agriculture. The largest source of pollution to the Bay comes from agricultural runoff, which contributes roughly 40 percent of the nitrogen and 50 percent of the phosphorus entering the Chesapeake Bay.
Airborne nitrogen is one of the most significant polluters of the Chesapeake Bay and its tributaries. Excess nitrogen may drive the growth of algae blooms, preventing sunlight from reaching underwater grasses and creating low-oxygen "dead zones" that smother marine life. Nitrogen and phosphorus occur naturally in aquatic habitats, but human activities such as fertilizer usage, wastewater management, fossil fuel combustion, and soap and detergent discharge inject excess nutrient pollution into ecosystems quicker than ecosystems can respond. 1At Home and Around the Neighborhood: Fertilizers, yard and pet waste, and some soaps and detergents contain nitrogen and phosphorus and, if not utilized or disposed of appropriately, can contribute to nutrient contamination.
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For each of the iron measurements, use the data You collected during te experiment to record the quantities in the table below Remember to pay attention t0 significant figures pnd record all masses and volumes with all the decimals provided by the lab Toal volume of water plus iron (mL) 30.64 ml 31.27 31.91 32,54 83 18 Toalmass of iron in the cylinder (g) 89.000 94.000 99.000 104.000 409.000 3 For each of the aluminum measurements, use the data you collected during the experimentto record the quantities in the table below. Remember to pay attention t0 signmicant igures and Tecord all masses and volumes with all the decimals provided by the lab Toll volume 01 water plus aluminum (mL) 31.85 33.70 35.56 37.1 39.26 Joa1 mess ofaluminum in the cylinder (g) 89.0oQ 94.Q00 99.000 404.000 102 00 Data Analysis IFor each of the iron mpaciirements Mse the dat? von coliected dirinothapydarinaokia DiZhG % SPAN 1205 WORDS RoweRAD BikmmR'
The volume of a liquid can be directly measured with specialized glassware, typically in units of milliliters (mL) or liters (L).
Define volume of iron?
If the metal is awkwardly shaped, you can calculate the volume using the displacement method. Fill a beaker half-way and record the volume of water. Insert the metal into the water and record the new volume of water. Subtract the initial volume of water from the final volume to determine the volume of the metal.The density of iron ρ is mass/volume, and the density is 7.874g/cm^3. So the volume of iron is v = m/ρ, or in words, the volume of iron is the mass divided by the density, 7.874g/cm^3Iron is used to make alloy steels like carbon steels with additives such as nickel, chromium, vanadium, tungsten, and manganese. These are used to make bridges, electricity pylons, bicycle chains, cutting tools and rifle barrels. Cast iron contains 3–5% carbon. It is used for pipes, valves, and pumps.To learn more about iron refers to:
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base your answers to questions 63 through 65 on the information below and on your knowledge of chemistry. tritium, hydrogen-3, is a radioisotope.
Answer:
63. What is the atomic number of tritium?
The atomic number of tritium is 1, as it is a isotope of hydrogen, which has an atomic number of 1.
64. How is tritium typically produced?
Tritium is typically produced through nuclear reactions, such as those in a nuclear reactor or during nuclear weapons testing. It can also be produced in small amounts through the interaction of cosmic rays with the Earth's atmosphere.
65. What are some of the applications of tritium?
Tritium has a number of applications, including as a radioactive tracer in medical imaging and research, and as a fuel for nuclear fusion reactions. It can also be used in self-powered lighting devices, such as exit signs and emergency lighting. Additionally, Tritium is used to produce the radioactive isotope Helium-3, which is used in nuclear magnetic resonance imaging (MRI) and in neutron detection.
162 grams of copper reacts with 17 grams of oxygen in order to produce copper (II) oxide in a synthesis reaction. How much copper (II) oxide is made
Answer: 179 grams
Explanation:
In a chemical reaction, the law of conservation of mass applies, meaning that the total mass of the reactants is equal to the total mass of the products. In this case, the reactants are 162 grams of copper and 17 grams of oxygen, and the product is copper (II) oxide. Using the balanced chemical equation 2Cu + O2 -> CuO, we know that 1 copper atom reacts with 1 oxygen molecule to form 1 copper oxide. Therefore, the mass of copper oxide produced is equal to mass of copper plus mass of oxygen, which is 162g + 17g = 179g.
