If forty five percent by mass of a 350 g mixture is composed of compound a, then 157.5 g of the mixture is compound a.
Percentage by mass, mass %, is a measure of concentration that indicates the mass of solute per mass of solution. In other words, the mass percent of a component in the solution is defined as the ratio of the mass of the component to the mass of the solution, expressed as a percentage.
mass % = (mass of solute / mass of solution) x 100
Substitute the given information into the equation.
mass % = 45
mass of solution/mixture = 350 g
Solve for the mass of compound a.
mass % = (mass of compound a / mass of mixture) x 100
45 = (mass of compound a / 350 g) x 100
mass of compound a = 157.5 g
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pts) a. what would be the expected result if you added concentrated nitric acid (hno3) instead of hydrochloric acid to each test tube in step 7?
If we added concentrated nitric acid (hno3) instead of hydrochloric acid to each test tube in step 7 Both NaCl(s) and NaC,H,O,(s) would precipitate out of solution.
Salt is another name for sodium chloride. It occurs in sea and inland waters. Additionally, rock salt is obtainable. Seawater contains 1% to 5% sodium chloride. It is a crystalline, white substance. When it is in an aqueous state, it is referred to as a saline solution. This substance is water soluble and contains sodium cation and chloride anion. Sodium and chloride ions are present in a 1:1 ratio. It is commonly known as table salt and is primarily used in the food industry for flavouring and preservation. The pH of sodium chloride is 7.
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coals and some biofuels are made from plants. explain why coal is non-renewable but biofuels are
Answer:
Because coal takes millions of years to develop, it is classified as a nonrenewable energy source. Coal contains the energy accumulated by plants that thrived in marshy forests hundreds of millions of years ago. Biofuel, on the other hand, is derived from biomass, such as plant or algal material or animal waste.
Explanation:
Which gas is most likely to depart from the assumption of the kinetic-molecular theory that says there are no attractive or repulsive forces between molecules?.
SF6 gas is most likely to depart from the assumption of the kinetic-molecular theory that says there are no attractive or repulsive forces between molecules.
The synthetic fluorinated compound sulfur hexafluoride (SF6 gas) has a very stable molecular structure. Electricity utilities heavily rely on SF6 in electric power systems for voltage insulation, current interruption, and arc quenching during the transmission and distribution of electricity due to its special dielectric properties. The strongest greenhouse gas currently known, however, is this one. SF6 traps infrared radiation 22,800 times better over a 100-year period than an equivalent amount of carbon dioxide. With a 3,200-year atmospheric lifetime, SF6 is also a very stable chemical. As the gas is released, it builds up in the atmosphere where it remains essentially undamaged for centuries. Therefore, a relatively small amount of SF6 can have a big impact on the world.
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if 7.5l of ethane (c2h6) forms in a reaction between an unknown amount of acetylene gas (c2h2) and 15l of hydrogen gas at a constant pressure and temperature, what is the minimum amount of acetylene gas that must have reacted?
The balanced reaction equation is:
C2H2(g)+2H2(g)→C2H6(g)
The given volume of ethane product is:
vC2H6) = 7.5 L
We assume that this ethane was formed at constant temperature and pressure conditions. Therefore, we can relate volume values through the given stoichiometry. Assuming complete reaction, the ethane volume was formed from the given volume of hydrogen reactant:
v(H2) = 15 L
Acetylene and hydrogen react in a 1:2 ratio, so the required volume of acetylene is:
v(C2H2) = 7.5 L
Gas-Phase Chemical Reaction:
The volume of a gaseous species is highly sensitive to its temperature and pressure conditions. If these conditions are held constant, then the gas volume will vary proportionally to its molar quantity. If a given reaction system occurs in the gas phase at constant temperature and pressure conditions, then the behavior described here will apply to every gaseous species present. Therefore, the volume of each reactant will decrease over time, while the volume of each product will increase over time. The set of volume values will be related through the balanced stoichiometry.
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The pressure of a gas p(v) varies inversely with the volume of the gas v. The pressure of a gas measures 25kg/cm2 when its volume is 200cm3. Which equation can be used to find the pressure of the gas when the volume is changed?.
