A liquid substance that could be used in the laboratory for dissolving dry mortar on floor tiles is vinegar; (i) removing KMnO₄, stains is sodium metabisulfite solution; drying acid anhydrides is concentrated sulfuric acid.
What are solvents?Solvents are substances usually liquids, but may also be gases or solids that dissolve other substances known as solutes.
Solvents are usually used as cleansing agents.
One possible liquid substance that could be used for dissolving dry mortar on floor tiles is a mild acid solution, such as diluted hydrochloric acid or vinegar.
KMnO₄ stains are often difficult to remove, but one substance that can be used is sodium metabisulfite (Na₂S₂O₅) solution. Sodium metabisulfite acts as a reducing agent and can effectively neutralize and remove KMnO₄ stains.
Concentrated sulfuric acid is commonly used in the laboratory as a drying agent. It has a strong affinity for water and can efficiently absorb moisture, including water present in acid anhydrides.
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A 54.2 g sample of polystyrene, which has a specific heat capacity of 1.880 J-gc, is put into a calorimeter (see sketch at
right) that contains 100.0 g of water. The temperature of the water starts off at 21.0 °C. When the temperature of the water stops
changing it's 34.3 °C. The pressure remains constant at 1 atm.
Calculate the initial temperature of the polystyrene sample. Be sure your answer is rounded to the correct number of significant
digits.
thermometer.
insulated
container
water
sample.
a calorimeter
Tthe initial temperature of the polystyrene sample is 39.4°C.
Given: Mass of polystyrene sample = 54.2 gSpecific heat of polystyrene = 1.880 J-g°CWater mass = 100.0 g Initial water temperature = 21.0°CWater final temperature = 34.3°CPressure remains constant at 1 atmFormula used:Heat gained by water = heat lost by polystyreneHence,Heat lost by polystyrene = Heat gained by water=> mcΔT = mcΔTwhere,m = mass of polystyrene or waterc = specific heat capacityΔT = change in temperatureThe temperature change is ΔT = 34.3°C - 21.0°C = 13.3°CNow we can use this temperature change to calculate the initial temperature of the polystyrene.Taking the water's specific heat capacity, c = 4.184 J/g°CHeat gained by water = (100.0 g)(4.184 J/g°C)(13.3°C) = 5574 JHeat lost by polystyrene = 5574 JTaking the polystyrene's specific heat capacity, c = 1.880 J/g° ) = 13.3°C Now let's calculate the mass of polystyrene using the specific heat capacity formula.5574 J = (54.2 g)(1.880 J/g°C)(13.3°C - Ti)Ti = 39.4°C
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_________ is caused by deficiency of Vitamin A
Answer:
Vitamin A deficiency can result from inadequate intake, fat malabsorption, or liver disorders.
Write a reflection about your learning in this unit. Your reflection should be at
least three sentences. Use the following sentence starters as a guide.
• I feel confident about developing a budget because ...
• It is challenging to understand tax benefits because ...
• One way that inflation could impact my life is . . .
• In order to remember the role of regulatory agencies, one strategy I used
was ...
• If I am not sure how to figure out how to calculate the cost of my
retirement, one strategy I can use is ...
Despite the fact that it was first challenging for me to determine whether a change was physical or chemical, this lesson provided me with the knowledge I needed.
What are three possible effects of inflation?This course has promoted a deeper comprehension of the universe and its guiding principles. Although it was originally difficult for me to tell whether a change was physical or chemical, this lesson gave me the knowledge I needed to know. Now that I know this, I can relate to other attributes, and I think my improved skill will be useful in future units as well.
The CPI, which measures inflation, ensures a healthy economy by keeping inflation rates low. But when the rate of inflation increases quickly, it may have adverse economic repercussions such as diminished purchasing power, higher interest rates, slower economic growth, and others.
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16) Select the best answer.
Round the answer to the correct number of significant figures.
10.05
2.8899 = 29.043495
29.0435
29.04
29.043
29
29 is not the best answer depends on the context and the rules for significant figures.
What is best answer?