Which of the following is the balanced net ionic equation for an oxidation-reduction reaction between ag (aq) and ni(s) based on the half-reactions represented above?
Ni(s) â Ni²+(aq) + 2e
Ag (aq) +e â Ag(s)
a. Ag+ (aq) + Ni(s) â Ag(s) + Ni²+(aq)
b. 2 Ag+ (aq) + Ni(s) â Ag(s) + 2Ni2+
c. Ag+(aq) + 2Ni(s) â Ag(s) + 2NiZ+(aq)
d. 2Ag+(aq) + Ni(s) â 2Ag(s) + Ni²+(aq)
The balanced net ionic equation for an oxidation-reduction reaction between Ag+ (aq) and Ni(s) based on the half-reactions represented above is: d. 2Ag+(aq) + Ni(s) â 2Ag(s) + Ni²+(aq)
The reason is that both half-reactions must be balanced for both electrons and atoms, so the number of electrons lost by the oxidation half-reaction must equal the number of electrons gained by the reduction half-reaction. In this case, the oxidation half-reaction is: Ag+(aq) + e- -> Ag(s) which loses 1 electron. The reduction half-reaction is: Ni(s) -> Ni²+(aq) + 2e- which gains 2 electrons. To balance the number of electrons between the two half-reactions, we need to multiply the oxidation half-reaction by 2, so that it loses 2 electrons. So the balanced net ionic equation is 2 Ag+(aq) + Ni(s) -> 2 Ag(s) + Ni²+(aq).
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A 50.0 g sample of Fe at 100 degrees C is added to 500.0 mL of water at 35 degrees C in a perfectly insulated container. Which of the following statements is true?
A. The temperature of the water will decrease.
B. The temperature change of the Fe will have the same magnitude as the temperature change of the water.
C. The heat energy lost by the Fe will be less than the heat energy gained by the water.
D. The heat energy lost by the Fe will be equal to the heat energy gained by water.
On adding 50 g sample of iron at 100°C is added to 500 mL of water at 35°C in a perfectly insulated container, then the heat energy which is lost by iron will be equal to the heat energy which is gained by water.
When a particular system is isolated inside an insulated container, then the heat energy is transferred from the sample to the water and also to the container. According to the law of conservation of energy, the heat energy which is lost by the added sample is equal to the heat energy which is gained by the water as well as the container.
When 50g of iron sample at 100°C is added to 500mL water at 35°C in an insulated container, then the heat energy which is lost by the iron sample will be equal to the heat energy gained by the water.
Hence, the correct option is D. The heat energy which is lost by iron will be equal to the heat energy that is gained by water.
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Which pair shares the same empirical formula?
A) c2h2 and c6h6
B) c2h2 and c2h4
C) ch2 and c6h6
D) ch and c2h4
Answer: a. C2H2 C 2 H 2 and C6H6 C 6 H 6
Explanation:
The pair with the same ratio will have the same empirical formula. a. C2H2 C 2 H 2 has a 1:1 ratio, and C6H6 C 6 H 6 also has a 1:1 ratio. Therefore, this pair shares the same empirical formula.
Write and balance the chemical equation for Gaseous chlorine reacts with an aqueous solution of potassium bromide to form liquid bromine and an aqueous solution of potassium chloride
The chemical equation for the given reaction is Cl₂+2KBr→2KCl+Br₂.
What is a chemical equation?When chemical bonds between atoms are made or broken, chemical processes take place. Reactants are the substances that start a chemical reaction; products are the substances that come out of the process. To show the direction of a chemical equation, an arrow is drawn between the reactants and products. However, as we'll see in more detail in the section after this, a chemical equation is not always a "one-way street." Since no atoms are formed or destroyed during a typical chemical equation, equations must be balanced to reflect this principle. This principle is known as the law of conservation of matter.
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If the a of a monoprotic weak acid is 7.1×10−6, what is the pH of a 0.23 M solution of this acid?
The pH of the monoprotic acid solution is 2.9.
What is the pH of the acid?We know that the pH has to do with the amount of the hydrogen ions that we have in the solution expressed as the negative logarithm. Now, we can see that we have the Ka of the acid from the question as 7.1×10^−6.
