Experiment 13 Report Sheet A Carbonate Analysis: Molar Ve me of Carbon Dioxide Lob Sec Date Nome A. Sample Preparation and Setup Apparatus Calculation of mass of CaCO, sample for analysis (from Prelaboralory Assignmen, question 2) Desk No. Unknown sample no. Trial 2 L Mass of sample (g) Trial I o1300g 2 Mass of generator + sample before reaction (g) 47613123 125s, 3 Instructor's approval of apparatus 222 C. Determination of Volume. Temperature, and Pressure of the Carbon Dioxide Gas 1. Initial reading of volume of water in CO,-collecting graduated cylinder (mL) 31,0m 2 Final reading of volume of water in CO,-collecting 62.4 mL graduated cylinder (ml) 34,0 mL 3 Volume of CO (g) collected (L) 34,p 4. Temperature of water ("C 5 Barometric pressure (torr) 6 Vapor pressure of H,O at C (torr) ANGH hast ost 7. Pressure of dry CO (g) (torr) D. Amount of Carbon Dioxide Gas Evolved St AnttrFtt 0416 0014 1. Mass of generator + sample after reaction (g) A-D 2 Mass loss of generator s mass CO, evolved (g) mol 3 Moles of CO, evolved (mol) Experiment 13 187 110 Trial 2 Triel P E Modar Volume of CO, Gas 2,4234 1. Pressure cf dry CO(e) (atw) See Part C7 2 Volume of CO.ie) at STP () See eqeation 13.4. mol) See equation 13.2 Molar volume of COue) at STP 4. Average moter volume of CO.e) at STP (es F. Percent CaCO, in Mistures 1. Moles of CaCO, in sample from mol CO, generated (moly See equation 13.1. 2. Mass of CaCO, in sample (e) 3. Mass of original sample (g) 4. Percent of CaCO, in sample (%) Average percent of CaCO, in sample (%) 5. Laboratory Questions Circle the questions that have been assigned I. Part A.I. 7he water for the pan (Part A.3) is not saturated with CO,, Will the reported percent CaCO, in the original sample be too high, too low, or unaffected? Explain 2. Part A.2. Suppose 6 M HCI is substituted for the 3 M HCI in the procedure. What would be the consequence of this substitution? Explain. 3 Part A.3. A few drops of HC(ag) spilled over into the CaCO, sample prior to firmly seating the stopper and prior to collecting any CO(e). As a result of this poor technique, will the repor too low, or unaffected? Explain. t CaCO, in the sample be too high, pe 4. Part A.4. The rubber stopper has a small crack resulting in a not-tight seal. How will this affect the calculated molar volume of CO. too high, too low or unaffected? Explain. 5. Part C.I. The water level in the CO-(g)-collection cylinder is higher than the water level outside the cylinder. See margin drawing a. Is the wet CO, gas pressure greater or less than atmospheric pressure? Explain. b. An adjustment is made to equilibrate the water levels. Will the volume of the wet CO, gas increase or decrease? Explain. . The student chemist chooses not to equilibrate the inside and outside water levels. Will the reported number of moles of CO, generated in the reaction be too high, too low, or unaffected by this carelessness? Explain. art C.I. An air bubble accidentally mpletion of the reaction. How does this error affect the reported moles of CO-(g) lected-too high, too low, or unaffected? Explain. enters the CO,-collection graduated cylinder after the If a large 2 is present in the original sample, how does it affect the reported blar volume of the CO,(8)-too high, too low, or unaffected? Explain. cent CaCO, in the sample-too high, too low, or unaffected? Explain. amount of calcium sulfate [it does not form a gas with the addition of wpw.pn

Answers

Answer 1

The percent of CaCO3 in the sample = mass of CaCO3 / mass of the sample. The average value is calculated by adding the values from two trails and dividing it by two.

What is Molar mass?

In chemistry, the molar mass of a compound is defined as the mass of a sample of that compound divided by the amount of substance, which is the number of moles in that sample, and is measured in moles. Molecules, properties of matter. Molar mass is the average of many instances of a compound, which often differ in mass due to the presence of isotopes. Most commonly, molar mass is calculated from standard atomic masses, so it is a global average and a function of the relative isotopic abundances of constituent atoms on Earth. Molar mass is useful for converting between the mass of a substance and the quantity of a bulk substance.

Molecular weight and formula mass are commonly used synonyms for molecular weight, especially for molecular compounds. However, most authoritative sources define it differently. The difference is that molecular weight is the mass of a particular particle or molecule whereas molar mass is the average of many particles or molecules.

Therefore, The percent of CaCO3 in the sample = mass of CaCO3 / mass of the sample. The average value is calculated by adding the values from two trails and dividing it by two.