The best answer depends on the context and the rules for significant figures. If we assume that we need to round to three significant figures:
10.05 has three significant figures, so it is already rounded correctly.2.8899 has four significant figures, so we need to round it to three significant figures. The third significant figure is 9, which is greater than 5, so we round up the second significant figure (which is 8) to 9. Therefore, 2.8899 rounded to three significant figures is 2.89.29.0435 has five significant figures, so we need to round it to three significant figures. The third significant figure is 0, which is less than 5, so we do not round up the second significant figure (which is 4). Therefore, 29.0435 rounded to three significant figures is 29.0.29.04 has four significant figures, so it is already rounded correctly.29.043 has four significant figures, so we need to round it to three significant figures. The third significant figure is 3, which is less than 5, so we do not round up the second significant figure (which is 4). Therefore, 29.043 rounded to three significant figures is 29.0.29 has one significant figure, so it is not rounded correctly to three significant figures.Therefore, 29 is not the best answer.
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CO2(g)+CCl4(g)⇌2COCl2(g) .
Calculate ΔrG for this reaction at 125 ∘C under the following conditions.
PCO2= 0.100 bar
PCCl4= 0.160 bar
PCOCl2= 0.750 bar
The ΔG for the reaction shown is -11.76 kJ/mol.
What is equilibrium constant?The equilibrium constant is a value that shows the extent to which reactants are converted to products in a reaction. We have to first obtain the equilibrium constant as follows;
K = (0.750)^2/(0.160) (0.100) = 35
Now;
Using the formula;
ΔG = -RTlnK
ΔG = -(8.314 × 398 × ln 35)
ΔG = -11.76 kJ/mol
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equation for sodium chloride and sodium oxide
Why does a rocket accelerate when launched into Earth's orbit?
Answer:
Earth's gravity is still pulling down on the rocket. When a rocket burns propellants and pushes out exhaust, that creates an upward force called thrust. To launch, the rocket needs enough propellants so that the thrust pushing the rocket up is greater than the force of gravity pulling the rocket down.
Many scientists think that this single event caused the extinction of most the dinosaurs which led to the rise of mammals which geologic principle is this an example of
A. Geographism
B. Gradualism
C. Catastrophism
D. Uniformitarianism
Answer:
C. Catastrophism
Explanation:
Place the following compounds in order of decreasing strength of intermolecular forces. I. CH3CH2CH2CH2CH2CH3 II. (CH3)3CCH3 IIL (CH3)3CCH2CH3 1) C) II >III> I 2) Identify the compound with the lowest boiling point. A) CH3CN B) CH3CHO C) CH3CH2CH3 D) (CH3)20 E) CH3OCH3 2) 3) Place the following substances in order of increasing vapor pressure at a given temperature SF6 SiH4 SF4 3) A) SiH4
The following compounds are listed in decreasing order of intermolecular force strength:
CH₃CH₂CH₂CH₂CH₂CH₃ > (CH₃)₃CCH₂CH₃ > (CH₃)₃CCH₃
1) The following compounds are listed in decreasing order of intermolecular force strength: as branching grows, intermolecular force falls, or as surface area reduces, intermolecular force increases.
CH₃CH₂CH₂CH₂CH₂CH₃ > (CH₃)₃CCH₂CH₃ > (CH₃)₃CCH₃
2) The lowest boiling point and weakest van der wall forces are seen in the combination CH3CH2CH3.
3) The compounds listed below, in ascending sequence of increasing vapour pressure at a specific temperature, are as follows:
SF₄ < SF₆ < SiH₄
The most polar molecule and one with the lowest vapour pressure is SF4.
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The half-life of carbon-14 is 5715 years. How long would it take for 100 grams to decay to
12.5 grams
We are given:
half-life of carbon = 5715 years
Initial mass = 100 grams
Final mass = 12.5 grams
Finding the time taken:
Number of half-lives:
We know that in the relation:
\(\frac{Final\_mass}{Initial\_mass} = \frac{1}{2^{n}}\), n is the number of half-lives taken
replacing the given values:
12.5 / 100 = 1/2ⁿ
1/8 = 1/2ⁿ
2ⁿ = 8
2ⁿ = 2³
n = 3
Hence, it took 3 half-lives to reduce the mass to 12.5 grams
Number of years:
Time taken = 3 half-lives
we know that one half-life is 5715 years, replacing that value:
Time taken = 3*(5715) years
Time taken = 17145 years
Therefore, after 17145 years, a 100 gram sample of carbon will decay and only 12.5 grams will remain
lphins... Acid. (b) Chlorine reacts with red hot iron powder to give Iron(III) Chloride but not Iron (II) Chloride. Explain. (1Mark)
(a) Because acid is caustic, dolphins can perish from exposure to it. Acids are compounds that give other things protons (H+). Acid can react with the proteins and lipids in dolphins' skin when they come into touch with it, leading to chemical burns and damage to the underlying tissue. Systemic consequences from this include death.
