The molar mass of hydrogen phosphate molecule, H₃PO₄ also known as phosphoric acid is equals to the ninety-eight grams per mole.
We have a hydrogen phosphate molecule, H₃PO₄. It is consists of three hydrogen atom, Phosphorous atom and four oxygen atoms. Molar mass is the sum of the masses of all the individual atoms within their quantities present in a molecule or compound. Phosphoric acid is the important acid of oxygen and phosphorous. It is used to make phosphate salts for fertilizers. The molecular formula of phosphoric acid is written as H₃PO₄.
Atomic mass of Oxygen atom, O
= 16 g/mol.
Atomic mass of hydrogen atom, H
= 1 g/mol.
Atomic mass of Phosphorous atom, P
= 31 g/mol.
Molar mass of hydrogen phosphate, H₃PO₄ = 3 ×( H ) + 1× (P) + 4 (O)
= ( 1 g/mol x 3 ) + ( 31 g/mol x 1 ) + ( 16 g/mol x 4 )
= (3 + 31 + 64) g/mol
= 98 g/mol.
Hence, molar mass of hydrogen phosphate H₃PO₄ is 98 g/mol.
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What is the Colour change in acid base titration?
In acid-base titration,colour change indicates that neutral point where amount of acid and base becomes equal is going to achieve.
An acid- base titration is a technique for quantitative examination for deciding the grouping of a corrosive or base by precisely killing it with a standard arrangement of base or corrosive having known focus. A pH marker is utilized to screen the advancement of the corrosive base response. In the event that the acid separation consistent (pK[tex]_a[/tex]) of the corrosive or base separation steady (pK[tex]_b[/tex]) of base in the analyte arrangement is known, its molar concentration (molarity) still up in the air. On the other hand, the pK[tex]_a[/tex] still up in the air if the analyte arrangement has a known arrangement focus by building a titration bend.
A reasonable pH indicator should be picked to recognize the end point of the titration. The variety change or other impact ought to happen near the identicalness point of the response so the experimenter can precisely decide when that point is reached. The pH of the proportionality point can be assessed utilizing the accompanying principles.
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what is the ph of a solution that contains 11.7g of nacl for every 200 ml of solution?
The pH of the solution that contains 11.7g of NaCl for the every 200 mL of the solution is 7.
The mass of the NaCl = 11.7 g
The molar mass of the NaCl = 58.44 g/mol
The moles of the NaCl = mass / molar mass
The moles of the NaCl = 11.7 / 58.44
The moles of the NaCl = 0.200 mol
pH = - log[H⁺]
pH = 7
The NaCl will completely dissociates in the water to give Na⁺ and the Cl⁻, it will neither of which is hydrolyzes. In the aqueous of NaCl, the H₃O⁺ and OH⁻ ions that result in the completely form the autoionization of the water. The NaCl is neutral and does not affect the pH.
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What is the relationship between polarity and intermolecular forces?
Polarity has an impact on the strength of intermolecular forces as well. Non-polar molecules only exhibit the van der Waals force as an intermolecular force.
What is the difference between polarity and intermolecular forces?The strength of intermolecular forces is also influenced by polarity. The van der Waals force is the only intermolecular force that non-polar molecules display. Dipole-dipole interactions, which are often stronger than van der Waals forces, can be used to connect polar molecules together.
As the polarity is raised, the forces between dipoles get stronger. In this situation, dipole-dipole forces are highly powerful. It is possible for it to exist between a molecule with an N, O, or F atom that has a hydrogen atom directly connected to it and another molecule with an N, O, or F atom that has a lone pair of electrons on it.
Their essential connection is that they have an inverse proportional relationship. The intermolecular space will be smaller and vice versa depending on the strength of the intermolecular force.
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which law implies that the volume of a gas is directly proportional to the number of moles of the gas?
The law implies that the volume of a gas is directly proportional to the number of moles of the gas is the Avogadro's law.
According to the Avogadro’s law, at the constant temperature and the pressure, the volume of all gases constitutes the equal number of the molecules. This means that in the unchanged conditions of the temperature and the pressure the volume of the gas is directly proportional to the number of the molecules of that gas.
