the reactant side to increase HCl, then the Keq decreases, since product concentration is decreases.
What is Lechatliers principle ?According to Lechatliers principle, when an any disorder imbalance the equilibrium of a reaction system, the system itself balances the factors and shifts to a new equilibrium.
If the concentration of any component is increased, then the reaction shifts to the direction in which it is consumed. If the concentration is decreased, the reaction shifts to the direction in which the component is produced.
Hence, as the HCl decreases, the reaction shifts to backwards direction to produce more HCl, then, concentration of reactants HCl and Mg increases, and that products and Keq decreases.
The reaction is an exothermic reaction. Hence, as the temperature is increased, the reaction shifts to the backward direction in which heat is used. Hence, reactant concentration increases, product concentration decreases, Keq also decreases.
If the temperature is reduced, the reaction shift to the forward direction. Hence, concentration of HCl, and Mg decreases but MgCl2 increases and Keq increases.
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What’s the velocity of the sound wave at a temperature of 38 C
Answer:
The velocity of sound in air is dependent on several factors, including temperature, pressure, and humidity. At a temperature of 38°C (100.4°F), the average velocity of sound in air is approximately 343 meters per second (m/s). However, it is important to note that this is just an approximation and the actual velocity can vary depending on the specific conditions. To get a more precise value, you may need to consider the effect of pressure, humidity, and other factors.
In your own words, describe how the body breaks down and absorbs protein.
Answer:
Protein is a necessary ingredient that is important for numerous bodily functions, such as tissue growth and repair, hormone and enzyme production, and immune system maintenance. When humans eat protein, the amino acids that make up the protein are disassembled.
In the stomach, where it is combined with digestive enzymes and stomach acid, protein breakdown starts. The amino acids are separated from the protein bonds with the assistance of this combination. The small intestine then receives the resulting concoction of amino acids and peptides.
Additional digestive enzymes are released into the small intestine by the pancreas and the intestinal wall to further break down the protein into its component amino acids. The small intestine's inner wall then allows these amino acids to enter the circulation where they are then carried to various bodily cells.
Once inside the cells, amino acids can be digested to provide energy or utilised to create new proteins. To ensure that it has enough amino acids to meet its requirements, the body also controls the balance of amino acids in the bloodstream.
In conclusion, the breakdown and absorption of protein begins in the stomach when it is combined with digestive enzymes and stomach acid. Then, the process continues in the small intestine, where additional breakdown occurs, and ends with the absorption of individual amino acids into the bloodstream.
A mixture of of hydrogen and of oxygen in a closed container is sparked to initiate a reaction.
When a mixture of hydrogen and oxygen in a closed container is sparked, it can undergo a combustion reaction, also known as a flame reaction. The reaction between hydrogen and oxygen is exothermic, releasing energy in the form of heat and light.
The balanced chemical equation for the combustion of hydrogen gas (H2) in the presence of oxygen gas (O2) is:
2H2 + O2 -> 2H2O
In this reaction, two molecules of hydrogen gas react with one molecule of oxygen gas to produce two molecules of water (H2O). The release of heat and light energy is due to the formation of new bonds in the water molecules, which requires energy to break the bonds in the hydrogen and oxygen molecules. This reaction is an example of an oxidation-reduction reaction, in which hydrogen acts as the reducing agent and oxygen acts as the oxidizing agent.
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How many grams CaCO3 will be formed if 5 grams of CaO are used for this reaction?
Assume there are enough reactants CaO (s)
+CO2(g) --> CaCO3 (s)
Calculate the volume of CO2(g)
Answer:
Explanation:
The balanced chemical equation for the reaction between calcium oxide (CaO) and carbon dioxide (CO2) to form calcium carbonate (CaCO3) is:
CaO + CO2 -> CaCO3
From the equation, we can see that for every 1 mole of CaO, 1 mole of CO2 is needed to form 1 mole of CaCO3. If we have 5 grams of CaO, we can calculate the number of moles as follows:
5 g CaO / 56 g CaO/mol = 0.089 mol CaO
Since we need an equal number of moles of CO2, we can calculate the mass of CO2 needed as follows:
0.089 mol CO2 * 44 g CO2/mol = 3.9 g CO2
To calculate the volume of CO2 at standard temperature and pressure (STP), we need to know its molar volume, which is 24.45 L/mol. Using this, we can calculate the volume of CO2 as follows:
0.089 mol CO2 * 24.45 L CO2/mol = 2.16 L CO2
So, 5 grams of CaO will result in the formation of 5 grams of CaCO3, and the volume of CO2 produced will be 2.16 liters.