Now;
Ka = x^2/(0.23 - x)
Then we have;
7.1×10^−6 = x^2/0.23 - x
7.1×10^−6(0.23 - x) = x^2
1.6 * 10^-6 - 7.1×10^−6x = x^2
Hence, we can make the quadratic from;
x^2 + 7.1×10^−6x - 1.6 * 10^-6 = 0
x = 0.00126 M
pH = -log ( 0.00126 M)
= 2.9
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Concentration of the tubular filtrate by the countercurrent mechanism is dependent on all of the following except:A. High salt concentration in the medullaB. Water-impermeable walls of the ascending loop of HenleC. Reabsorption of sodium and chloride from the ascending loop of HenleD. Active transport reabsorption of sodium and glucose in the proximal convoluted tubule
The concentration of tubular filtrate by counter current is the mechanism that is depend on all of the given option but except D. Active transport reabsorption of sodium and glucose in the proximal convoluted tubule.
The counter current mechanism depends on the following :
A. The High salt concentration in the medulla.
B. The Water-impermeable walls of the ascending loop of the Henle.
C. The Reabsorption of the sodium and the chloride from the ascending loop of the Henle.
Thus the correct option that counter current mechanism not dependent on is D. Active transport reabsorption of sodium and glucose in the proximal convoluted tubule.
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1. observe : experiment with a hollow pipe of gold and a solid chunk of gold separating the flasks. compare how quickly heat is exchanged
The heat will remain constant.
Here, we know that both the bodies are made up of same material, hence its orientation will not affect its expansion.If you provide heat to a body or remove heat from a body, the temperature of that body will increase or decrease respectively.Change in temperature of the body depends upon the nature of its material and the amount of heat supplied.As both the bodies are of gold, the heat will remain constant.Go through the given link below to know more about heatheat:-
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tra- 2.a: explain the relationship between the rate of a chemical reaction and experimental parameters
The pace at which reactants change into products is known as the rate of a chemical reaction. Several experimental factors, such as the following, have an impact on the pace of a chemical reaction:
. Temperature: As a reaction's temperature rises, the kinetic energy of the reactant molecules rises as well, increasing the possibility of successful collisions between reactant molecules. The reaction's rate rises as a result of this.
. Concentration: Increasing the amount of reactants in a process causes more molecules to collide with one another, which accelerates the reaction.
. Surface area: Increasing a solid reactant's surface area causes more molecules to collide with one another, speeding up the reaction.
. Catalyst: A catalyst is something that speeds up a chemical reaction without becoming eaten by it. By offering an alternative reaction pathway, it lowers the activation energy necessary for the reaction to happen.
. Pressure: Increasing the pressure of the reactants in gas-phase reactions causes more molecules to collide, which accelerates the reaction's pace.
Overall, there are many variables that might affect and complicate the link between the experimental parameters and the rate of a chemical reaction. One or more of these parameters can be altered to raise or reduce the rate of a reaction.
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magnesium sulfate is commonly found in one of three hydrated forms in different minerals. a. identify one of the minerals in which the magnesium sulfate is found in its hydrated form.
Epsomite or Epsom salt is one of the minerals in which magnesium sulfate is found in its hydrated form.
Magnesium sulfate heptahydrate, often known as epsomite, is a mineral having the chemical formula MgSO47H2O.
Epsomite often takes the form of vast encrustations, however, the orthorhombic system can occasionally produce acicular or fibrous crystals. It ranges from colourless to white with pink, green, and yellow undertones. The specific gravity is only 1.67 and the Mohs hardness ranges from 2 to 2.5.
It dissolves easily in water. After absorbing water from the air, it changes to hexahydrate, losing one water molecule along the way and adopting a monoclinic shape.
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HELP PLEASE !
Stuart Wilkinson, the engineer of "Chew-Chew" said, "we stole the idea of eating food
from the biological world, but we are marrying that idea to useful robotic capabilities."
Which of the following would not be an application of Stuart Wilkinson's theory?
O
A. a garden cultivator that feeds on soil
B. a leaf mulcher that feeds on foliage
C. a lawn mower that feeds on grass clippings
D. a recycling truck that feeds on petroleum
E. a trash compactor that feeds on garbage
The following which would not be an application of Stuart Wilkinson's theory as regards marrying the idea of useful robotic capabilities in terms of eating food is a recycling truck that feeds on petroleum and is denoted as option D.