Thus, the Avogadro's law states that the volume of the gas is directly proportional to the number of the moles of the gas.
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True or False:To maintain beer quality it is important to maintain consistent calcium and pH levels in the water, wort and beer. The average pH for wort is higher than the average pH for beer.
True, To maintain beer quality, it is important to maintain consistent calcium and pH levels in the water, wort, and beer. Calcium is important for yeast health and stability, while pH affects enzyme activity and flavor stability.
What is pH?
It is defined as the negative logarithm (base 10) of the concentration of hydrogen ions in a solution. pH values range from 0 to 14, with a pH of 7 considered neutral. Solutions with a pH less than 7 are acidic, while those with a pH greater than 7 are basic.
For example, a solution with a pH of 3 has a higher concentration of hydrogen ions (and therefore more acidic) than a solution with a pH of 5. A change of 1 pH unit represents a ten-fold change in the concentration of hydrogen ions, so a solution with a pH of 2 is ten times more acidic than a solution with a pH of 3. pH is an important parameter in many chemical and biological processes and is routinely measured in laboratories and in many industries.
The average pH for wort is typically higher than the average pH for beer. During the brewing process, enzymes in the malt break down starches into fermentable sugars, which lowers the pH of the wort. During fermentation, yeast consume the sugars and produce alcohol and carbon dioxide, which raises the pH of the beer. As a result, the pH of the final beer is usually lower than the pH of the wort.
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K¹² Honors Biology 2.21 Unit Assessment: The Chemistry of Life
The chemistry of life refers to the chemical processes and reactions that occur within living organisms, including the complex molecules and compounds that make up the cells, tissues, and organs of all living things.
The major classes of compounds that make up the chemistry of life include carbohydrates, lipids, nucleic acids, and proteins. Carbohydrates are composed of simple sugars and play a key role in energy storage and metabolism. Lipids, including fats and oils, are important for energy storage and as building blocks for cell membranes.
The chemical reactions that occur within living organisms are mediated by enzymes, which are specialized proteins that catalyze specific chemical reactions. Enzymes play a critical role in maintaining the chemical balance and energy balance within cells, as well as in the breakdown and synthesis of complex molecules.
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The second step in the Gram staining procedure involves flooding the slide for one minute with ____
A. a decolorizing agent. B. iodine. C. safranin.
The second step in the Gram staining procedure involves the flooding of the slide for the one minute is with iodine . The correct option is B. iodine.
There are the four fundamental steps in the Gram stain process , the first is to apply a base color that is the crystal violet. In second step adding the Gram's iodine as the mordant. In the third step, the Rapid decolorization with the acetone, the ethanol, or the combination of the two and in the four step, Using the safranin as the counterstain.
Thus, the iodine will be used in the second step in the Gram staining process that involves the flooding in the slide for one minute.
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When placing test tubes in the centrifuge, what are the best practices? A)Carefully stopper the test tubes to ensure the liquids do not spill out. B)Place test tubes containing approximately equal volumes in opposite positions on the rotor. C)Wait until all positions on the rotor contain a test tube before activating the centrifuge. D)Never put stoppers or other items in the centrifuge with your tubes.
When placing the test tubes in the centrifuge , the best practices are the correct option is : B)Place test tubes containing approximately equal volumes in opposite positions on the rotor. D)Never put stoppers or other items in the centrifuge with your tubes.
The centrifuge is the device that uses the centrifugal force to separate the various components of the fluid. The best practices for placing the test tubes are to Place test tubes containing the approximately equal volumes in the opposite positions on the rotor. Never put the stoppers or the other items in the centrifuge with the tubes.
This will help to prevent the any of the samples from the spilling during the centrifugation process and the potentially damaging the centrifuge.
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what is the ph of a solution that contains 11.7g of nacl for every 200 ml of solution?
The solution's pH is 7, and there are 11.7g of sodium chloride in every 200 mL of the mixture.
NaCl weighs 11.7 grams.
58.44 g/mol is the molar mass of sodium chloride.
The moles of sodium chloride are equal to mass/molar mass.
NaCl has a molecular weight of 11.7 / 58.44.