(b) Because chlorine is a potent oxidizer, it interacts with red-hot iron powder to produce Iron(III) chloride (FeCl3) rather than Iron(II) chloride (FeCl2). FeCl3 is created when chlorine at high temperatures rapidly accepts electrons from iron atoms. Contrarily, iron interacts with HCl, a less potent oxidizer than chlorine, to produce FeCl2.
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what is the atomic theory?
The atomic theory is a scientific model that describes the nature and behavior of atoms, which are the fundamental building blocks of matter. The atomic theory provides an understanding of the structure, properties, and interactions of atoms.
The key principles of the atomic theory include:
1. Elements consist of atoms: The theory states that all substances are composed of tiny, indivisible particles called atoms. Each element is made up of atoms that have specific properties and characteristics.
2. Atoms of the same element are identical: Atoms of the same element are identical in terms of their chemical properties, mass, and behavior. For example, all hydrogen atoms are the same, and all carbon atoms are the same.
3. Atoms combine to form compounds: Atoms can combine with one another in specific ratios to form compounds. Different elements can join together to create molecules with unique chemical properties.
4. Atoms are rearranged in chemical reactions: In a chemical reaction, atoms are rearranged, but they are neither created nor destroyed. The total number of atoms remains constant, illustrating the principle of conservation of mass.
5. Atoms are divisible into subatomic particles: While the early atomic theory proposed that atoms were indivisible, it was later discovered that atoms are composed of even smaller particles, including protons, neutrons, and electrons.
The atomic theory has evolved over time with contributions from various scientists such as John Dalton, J.J. Thomson, Ernest Rutherford, Niels Bohr, and many others.
These scientists conducted experiments and made observations that helped refine our understanding of atoms and their structure, leading to the development of more detailed atomic models, such as the Bohr model and the modern quantum mechanical model.
Which is a LIMIT that authors telling stories using aural media, such as radio plays, must deal with?
A. listeners can hear how each actor says lines of dialogue
B. sound effects can enhance the story's action
C. music can reinforce the story's emotional moments
D. characters thoughts and feelings must be spoken aloud
A solution of glucose sugar (C6H₁206) labeled 2.89 ppm. What is the molarity of the solution?
The molarity of the solution is 0.00016 M
To determine the molarity of a solution, you need to know:
The mass of the solute (in this case, glucose) The volume of the solvent (in this case, probably water).From the information you provided, the concentration of the solution is given in parts per million (ppm). To convert from ppm to molarity, you need to know:
The molecular weight of the solute The density of the solvent.The molecular weight of glucose is 180.16 g/mol. If the solvent is water, the density is about 1 g/mL. Here is the conversion calculation:
1 ppm = 1 mg/L = (1/180.16 g/mol) / (1 g/mL) = 5.55 x 10^-6 mol/L
So, the molarity of the solution is: 2.89 ppm * 5.55 x 10^-6 mol/L/ppm = 1.60 x 10^-4 mol/L = 0.00016 M
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Answer:
Explanation:
Before telling the answer remember some terminology
molarity=No. of moles of solute/Volume of the solution in liters
M=n/V
n=Mass of solute(w)/Molecular mass(M)
V=volume of solution(v)/1000
ppm =(parts per million)
ppm of solute=(mass of solute/mass of solution)*10^{6}
2.89gms of solute in 1000000 of solution
5.22gm of solute
5.22in 1000 gms in litre=5220g\(L^{-1}\)
2.89 gms are present in 2.59/5220=5.5363*\(10^{-4}\)
Hence the molarity of the solution is 5.5363*\(10^{-4}\)mol \(L^{-1}\)
Based on a Kc value of 0.250 and the given data table, what are the equilibrium concentrations of XY, X, and Y , respectively?
From the solution that we have in the question;
The concentration of X and Y is 0.28 MThe concentration of XY is 0.32 MWhat is the equilibrium constant?The equilibrium constant, denoted as K, is a value that quantitatively represents the ratio of the concentrations of products to reactants at equilibrium in a chemical reaction.
It is a fundamental concept in chemical equilibrium.