17. An organic scid is used to improve tie nutrient content of crops. It is composed of
40.91% carbon, 4.545% hydrogen, and 54.54% oxygen. The molar mass of ascorbic acid is 264.21 g/mol. Determine the empirical and molecular formulas for this organic acid.
Answer: it is C
Explanation:
c
Carbon monoxide replaces oxygen in oxygenated hemoglobin according to the reaction: HbO_2 (aq) + CO(aq) HbCO(aq) + O_2(aq) a. Use the following reactions and associated equilibrium constants at body temperature to find the equilibrium constant for the above reaction. Hb(aq) + O_2(aq) HbO_2(aq) K_c = 1.8 Hb(aq) + CO(aq) HbCO(aq) K_c = 306 b. Suppose that an air mixture becomes polluted with carbon monoxide at a level of 0.10%. Assuming the air contains 20.0% oxygen, and that the oxygen and carbon monoxide ratios that dissolve in the blood are identical to the ratios in the air, what is the ratio of HbCO to HbO2 in the bloodstream? Comment on the toxicity of carbon monoxide.
a. We may use the equilibrium constants for the two reactions provided to get the equilibrium constant for the reaction HbO2(aq) + CO(aq) -> HbCO(aq) + O2(aq). O2(aq) + Hb(aq).
= 1.8 Hb(aq) + CO(aq) = HbO2(aq) Kc Kc HbCO(aq) = 306 Considering the forward and reverse. reaction ratios for the whole response, we get: ([HbCO][O2])/ K eq ([HbO2][CO]) Substituting in the equilibrium constants for the two specified reactions yields: K eq = (306 * [O2]) / 1.8 K eq = (306 * [O2]) / 1.8 The concentration of O2 in the circulation at body temperature is around 0.13 mM, or 0.13/1000 moles per liter. Substituting this value yields: (306 * 0.13/1000) / 1.8 = 0.022 K eq At body temperature, the equilibrium constant for the reaction HbO2(aq) + CO(aq) -> HbCO(aq) + O2(aq) is around 0.022. b. If 0.10% of the air mixture includes carbon monoxide and 20.0% oxygen, which indicates that there is one molecule of carbon monoxide and 200 molecules of oxygen in every 1000 molecules of air. Considering that the oxygen and carbon monoxide concentrations in blood are the same as those in air, this means that for every 200 molecules of HbO2 that join with oxygen, 1 molecule of HbO2 will bond with carbon monoxide to generate HbCO. The circulatory HbCO/HbO2 ratio can be computed as follows: [CO]/([O2]/200) = [CO] / ([O2]/200) Substituting the provided values yields: (1/1000) / (20/100 * 200) = [HbCO]/[HbO2 1/20000 [HbCO]/[HbO2] As a result, the circulatory HbCO/HbO2 ratio is 1:20000, or 0.005%. Carbon monoxide is extremely harmful because it bonds to Since it binds to hemoglobin considerably more firmly than oxygen, it can displace oxygen from hemoglobin and prevent it from reaching essential organs. This can result in tissue damage, organ failure, and even death. Low quantities of carbon monoxide can be hazardous, causing headaches, dizziness, nausea, and other symptoms.
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Calculate the volume of air in liters that you might inhale (and exhale) in 24.0 hours. Assume that each breath has a volume of 0.495 liters, and that you are breathing 13 times a minute.
The units which are used to represent the volume are mL, L, cm³, m³, etc. The volume of air in liters that you might inhale (and exhale) in 24.0 hours is 10,684.8 L.
What is volume?The measure of the capacity that an object holds is generally defined as the volume. For example if a beaker can hold 100 mL of water, then its volume is said to be 100mL.
Here in minute, volume is:
15 × 0.495 = 7.42 L
In an hour, volume is:
7.42 × 60 = 445.2
In 24 hours, the volume will be:
Volume = 445.2 × 24 = 10,684.8 L
Thus the volume of air in 24 hours is 10,684.8 L.
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Lechatliers principle
Need help figuring out the arrows directions.
According to Lechatliers principle, as the concentration of HCl is decreasing, the reaction will shift to the reactant side to increase HCl, then the Keq decreases, since product concentration is decreases.
What is Lechatliers principle ?According to Lechatliers principle, when an any disorder imbalance the equilibrium of a reaction system, the system itself balances the factors and shifts to a new equilibrium.
If the concentration of any component is increased, then the reaction shifts to the direction in which it is consumed. If the concentration is decreased, the reaction shifts to the direction in which the component is produced.
Hence, as the HCl decreases, the reaction shifts to backwards direction to produce more HCl, then, concentration of reactants HCl and Mg increases, and that products and Keq decreases.