NaCl's moles equal 0.200 mol.
pH equals -log(H+)
pH = 7
In the presence of water, sodium chloride will entirely dissociate into Na+ and Cl, neither of which will undergo hydrolysis. The H3O+ and OH ions in the aqueous solution of sodium chloride cause the water to autoionize entirely. Because of its neutrality, NaCl has no impact on pH. a way to gauge how basic or acidic a material or solution is. On a scale of 0 to 14, pH is measured.
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when combining a strong acid with water to dilute it, you should add the acid to the water. (Ttrue or False)
You should add the acid to the water in order to dilute the water's potency with the strong acid. the statement is false.
What is a strong acid?An acid that entirely dissociates in an aqueous solution is referred to be a strong acid. It is a chemical species that may lose a proton, H+, very quickly. Strong acids lose one proton in water, which is then taken up by water and transformed into the hydronium ion: HA(aq) + H2O H3O+(aq) + A. (aq)Strong acids are those that totally separate into their ions or dissociate. Examples of strong acids are HCl, HBr, etc. Strong bases are also bases that totally dissolve into their ions when they are in solution. NaOH, KOH, and other examples.An acid that is totally ionized in an aqueous solution is referred to be a strong acid. An acid that ionizes very little in an aqueous solution is said to be weak.To learn more about strong acid refer to:
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A cylinder of helium gas takes up 22.4 liters of space at stp. How many atoms of helium are in the cylinder?
If a cylinder of helium gas takes up 22.4 liters of space at STP, then there are 6.022 x 10²³ atoms of helium in the cylinder at STP.
At STP (standard temperature and pressure), the volume of one mole of any gas is 22.4 liters. Helium is a monatomic gas, which means that each helium atom exists as a separate entity, rather than being bound up in a molecule with other atoms.
Therefore, one mole of helium gas contains 6.022 x 10²³ helium atoms. Since the cylinder contains 22.4 liters of helium gas at STP, it must contain one mole of helium atoms, which means that there are 6.022 x 10²³ atoms of helium in the cylinder.
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Identify the reducing and oxidizing agents and determine the species that is oxidized and the species that is reduced. a. Mg + Fe2+ ----> Mg2+ + Fe b. Cu2+ + Sn ----> Sn2+ + Cu c. H2 + CH2=CH2 -----> CH3CH3 Reducing agent Oxidizing agent Species being reduced Species being oxidized
a. The reducing agent is Mg and the oxidizing agent is Fe2+. The species being oxidized is Fe2+ and the species being reduced is Mg.
b. The reducing agent is Sn and the oxidizing agent is Cu2+. The species being oxidized is Sn and the species being reduced is Cu2+.
c. The reducing agent is H2 and the oxidizing agent is CH2=CH2. The species being oxidized is CH2=CH2 and the species being reduced is H2.
In each reaction, the reducing agent loses electrons and is oxidized, while the oxidizing agent gains electrons and is reduced.
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Describe how you think rock outcrops and exposures in southwestern U.S.A would look in comparison with rocks in northeastern U.S.A.
Answer:
Generally speaking, rocks in the southwestern U.S.A tend to be much older and more eroded than those found in the northeast. The rock outcrops and exposures in this region will likely consist of sedimentary layers that have been exposed due to erosion over time, as well as some ancient igneous intrusions such as granite or basalt. In comparison, the northeastern U.S.A tends to contain younger rocks with fewer signs of weathering and erosion; these outcrops and exposures may include a variety of metamorphic rocks such as slate or gneiss along with granites from nearby mountain ranges like the Appalachians or Adirondacks.
A true statement about sulfur dioxides is that they are:________
A true statement about sulfur dioxide (SO₂) is that it is a colourless gas with a pungent odour. It is released during the combustion of fossil fuels, such as coal and oil, and during some industrial processes.
It is a major air pollutant that can have harmful effects on both the environment and human health. Sulfur dioxide can react with other chemicals in the atmosphere to form acid rain, which can damage plants, buildings, and bodies of water.
Exposure to high levels of sulfur dioxide can irritate the respiratory system and worsen existing respiratory conditions, such as asthma. Therefore, it is regulated by many countries and international organizations to reduce its emission levels and protect the environment and public health.
