Answer:
please rate my answer 5 Star
Explanation:
Using Boyle's Law,
The pressure exerted by a gas is inversely proportional to the volume the gas is occupying provided the temperature is constant
p*v = constant
100*1000*7.5 = p * 11
p = 750000/11
Nitrates are pollutants. They are harmful when they enter the water supply. Humans are the source of most nitrate pollution Nitrates come from overuse of fertilizer, large-scale animal farms, and septic tanks. The table shows the amount of nitrates the Colorado River over time. Time Period Nitrates Entering Water (lbs) 100,000 150,000 250,000 500,000 800,000 1,200,000 1,400,000 1976-1980 1981 - 1985 1986-1990 1991 - 1995 1996-2000 2001-2005 2006-2010 Which conclusion is best supported by the information in the table?
A. Scientists need to measure the effect of pollution instead of the amount of pollution.
B. Problems associated with an increase in nitrates will continue to get worse over time.
C. Scientists need to reject the data because it only measures one kind of water pollution.
D. The population in the area must have grown exponentially to explain the increase in nitrates.
Help Me Please
Scientists need to measure the effect of pollution instead of the amount of pollution.
What are nitrate pollutants?Ingesting large amounts of nitrate, a frequent groundwater contaminant, can have detrimental effects on one's health. Nitrate has no flavor, no aroma, and no color. Nitrate that occurs in nature at low concentrations can be normal, but excessive amounts can contaminate groundwater.
Effect of nitrate on human life :Stomach acid cannot degrade nitrates on its own. Instead, your gut biome may convert nitrate into nitrite, which may result in health issues like a higher risk of cancer. An inorganic, water-soluble chemical is nitrate.
A growing body of research suggests possible links between nitrate/nitrite exposure and other health issues like elevated heart rate, motion sickness, headaches, and cramps in the abdomen.
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If 9.8 g of sulfuric acid dissolved in excess quantity moles of hydrogen ion of water, it will yield (H+) and A. 0.1, 0.2 B. 0.1, 0.3 C. 0.2, 0.4 D. 0.2,0.1 mole of sulphate ions (SO4-2)
If 9.8 g of sulfuric acid is dissolved in excess quantity moles of hydrogen ion is 0.1, 0.2. The correct option is A.
What are moles?The mole is a SI unit of measurement that is used to calculate the quantity of any substance.
Molar mass H₂SO₄ = 98 g/mol
9.8 g H₂SO₄ = 0.1 mol
H₂SO₄ produces 2 H+ ions
Therefore, [H+] = 0.2 M
Number of H+ ions = 0.2 x 6.022 x 10²³ = 1.20 x 10²³ H+ ions
H₂SO₄ dissociates in 2 steps
The first dissociation is complete because H₂SO₄ acts as a strong acid here
H₂SO₄ → H+ + HSO₄-
Thus, the 0.1 mol H₂SO₄ will produce 0.1 mol H+ and the moles of sulfate ion is 0.2. The correct option is A.
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7. What is ultraviolet radiation?
Answer:
Ultraviolet radiation is a form of electromagnetic radiation that comes from the sun.
which is the graph of the function g(x) = f(-x)
To graph the function g(x) = f(-x), you can start with the graph of f(x) and then reflect it about the y-axis.
What is a graph of the function g(x) = f(-x)?To find the graph of the function g(x) = f(-x), we can start with the graph of the function f(x) and then reflect it about the y-axis.
If the graph of f(x) is symmetric with respect to the y-axis, meaning it is unchanged when reflected, then g(x) = f(-x) will have the same graph as f(x).
However, if the graph of f(x) is not symmetric with respect to the y-axis, then g(x) = f(-x) will be a reflection of f(x) about the y-axis.
In either case, the resulting graph of g(x) = f(-x) will be symmetric with respect to the y-axis.