The value of the equilibrium constant provides valuable information about the position of equilibrium and the relative concentrations of species involved in a chemical reaction.
Kc = [X] [Y]/[XY]
\(0.25 = (0.1 + x)^2/(0.5 - x)\)
\(0.25(0.5 - x) = (0.1 + x)^2\)
\(0.125 - 0.25x =0.01 + 0.2x + x^2\\ x^2 + 0.45x - 0.115 = 0\)
x = 0.18 M
The equilibrium amount of X and Y= 0.28 M and the equilibrium concentration of XY = 0.32 M
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Based on the answer to the question that we have;
A 0.28 M concentration of X and Y exists at equilibriumXY's concentration at equilibrium is 0.32 M.The equilibrium constantThe ratio of the product to reactant concentrations in a chemical reaction at equilibrium is represented quantitatively by the equilibrium constant, abbreviated as K.
It is a cornerstone of the theory of chemical equilibrium.
A chemical reaction's equilibrium position and the relative concentrations of the species involved can both be learned from the equilibrium constant's value.
Kc = [X][Y]/[XY]
\(0.25 = (0.1 + x)^2/(0.5 - x)\\0.25(0.5 - x) = (0.1 +x)^2\\0.125 - 0.25x = 0.01 +0.2x +x^2\\= 0.18 M\)
The equilibrium concentration of;
XY =0.5 - 0.18
=0.32 M
Then the equilibrium amount of
X and Y is
0.1 + 0.18= 0.28 M.
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in what condition does the electron pair arrangment and geometry of molecules become identical?
A, when the number of bonding electrons is equal to the number of non bonding electrons
B, when the number of of bonding electrons became even
C, when there are no non-bonding electrons
D, when the sum of non-bonding electrons become odd
A. When the number of bonding is equal to the number of non bonging electrons.
What is electron arrangement and geometry of molecules?Geometry of molecules: The geometry of a molecule determines the reactivity, polarity and biological activity of that molecule. Electron arrangement: electron geometry is found by taking both lone electron pairs and bonds in a molecule.
In atomic physics and quantum chemistry, the electron configuration exists as the distribution of electrons of an atom or molecule in atomic or molecular orbitals.
Molecular geometry, also understood as the molecular structure exists as the three-dimensional structure or arrangement of atoms in a molecule. Understanding the molecular structure of a compound can assist specify the polarity, reactivity, phase of matter, color, magnetism, as well as biological activity.
An electron arrangement exists as a path in which electrons are placed in an atom.
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What mass of NaCl is needed to produce a 26.4 mol/L with a 1.7 L volume?
we would need 2625.13 grams (or 2.62513 kilograms) of NaCl.
To calculate the mass of NaCl required to produce a 26.4 mol/L solution with a 1.7 L volume, we need to use the formula that relates the mass of solute, moles of solute, and molarity:Molarity (M) = moles of solute / liters of solution Rearranging this formula, we get:moles of solute = Molarity (M) x liters of solutionWe can use this formula to find the moles of NaCl needed:moles of NaCl = 26.4 mol/L x 1.7 L = 44.88 molNow, we can use the molar mass of NaCl to convert from moles to grams. The molar mass of NaCl is 58.44 g/mol:mass of NaCl = moles of NaCl x molar mass of NaClmass of NaCl = 44.88 mol x 58.44 g/mol = 2625.13 gTo produce a 26.4 mol/L solution with a 1.7 L volume.
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Two asteroids are 75,000 m apart one has a mass of 8 x 10^7 N what is the mass of the other asteroid
The mass of the asteroid is C. 1.2 x \(10^{12}\) Kg
To find the mass of the other asteroid, we can rearrange the equation for the gravitational force between two objects:
F = (G * m1 * m2) / \(r^{2}\)
where F is the force of gravity, G is the gravitational constant, m1 and m2 are the masses of the two asteroids, and r is the distance between them.
Given that the distance between the asteroids is 75000 m, the force of gravity between them is 1.14 N, and one asteroid has a mass of 8 x \(10^{7}\) kg, we can substitute these values into the equation and solve for the mass of the other asteroid (m2):
1.14 N = (6.67430 × \(10^{-11}\) N \(m^{2}\)/\(Kg^{2}\) * 8 x \(10^{7}\) kg * \(m2\)) / \((75000 m)^{2}\)
Simplifying and solving the equation, we find that the mass of the other asteroid (m2) is approximately 1.2 x \(10^{12}\) kg. Therefore, Option C is correct.