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Mid-oceanic ridges are undersea mountain ranges where two pieces of oceanic crust are
none are correct
moving past one anther
moving apart from one another
moving toward one another
Answer:
Explanation:
Chemistry help needed !!
The molecular geometry:
For N atom:Molecular geometry can be determined by the number of electron domains around the central atom, which is found by counting the number of bonding pairs and lone pairs of electrons. To know about electron domains, we must know about valence electron through Periodic Table.
N atom.Learn more about other molecular geometry on:
https://brainly.com/question/19354582https://brainly.com/question/20714773https://brainly.com/question/29823490What is the molar mass g mol of lead?
The molar mass of lead is 207.2 g/mol.
Molar mass is the mass of one mole of a substance, which is equal to the mass of 6.022 x 10^23 atoms or molecules of that substance. It is expressed in units of grams per mole (g/mol).
To find the molar mass of lead, we can look at the periodic table and find the atomic mass of lead, which is 207.2. This is the molar mass of lead, as one mole of lead atoms has a mass of 207.2 grams.
Chemical element lead has the atomic number 82 and the letter Pb for its symbol. It is a dense hefty metal that is heavier than the majority of everyday materials.
Lead is pliable and soft, and it also has a low melting point. Lead has a tinge of blue when it is first cut, and it is bright and grey. When exposed to air, it tarnishes to a drab grey tone.
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Select all that apply Select all the statements that correctly describe organometallic reagents. a) Organometallic reagents are good nucleophiles and strong bases. b) Organometallic reagents are ionic since they contain a bond between a metal and a nonmetal. c) Organometallic reagents are a source of electrophilic carbon. d) These reagents contain a polar carbon-metal bond.
The statements that correctly describe organometallic reagents are:
a) Organometallic reagents are good nucleophiles and strong bases.
c) Organometallic reagents are a source of electrophilic carbon.
d) These reagents contain a polar carbon-metal bond.
Statement b is incorrect as organometallic reagents are typically covalent rather than ionic, despite containing both metal and nonmetal atoms.
Compounds with at least one covalent bond between a carbon atom and a metal atom are known as organometallic reagents. These reagents are extremely reactive and flexible, with numerous applications in organic chemistry. One of the most important properties of organometallic reagents is their nucleophilic and basic nature, which allows them to be used in a wide range of processes.
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Is H2 and Br2 polar or nonpolar?
Both H₂ (Hydrogen gas) and Br₂ (Bromine gas) are non-polar molecules.
Because both bromine atoms in this molecule have the same electronegativity, their charge distributions are identical, and there is no net dipole moment, making Br₂ (Bromine) nonpolar.
A non-polar molecule is H₂. Nonpolar molecules do not respond to electrostatic charges like water does because their charges are distributed equally. Since hydrogen atoms distribute their electrons evenly, covalent molecules comprised of only one kind of atom, like hydrogen gas (H₂), are nonpolar.
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It is illegal to improperly dispose of antifreeze.yesno
Waste antifreeze should never be dumped into storm drains or surface waters as it can seriously injure wildlife, pets, and people. This is prohibited and can result in fines of up to $25,000. yes this statement is correct.
What is an antifreeze?An chemical called antifreeze lowers the freezing point of a water-based liquid. In order to lower the freezing point in cold conditions and raise the boiling point to allow for higher coolant temperatures, an antifreeze combination is utilized. Science discovered the solution in 1926 in the form of the chemical substance ethylene glycol, which is obtained from petroleum. This antifreeze additive, which is still commonly used today, has the chemical formula C2H6O2. Thus, ethylene glycol is chemically made up of two carbon atoms, six hydrogen atoms, and two oxygen atoms. Water and either ethylene glycol (EGW) or propylene glycol are combined to create the most popular water-based antifreeze solutions used in electronics cooling (PGW). Ethylene glycol has been used for a longer period of time, particularly in the automobile sector.To learn more about antifreeze refer to:
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what is a phase change from liquid to gas? endothermic or exothermic
The phase change from the liquid to the gas is the endothermic reaction as the heat energy is absorbed.
The phase change is the endothermic, that means the system will absorbs the energy on going from the liquid phase to the gas phase. The change is exothermic when the system will be releases the energy, when the direction is from the gas phase the to the liquid phase.