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Related Questions

what kinds of forces hold ionic solids together? check all that apply. what kinds of forces hold ionic solids together?check all that apply. dipole-dipole forces metallic bonds hydrogen bonds electrostatic attraction dispersion forces covalent bonds

Answers

Electrostatic attraction hold ionic solids together.

What is Electrostatic attraction?

To understand the word ‘Electrostatic appeal’, we need to first revise the fundamentals of the Electrostatic area. It says that similar costs (like positive & tremendous) repel each other and distinct fees (like fine and negative) appeal to each other.

Electrostatic appeal is a force of enchantment which is exerted through two in contrast to or numerous (contrary) expenses on each different whilst they may be stored at some finite distance aside. That is additionally referred to as contactless appeal between  contrary prices or we are able to say this Electrostatic pressure attracts  distinct expenses with out touching them.

The concept of electrostatic pressure turns into clearer if we remember a sensible instance. If we convey North Pole of a magnet near to North Pole of another piece of magnet then those  portions of magnet will repel every different and if we carry North Pole of one magnet close to the south pole of some other piece of magnet then they may entice to every other.

As we know those atom donate the electron gets positively charged and those atoms gains the electron gets negatively charged. The charge on the atoms are the responsible for the force in the ionic bond.

We know that force between two charge particle is known as electrostatics force. If charge particle is having same sign charge then it will be repulsive force and If charge particle is having opposite sign charge then it will be attraction  force.

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cehgg suppose 14.0 g of ice at -10.0c is placed into 300.0 g of water in a 200.0-g copper calorimeter. the final temperature of the water and copper calorimeter is 18.0c. 1) what was the initial common temperature of the water and copper? (express your answer to three significant figures.)

Answers

The initial temperature of the water and copper is 22.51°C.

Mass of ice m = 14 g

We know, 1g = 0.001 kg

So, m= (14 x 0.001)kg = 0.014kg

Mass of water ml = 300g = (300 x 0.001)kg = 0.3kg

Mass of copper calorimeter m₂ = 200g = (200 × 0.001) kg = 0.21 kg

Specific heat of water s₁ = 4186 [tex]\frac{J}{kg . C}[/tex]

Specific heat of ice s₂ = 2100 [tex]\frac{J}{kg.C}[/tex]

Specific heat of copper s₃ = 387 [tex]\frac{J}{kg.C}[/tex]

Latent heat of fusion of water L = 3.33 x 10⁵ [tex]\frac{J}{kg}[/tex]

Initial temperature of ice T₁ = - 10°C

Initial temperature of water copper is T₂

Final temperature of the system is T = 18 °C

From equilibrium in heat

Heat gain by ice to become 0°C of ice +0°C of ice become 0 °C of water + 0°C of water become 18°C of water = heat loss by copper and water

 ms₂ (0°-(-10°)) + mL + ms₁ (T -0°) = m₁s₁ (T₂-18°) + m₂s₃ (T2 - 18°)

∴ 0.014 × 2100 × 10 + 0.014 × 3.33 × 10⁵+ 0.014 × 4186 × 18 = 0.3 × 4186 × (T₂- 18 ) + 0.2 × 387 × ( T₂ -18 )

∴ 6010.87 = 1333.2(T₂ - 18)

∴ T₂ - 18 = 6010.87 / 1333.2 = 4.51

∴ T₂ = ( 18 + 4.51 )

T₂ = 22.51° C

So, the initial temperature of the water and copper is 22.51°C.

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in double replacement reactions, why will two metals not combine with each other when products are formed?

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In double replacement reactions, the two metals will not combine with each other when products are formed because the atoms of metals contain less than half the full complement of electrons in their outermost shell.

What is Double replacement reaction?

This is referred to as a type of reaction in which the positive and negative ions of two compounds exchange places to form two new products or substances.

The two metals will not combine with each other when products are formed because of their atoms having less than the required electrons which is needed to complement those in the outermost shell.

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this figure is an example of a(n) _____.

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The picture depicts an organic complex made up of a molecule of glycerol and serves as an illustration of a saturated fat.

Explain what a molecule is?

A molecule is the simplest unit of a material that keeps its content and properties. It is made up of two or maybe more atoms that are joined together by chemical bonds. Chemistry is built on molecules. The component symbol and a prefix indicating the amount of atoms are used to identify molecules.

Is oxygen an atom or a molecule?

In nature, oxygen exists as a molecule. To create dioxygen, or O2, two oxygen atoms must make a solid double bond with one another. Typically, oxygen exists as a molecule. It has the name dioxygen.

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Which of the following has same valence electron as neon?a. carbon (C). b. phosphorus (P). c. nitrogen (N). d. oxygen (O)

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Answer: option (b) phosphorus

Explanation: Valence electrons are the total number of electrons that an snippet can partake to form bonds.