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Calculate the pH of a buffer solution that contains 0.25 M benzoic acid (C 6H 5CO 2H) and 0.15M sodium benzoate (C 6H 5COONa). [K a = 6.5 × 10 –5 for benzoic acid]
Answer:
3.97
Explanation:
pH of buffer solution = pKa+Log(Cb/Ca)
pH of buffer solution = -log(Ka)+log(Cb/Ca)............... Equation 1
Where Ca = concentration of acid, Cb = concentration of base.
Given: Ka = 6.5×10⁻⁵, Ca = 0.25 M, Cb = 0.15 M
Substitute into equation 1
pH of buffer solution = -log(6.5×10⁻⁵)+log(0.15/0.25)
pH of buffer solution = 4.19+(0.22)
pH of buffer solution = 3.97.
What is the major function of the cell membrane?
Answer:
The plasma membrane, or the cell membrane, provides protection for a cell. It also provides a fixed environment inside the cell, and that membrane has several different functions. One is to transport nutrients into the cell and also to transport toxic substances out of the cell.
Which is an example of convection?
A. In a mountain forest, the sun heats up the ground.
B. On a hot day, Amaya pours water on her face to cool off.
C. At the beach, Stephan's feet get hot walking across the sand.
D. Above the sea, warm air rises, cools, and sinks.
Above the sea, warm air rises then cools and sinks is due to convection. Therefore, option (D) is correct.
What is convection?Convection can be described as the process of heat transfer through the bulk movement of molecules within fluids. The heat transfer between the object and the fluid occurs through conduction, but the bulk heat transfer occurs due to the motion of the fluid.
Convection can be defined as the process of heat transfer in fluids by the actual motion of matter. It occurs in liquids and gases. It may be forced or natural and involves a bulk transfer of the fluid.
The sun with its radiation heats up both the sea surface and land. Sea has a more heating capacity, it absorbs much energy but gets warmed slower than the land. Temperature above the land rises and the air in the atmosphere above it gets warm. Warm air is less dense and the difference in air pressure leads the air to flow from sea to land.
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HQ5.40
Homework Answered Due Today, 11:59 PM
The reaction 3H₂(g) + N₂(g) → 2NH3(g) has an enthalpy of reaction of -92.6 kJ/mol. If 1 g of hydrogen and 2 g of nitrogen are
reacted, how much heat is produced (kJ)?
The amount of heat energy produced when 1 g of hydrogen and 2 g of nitrogen are reacted, is -6.61 KJ
How do i determine the heat energy produced?First, we shall obtain the limiting reactant. Details below:
3H₂ + N₂ -> 2NH₃
Molar mass of N₂ = 28 g/molMass of N₂ from the balanced equation = 1 × 28 = 28 g Molar mass of H₂ = 2 g/molMass of H₂ from the balanced equation = 3 × 2 = 6 gFrom the balanced equation above,
28 g of N₂ reacted with 6 g of H₂
Therefore,
2 g of N₂ will react with = (2 × 6) / 28 = 0.43 g of H₂
We can see that only 0.43 g of H₂ is needed in the reaction.
Thus, the limiting reactant is N₂
Finally, we the amount of heat energy produced. Details below:
3H₂ + N₂ -> 2NH₃ ΔH = -92.6 KJ
Molar mass of N₂ = 28 g/molMass of N₂ from the balanced equation = 1 × 28 = 28 gFrom the balanced equation above,
When 28 grams of N₂ reacted, -92.6 KJ of heat energy were produced.
Therefore,
When 2 grams of N₂ will react to produce = (2 × -92.6) / 28 = -6.61 KJ
Thus the heat energy produced from the reaction is -6.61 KJ
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the average kinetic energy of the gas molecule is greatest in which container
Answer:
Explanation:
average kinetic energy of a gas molecule really only depends on the temperature, so which ever container is at the highest temperature is the answer
In comparison to other fundamental states of matter, plasma has the highest kinetic energy. This is due to the fact that particles in a plasma travel more quickly than those in a corresponding solid, liquid, or gas.
What is kinetic energy ?
The energy that an object has as a result of motion is known as kinetic energy. It is described as the effort required to move a mass-determined body from rest to the indicated velocity. The body holds onto the kinetic energy it acquired during its acceleration until its speed changes.
The reason why molecules in gases have the largest kinetic energy is because they have more space between one another, experience less intermolecular force, and travel at a faster rate, which results in higher energy.
The temperature has a direct impact on the average kinetic energy of the particles inside a container.
Thus, In comparison to other fundamental states of matter, plasma has the highest kinetic energy.
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If a molecule has a triple bond, what can be assumed about the bond compared to a molecule with a double bond?
The length is more than a double bond
The strength is more than a double bond
The strength is less than a double bond
The length is the same as a double bond
While the length is less than a double bond, the strength exceeds that of a double bond.
Within the same molecule, how do triple bonds differ from double bonds?Due to the presence of two bonds rather than one, triple bonds are stronger than double bonds. An sp-sp sigma bond is created when one of each carbon atom's two sp hybrid orbitals intersects with the corresponding orbital from the other carbon atom.
Compared to double bonds, are triple bonds more durable and longer?Six electrons are shared by a sigma bond, two bonds, and a triple bond. Double bonds are more powerful than single bonds, and triple bonds are more powerful than double bonds, according to experiments.
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Answer: third
Explanation:
What is the molarity of a solution in which 0.257 moles of HNO2 is dissolved in 490ml of water?
0.52 molar is the molarity of a solution in which 0.257 moles of HNO2 is dissolved in 490ml of water.
What do you mean by the term molarity ?The term molarity is defined as the number of moles of solutes are dissolved in per litre of solution. It is represented by the symbol "M". The unit of molarity is molar(M).
To calculate the molarity of a solution, divide the moles of solute by the volume of the solution expressed in liters.
The formula of molarity = a number of moles of solutes / litre of solution
Given:
Number of moles = 0.257 moles
Volume = 490ml = 0.49 litre
Molarity = ?
According to the definition of molarity,
Molarity = Number of moles of solute / litre of solution
Molarity = 0.257 moles / 0.49 litre
Molarity = 0.52 molar
Thus, the molarity of a solution in which 0.257 moles of HNO2 is dissolved in 490ml of water is 0.52 molar.
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Consider the complete reaction of 63.2 g of HCl with excess oxygen gas. What mass of chlorine gas product forms? 4 HCl(g) + O2(g) → 2 H2O(l) + 2 Cl2(g)
The mass of chlorine gas product formed is 61.4 g.
What is the mass ?
First, we need to determine which reactant is limiting and which is in excess. To do this, we can use the given mass of HCl and convert it to moles:
63.2 g HCl × (1 mol HCl/36.46 g HCl) = 1.73 mol HCl
Next, we can use stoichiometry to determine how many moles of \(Cl_{2}\) will be produced from 1.73 mol of HCl:
1.73 mol HCl × (2 mol \(Cl_{2}\)/4 mol HCl) = 0.865 mol \(Cl_{2}\)
Finally, we can convert the moles of \(Cl_{2}\) to grams using its molar mass:
0.865 mol \(Cl_{2}\) × (70.91 g \(Cl_{2}\)/1 mol \(Cl_{2}\)) = 61.4 g \(Cl_{2}\)
Therefore, the mass of chlorine gas product formed is 61.4 g.
What is stoichiometry ?
Stoichiometry is a branch of chemistry that deals with the calculation of the quantities of reactants and products involved in a chemical reaction. It involves using balanced chemical equations to calculate the amounts of reactants required to produce a certain amount of product, or the amount of product that can be obtained from a given amount of reactant. Stoichiometry is an important tool for predicting the outcomes of chemical reactions and for designing chemical processes in industry.
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What is the net ionic equation for the reaction between Na2SO4 and CaCl2?