The equation that can be used to find the pressure of the gas when the volume is changed is P(v) = 500/v.
How can the amount of gases be determined?An inverted container filled with water can be used to collect the gas produced during a chemical reaction and estimate its volume. Water is forced out of the container by the gas, and the amount of liquid expended serves as a gauge for the gas's volume.
How do gas laws define volume?Boyle's law, which states that the volume of a given quantity of gas held at constant temperature is inversely proportional to the pressure under which it is measured, encapsulates this principle.
p(v) = pressure of a gas
v = volume of the gas
P(v) varies inversely with v
let k = constant of proportionality
P(v) = k/v
If P(v) = 25 kg/cm² and v = 200cm²
Therefore,
P(v) = k/v
25 = k / 200
25 × 200 = k
k = 5,000
substitute the value of k into the equation
So, P(v) = 500/v
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For the following reaction, 0.267 moles of carbon dioxide are mixed with 0.263 moles ofpotassium hydroxide.What is the formula for the limiting reagent?What is the maximum amount of potassium carbonate that can be produced?moles
Potassium hydroxide (KOH) is the limiting reagent in the reaction where 0.263 mol of this compound is mixed with 0.267 mol of carbon dioxide ([tex]CO_{2}[/tex]) to produce 0.1315 mol of potassium carbonate ([tex]K_{2}CO_{3}[/tex])
Calculation of the limit reagentThe limiting reactant is the element that is completely consumed in the reaction.
To determine the limiting reactant, stoichiometric relationships and the balanced equation of the reaction are used.
What is the balanced equation of the reaction?[tex]CO_{2}[/tex] + 2KOH → [tex]K_{2}CO_{3}[/tex] + [tex]H_{2}O[/tex]
Stoichiometric relationships
If 1 mole of [tex]CO_{2}[/tex] combines with 2 moles of KOH, then 0.267 mole of CO2 combines with_
X moles of KOH = 0.267 mol of [tex]CO_{2}[/tex] x 2 mol of KOH / 1 mol of [tex]CO_{2}[/tex] x 2 mol of KOH / 1 mol of [tex]CO_{2}[/tex]
X moles of KOH = 0.534 moles
Therefore, the limiting reagent is KOH because it runs out first.
Calculation of the maximum amount of potassium carbonate producedWith the quantity of the limit reagent, the quantity of product is calculated stoichiometrically.
If for every 2 moles of KOH, 1 mole of [tex]K_{2}CO_{3}[/tex] is produced, then 0.263 moles of KOH produce:
X moles [tex]k_{2}CO_{3}[/tex] = 0.263 mol KOH x 1 mol [tex]K_{2} CO_{3}[/tex] / 2 mol KOH
X moles [tex]K_{2} CO_{3}[/tex] = 0.1315 moles
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How many grams of fluorine,
F2, are needed to generate
7.65 moles of carbon
tetrafluoride, CF4?
C+2F2 → CF4
[?]g F2
581.247 g of fluorine, F₂, are needed to generate 7.65 moles of carbon tetrafluoride, CF₄.
What is a mole?A mole is a very crucial unit of measurement used by chemists. A mole of a thing means you have 602,214,076,000,000,000,000,000 eggs. Just 12 eggs means she has 12 eggs. Chemists need to measure very small things such as atoms, molecules and other particles in moles. The number of moles, Avogadro's number, relates to the relative sizes of atomic mass units and gram mass units. A hydrogen atom has a mass of about 1 u, while a mole of H atoms has a mass of about 1 gram.
C + 2F₂ → CF₄
Mole ratio of F₂ and CF₄ is 2:1 i.e, the moles of fluorine are twice as much as the moles of carbon tetrafluoride.
Moles of carbon tetrafluoride = 7.65 moles
Moles of fluorine = 2 × 7.65
= 15.3 moles.