Phosphorus is the element that has the same number of valence electrons as nitrogen with both of them having 5 valence electrons.

Carbon has a aggregate of 4 valence electrons.

Neon has a aggregate of 8 valence electrons.

Oxygen has a aggregate of 6 valence electrons

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Write the chemical formula for (a) ruthenium(III) sulfide (b) scandium fluoride (c) osmium(VIII) oxide (d) manganese(II) sulfide (e) platinum(IV) chloride.

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The chemical formula for ruthenium (III) sulfide, scandium fluoride, osmium (VIII) oxide, manganese (II) sulfide, and platinum (IV) chloride are Ru₂S₃, ScF₃, OsO₄, MnS, and PtCl₄.

Ionic compounds are formed from metal and non-metal ions. The metal ions have positive ions and the non-metal ions have negative ions. To achieve stability, they use electrons together. The name of the ionic compound called the chemical formula.

A. Ruthenium (III) sulfide

Positive ion ruthenium (III) = Ru⁺³
Will release three electronsNegative ion sulfide = S⁻²
Will gain two electronsNeed 2 ions ruthenium (III) and 3 ions sulfide.Ru₂S₃

B. Scandium fluoride

Positive ion scandium = Sc⁺³
Will release three electronsNegative ion fluoride = F⁻
Will gain one electronNeed 1 ion scandium and 3 ions fluoride.ScF₃

C. Osmium (VIII) oxide

Positive ion osmium (VIII) = Os⁺⁸
Will release eight electronsNegative ion oxide = O⁻²
Will gain two electronNeed 1 ion scandium and 4 ions oxide.OsO₄

D. Manganese (II) sulfide

Positive ion manganese (II) = Mn⁺²
Will release two electronsNegative ion sulfide = S⁻²
Will gain two electronNeed 1 ion scandium and 1 ion sulfide.MnS

E. Platinum (IV) chloride

Positive ion platinum (IV) = Pt⁺⁴
Will release four electronsNegative ion chloride = Cl⁻
Will gain two electronNeed 1 ion platinum and 4 ions chloride.PtCl₄

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(3 pts) The following is one Lewis structure for the SeO42- ion (selenate ion): Draw three ofthe resonance structures for this ion (there are more than three possibilities). '0: 0-Se-o: 'O:

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In Lewis structure for the SeO42 all 32 of the valence electrons that make up the SeO42- ion are utilised in the sketch above.

When both protons are taken out of selenic acid, selenate, a divalent inorganic anion, is left behind. It serves as a metabolite for humans. It is a divalent inorganic anion and a selenium oxoanion. It is a hydrogen selenate's conjugate base. A highly simple illustration of the valence shell electrons in a molecule is called a Lewis structure or electron dot structure. It describes how the valence electrons are positioned around the various molecules' atoms. The valence shell electrons in a molecule are depicted in an extremely simplified manner by a Lewis Structure. It is used to demonstrate how the electrons in a molecule are positioned around particular atoms. When two atoms are bonded together, electrons are depicted as "dots" or as a line. The octet rule, which states that atoms share electrons so that each has eight in its outer shell, is the foundation of a Lewis structure. For instance, the outer shell of an oxygen atom has six electrons. The ion with the chemical formula SeO23 is referred to as selenite. It is the selenium oxyanion. It is the sulfite ion's selenium analog, SO23. As a result, selenium's oxidation state is assigned, and selenite is pyramidal.

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patterns what patterns did you observe in the development of the periodic table? how were the patterns related to the timeline?

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The atoms tend smaller or slightly larger, and their reactivities fluctuate left to right within a row.

What is a periodic table explanation?

The stoichiometry of chemical elements, sometimes termed the multiplication table, organizes all recognized ingredients in rows (dubbed periods) and column (repeating groups) according to atomic numbers.

Why does it have the name periodic table?

Because of the orderly arrangement of the elements, it is known as the periodic table. You'll notice they're organized rows and columns. Periods and Groups are the names given to the horizontal rows that run from left to right and the two columns that run from top to bottom, respectively.

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1- list the definition of defense mechanisms: a. sublimation b. reaction formation c. displacement d. repression e. denial f. projection g. identification h. introjection i. undoing

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List the definition of defense mechanisms: denial, repression, projection, displacement, regression, sublimation, rationalization, reaction formation, introjection & identification.

Explain the defense mechanisms ?According to psychoanalytic theory, a defense mechanism is an unconscious psychological process that guards against anxiety-inducing thoughts and sensations associated with internal conflicts and external pressures.Depending on the situation and how often it is utilized, defense mechanisms can have either helpful or detrimental effects. