Gas chromatography-mass spectrometry (GC-MS) is an analytical method that combines both the mass spectrometer and the gas chromatograph to separate the chemical components of a sample mixture to detect the presence and then identify the compound.
What is Gas chromatography-mass spectrometry?Gas chromatography-mass spectrometry (GC-MS) can be described as an analytical method that combines the characteristics of gas chromatography and mass spectrometry to identify various substances within a test sample.
Applications of GC-MS include fire investigation, drug detection, environmental analysis, and identification of unknown samples, including that material samples.
The GC-MS is made of two major blocks: the gas chromatograph and the mass spectrometer. The gas chromatograph uses a capillary column whose features regarding molecule separation depend on the column's dimensions as well as the phase properties.
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What volume of 0.180 M KOH is needed to react completely with 15.1 mL of 0.190 M H2SO4
The volume of 0.180 M KOH that would be needed to completely react with 15.1 mL of 0.190 M [tex]H_2SO_4[/tex] will be 31.88 mL
Stoichiometric problemThe equation of the reaction involving KOH and [tex]H_2SO_4[/tex] is as follows:
[tex]2KOH + H_2SO_4 --- > K_2SO_4 + 2H_2O[/tex]
The equation is already balanced and the mole ratio of KOH and [tex]H_2SO_4[/tex] is 2:1.
But 15.1 mL of 0.190 M [tex]H_2SO_4[/tex] is available.
Recall that:
mole = molarity x volume
Mole of 15.1 mL of 0.190 M [tex]H_2SO_4[/tex] = 0.190 x 15.1/1000
= 0.002869 mol
From the 2:1 mole ratio, the equivalent mol of KOH would then be:
0.002869 x 2 = 0.005738 mol
Since, mole = molarity x volume. Then, volume = mole/molarity
So, the volume of 0.005738 mol of 0.180 M KOH would be:
volume = 0.005738/0.180
= 0.03188 liters
Converting 0.03188 liters to mL:
0.03188 x 1000 = 31.88 mL
Thus, the volume of 0.180 M KOH needed to react completely with 15.1 mL of 0.190 M H2SO4 would be 31.88 mL.
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How many molecules are in 72.0 moles of CO₂?
Taking into account the definition of Avogadro's Number, 4.33656×10²⁵ molecules are in 72 moles of CO₂.
Avogadro's NumberAvogadro's Number is called the number of particles that make up a substance (usually atoms or molecules). This particles can be found in the amount of one mole of said substance.
Its value is 6.023×10²³ particles per mole. Avogadro's number applies to any substance.
Amount of molecules on 72 moles of CO₂Then you can apply the following rule of three: if 1 mole of CO₂ contains 6.023×10²³ molecules, 72 moles of CO₂ contains how many molecules?
amount of molecules of CO₂= (6.023×10²³ molecules × 72 mole)÷ 1 mole
amount of molecules of CO₂= 4.33656×10²⁵ molecules
Finally, 4.33656×10²⁵ molecules are present in 72 moles of CO₂.
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You are holding a small helium balloon. Your friend says that the buoyant force from the atmosphere is greater on her car than your balloon. Is she correct? Explain your answer.
Yes , the buoyant force from the atmosphere is greater on her car than your balloon .
So, She is correct.
Since, the density of helium is less than air, the buoyant force exerted by air is less than the weight of the balloon filled with helium, causing the balloon to float in the air and rise.
What do you mean by buoyant force?
The term light power alludes to the vertical coordinated force that a liquid applies on an item that is to some degree or totally drenched in the liquid. The light power emerges from contrasts in hydrostatic strain - the tension applied by a static liquid.
What is the buoyant force on a helium balloon in air?
Helium has 0.0114 pounds per cubic foot. For a one cubic foot helium filled balloon , gravity pulls the down on the helium with a force of 0.0114 pounds while the air pushes up with a force equal to the weight of the air of the helium displaced, or 0.0807 pounds.
Hence, the buoyant force from the atmosphere is greater on the car than the balloon.
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A compound is composed of element X and hydrogen. Analysis shows the compound to be 80% x by mass, eith three times as many hydrogen as X atomes per molecule. Which element is element X?
Based on the percentage composition and the empirical formula of the compound, the element X is carbon.
What is the element X in the compound?The element X in the compound can be determined from the empirical formula of the compound and the percentage composition by mass of the element x.
The empirical formula of the compound is given from the statement; there are three times as many hydrogens as X atoms per molecule.
Empirical formula = XH₃
Assuming the mass of the compound is 100 g
80 g = X
20 g = 3 H
1 H = 20/3
mass ratio of X and H = 80 : 20/3
Mass ratio of X and H = 12 : 1
Hence, X is carbon.
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In a titration, 20 mL of 0.27 M NH3 was titrated with 0.20 M HCl. Calculate the pH of the resulting solution after the addition 0 mL of the acid? (give your answer to two decimal places) (Kb ammonia = 1.8 x 10-5)
The pH of 20 mL of 0.27 M NH₃ (ammonia) solution after 0 mL of acid is 11.34.
What is the pH of the solution ammonia solution after 0 mL of acid has been added?The pH of 20 mL of 0.27 M NH₃ (ammonia) solution after 0 mL of acid has been added is equal to the pH of the solution when no acid has been added.
The pH of the NH₃ solution is calculated from the dissociation equation and the formula below:
Dissociation equation: NH₃ + H₂O ⇄ NH₄⁺ + OH⁻
Kb = [NH₄⁺] * [OH⁻] / [NH₃]
Kb of NH₃= 1.8 * 10⁻⁵
From the equation of dissociation above, [NH₄⁺] = [OH⁻] = x
Kb = x²/ [NH₃]
x² = Kb * [NH₃]
x = √( Kb * [NH₃])
x = √(1.8 * 10⁻⁵ * 0.27)
x = 0.0022 M
[OH⁻] = 0.0022
pOH = - log [OH⁻]
pOH = -log (0.0022)
pOH = 2.66
pH = 14 - 2.66
pH = 11.34
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In the SI system of units [International System of Units], the mole is one of seven base units. It is frequently used in chemical calculations. However, a mole of something is just a particular quantity of it. It is not a unit of measure in the way that meters, seconds, and kilograms are. Calculations performed with the number of moles of a substance could also be performed with the number of particles of a substance. Based on this information, do you think that the mole should be considered a base unit in the SI system? Explain why or why not.
The mole is an SI unit that links the microscopic and macroscopic world that is why yes, mole is the base of SI unit.
What is a mole?
A mole is a popular scientific measurement unit for large quantities of very small items like atoms, molecules, or other specified particles in chemistry. It can also be spelt mol.
A extremely big amount, 6.02214076 1023 units, are designated by the mole. As of May 20, 2019, the General Conference on Weights and Measures defined the mole as this quantity for the International System of Units (SI). The mole was traditionally defined as the number of atoms found by experimentation to be present in 12 grammes of carbon-12.
The quantity of units in a mole is also referred to as Avogadro's number or Avogadro's constant in honour of the Italian physicist Amedeo Avogadro. Equal volumes of gases under the same conditions, according to Avogadro.
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A propane tank when first filled reads 175. psi. After 1 month of use, the propane tank reads 81. psi.
Note: Reference the Conversion factors for non-SI units table for additional information.
Part 1 of 2
Convert the tank pressure when first filled to mmHg. Be sure your answer has the correct number of significant figures.
m
175. ps1=
mmHg
Answer:
After 1 month of use, the propane tank reads 81
Explanation:
If you have 37.75 g of S, how many moles does it correspond to?
If we have 37.75 g of S , the number of moles is 1.17 mol.
Given that :
mass of Sulphur , S = 37.75 g
Molar mass of Sulphur , S = 32 g / mol
The number of moles of substances is equals to the ,mass of substance given to the molar mass of that substance.
number of moles = mass / molar mass
number of moles of sulphur = 37.75 g / 32 g / mol
number of moles of sulphur = 1.17 mol
Thus, If we have 37.75 g of S , the number of moles is 1.17 mol.
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Which element is similar to antimony
Answer:
N, P, As, Bi, Mc
Explanation:
Similar chemical properties are usually found within the same column of the periodic table.
Antimony is Sb, which is in column 15.
Therefore all the elements in column 15, including N, P, As, Bi, Mc, should have similar chemical properties
Which of the following is involved in bonding between atoms?
Select one:
O a. neutrons
O b. protons
O c. electrons
O d. the nucleus
The following is involved in bonding between atoms is electron
There are four type of chemical bonds essential for life to exist and it is ionic bond, covalent bond, hydrogen bond, and Vander wall interaction and all of these are different kind of bond to play various role in biochemical interaction and the electron on the outermost energy level of the atom are called valence electron and the valence electron are involved in bonding one atom yo another
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Magnetite, Fe3O4, is another ore of iron that contains both Fe²+ and Fe³+.
(a) Deduce the ratio of Fe²+: Fe³+ in Fe3O4.
The ratio of Fe²+: Fe³+ in Fe3O4 is 1:2
What is ore?
An ore is a naturally occurring deposit of geologic material (rock) that contains a sufficient quantity of one or more valuable elements or compounds to be economically mined. Metals such as copper, platinum, iron, lead, gold, silver, aluminium, nickel, and others are among these valuable elements. Nonmetals such as silicon and diamond may be found in ore. These valuable chemicals can be extracted and used in a variety of ways, from jewellery creation to electronic gadget manufacture. Ores vary greatly based on the parent rock's chemical composition as well as the natural mechanism by which they were created.
Mining corporations carefully analyse various issues before deciding to mine because extracting anything from the earth involves time, money, and effort. The ore grade, for example, indicates how much of the desired precious element or combination occurs inside the parent rock. The rock is regarded an ore if the required component is present in sufficient concentration for processing to be viable. Larger grade ores have higher concentrations of the desired ingredient, and vice versa.
Fe304 contains both Fe²+ and Fe³+
Then we have to deduce the ratio of Fe²+ and Fe³+.
We know that
Fe0 + Fe2O3 ---------> Fe3O4
Fe in Fe0 is Fe(II)
Fe in Fe2O3 is Fe(III)
Then we have see that
on combine Fe 2+ with Fe3 , Fe304 is form
Hence,
The ratio of Fe²+: Fe³+ in Fe3O4 is 1:2
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If 18.0 grams of water were actually produced, what is the percent yield of the reaction between 4 g of hydrogen gas and 1.5 mol of oxygen gas?
The percent yield of the water is 33.3%.
What is the percent yield?We know that the reaction that takes place between hydrogen and oxygen to give water is; [tex]2H_{2} (g) + O_{2} (g) ----- > 2H_{2}O(g)[/tex]. We now need to find the number of moles of hydrogen = 4 g/2 g/mol = 2 moles
Now;
If 2 moles of hydrogen reacts with 1 moles of oxygen
We can see that oxygen is the limiting reactant in this case.
1 mole of oxygen produces 2 moles of water
1.5 moles of oxygen produces 1.5 * 2/1
= 3 moles of water
Then the theoretical yield of water = 3 moles * 18 g/mol = 54 g
Percent yield = Actual yield / theoretical yield * 100/1
= 18/54 * 100/1
= 33.3%
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if some filtrate splattered out of the beaker while it was heated how would this affect the measured results
Answer:
it will be all water and it needs to cool of
A quantity of nitrogen gas is enclosed in a tightly stoppered 500 mL flask at room temperature (20.0 °C) and 0.836 atm pressure. The flask is then heated to 680 °C. If the flask can withstand pressures up to 3 atm, will it explode under this heating?
The vessel will not explode since the new gas pressure is less than 3 atm.
What will be the pressure when the temperature of a given volume of nitrogen gas is heated?The pressure when the temperature of a given volume of nitrogen gas is heated is calculated using the formula given below:
P₁/T₁ = P₂/T₂where;
P₁ = initial pressureT₁ = initial temperatureP₂= final pressureT₂ = final temperatureSolving for P₂
P₂ = P₁ * T₂ / T₁
P₂ = 0.836 * (680 + 273) / (20 + 273)
P₂ = 2.72 atm
The new pressure is less than 3 atm.
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10^-2 M NH3 in water Kb=1.8*10^-5, conc. of all species=?
1.34 x 10^{-3} is the concentration of NH4 .
What is pH ?
pH, a quantitative measure of the acidity or basicity of aqueous or other liquid solutions. Widely used in chemistry, biology, and agriculture, this term translates the concentration value of hydrogen ions. This typically ranges from about 1 to 10-14 gram equivalents per liter. Converted to a number between 0 and 14. At neutral (neither acidic nor alkaline), the concentration of hydrogen ions is 10−7 gram equivalents per liter, which corresponds to a pH of 7. Solutions below pH 7 are considered acidic. Solutions with a pH greater than 7 are considered basic or alkaline.
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How many moles are in a system that is 223 K, with an internal pressure
of 10 atm, in a fixed container that is 27 L
O 14.75 mol
O 1.21 mol
O 825 mol
5.42 mol
* 2 points
Answer:
A.) 14.75 mol
Explanation:
To find the amount of moles, you need to use the Ideal Gas Law equation:
PV = nRT
In this equation,
-----> P = pressure (atm)
-----> V = volume (L)
-----> n = number of moles
-----> R = Ideal Gas Constant (0.08206 L*atm/K*mol)
-----> T = temperature (K)
You can plug the given values and the constant into the equation and simplify to find "n".
P = 10 atm R = 0.08206 L*atm/K*mol
V = 27 L T = 223 K
n = ? moles
PV = nRT <----- Ideal Gas Law
(10 atm)(27 L) = n(0.08206 L*atm/K*mol)(223 K) <----- Insert variables
270 atm*L = n(18.299 L*atm/mol) <----- Mutliply
14.75 mol = n <----- Divide both sides by 18.299
true or false
Newton's first law of inertia says that an object at rest will stay at rest and an object in motion will stay in motion unless acted on by a force.
Newton's first law of inertia says that an object at rest will stay at rest and an object in motion will stay in motion unless acted on by a force; thus the statement is True
What is the law of inertia?The law of inertia is also known as Newton's first law of motion.
The law of inertia states that a body at rest or that is moving at constant or uniform motion along a straight line will remain in its state of rest or motion or uniform motion along a straight line unless acted upon by an external force.
The law of inertia explains why it s difficult to start an object moving or to stop a moving object.
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Balance the equation HC2H3O2(aq)+Ca(OH)2(aq)→
The reaction of acetic acid and calcium hydroxide is an example for double displacement reaction. The balanced equation can be written as,
2 HC2H3O2 (aq) + Ca(OH)2 (aq) ----------> Ca(C2H3O2)2 (aq) + H2O (l)
What is double displacement reaction?
The double displacement reaction is a type of reaction in which the cations and anions of the reacting species exchange with each other to form two new compounds.
In the reaction of acetic acid and calcium hydroxide the cationic part of calcium hydroxide reacts with anionic part of acetic acid to give calcium acetate and the anionic part of calcium hydroxide reacts with cationic part of acetic acid to give water. This type of reaction between acetic acid and calcium hydroxide is called double displacement reaction.
Therefore, the balanced equation for double displacement reaction of acetic acid and calcium hydroxide can be written as,
2 HC2H3O2 (Aq) + Ca(OH)2 (aq) ---------> Ca(C2H3O2)2 (aq) + H2O (l)
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What is the molar solubility of barium phosphate (Ba3(PO4)2) at a temperature where the Ksp is (6.00x10^-37) (not at 25°C)?
The molar solubility of the barium salt is obtained as 1.29 * 10^-19 M.
What is the solubility?We know that the solubility has to do with the amount of the solute that is able to dissolve in a solvent at a particular temperature. As such, it is clear that the solubility depends on the temperature of the solution.
We know that the Ksp can be gotten from the expression of the Ksp as follows;
Ksp = [3x]^3 [2x]^2
Ksp = 9x^3 * 4x^2
Ksp = 36 * x^5
Ksp = 36x^5
x =[tex]\sqrt[5]{\frac{KSP}{36} }[/tex]
x = [tex]\sqrt[5]{6.00x10^-37} /36[/tex]
x = 1.29 * 10^-19 M
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Which of the following alcohols is used in antifreeze?
ethylene glycol
glycerol
ethanol
isopropyl alcohol
Answer:
No entendí porfavor puedes explicarme
20. (01.08 MC)
Alchemy is a branch of ancient knowledge that states that all matter is composed of air, fire, earth, ar
Which of these best explains whether alchemy is a science or pseudoscience? (4 points)
It is a science because all matter is known to be made of elements.
it is a science because air, fire, earth, and water all are forms of matter.
It is pseudoscience because all matter is known to be made of atoms.
It is pseudoscience because ancient knowledge is mystical yet reliable.
It is pseudoscience because each metal is known to be a unique element alchemy is a science or pseudoscience.
What is a matter in chemistry?Matter is anything that occupies space and has mass; in other respects, matter is the "thing" that the cosmos is made of. The fundamental constituents of all stuff are called elements. These are not changed into other elements by conventional chemical processes and have distinct chemical and physical properties.
What does matter consist of?Matter can be solid, liquid, or gaseous on Earth. Solid particles, fluids, and gases are supported by the exceptionally small building components known as atoms and molecules. A solid's component particles are attracted to one another strongly. They are close to one another and vibrate en position without passing each other.
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The complete question is -
Alchemy is a branch of ancient knowledge that states that all matter is composed of air, fire, earth. Which of these best explains whether alchemy is a science or pseudoscience?
A-It is a science because all matter is known to be made of elements.
B-It is a science because air, fire, earth, and water all are forms of matter.
C-It is pseudoscience because all matter is known to be made of atoms.
D-It is pseudoscience because ancient knowledge is mystical yet reliable.
E-It is pseudoscience because each metal is known to be a unique element.
Two solutions are prepared by a chemist. One of the solutions is 150.0 ml of a 3.5 x 10¹5 M HNO3.
The other solution is 250.0 ml of a 0.63 M solution of HNO2.
Compare the pH of each solution.
The pH of the solutions are as follows:
a. pH = 4.4
b. pH = 0.2
What is the pH of a solution?The pH of a solution is a measure of the acidity or basicity of a solution.
The pH is defined as the negative logarithm of the hydrogen ion concentration of a substance.
pH = -log [H⁺]
where [H⁺] is the hydrogen ion concentration
The pH of the solutions are as follows:
a. 150.0 ml of a 3.5 x 10⁻⁵ M HNO3.
pH = -log (3.5 x 10⁻⁵)
pH = 4.4
b. 250.0 ml of a 0.63 M solution of HNO2
pH = -log (0.63)
pH = 0.2
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a student investigated heat transfer using a bottle of water
The result of the Heat Transfer experiment is given as follows: "The molecule was increased in kinetic energy but in a random structure." (Option B)
What is Heat Transfer?Heat transfer is a thermal engineering subject that deals with the creation, consumption, conversion, and exchange of thermal energy across physical systems.
Heat transmission is categorized into several methods, including thermal conduction, thermal convection, thermal radiation, and energy transfer via phase shifts.
At 3 p.m., the water temperature is raised. The average kinetic energy of an item is related to its temperature. As a result, as temperature rises, so does average kinetic energy.
Kinetic energy is created by the random movement of molecules. Hence, the correct answer is "The molecule was increased in kinetic energy but in a random structure."
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Full Question:
A student investigated heat transfer using a bottle of water. The student placed the bottle in a room at 20.50C. The student measured the temperature of the water in the bottle at 7 a.m. and again at 3 p.m. The data from the investigation are shown in the table below.
[See attached image]
Question:How would you describe the average kinetic energy of the water molecules in the bottle at 7 a.m. to the average kinetic energy of the water molecules in the bottle at 3 p.m.
The molecules were increased in kinetic energy but in a uniform structure. The molecules were increased in kinetic energy but in a random structure. The molecules were decreased in kinetic energy but in a uniform structure. The molecules were decreased in kinetic energy but in a random structure.A 90.0 g piece of metal, initially at 98.6°C, is placed into 120.0 g of water initially at 24.3°C. If the final temperature of the water is 34.0°C, what is the specific heat of the metal? (The specific heat of water is 4.184 J/g・°C).
Taking into account the definition of calorimetry, if the final temperature is 34 °C, the specific heat of the metal is 0.8381 J/gC.
CalorimetryCalorimetry is the measurement and calculation of the amounts of heat exchanged by a body or a system.
When heat added or removed from a substance causes a temperature change in it without affecting its molecular structure, it is called sensible heat.
The expression that allows to calculate heat exchanges is:
Q = c× m× ΔT
where:
Q is the heat exchanged by a body of mass m.c is the specific heat substance.ΔT is the temperature variation.Specific heat of the metalIn this case, you know:
For metal:Mass of metal= 90 gInitial temperature of metal= 98.6 °CFinal temperature of metal= 34 ºCSpecific heat of metal= UnknownFor water:Mass of water = 120 gInitial temperature of water= 24.3 °CFinal temperature of water= 34 °CSpecific heat of water = 4.186 J/gCReplacing in the expression to calculate heat exchanges:
For metal: Qmetal= Specific heat of metal × 90 g× (34 C -98.6 C)For water: Qwater= 4.186 J/gC× 120 g× (34 C - 24.3 C)If two isolated bodies or systems exchange energy in the form of heat, the quantity received by one of them is equal to the quantity transferred by the other body. That is, the total energy exchanged remains constant, it is conserved.
Then, the heat that the gold gives up will be equal to the heat that the water receives. Therefore:
- Qmetal = + Qwater
- Specific heat of metal × 90 g× (34 C -98.6 C)= 4.186 J/gC× 120 g× (34 C - 24.3 C)
Solving:
- Specific heat of metal × 90 g× (34 C -98.6 C)= 4,872.504 J
Specific heat of metal × 5,814 gC= 4,872.504 J
Specific heat of metal = 4,872.504 J÷ 5,814 gC
Specific heat of metal = 0.8381 J/gC
Finally, the specific heat of the metal is 0.8381 J/gC.
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A 1.50 g of urea/cholesterol mixture was added to 25.0 mL of water to separate the two compounds. The solid sample collected after filtration is 0.52. What is the % of urea in the sample
Based on the mass of the sample, the percentage mass of urea in the urea/cholesterol mixture is 65.3%.
What is the percentage of urea in the urea/cholesterol mixture?The percentage mass of urea in the urea/cholesterol mixture is determined using the formula below:
Percentage of urea = (mass of urea in sample/mass of sample) * 100%The mass of urea in the sample is obtained using the formula below:
Mass of urea = mass of sample - mass of cholesterolDuring the separation procedure of the mixture, urea which is soluble in water goes into the solvent phase whereas cholesterol is obtained as a solid.
Hence, the 0.52 g solid sample collected is cholesterol.
mass of urea = 1.50 - 0.52
mass of urea = 0.98
Percentage urea = 0.98/1.5 * 100%
Percentage mass of urea = 65.3%
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Why is NaCl called sodium chloride but CO is ca bin monoxide
Answer:
Sodium Chloride is a chemical compound that has a chemical formula NaCl.
NaCl is not taken into account as a molecule.
A molecule is the smallest particle in a chemical element or compound that contains that element's or substance's chemical properties.
Molecules are made up of atoms that are chemically bound together.
Covalent Bonding is a term that refers to the bonding of two or more Ionic compounds, such as sodium chloride (NaCl), which is created by transferring electrons that form ions.
Ions create ionic bonds by exerting electrostatic force on one another.
In a water molecule, on the other hand, the hydrogen and oxygen atoms are joined by swapping electrons rather than transferring them.
Although the heat source is at the bottom of the beaker, all of the water is the same temperature.
What keeps the water at the top of the beaker the same temperature as that of the bottom?
Responses
Heat from the burner radiates through the liquid and causes even heating.
Heat from the burner radiates through the liquid and causes even heating.
Evaporation heats the water at the top and the flame heats the water at the bottom.
Evaporation heats the water at the top and the flame heats the water at the bottom.
The walls of the beaker reflect heat towa
Heat from the burner radiates through the liquid and causes even heating. Due to this reason, the water at the top of the beaker the same temperature as that of the bottom. The correct option is option A.
What is temperature?Temperature is used to measure degree or intensity of heat of a particular substance. Temperature is measured by an instrument called thermometer.
Temperature can be measured in degree Celsius °c, Kelvin k or in Fahrenheit. Temperature is a physical quantity. Heat always flow from higher temperature source to lower temperature source. Heat from the burner radiates through the liquid and causes even heating. Due to this reason, the water at the top of the beaker the same temperature as that of the bottom.
Therefore, the correct option is option A.
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what is the limiting agent in 3 C2H3O2H + Al(OH)3
To solve such this we must know the concept of chemical reaction and concept of limiting agent. Therefore, C[tex]_2[/tex]H[tex]_3[/tex]O[tex]_2[/tex]H is limiting agent in the given balanced equation.
What is chemical reaction?Chemical reaction is a process in which two or more than two molecules collide in right orientation and energy to form a new chemical compound. The mass of the overall reaction should be conserved. There are so many types of chemical reaction reaction like combination reaction, double displacement reaction.
The balanced reaction is
3 C[tex]_2[/tex]H[tex]_3[/tex]O[tex]_2[/tex]H + Al(OH)[tex]_3[/tex][tex]\rightarrow[/tex]
The limiting reagent depends on the mole ratio and not on the masses of the reactants present. 1 mole of Al(OH)[tex]_3[/tex] need 3 moles of 3 C[tex]_2[/tex]H[tex]_3[/tex]O[tex]_2[/tex]H. So, C[tex]_2[/tex]H[tex]_3[/tex]O[tex]_2[/tex]H is limiting reagent.
Therefore, C[tex]_2[/tex]H[tex]_3[/tex]O[tex]_2[/tex]H is limiting reagent.
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How many molecules are in 30 g of CO2?
A gas is heated from 213.0 K to 498.0
K and the volume is increased from
23.0 liters to 55.0 liters by moving a
large piston within a cylinder. If the
original pressure was 1.15 atm, what
would the final pressure be?
Answer:
0.5 7.0 there is so many results
Explanation:
its very simple