For mass of fluorine:
m = n × Mm
Where, m = mass of fluorine
n = moles of fluorine (15.3 moles)
Mm = molar mass of fluorine (37.99 g/mol)
m = 15.3 × 37.99
m = 581.247 g
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A student needs to dilute a 0.49 M Pb(NO3)2 solution to make 87.0 mL of 0.21 M Pb(NO3)2 . Set up the calculation by placing the values with the correct units into the equation. Then, calculate the volume, in milliliters, of the 0.49 M Pb(NO3)2 solution that is needed.
The initial volume of the solution of Pb(NO3)2 is 37.29 milliliters required to dilute for mentioned condition.
The volume will be calculated by the formula -
[tex] M_{1}[/tex][tex] V_{1}[/tex] = [tex] M_{2}[/tex][tex] V_{2}[/tex], where we have initial concentration and volume on Left Hand Side and final concentration and volume on Right Hand Side. Now, keeping the values in formula to find the final volume in milliliters.
0.49 × [tex] V_{1}[/tex] = 0.21 × 87
Performing multiplication on Right Hand Side of the equation
0.49 × [tex] V_{1}[/tex] = 18.27
Shifting the numerical value from Left Hand Side to Right Hand Side of the equation
[tex] V_{1}[/tex] = 18.27 ÷ 0.49
Performing division on Right Hand Side of the equation
[tex] V_{1}[/tex] = 37.29 millilitres
Hence, the volume is 37.29 milliliters.
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g draw a picture showing your hypothesis about how they do this. the following items should be included in the picture: protons, atp synthase, electron carriers/transport proteins and molecules, inorganic electron donor, inorganic electron acceptor
An assumption based on some evidence is known as a hypothesis. This is the starting step of any investigation that converts the research questions into hypotheses, such as protons and electron carriers.
Additionally, transport molecules and proteins as well as inorganic electron acceptor and donor are used in hypothesis. Variables, the population, and how the variables relate to one another are all included. The association between two or more variables is tested using a research hypothesis. An atom's stable negatively charged element is called an electron. The atom's nucleus is surrounded by and has electrons outside of it. When compared to a neutron or proton, an electron's mass is very little and it contains one unit of negative charge (1.602 x 10 -19 coulomb).
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Which of the answer choices is a form of nitrogen that can be utilized by plants?
Please choose the correct answer from the following choices, and then select the submit answer button.
NO3-
N2
NO2-
None of the other answer options is correct.
NH4+
NO3 is a form of nitrogen that can be utilized by plants.
What is an NO3?
The chemical formula for the polyatomic ion nitrate is NO3. The word "nitrates" refers to salts that include this ion. Many fertilizers and explosives have nitrates as a component. Water can dissolve almost all inorganic nitrates.
What is an nitrogen?
In Group 15 [Va] of the periodic table, nitrogen (N) is a nonmetallic element. The most prevalent element in the atmosphere of Earth is this colorless, flavorless, and odorless gas, which is also a component of all living things nitrogen.
Therefore, NO3 is correct answer.
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During the transamination process, the enzyme transaminases uses ________ as a cofactor.
A) Tetrahydrofolate
B) Folate
C) Pyridoxal pyrophosphate
D) Phylloquinone
During the transamination process, the enzyme transaminases use Pyridoxal pyrophosphate as a cofactor.
All transamination reactions, as well as several amino acid oxylation and deamination processes, involve the coenzyme pyridoxal phosphate. The aminotransferase enzyme's epsilon-amino group of a particular lysine group forms a Schiff-base bond with the aldehyde group of pyridoxal phosphate.
The epsilon-amino group of the lysine residue in the active site is replaced by the alpha-amino group of the amino acid substrate. The ensuing intermediate, a quinoid, undergoes deprotonation to become an aldimine, which is then protonated to become a ketimine by accepting a proton in a different position. Ketamine undergoes hydrolysis, leaving the amino group on the protein complex intact.
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list all possible downward transitions for an electron in the 3d state. remember the selection rules!
All possible downward transitions for an electron in the 3d state are 1s 2s 2p 3s and 3p.
The transition state of a chemical reaction is a particular configuration along the reaction coordinate. It is defined as the state corresponding to the highest potential energy along the reaction coordinate. It is often marked with the double dagger.