A. 2Na+(aq) + 2Cl-(aq) 2NaCl(aq)
B. Na2SO4(aq) + CaCl2(aq) CaSO4(s) + 2NaCl(aq)
C. SO42-(aq) + Ca2+(aq) CaSO4(s)
D. 2Na+(aq) + SO42-(aq) + Ca2+(aq) + 2Cl-(aq) CaSO4(s) + 2Na+ + 2Cl-(aq)
The net ionic equation for the reaction between Na₂SO₄ and CaCl₂ is:
SO₄²¯(aq) + Ca²⁺(aq) —> CaSO₄(s)
(Option C)
Dissociation equationIn solution, Na₂SO₄ and CaCl₂ will dissociate as follow
Na₂SO₄(aq) —> 2Na⁺(aq) + SO₄²¯(aq)
CaCl₂(aq) —> Ca²⁺(aq) + 2Cl¯(aq)
How to write the net ionic equationNa₂SO₄(aq) + CaCl₂(aq) —>
2Na⁺(aq) + SO₄²¯(aq) + Ca²⁺(aq) + 2Cl¯(aq) —> CaSO₄(s) + 2Na⁺(aq) + 2Cl¯(aq)
Cancel out the spectator ions (i.e Na⁺ + Cl¯) to obtain the net ionic equation
SO₄²¯(aq) + Ca²⁺(aq) —> CaSO₄(s)
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when two water molecules are near each other, a hydrogen bond will form between the more positive and the more negative atoms of neighboring water molecules. t or f
It is false that when two water molecules are near each other, a hydrogen bond will form between the more positive and the more negative atoms.
What is the composition of a water particle?A water particle is composed of two hydrogen atoms and one oxygen atom.
How do water particles bond?When there are two water particles close a bond is formed between the hydrogen atom of one particle and the oxygen atom of a neighbor water particle, which means there is a hydrogen-oxygen bond rather than a hydrogen-hydrogen bond.
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It is True that when two water molecules are near each other, a hydrogen bond will form between the more positive hydrogen atom of one molecule and the more negative oxygen atom of the neighboring molecule.
How is water molecules formed?A water molecule is made up of two hydrogen atoms bonded to an oxygen atom, and its overall structure is bent. This is because the oxygen atom, forms a bond with hydrogen atoms. It also carries two pairs of unshared electrons. All of the electron pairs (shared and unshared) repel each other.
Hydrogen bond will form between the more positive and the more negative atoms of neighboring water molecules when two water molecules are near each other. This is due to the polar nature of water molecules, which have a slightly positive charge on the hydrogen atoms and a slightly negative charge on the oxygen atoms. These hydrogen bonds give water many of its unique properties, such as its high surface tension and high heat of vaporization.
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C6H12O6 + 602 → 6CO2 + 6H₂O
The most efficient ratio is
1 C6H12O6 6 02.
Which set of reactants will be the most
efficient (least wasteful of materials) for
the reaction?
A. 1.0 mol C6H12O6 and 3.0 mol O₂
B. 1.5 mol C6H₁2O6 and 3.0 mol O₂
C. 3.0 mol C6H₁2O6 and 6.0 mol O₂
D. 0.5 mol C6H₁2O6 and 3.0 mol O₂
Answer:
D
Explanation:
The ratio of C6H12O6 (which will be referred to as "the carb") to oxygen is 1 to 6, so if we find an answer which has the same ratio, it should be chosen. A is 1:3
B is even worse with a ratio of the carb to oxygen of 1:2
C is the same as B, 1:2
D has a ratio of the carb to oxygen of 1:6, which is what we are looking for.
What is the chemical formula of CuH10N2O11.
A chemical formula tells us the number of atoms of each element in a compound. It contains the symbols of the atoms of the elements present in the compound as well as how many there are for each element in the form of subscripts.
Hope I helped :)
Based on the Law of Conservation of Mass, what mass of products form when baking soda decomposes?
NaHCO3 → Na₂CO3 + H₂O + CO₂
Give your answer to the correct number of significant figures.
(g) Sodium Chloride = [?]