The question was incomplete. find the full content below:
Two asteroids are 75000 m apart one has a mass of 8 x \(10^{7}\) kg if the force of gravity between them is 1.14 what is the mass of the asteroid
A. 3.4 x \(10^{11}\) kg
B. 8.3 x \(10^{12}\) kg
C. 1.2 x \(10^{12}\) kg
D. 1.2 x \(10^{10}\) kg
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is there anything smaller than an atom
Answer:
subatomic particles are actually small than atoms
Yes, particles such as protons, neutrons, and electrons that make up the atom are smaller than atoms.
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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Which one is not an organic coumpounds
Answer:
A
Explanation:
There are many definitions, and all of them are organic under some definition. The answer is probably A because it is the only one without hydrogen, and sometimes molecules without hydrogen are counted as being inorganic. A is CCl2F2, which is comprised of two chlorine atoms, two fluorine atoms, and a carbon atom.
HELP!!!
Which of the following is an example of a chemical change?
А
cutting paper
B
ice melting in a glass
c
wood burning in a fireplace
D
defrosting food in the microwave
Answer:
C. Burning wood
Explanation:
BURNING. Burning is a non-reversible chemical change. When you burn wood, the carbon in the wood reacts with oxygen in the air to create ash and smoke, and energy in the form of light and heat. This is a permanent change that cannot be undone – you cannot turn ashes back into wood.
Phosphorus-32 has a half life of 14.0 days. A 40.0g sample is being shipped. It takes 27 days to arrive, how much P-32 remains?
The mass of P-32 remaining after 27 days, if the initial mass is 40g is 10.5 g.
What is half life of a radioactive element?
The half-life of a radioactive isotope is the amount of time it takes for one-half of the radioactive isotope to decay.
The half-life of a specific radioactive isotope is constant; it is unaffected by conditions and is independent of the initial amount of that isotope.
The number of half lives in 27 days;
n = 27 days/14 days
n = 1.929
The mass of P-32 remaining after 27 days, if the initial mass is 40g;
mass remaining = 40 g / (2^1.929)
mass remaining = 40 g / 3.808
mass remaining = 10.5 g
Thus, the mass of P-32 remaining after 27 days, if the initial mass is 40g is 10.5 g.
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Experiment 4: A chemist mixes aqueous solutions of sodium hydroxide and aluminum chloride in a double-displacement reaction, which forms a white solid precipitate and a clear solution. Write the complete, balanced molecular equation for the reaction. Include physical states.
balanced equation:
The balanced molecular equation for the reaction between sodium hydroxide (NaOH) and aluminum chloride (\(AlCl_3\)) in aqueous solution can be written as follows: 2NaOH(aq) + 3\(AlCl_3\)(aq) → 3NaCl(aq) + \(Al(OH)_3\)(s)
In this reaction, sodium hydroxide (NaOH) reacts with aluminum chloride (\(AlCl_3\)) to form sodium chloride (NaCl) and aluminum hydroxide (\(Al(OH)_3\)). The coefficients in the balanced equation indicate the stoichiometric ratio between the reactants and products.
The physical states of the substances are indicated by the symbols (aq) for aqueous solutions and (s) for the solid precipitate.
The reaction is a double-displacement reaction, also known as a precipitation reaction. Double-displacement reactions involve the exchange of ions between two compounds, resulting in the formation of a precipitate.
In this case, sodium hydroxide and aluminum chloride react to form sodium chloride and aluminum hydroxide, with aluminum hydroxide being the white solid precipitate.
It's worth noting that the actual reaction might involve hydrated forms of the compounds, such as NaOH·x\(H_2O\) and \(AlCl_3\)·y\(H_2O\). However, for simplicity, these hydrated forms are not included in the balanced equation.
Overall, the balanced equation represents the chemical reaction between sodium hydroxide and aluminum chloride, showing the reactants, products, and their stoichiometric ratios.
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Which is the best definition of a CHARACTERISTC physical property?
30 example of redox reaction
Explain why a city that receives 10 hours more light each day has colder average temperatures. Explain
Explanation:
This would be similar to how the poles work in the North and South. Due to their placement, they recieve much more sun light than the rest of the Earth since we rotate horizontally. However, their placement also makes them farther from the sun than the rest of Earth, therefore not receiving as much heat.