The transition state is a high-energy state, and some amount of energy the activation energy must be added in order for the molecule reach it. Because the transition state is unstable, reactant molecules don't stay there long, but quickly proceed to the next step of the chemical reaction.
In an atom, electrons can transition up or down depending on whether they absorb energy or emit energy. Electrons naturally want to be in the lowest possible energy state. Downward transitions would be possible to any lower energy level than the one the electron starts in so all possible downward transitions for an electron in the 3d state are 1s 2s 2p 3s and 3p.
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ct the bond order for the molecule cs2, which exists in the gas phase at high temperature. would cs2 be paramagnetic or diamagnetic? bond order
In the gas phase, orbital mixing or sigma pi crossover occurs at high temperatures. Between carbon and oxygen molecules, there are differences in the molecular orbital arrangement.
What do you think of orbital theory?
Every atom has a propensity to cluster together to form molecular orbitals, claims the molecular orbital theory. Because of this arrangement, electrons are commonly connected to various nuclei and can be found in a wide range of atomic orbitals.
How is the theory of molecular orbitals created?
The atomic orbitals of the molecules' atoms are combined to form the molecules' molecular orbitals. Take the H2 molecule as an illustration. The mathematical functions for the two 1s atomic orbitals that combine to produce one of the molecule's molecular orbitals are added together.
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Nuclear decay occurs according to first-order kinetics. A nuclide decays in 23. 0 minutes from 12. 9 g to 2. 04 g. What is the rate constant for the nuclide?.
The kinetics of first order governs nuclear decay. The nuclide's rate constant is 0.0803 min1, and it decays from 12.9 g to 2.04 g in 23.0 minutes.
By nuclide, what do you mean?This number of protons, neutron, and the activity state of a nucleus define a species of atom known as a nuclide, also known as a nuclear species. Thus, a nuclide is identified by its atomic number and mass number (A) (Z).
Nuclide example: What is it?A kind of atom known as a nuclide is one that has a particular number of proton and neutrons with in nucleus, such as carbon-13, which has 6 protons & 7 neutrons. Radionuclides connected to the carrier release ionizing radiation that kills cancer cells.
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the balanced equation for part 2 of the experiment is: zn (s) cu2 (aq) cu (s) zn2 (aq) this reaction is... group of answer choices not spontaneous because e0cell > 0 spontaneous because e0cell < 0 not spontaneous because e0cell < 0 spontaneous because e0cell > 0
The above reaction is a spontaneous reaction as E0cell>0 and the reaction proceeds spontaneously.
What is electromotive potential?
The terminal potential difference, also known as EMF or electromotive force, occurs when no current flows.
The half reactions of the equation being
Zn (s) → Zn2+ (aq) + 2e- oxidation half-reaction (Zn2+ (aq) + 2 e- → Zn (s) -0.76)
Cu2+ (aq) + 2e- → Cu (s) reduction half reaction (Cu2+ (aq) + 2 e- → Cu (s) +0.34)
E°oxid=- E°red= +0.76V
The chemical reaction occurs spontaneously, and an electron participates in it.
Therefore the above reaction is a spontaneous reaction as E0cell>0 and the reaction proceeds spontaneously.
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The equation shows reactants to a neutralization reaction. ca2 ohâ€"" h no which describes what will happen to the h when these reactants form products? h binds with no to make a salt. h binds with ca2 to make an acid. h binds with ohâ€"" to make water. h binds with ca2 to make a base.
Reactants for a neutralization reaction are shown in the equation. When these reactants produce products, H+ will be released and will bind with OH- to form water.
What is neutralization reaction?In a neutralization reaction, which takes place when an acid and a base react to produce water and a salt, the interaction of H+ ions and OH- ions results in the production of water. The neutralization of a strong acid and strong base yields a pH of 7. Neutralization or neutralisation is the quantitative chemical reaction between an acid and a base. Hydroxide or surplus hydrogen ions are eliminated from the solution by neutralizing the reaction in water.