Based on the Law of Conservation of Mass, the mass of products form when baking soda decomposes is 168 g/mole.
What is law of conservation of mass?The law of conservation of mass or principle of mass conservation states that for any system closed to all transfers of matter and energy, the mass of the system must remain constant over time, as the system's mass cannot change, so quantity can neither be added nor be removed.
From the equation of NaHCO3 → Na₂CO3 + H₂O + CO₂ , we have
Mass of baking soda = 2 x molar mass
Molar mass of NaHCO₃ = 84.007 g/mole
Mass of baking soda = 2 x 84.007 g/mole
Mass of baking soda = 168.014 g/mole= 168 g/mole
Therefore, based on the Law of Conservation of Mass, the mass of products form when baking soda decomposes is 168 g/mole.
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The bonds of the products store 27 kJ more energy than the bonds of the
reactants. How is energy conserved during this reaction?
O A. The reaction creates 27 kJ of energy when bonds form.
B. The reaction uses up 27 kJ of energy when bonds break.
O c. The reaction system absorbs 27 kJ of energy from the
surroundings.
O D. The surroundings absorb 27 kJ of energy from the reaction
system.
Answer: D
Explanation: i found the anwser key
Answer: I believe that the answer is C
Explanation:
If a steam reforming line processes methane at a temperature of
725.0°C and a pressure of 12.00 atm, what is the volume (in L) that
20.0 moles of methane would occupy in the reactor?
Answer:
ideal gas law. PV=nRT
Explanation:
pressure x volume = #moles x R (constant of 8.31) x temp
put 27,520 in scientific notation
Hello, There!
Question↓
put 27,520 in scientific notation
Answer↓
2.752 × 10 to the 4th power Is the Correct Answer!
xXxAnimexXx
hope this helps you!! ^ω^
Answer:
2.7 x 10 to the forth
Explanation:
Scientific notation is a way of expressing numbers that are too large or too small (usually would result in a long string of digits) to be conveniently written in decimal form. It may be referred to as scientific form or standard index form, or standard form in the UK. This base ten notation is commonly used by scientists, mathematicians, and engineers, in part because it can simplify certain arithmetic operations. On scientific calculators it is usually known as "SCI" display mode.
Which of the following is an incorrect representation for a neutral atom?
36Li
613C
3063Cu
1530P
This representation suggests that the element is phosphorus (P) with a mass number of 30, which is incorrect. The correct mass number for phosphorus is approximately 30.97. The incorrect representation for a neutral atom is 36Li
To determine the correct representation for a neutral atom, we need to consider the atomic number (Z) and mass number (A) of the element. The atomic number represents the number of protons in the nucleus, while the mass number represents the sum of protons and neutrons.
Let's analyze the given representations:
36Li:
This representation suggests that the element is lithium (Li) with a mass number of 36, which is incorrect. The correct mass number for lithium is approximately 6.94.
613C:
This representation suggests that the element is carbon (C) with a mass number of 13, which is correct. Carbon has different isotopes, and 13C represents one of its stable isotopes.
3063Cu:
This representation suggests that the element is copper (Cu) with a mass number of 63, which is correct. Copper has different isotopes, and 63Cu represents one of its stable isotopes.
1530P:
This representation suggests that the element is phosphorus (P) with a mass number of 30, which is incorrect. The correct mass number for phosphorus is approximately 30.97.
Therefore, the incorrect representation for a neutral atom is 36Li, as it does not match the known properties of lithium.
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Heart, 5 stars, and Brainiest if right! Answer needed ASAP PLEASE!What type of forces do not change the motion of an object?
A. Acceleration forces
B. Balanced forces
C. Inertia forces
D. Unbalanced forces
Answer:
unbalanced force
Explanation:
pls mark me brainliest
Answer:
B. balanced forces
Explanation:
the motion of an object will not change if the forces pushing or pulling the object are balanced
Help me out
On another planet, the isotopes of titanium have the given natural abundances.