A tank contains 15 kg of dry air and 0.17 kg of water vapor at 30°C and 100 kPa total pressure. Determine
(a) the specific humidity, (b) the relative humidity, and (c) the volume of the tank.
The volume of the tank is approximately 130.75 m³.
To solve this problem, we need to use the concept of air and water vapor mixture. The given data includes the mass of dry air and water vapor, temperature, and total pressure. We can calculate the specific humidity, relative humidity, and volume of the tank using the following steps:
(a) Specific humidity:
The specific humidity (ω) is defined as the ratio of the mass of water vapor (m_w) to the total mass of the air-water vapor mixture (m_t):
ω = m_w / m_t
Given that the mass of water vapor is 0.17 kg and the total mass of the mixture is 15 kg + 0.17 kg = 15.17 kg, we can calculate the specific humidity:
ω = 0.17 kg / 15.17 kg ≈ 0.0112
So, the specific humidity is approximately 0.0112.
(b) Relative humidity:
Relative humidity (RH) is the ratio of the partial pressure of water vapor (P_w) to the saturation vapor pressure of water (P_ws) at the given temperature, multiplied by 100:
RH = (P_w / P_ws) * 100
To find the relative humidity, we need to determine the saturation vapor pressure at 30°C. Using a vapor pressure table or equation, we can find that the saturation vapor pressure at 30°C is approximately 4.246 kPa.
Given that the total pressure is 100 kPa, the partial pressure of water vapor is 0.17 kg / 15.17 kg * 100 kPa = 1.119 kPa.
Now we can calculate the relative humidity:
RH = (1.119 kPa / 4.246 kPa) * 100 ≈ 26.34%
So, the relative humidity is approximately 26.34%.
(c) Volume of the tank:
To find the volume of the tank, we can use the ideal gas law equation:
PV = nRT
Where P is the total pressure, V is the volume, n is the number of moles, R is the gas constant, and T is the temperature in Kelvin.
First, we need to calculate the number of moles of dry air and water vapor in the tank. The number of moles (n) can be obtained using the equation:
n = m / M
Where m is the mass and M is the molar mass.
The molar mass of dry air is approximately 28.97 g/mol, and the molar mass of water vapor is approximately 18.015 g/mol.
For dry air:
n_air = 15 kg / 0.02897 kg/mol ≈ 517.82 mol
For water vapor:
n_water = 0.17 kg / 0.018015 kg/mol ≈ 9.43 mol
Now we can calculate the volume using the ideal gas law:
V = (n_air + n_water) * R * T / P
Given that R is the gas constant (8.314 J/(mol·K)), T is the temperature in Kelvin (30°C + 273.15 = 303.15 K), and P is the total pressure (100 kPa), we can calculate the volume:
V = (517.82 mol + 9.43 Mol) * 8.314 J/(mol·K) * 303.15 K / (100,000 Pa) ≈ 130.75 m³
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Which two substances are among the six most abundant elements in living things?
A. Potassium
B. Sodium
C. Phosphorus
D. Oxygen
The diagram below shows the layers in Earth's interior.
Which of these statements best describes a difference between the two layers?
Question 7 options:
Layer B is liquid but Layer A is solid.
Layer A is liquid but Layer B is solid.
Layer B is gaseous and Layer A is mainly solid.
Layer A is gaseous and Layer B is mainly solid.
Answer:
layer B is liquid because of the inner members and layer A is solid because of the outer members
In the Earth's interior, the statement that best describes a difference between the two layers is that layer B is liquid and layer A is solid.
What is Earth?Earth is the third planet from the Sun and the only place known in the universe where life has originated and found habitability. While Earth may not contain the largest volumes of water in the Solar System, only Earth sustains liquid surface water, extending over 70.8% of the Earth with its ocean, making Earth an ocean world. Earth's polar regions currently retain most of all other water with large sheets of ice covering ocean and land, dwarfing Earth's groundwater, lakes, rivers and atmospheric water. Land, consisting of continents and islands, extends over 29.2% of the Earth and is widely covered by vegetation.
Below Earth's surface material lies Earth's crust consisting of several slowly moving tectonic plates, which interact to produce mountain ranges, volcanoes, and earthquakes. Earth's liquid outer core generates a magnetic field that shapes the magnetosphere of Earth, largely deflecting destructive solar winds and cosmic radiation.
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