What is a neutralization reaction example and why it is used?Strong acid and strong base reactions produce a salt that is neither acidic nor basic in nature, or neutral. For instance, sodium chloride and water are produced when HCl (hydrochloric acid), a powerful acid, combines with NaOH, a powerful base.
Taking a base balances out our stomach's excess acid. Due to the formic acid in the ant sting, it can be painful. Using moist baking soda, which is basic in nature, we can counteract this acid effect and lessen the pain brought on by the sting.
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What is the mass of an atom with 14 protons, 11 neutrons, and 10 electrons?
A. 21 amu
B.
24 amu
C.
27 amu
D.
25 amu
Answer:
D. 25 amu
Explanation:
Answer:
D
Expla
14 NHÂN 1 + 11 NHÂN 1 = 25 AMU
Barium-131 is used in the detection of bone tumors. The half-life of barium-131 is approximately 12 days. How long will it take for the radiation level of barium-131 to drop to 1/4 of its original level?.
It will take 24 days long for the radiation level of barium-131 to drop to 1/4 of its original level.
What is radiation level?
To achieve a more stable state, an unstable atom will sometimes release energy on its own, causing radioactivity. Ionizing Energy released by a radioactive atom is known as radiation. Different radioactive atoms of the same element with varying amounts of neutrons are known as radioactive isotopes.
These forces eliminate extra atomic energy in order to achieve a strong, stable balance (radioactivity). Radiation is the term for the spontaneous emission of energy that may occur as a result of unstable nuclei during that process.
Therefore, It will take 24 days long for the radiation level of barium-131 to drop to 1/4 of its original level.
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in which species can we describe the central atom as having sp3d hybridization? select all that apply.
In which species can we describe the central atom as having sp³d hybridization is SF₄.
The hybridization of SF₄ :
number of electron pair = 1 / 2 [ V + N + C - A ]
where, V = number of valence electron = 6
N = number of molecule = 4
C = cation = 0
A = anion = 0
number of electrons pair = 1 /2 [ 6 + 4 ]
= 5
The , number of electron pair is 5 out which 4 are bonding electrons and one is non bonding electron pair , present as lone pair. the hybridization is sp³d.
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What happens to the chemistry of the seawater as more co2 is absorbed into the oceans?.
As more co2 is absorbed into the oceans the PH of the oceans dropped, making the water there more acidic.
Why does seawater include substances?
Seawater contains a wide variety of distinctive compounds. Numerous of these chemicals can be seen as a result of freshwater in water evaporating and leaving behind salt. Water, or H2O, is a pure substance made up only of water and oxygen.
What class of chemical solution is seawater?
Seawater is a mixture of dissolved chemicals and rainwater. Water is a fantastic solvent. Solvents are juices that dissolve other substances. The bulk of the water on earth, including the liquid in oceans, lakes, rivers, and ponds, contains a variety of solutes.
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if 3.33 mol3.33 mol of an ideal gas has a pressure of 2.11 atm2.11 atm and a volume of 60.51 l,60.51 l, what is the temperature of the sample in degrees celsius?
The temperature of the sample in degrees celsius is 238.89ºC.
The ideal gas equation can be rewritten to demonstrate that the pressure of a sample of gas is directly proportional to the number of moles of the gas present if volume and temperature are held constant:
deal Gas Law
PV = nRT
P = pressure = 2.10 atm
V = volume = 77.27 L
n = moles = 3.86
R = gas constant = 0.0821 Latm/Kmol
T = temperature in Kelvin = ?
Solving for T:
T = PV/nR = (2.10)(77.27)/(3.86)(0.0821)
T = 512.04 K
To convert to ºC, subtract 273.15K
T = 512.04 - 273.15 = 238.89ºC
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a) Draw the structure of the tetrahedral intermediate INITIALLY-FORMED in the reaction shown.
-You do not have to consider stereochemistry.
-Do not include counter-ions, e.g., Na+, I-, in your answer.
-In cases where there is more than one answer, just draw one.
b) Draw the structures of the organic products of the acyl transfer reaction.
-You do not have to consider stereochemistry.
-Draw the neutral form of the products; no charges.
-Draw one structure per sketcher. Add additional sketchers using the drop-down menu in the bottom right corner.
-Separate multiple products using the + sign from the drop-down menu.
Triphenyl stereochemistry. methanol is the product of the Grignard reaction between methyl benzoate and excess phenylmagnesium bromide.
We will have a reduction reaction in this case. We progress from an ester group to an alcohol group. The first step is to transfer a hydride from the LiAlH4 group to the carbonyl group. The ethyl group then separates to form ethanol and an aldehyde, which continues to react with more LiAlH4. In this case, another hydride is transferred to the carbonyl group, resulting in the formation of alcohol. (See Fig.)
Triphenyl methanol is the stereochemistry product of the Grignard reaction between methyl benzoate and excess phenylmagnesium bromide.
As the carbonyl moiety is attacked, the reaction proceeds via nucleophillic reaction. There is the formation of a tetrahedral intermediate. The attack of the first molecule of PhMgBr is accompanied by the loss of the -OMe group.
Trimethyl phenoxide is produced by the attack of a second PhMgBr molecule. Protonation
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which salt is dissolved in agar to form the salt bridge from the cu chamber? cu(no3)2 no salt cuso4 kno3
To create the salt bridge from the cu chamber, potassium chloride or potassium nitrate that have gelled in the agar-agar media are dissolved in agar.
What is the salt bridge?
a type of electrochemical cell that joins the oxidation and reduction half cells with the aid of a salt bridge and a weak electrolyte. A salt bridge is a connector that connects an electrolytic solution's anodic and cathodic compartments.
What sort of salt bridge is this?
Salt bridges can be made using KCl, AgNO3, and other substances. Salt bridges are often utilized in a galvanic cell, such as a voltaic cell or Daniel cell. If there is no salt bridge, the solution in the half cell will accumulate the negative charge.
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how much heat is needed to convert 906 of ice at to steam at ? be sure your answer has the correct number of significant digits.
Amount of heat energy that is required to heat 906 g of ice to steam is 530952 Joules.
Explanation:
Given:
Amount of transferred energy = Q =?
Mass of ice (water) = m = 906 g
Initial temperature of ice = T(i) = -22° C
Final temperature of steam = T(f) = 118°C
Formula for Heat capacity is given by
Q = m×c×Δt ........................................(1)
where:
Q = Heat capacity of the substance (in J)
m=mass of the substance being heated in grams(g)
c = the specific heat of the substance in J/(g.°C)
Δt = Change in temperature (in °C)
Δt = (Final temperature - Initial temperature) = T(f) - T(i)
= 118 - (-22) = 140°C
Specific heat of water is c = 4.186 J /g. °C
Substituting these in equation (1), we get
Q = m×c×Δt
= 906 × 4.186 × 140
= 530952.24 J
The heat energy required is equal to 530952.24 Joules ≅ 530952 Joules.
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what systematic error are we trying to reduce by using chilled water in a calorimeter before adding a hot metal?
Error we trying to reduce by using chilled water in a calorimeter before adding a hot metal is specific heat calculation.
These circumstances are ideal since they make temperature variations more obvious.
In this experiment, ice was introduced to the calorimeter to cool the water below room temperature before the hot metal was added. We can lower systemematic error in this method. The specific heat calculation would be off if we used water that was room temperature.
Unwanted heat loss to the environment is typically the main source of mistake in calorimetry. By adding a lid and insulating the calorimeter's sides, this can be decreased.
Following are three potential sources of mistake in a calorimetry: measurement of temperature, mass calculation, unwanted heat leakage to the environment.
Thus, using chilled water in a calorimeter before adding a hot metal will reduce systematic errors.
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the heat of vaporization of h2s, at its boiling point (–61°c) is 18.8 kj/mol. what mass of h2s can be vaporized (at its boiling point) with 100 kj of energy?
Mass of h2s can be vaporized (at its boiling point) with 100 kj of energy is 181g.
Energy = 100 kj
heat of vaporization of h2s = 18.8 kj/mol
Mass of h2s can be vaporized = Energy x molar mass/ heat of vaporization .
100 x 1 x 34.1g/18.8 = 181g
An object's or a substance's mass is a measurement of how much matter there is in it. Although grams can be used to measure smaller masses instead of kilograms, which is the standard SI unit for mass Using a balance would be necessary to determine mass. The quantity of matter in a specific object is measured by its mass. It will have the same mass regardless of where that object is in the vast universe. A measurement of the gravitational force acting on an object is its weight, on the other hand. Mass/weight units. The metric system uses the mass units gram (g), kilogram (kg), and tonne (t). 1000 g = 1 kg. A ton is 1000 kilograms.
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an aqueous ethanol solution (400 ml) was diluted to 4.00 l, giving a concentration of 0.0400 m. the concentration of the original solution was m. question 29 options: 4.00 2.00 1.60 0.400 0.200
The ethanol solution (400 ml) was diluted to 4.00 l, which gives a concentration of 0.0400 M. The concentration of the original solution is 0.400 M.
To solve this question, first we need to convert the given volume of a diluted solution in ml
4.00 L×(1000 mL/1 L)=4000 mL
According to the dilution law, degree of dissociation of a weak electrolyte is inversely proportional to the square root of molar concentration. The dilution law in the form of formula is
M₁V₁=M₂V₂
Where, M₁=?
V₁=400 mL
V₂=4000 mL
M₂=0.0400 M
Rearrange the formula for M₁ and solve
M₁=(M₂×V₂/V₁)
M₁=(0.0400 M×4000 mL/400 mL)
M₁=(160 M/400)
M₁=0.400 M
Therefore, the concentration of the original solution is 0.400 M.
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Which chemical forms a white precipitate when you test for sulphate ions in solution?
The chemical that is forms a white precipitate when you test for sulphate ions in solution is called barium sulfate.
What is barium sulphate?Barium sulfate is described as the inorganic compound with the chemical formula BaSO₄ that is a white crystalline solid that is odorless and insoluble in water. It occurs as the mineral barite, which is the main commercial source of barium and materials prepared from it.
During qualitative analysis of anions, sulphates react with barium chloride to form white precipitate of barium sulphate.
Barium Sulphate is known to be composed of a barium cation and the sulphate anion. The sulphur is seen to be attached to four oxygen atoms. BaSO4 is a sulphate salt of barium and is found as the mineral barite which is a crystalline solid white which is insoluble in water and alcohol but soluble in concentrated acids.
Barium Sulphate is odourless.
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the initial temperature of 100.0 ml of water was 23 oc. the water was then heated to 87 oc. how much heat (in j) was required for this temperature change?
The heat was required for his temperature change 26752 J.
given that :
volume : 100 mL
The initial temperature = 23 °C
The final temperature = 87 °C
ΔT = 87 °C - 23 °C = 64 °C
density = mass / volume
mass = density × volume
= 1 × 100
= 100 g
the specific heat expression is given as :
Q = m c ΔT
where,
specific heat capacity , c = 4.18 J/g °C
mass of water , m = 100 g
change in temperature , ΔT = 64 °C
Q = 100 × 4.18 × 64
Q = 26752 J
Thus, the initial temperature of 100.0 ml of water was 23 °C . the water was then heated to 87 °C .heat (in j) was required for this temperature change is 26752 J.
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draw a lewis structure for nbr3. the next four questions use the lewis structure of nbr3. what is the electronic geometry?
Lewis structure for nbr3 is:
5+7(3) = 26
structure:
:[tex]\ddot{Br}[/tex]:[tex]\ddot{N}[/tex]:[tex]\ddot{Br}[/tex]:
:[tex]\ddot{Br}[/tex]:
What is Lewis structure?
A Lewis structure is a very condensed representation of the electrons in the valence shell of a molecule. It provides a picture of the location of the electrons around the atoms of a particular molecule. The electrons are shown as "dots" or as a line when two atoms are bound together.
An oxygen atom, for example, has six electrons in its outer shell.
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