The average atomic mass of titanium on the given planet is approximately 46.68164 atomic mass units (u). The average atomic mass may vary depending on the specific isotopic composition of titanium found on different celestial bodies or regions.
To calculate the average atomic mass of titanium on the given planet, we need to consider the natural abundances and masses of each isotope of titanium.
The average atomic mass is calculated by multiplying the natural abundance of each isotope by its respective mass and summing them up.
Let's perform the calculation step by step:
Step 1: Multiply the abundance of each isotope by its mass:
(73.700% * 45.95263 u) + (15.000% * 47.94795 u) + (11.300% * 49.94479 u)
Step 2: Calculate the individual contributions from each isotope:
= (0.737 * 45.95263) + (0.150 * 47.94795) + (0.113 * 49.94479)
Step 3: Add up the individual contributions:
= 33.84765431 + 7.1921925 + 5.64179347
Step 4: Sum up the contributions:
= 46.68164 u
Therefore, the average atomic mass of titanium on the given planet is approximately 46.68164 atomic mass units (u).
It's important to note that the calculation assumes the provided natural abundances are accurate and representative of the titanium isotopes on that planet.
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How many grams of a 25% (m/m) sodium chloride solution contain 0.250 moles of sodium chloride?
Approximately 1.167 grams of the 25% (m/m) NaCl solution would contain 0.250 moles of sodium chloride.
To determine the mass of a 25% (m/m) sodium chloride (NaCl) solution containing 0.250 moles of sodium chloride, we need to consider the concentration and molar mass of NaCl.
The percentage (m/m) concentration indicates the mass of solute (NaCl) present per 100 grams of the solution. Therefore, a 25% (m/m) NaCl solution contains 25 grams of NaCl per 100 grams of the solution.
First, we calculate the mass of NaCl in the given solution:
Mass of NaCl = (25% / 100%) x Mass of solution
= (25 / 100) x Mass of solution
Next, we can determine the mass of the solution required to have 0.250 moles of NaCl using the molar mass of NaCl, which is approximately 58.44 g/mol.
Mass of NaCl = Moles x Molar mass
Mass of solution x (25 / 100) = 0.250 moles x 58.44 g/mol
Now, we can solve for the mass of the solution:
Mass of solution = (0.250 moles x 58.44 g/mol) / (25 / 100)
= 1.167 g
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Which description of groundwater is correct?
Groundwater cannot be replenished and is, therefore, a limited resource.
Groundwater cannot be replenished, but its supply is practically infinite.
Groundwater can be replenished by rainfall.
Groundwater can be replenished through reactions in Earth’s core.
This table lists plant adaptations and their functions.
Adaptation Function
flower aids in reproduction
bark ?
cuticle stops water loss
thorns stops predators
Which phrase correctly completes the chart?
A. stores seeds
B. provides protection
C. attracts pollinators
D. carries water
6 The pressure of 8.06 L of an ideal gas in a flexible container is decreased to
one-third of its original pressure, and its absolute temperature is decreased by
one-half. What is the final volume of the gas?
The pressure of 8.06 L of an ideal gas in a flexible container is decreased to one-third of its original pressure, and its absolute temperature is decreased by one-half and the final volume of gas is 12.09 L
The volume of gas in a flexible container is 8.06 L
The pressure is P1=X atm
Temperature is T1=YK
Let us calculate the volume V2 if Pressure P2=X/3 atm
Temperature T2=Y/2 K
Using the ideal gas equation, we get
P1V1/T1=P2V2/T2
V2=V1P1T2/T1P2
V2=8.06LX atm×Y/2K/YK.X/3 atm
V2=8.06x3/2
V2=12.09 L
The combined gas law is an amalgamation of the three previously known laws which are- Boyle's law PV = K, Charles's law V/T = K, and Gay-Lussac's law P/T = K.Applications of the combined gas law exist. This rule is applicable when the pressure, volume, and temperature are constant but the quantity of gas varies. The law can predict things like cloud formation, refrigerators, and air conditioners, for instance.To learn more about combined gas law visit:
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Please I need help thank you
Answer:
its sodium hydroxide
Explanation:
in the following chemical reaction between H_2 and Cl_2 to produce HCl, what is the sum of the mass of HCl produced plus the mass of left over reactants when 0.40 g of H_2 completely reacts with 12.35 g of Cl_2?