What is a Robot?This is referred to as a machine which is able to replicate certain human movements and functions automatically through the use of an external control device.
Since Stuart Wilkinson's theory intends to marry the idea of useful robotic capabilities in terms of eating food then a recycling truck that feeds on petroleum isn't accurate because petroleum isn't a source of food.
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for each of these, tell which figure is closest to the correct answer: a) a baseball bat has a length of 100mm or 100 cm or 100 m. b) a glass of milk holds 23 cc or 230 mL, or 23 L. C) a man weighs 75 mg or 75 g or 75 kg. d) a tablespoon contains 15 mL or 150 mL or 1.5 L. e) a paper clip weighs 50 mg or 50 g or 50 kg. F) your hand has a width of 100 mm or 100 cm or 100 m.
According to the standard metric system, the correct figure indicating the right answer in a is 100 cm of baseball, and in b 230 ml of milk in glass and man of weight 75 kg.
What is standard metric system ?There are certain standard units used for the measurement of each parameter. For example, the mass of a person is said in kg. The volume of a liquid is expressed in ml or L. Similarly, the the width of an area is expressed in mm or cm for a small object.
The length of a the ball is expressed in centimeters. Hence, 100 cm is the answer. The volume of milk in the glass is 230 ml of milk and man of weight 75 kg is correct.
The volume in the table spoon is 15 ml and the weight of paper clip is 50 g. Similarly the width of hand is 100 mm.
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when a 9.55 g sample of solid sodium hydroxide dissolves in 100g of water in a coffee cup caliometry
The delta H (in KJ/mole NaOH) for the solution (9.55g sample of solid NaOH (sodium hydroxide) dissolves in 100g of calorimeter in coffee-cup calorimeter, the temperature rises from 23.6 to 47.4 Celsius.) process = 31,204 kJ/mol
The specific heat capacity of a material is defined as the amount of heat (J) absorbed per unit mass (kg) when its temperature rises 1 K (or 1 °C), and its units are J/(kg K) or J/(kg °C).
Specific heat of water = 4.18 J/g °C
The total mass = 100 + 9.55 = 109.55 g
To determine the heat, use equation:
Q = mCΔT
Where:
Q = heat energy (Joule)
m = mass (kg)
C = specific heat (J/g°C)
ΔT = change in temp (°C)
Q = (109.55) x (4.18) x (47.4 - 23.6)
= 10,898 Joule
Moles of NaOH: mass / molar mass
= 9.55 / (23 + 16 + 1)
= 0.23
Enthalpy of reaction:
7177 / 0.23 = 31,204 kJ/mol NaOH
So, delta H (in KJ/mole NaOH) for the solution process = 31,204 kJ/mol
The question is incomplete, it should be:
When 9.55g sample of solid NaOH (sodium hydroxide) dissolves in 100g of calorimeter in coffee-cup calorimeter, the temperature rises from 23.6 to 47.4 Celsius. Calculate Delta H (in KJ/mole NaOH) for the solution process. Assume that the specific heat of the solution is the same as that of pure water.
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which of the following diagrams represent a bonding molecular orbital? please choose all correct answers.
The given diagram represents the bonding molecular orbital with 2 pi bonds overlapping laterally.
The bonding orbital term is used in the molecular orbital theory or the MO theory which is used to describe the attractive interactions which occur between the atomic orbitals of two or more than two atoms in a molecule.
There are two types of molecular orbitals namely the bonding molecular orbitals and the antibonding molecular orbitals. Bonding molecular orbitals are types of molecular orbitals which are involved in the formation of the chemical bonds whereas the antibonding molecular orbitals are the orbitals which contain the electrons that are present outside the region which is there between two atomic nuclei.
In the given diagram, there is a lateral overlap of two pi bonding molecular orbitals.
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give a formula corresponding to the following name: tris(ethylenediamine)cobalt(iii) pentacyanoiodomanganate(ii)
[Co(en)3] [Mn(CN)5I2] is the formula for tris(ethylenediamine)cobalt(III) pentacyanoiodomanganate(II). Tris(ethylenediamine)cobalt(III) pentacyanoiodomanganate(II) is a complex molecule.
containing two metal ions, cobalt and manganese, which are coupled to distinct ligands. The cobalt ion forms a [Co(en)3] unit with three ethylenediamine (en) ligands. The manganese ion forms a [Mn(CN)5I2] unit with five cyanide (CN) ligands and two iodine (I2) ligands. The compound's overall formula is [Co(en)3] [Mn(CN)5I2]. The complex contains a cobalt ion in the +3 oxidation state and a manganese ion in the +2 oxidation state. Because the ethylenediamine ligands are bidentate, they can bind with the metal ion via two distinct nitrogen atoms. Cyanide ligands are bidentate as well, coordinating via the nitrogen atoms. The iodine ligands are not coordinated to each other.
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If BH3 formed the trigonal planar molecule shown in the image below, which statement would best describe BH3?
If BH3 formed the trigonal planar molecule, Boron does not contain a complete octet of electrons.
About boronBoron compounds such as borax (sodium tetraborate, Na2B4O7·10H2O) have been known and used by ancient cultures for thousands of years. However, boron was first partially isolated in 1808 by French chemists Joseph L. Gay-Lussac and L. J. Thénard and separately by Sir Humphry Davy in London. In 1909, the American chemist Ezekiel Weintraub produced 99% pure boron by reducing boron halides with hydrogen.
Nearly a century later, in 2004, Jiuhua Chen and Vladimir L. Solozhenko produced a new form of boron, but were unsure of its structure. Boron is a semi-metallic (metalloid) element and does not occur freely in nature. The abundance of boron in nature is very low, which is around 0.0003% and its minerals are found in the form of ulexite, borax, collemanite, and kernite. The element boron has 2 isotopes, namely boron-10 with an abundance of about 20% and boron-11 with an abundance of about 80%.
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AlCl₃ has a van't Hoff factor of i = 3.20. What is the concentration of particles in a 0.651 M solution of AlCl₃?
The concentration of particles in a 0.651 M solution of AlCl₃ is 2.06 M.
This can be calculated by multiplying the molarity of the solution (0.651 M) by the van't Hoff factor (3.20). Therefore, 0.651 x 3.20 = 2.06.
What is molarity?
Molarity is a unit of concentration that is defined as the number of moles of a solute per liter of solution. It is usually represented by the symbol M. The calculation of molarity is done by dividing the number of moles of a solute by the total volume of the solution in liters. It is also often used in dilutions, where the concentration of a solution is reduced by adding more solvent. Molarity is a very important concept in chemistry and is used to predict and measure the amount of substances needed in a reaction.
Therefore, The concentration of particles in a 0.651 M solution of AlCl₃ is 2.06 M.
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how many significant figures are in each of the following measured quantities? drag the appropriate items to their respective bins.
The rules for deciding which digits in a measurement are significant are as follows: Rule 1: All nonzero digits in a measurement are significant.
What are measured quantities?
In physics, there are seven fundamental physical quantities that are measured in base or physical fundamental units: length, mass, time, electric current temperature, amount of substance, and luminous intensity.Measured quantities are typically expressed in number (e.g door handles), length (e.g handrails, kerbs), area (e.g floor tiles, plaster), volume (e.g concrete) or weight (e.g gravel).In the International System I of Units, there are seven base units: kilogram, meter, candela, second, ampere, kelvin, and mole.The choice of which physical quantities are taken as fundamental is somewhat arbitrary, but the three usually selected are length, time, and mass.To learn more about quantities refers to:
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g match these phrases with the correct description group of answer choices black body radiation [ choose ] photon [ choose ] spectroscopy [ choose ] light [ choose ]
Option A, Black body radiation is related to photons.
A black body, is described as an ideal object that emits all frequencies of radiation. The spectra generated by this depends only on the temperature and not on the black body's composition. This happens because the black body wants to stay in thermal equilibrium. Black body radiations are explained with the help of following laws : Wien’s displacement law, Planck’s law and Stefan-Boltzmann law. Amongst these, the Planck's law states that energy emission (radiation) is not a continuous process, it takes place in discrete units or quanta of energy, the size of which involves a fundamental physical constant (Planck’s constant). These packets, called photons carry energy = hc/λ , where h = planck's constant, c = speed of light and λ = wavelength of radiation.