Evaporation is the process in which the liquid molecules will change into the the gaseous phase. This phase transition will requires the absorption of the energy. Therefore the evaporation is the endothermic process.
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What is the order of the solvents from most to least polar?
The position in extremity from most to least is water, ethanol, ethyl acetic acid derivation, CH3)2CO, 2-butanone, diethyl ether, hexane, and benzene.
From these solvents, ethanol will be totally miscible in water because of its more modest carbon fasten and it's capacity to frame hydrogen bonds.
Water is a polar dissolvable; other polar solvents incorporate CH3)2CO, acetonitrile, dimethylformamide (DMF), dimethylsulfoxide (DMSO), isopropanol, and methanol.
One way you could really work out a dissolvable's extremity is by utilizing its dielectric consistency, which is utilized to quantify how well the dissolvable can part of the way drop the field strength of the electric field of a molecule added to it. The higher the worth of a dissolvable's dielectric consistent, the more polar it will be.
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What is the Pauli Exclusion Principle?
An atomic orbital can only hold a maximum of 2 electrons, each with opposite spins
An atomic orbital can hold a minimum of 6 electrons, each with opposite spins
An atomic orbital can hold a maximum of 6 electrons, each with the same spin
An atomic orbital can hold a minimum of 2 electrons, each with opposite spins
Pauli Exclusion Principle, states that an atomic orbital can only hold maximum of 2 electrons, each with opposite spins. So, the correct choice is option (a).
The Pauli Exclusion Principle is a quantum mechanical principle that states that no two electrons in the same atom can have the same value for all four quantum numbers. That is no more than two electrons in can occupy the same orbital, and two electrons in the same orbital in must have opposite spins.
Austrian, Wolfgang Pauli proposed this idea in 1925. After reading a paper on quantum states in 1924, Pauli decided to add a fourth value to the classical three values used to describe the state of electrons. Two other scientists, Samuel Goudsmit and George Uhlenbeck, defined the fourth quantum quantity as the electron's spin. So option (a) is the correct option.
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Complete question:
What is the Pauli Exclusion Principle?
a) An atomic orbital can only hold a maximum of 2 electrons, each with opposite spins.
b) An atomic orbital can hold a minimum of 6 electrons, each with opposite spins
c) An atomic orbital can hold a maximum of 6 electrons, each with the same spin
d) An atomic orbital can hold a minimum of 2 electrons, each with opposite spins
Describe the initial conditions. A beaker with 150 milliliters of solution. A tube is floating at the top of the solution. The tubing contains. The beakercontains.
The initial conditions are -The tubing contains-starch solution,lugol's solution,starch solution and lugol's solution.
In math and especially in unique frameworks, an initial condition, in certain settings called a seed value,[1]: pp. 160 is a worth of a developing variable sooner or later in time assigned as the underlying time (normally signified t = 0). For an arrangement of request k (the quantity of delays in discrete time, or the request for the biggest subordinate in consistent time) and aspect n (that is, with n different developing factors, which together can be signified by a n-layered coordinate vector), by and large nk starting circumstances are required to follow the framework's factors forward through time.
In both differential conditions in constant time and distinction conditions in discrete time, starting circumstances influence the worth of the powerful factors (state factors) at any future time. In nonstop time, the issue of tracking down a shut structure answer for the state factors as an element of time and of the underlying circumstances is known as the underlying worth issue. A comparing issue exists for discrete time circumstances. While a shut structure arrangement isn't generally imaginable to get, future upsides of a discrete time framework can be found by emphasizing forward one time span for each emphasis, however adjusting mistake might make this unrealistic over lengthy skylines.
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(Complete question) is:
Describe initial conditions of any experiment conducted in chemistry labs.
Answer: The CORRECT answer on edge is:
INITIAL conditions --
The tubing contains STARCH SOLUTION
The beaker contains LUGOL'S SOLUTION
FINAL conditions --
The tubing contains STARCH solution AND LUGOL'S solution
The beaker contains ONLY LUGOL'S solution
Explanation: I did the lab,
in a dynamic equilibrium between the liquid state and the gas state, what is true about the rate of evaporation?
The rate of evaporation and condensation are equal at a state of dynamic equilibrium between the liquid and gas states.
This means that molecules of the liquid are continuously evaporating into the gas phase, while molecules of the gas are continuously condensing back into the liquid phase. At equilibrium, the number of molecules in the gas phase and the number of molecules in the liquid phase remain constant.
The rate of evaporation depends on factors such as the temperature of the liquid, the surface area of the liquid, and the strength of the intermolecular forces in the liquid. A larger surface area also increases the rate of evaporation, as more molecules are exposed to the gas phase.
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rigel IV is 10.8 light years away from earth. how far is that in miles
10.8 light years is approximately 63,489,155,845,482 miles.
How many years is a light-year?
A light-year measures distance rather than time (as the name might imply). A light-year is the distance a light beam travels in one year on Earth, which is around 6 trillion miles (9.7 trillion kilometers).
How long in Earth years is a light-year?
We measure the distance of most celestial objects in terms of light years. The length of one Earth year that light travels is measured in light-years. About 6 trillion miles separate one light-year (9 trillion km).
How many light-years can we travel?
In reality, anything beyond 4,300 Mpc (or 14 billion light-years) is now outside the range of what humans can travel at the speed of light.
Hence 63,489,155,845,482 is a correct answer.
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What period numbers are the radioactive metals found in?
Answer:
All elements of period 7 are radioactive. This period contains the actinides, which includes plutonium, the naturally occurring element with the heaviest nucleus; subsequent elements must be created artificially.
How do you know which compound has a higher boiling point?
The boiling point of a substance is also called the saturation temperature. It is the temperature at which a substance shows transition from liquid to gaseous state.
What is boiling point?The boiling point of a liquid is defined as the temperature at which its vapour pressure becomes equal to the atmospheric pressure. It is at this temperature a liquid starts to boil.
The boiling point is highly dependent on the intermolecular forces of a compound. The compounds with stronger intermolecular forces, higher masses and less branching have high boiling points.
Thus the boiling point of a compound is affected by many factors.
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Determine the moles of aluminium ions in 1. 25mol of AI203
The moles of aluminum ions in 1.25 mol of Al2O3 are 2.49 moles .
Aluminum oxide (Al2O3) dissociates in water to form aluminum ions (Al3+) and oxide ions (O2-). The molar mass of Al2O3 is 101.96 g/mol.
To determine the moles of aluminum ions in 1.25 mol of Al2O3, we need to first calculate the number of moles of Al2O3 present in 1.25 mol. We can do this by dividing the given mass of Al2O3 by its molar mass:
mass of Al2O3 = number of moles x molar mass
number of moles = mass of Al2O3 / molar mass
number of moles = (1.25 mol) x (101.96 g/mol) = 127.45 g
Next, we need to use the stoichiometry of the dissociation reaction to determine the number of moles of aluminum ions produced from 127.45 g of Al2O3:
1 mol of Al2O3 produces 2 mol of Al3+ ions
mol of Al3+ ions = (127.45 g Al2O3) x (1 mol Al2O3/ 101.96 g Al2O3) x (2 mol Al3+/ 1 mol Al2O3) = 2.49 mol
Therefore, there are 2.49 moles of aluminum ions.
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In the term trace element, the adjective trace means thatthe element is required in very small amounts.
The given statement “In the term trace element, the adjective trace means that the element is required in very small amounts” is true because trace elements are required in minute amounts for the proper functioning of the human body and other living organisms.
Trace elements are a group of minerals that are required in very small amounts for the proper functioning of the human body and other living organisms.
They are essential for the growth, development, and maintenance of cells and tissues. These elements are required in trace amounts because they are involved in the regulation of enzyme activities and metabolic processes.
The term “trace element” originates from the fact that they are required in very small amounts. This is because they are not found in large enough concentrations to be measured with traditional laboratory techniques. As such, they are only detectable using advanced analytical methods.
Trace elements are also essential for the production of hormones, vitamins, and other important compounds. They are also involved in the absorption of other minerals, such as calcium and magnesium, and in the production of energy. Without trace elements, the body’s functioning would be severely impaired.
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In the term trace element, the adjective trace means that the element is required in very small amounts. True or False.