H_2(g) + Cl_2(g) → 2HCl(g)
Answer:
Left over mass of hydrogen = 0.06 g
Mass of HCl produced = 12.41 g
Explanation:
Given data:
Mass of H₂ = 0.40 g
Mass of Cl₂ = 12.35 g
Mass of left over reactant = ?
Mass of HCl produced = ?
Solution:
Chemical equation:
H₂ + Cl₂ → 2HCl
Number of moles of H₂:
Number of moles = mass / molar mass
Number of moles = 0.40 g/ 2 g/mol
Number of moles = 0.2 mol
Number of moles of Cl₂:
Number of moles = mass / molar mass
Number of moles = 12.35 g/ 71 g/mol
Number of moles = 0.17 mol
Now we will compare the moles of HCl with H₂ and Cl₂.
H₂ : HCl
1 : 2
0.2 : 2×0.2 = 0.4
Cl₂ : HCl
1 : 2
0.17 : 2 × 0.17 = 0.34
Chlorine is limiting reactant.
Mass of HCl produced:
Mass = number of moles × molar mass
Mass = 0.34 mol × 36.5 g/mol
Mass = 12.41 g
Leftover mass of hydrogen:
Cl₂ : H₂
1 : 1
0.17 : 0.17
Number of moles of H₂ react with Cl₂ are 0.17.
Moles remain unreacted = 0.2 - 0.17 = 0.03 mol
Mass left over:
Mass = number of moles × molar mass
Mass = 0.03 mol × 2 g/mol
Mass = 0.06 g
The sum of the mass of HCl produced plus the mass of left over reactants is:
Mass of hydrogen = 0.06 g
Mass of HCl = 12.41 g
Chemical ReactionGiven:
Mass of H₂ = 0.40 g
Mass of Cl₂ = 12.35 g
Mass of left over reactant = ?
Mass of HCl produced = ?
Chemical equation: H₂ + Cl₂ → 2HClNumber of moles of H₂:
Number of moles = mass / molar mass
Number of moles = 0.40 g/ 2 g/mol
Number of moles = 0.2 mol
Number of moles of Cl₂:
Number of moles = mass / molar mass
Number of moles = 12.35 g/ 71 g/mol
Number of moles = 0.17 mol
The moles of HCl with H₂ and Cl₂.
H₂ : HCl
1 : 2
0.2 : 2×0.2 = 0.4
Cl₂ : HCl
1 : 2
0.17 : 2 × 0.17 = 0.34
The chlorine is limiting reactant.
Mass of HCl produced:
Mass = number of moles × molar mass
Mass = 0.34 mol × 36.5 g/mol
Mass = 12.41 g
Leftover mass of hydrogen:
Cl₂ : H₂
1 : 1
0.17 : 0.17
Number of moles of H₂ react with Cl₂ are 0.17.
Moles remain unreacted = 0.2 - 0.17 = 0.03 mol
Mass left over:
Mass = number of moles × molar massMass = 0.03 mol × 2 g/molMass = 0.06 gLearn more about "Moles":
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100 grams of reactants completely react to form the products in a reaction how many grams of product are produced
If 100 grams of reactants completely react to form the products in a reaction, the amount of products produced will also be 100 grams.
Law of conservation of massThe law of mass conservation states that in a closed system, the total mass remains constant before and after a chemical reaction. This means that the mass of the reactants is equal to the mass of the products.
To solve the given problem, the law of mass conservation can be applied by assuming that the reaction is complete.
Thus, if 100 grams of reactants completely react, it implies that the total mass of the products formed will also be 100 grams, assuming no other substances are involved in the reaction.
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