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the chemical characteristics of transported substances impact the type of diffusion that will be used by the cell. sort the following chemicals by the type of transport required to move them down their gradient.
The chemical characteristics of transported substances impact the type of diffusion that will be used by the cell.
What are the the chemical characteristics of transported substances ?
There are two main types of carrier-mediated transport systems: (1) Facilitated Diffusion and (2) Active Transport. Mediated transport has 3 key characteristics: a) specificity, b) saturation and c) competition.The types of substance transport across the cell membrane may be classified, by taking into account the size of the particles, into two categories: (a) macrotransport of relatively large quantities of solution, molecular complexes, or even other cells, and (b) microtransport of ions, small molecules and macromolecules.Transport across the plasma membrane occurs unaided in simple diffusion, i.e., molecules of gases such as carbon dioxide and oxygen, as well as small molecules like ethanol, enter the cell by crossing the cell membrane without the assistance of any permease.To learn more about Transport refers to:
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a chemist employed by an airplane manufacturer investigates new adhesives for the purpose of building airplanes without rivets. she is engaged in ________.
A chemist employed by an airplane manufacturer investigates new adhesives for the purpose of building airplanes without rivets. she is engaged in applied research.
Every research project begins with a precise explanation of the aim of the investigation, which aids in identifying the research method or strategy used. A researcher can therefore carry out either basic research or applied research.
A non-systematic approach to solving certain difficulties or problems is through applied research. These concerns or problems may affect a person, a group, or the entire society. Because it jumps right to seeking solutions, it is referred to as "non-systematic."
It is frequently referred to as a "scientific process" since it makes use of the existing scientific instruments to identify solutions.
There are three different categories in this research:
Action research, Research and Development, and evaluation research are three types of research.
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In an experiment to find the number of molecules of water of crystallization in sodium sulfate crystals,Na2SO4•nH2O,3.22g of sodium sulfate crystals were heated gently.When all the water of crystallization had been driven off, 1.42g of anhydrous soduim sulfate was left. Find the value for n of the formula
The value of n of the formula, Na₂SO₄•nH₂O is 10
How do I determine the value of n in the formula?To obtain the value of n in the formula, we shall determine the formula of the hydrate. Details below:
Mass of hydrate, Na₂SO₄•nH₂O = 3.22 gMass of anhydrou, Na₂SO₄ = 1.42 gMass of water, H₂O = 3.22 - 1.42 = 1.8 gFormula =?Divide by their molar mass
Na₂SO₄ = 1.42 / 142 = 0.01
H₂O = 1.8 / 18 = 0.1
Divide by the smallest
Na₂SO₄ = 0.01 / 0.01 = 1
H₂O = 0.1 / 0.01 = 10
Thus, the formula of the hydrate is Na₂SO₄•10H₂O
Comparing the formula of the hydrate, Na₂SO₄•10H₂O with this Na₂SO₄•nH₂O, we can see that the value of n is 10
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match the following items with their definitions. 1. a substance maintaining a uniform appearance and composition supersaturated 2. a mixture consisting of visibly different substances or phases homogeneous 3. two liquids that will not mix with one another unsaturated 4. at a given temperature the solvent contains all of the solute it can hold heterogeneous 5. at a given temperature the ability of a solvent to dissolve more solute saturated 6. at a given temperature a solution that contains more solute than can be dissolved by the solvent immiscible
A substance maintaining a uniform appearance and composition - homogeneous.
A mixture consisting of visibly different substances or phases - heterogeneous.
What is a solution?A homogenous mixture of two or more components with particles smaller than 1 nm is referred to as a solution. Solutions come in many forms, including soda water, salt and sugar solutions, and others. Every element in a solution appears as a single phase.
A continuous variation of a homogeneous mixture of two or more substances in relative proportions up to what is known as the limit of solubility. Although solutions of gases and solids are possible, the term "solution" is most frequently used to refer to the liquid condition of matter.
Two liquids that will not mix with one another - immiscible
At a given temperature the solvent contains all of the solute it can hold - saturated
At a given temperature the ability of a solvent to dissolve more solute - unsaturated
At a given temperature a solution that contains more solute than can be dissolved by the solvent - supersaturated
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Given the following information about electronegativity, which binary compound would form covalent bonds with the greatest polarity?