The reaction is an exothermic reaction. Hence, as the temperature is increased, the reaction shifts to the backward direction in which heat is used. Hence, reactant concentration increases, product concentration decreases, Keq also decreases.
If the temperature is reduced, the reaction shift to the forward direction. Hence, concentration of HCl, and Mg decreases but MgCl2 increases and Keq increases.
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Ice charts (Image)
Need help figuring how this works.
The equilibrium concentrations of the gases are:
[H2] = 0.865 M, [CO2] = 0.865 M, [CO] = 1.135M ,[H2O] = 1.135 M.
What is the sum of molar concentration of reactants?The sum of the molar concentrations of the reactants (H2 and CO2) is equal to the sum of the molar concentrations of the products (CO and H2O), as expected for a reaction at equilibrium.
The equilibrium concentrations of the four gases can be determined using the equilibrium constant expression and the initial concentrations of the reactants.
The equilibrium constant expression for the reaction is:
K_eq = [CO][H2O]/[H2][CO2]
where the concentrations are in units of M (molarity).
We are given that K_eq = 0.771 at 650 degrees Celsius.
We start by setting up an ICE table (Initial, Change, Equilibrium) to determine the equilibrium concentrations:
H2 CO CO H2O
Initial 2.00 2.00 0 0
Change -x -x +x +x
Equil. 2.00-x 2.00-x x x
where "x" is the change in concentration from the initial state to the equilibrium state, and we assume that the reaction proceeds to equilibrium.
Substituting the equilibrium concentrations into the equilibrium constant expression and solving for "x", we get:
K_eq = [CO][H2O]/[H2][CO2] = x^2 / (2.00 - x)^2 = 0.771
Solving for "x" using the quadratic formula, we get:
x = 1.135 M
Therefore, the equilibrium concentrations of the gases are:
[H2] = 0.865 M
[CO2] = 0.865 M
[CO] = 1.135 M
[H2O] = 1.135 M
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A patient needs exactly 1000. mL of a fluid over a 6-hour period. The drop factor is 15 gtt/mL. What is the drip rate in gtt/min?
According to the question, the drip rate in gtt/min is 25 gtt/min.
What is drip rate?
Drip rate is a medical term referring to the controlled delivery of a liquid, such as an intravenous (IV) infusion, over a specified period of time. It is usually expressed in terms of drops per minute. It is also called drop rate, infusion rate or flow rate.
To calculate this, we need to first determine the total number of drops that need to be administered over the 6-hour period. To do this, we multiply the total volume of fluid (1000 mL) by the drop factor (15 gtt/mL). This gives us a total of 15,000 gtt.
Now we need to determine how many drops are required per minute. To do this, we divide the total number of drops (15,000 gtt) by the total number of minutes in 6 hours (360 minutes). This gives us a result of 41.67 gtt/min.
Finally, we need to round this value up to the nearest whole number. This gives us a drip rate of 42 gtt/min, or 25 gtt/min when rounded down to the nearest whole number.
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Why is it debated whether group 12 elements are transition metals? Explain in terms of electron orbitals.
The elements of 'd' block elements are called the transition elements. All the 'd' block elements are good conductors of heat and electricity.
What is a transition element?The transition elements are defined as those elements which contain partially filled d-orbitals in their atoms in ground state or in their ions in common oxidation states.
But 'Zn', 'Cd' and 'Hg' of group 12 contain a (n-1)d¹⁰ configuration in their atoms and their most common divalent ions. Hence they cannot be considered strictly as transition metals. Because they contain completely filled 'd' orbitals.
Thus the group 12 elements are not strictly considered as transition metals.
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Glucose (molar mass=180.16 g/mol) is a simple, soluble sugar. Glucose solutions are used to treat patients with low blood sugar.
Suppose you prepare a glucose solution using the described procedure.
Step 1: Dissolve 227.9 g of glucose in enough water to make 500.0 mL of solution.
Step 2: Transfer 16.8 mL of the solution to a new flask and add enough water to make 250.0 mL of dilute solution.
What is the concentration (in M) of the glucose solution at the end of the procedure?
Answer:
0.0456 M
Explanation:
The concentration of glucose can be determined as follows:
Step 1: Concentration of glucose in the original solution = Mass of glucose / Volume of solution = 227.9 g / (500.0 mL x 10^-3 L/mL) = 0.456 M
Step 2: Concentration of glucose in the dilute solution = Mass of glucose / Volume of dilute solution = 0.456 M x (16.8 mL x 10^-3 L/mL) / (250.0 mL x 10^-3 L/mL) = 0.0456 M
So, the concentration of glucose in the dilute solution is 0.0456 M to 4 significant figures.
ALLEN