A. HCl
B. LiF
C. H2S
D. AlH3
The electronegativity of the elements are as follows: H= 2.1, Li=1.0, S=2.5, Al=1.5, F=4.0, Cl=3.0
Difference In electronegativity =3.0-2.1 = 0.9
• For LiF,Difference in electronegativity = 4.0 - 1.0 = 3.0
. For hydrogen sulfide,Difference in electronegativity = 2.5-2.1 = 0.4
For aluminium hydride,Difference in electronegativity = 2.1-1.5 = 0.6
About Bond polarityNot all atoms attract electrons with the same force. The amount of "pull" an atom exerts on electrons is called electronegativity. Atoms with high electronegativity – such as fluorine, oxygen and nitrogen − exert a greater attraction for electrons than atoms with low electronegativity.
In a bond, this causes an unequal sharing of electrons between atoms, as the electrons will be attracted towards the atom with the higher electronegativity.
Since electrons have a negative charge, the unequal sharing of electrons in bonds leads to the formation of an electric dipole: the separation of positive and negative electric charges. Because the number of charges separated in the dipole is usually less than the elementary charges, they are called partial charges, denoted as δ+ (delta plus) and δ− (delta minus).
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Chlorine has 2 naturally occurring isotopes, 35Cl (isotopic mass 34.9689 amu) and 37Cl (isotopic mass 36.9659 amu). If chlorine has an atomic mass of 35.4527 amu, what is the percent abundance of each isotope?
The percentage abundance of 35Cl is 75.77% and the percentage abundance of 37Cl is 24.23%.
Let's say there are two or more different versions of the same element, each with a unique atomic mass but the same atomic number. Isotopes are various versions of the same element with the same atomic number but differing atomic masses.
The information below is provided to us.
Assuming the proportion abundance of Cl-35 to be x%, the atomic mass of chlorine is 35.4527 u, the atomic mass of Cl-35 is 34.9689 u, and the atomic mass of Cl-37 is 39.9659 u.
Cl-37 has an abundance of (100 - x)%.
Average atomic mass, 35.4527 = [tex]\frac{x×34.9689 u+(100−x)×36.9659 u}{100}[/tex]
or, x= 75.77%.
So, abundance of 37Cl = 100% - 75.77 = 24.23%
Hence, the abundances are 75.77% and 24.23%.
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How does a magnetic field change as you move away from a magnet? At what point does it end?
Answer:
The strength of the magnetic field is inversely proportional to the distance from the current carrying conductor. That is, as the distance increases the magnetic field decreases.
Which statements about the periodic table are correct?
I. Elements in period 3 have similar chemical properties.
II. Elements in group 7 show a gradual change in physical properties.
III. The position of an element in period 3 is related to the number of electrons in the highest occupied energy level.
II. Elements in group 7 show a gradual change in physical properties.
III. The position of an element in period 3 is related to the number of electrons in the highest Occupied energy level.
About the periodic tableThe periodic table is a table that displays each chemical element in each system. These chemical elements have a very large number, with different properties, from one element to another.
The purpose of making the periodic table of elements is to recognize the element names of chemical particles easily through grouping.
The periodic system is also defined as an arrangement that displays various chemical elements based on their atomic number and similar chemical properties.
In grouping the periodic table, the physical and chemical properties of each of these elements have been outlined by chemists in the form of a table of elements.
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In a solution containing zinc ions is placed a piece of copper. According to the standart reduction potentials, which reaction will occur?
a) Zinc will react with copper to form a bronze alloy
b) No reaction will occur
c) Copper will be dissolved
d)Metallic zinc will be deposited on copper
e) Zinc will be react with copper to form a brass alloy
According to the standard reduction potentials Zinc will be react with copper to form a brass alloy will occur.
What is standard reduction?
Standard reduction is a type of oxidation-reduction reaction in which the oxidation number of a molecule or atom decreases. It is achieved by the addition of electrons or the removal of oxygen atoms from the molecule. This process is also known as reduction-oxidation or redox reaction. Standard reduction is commonly used in chemical synthesis and in the production of electricity. It is important to note that the reactant that gains electrons is the reducing agent, while the substance that loses electrons is the oxidizing agent.
Therefore, According to the standard reduction potentials Zinc will be react with copper to form a brass alloy will occur.
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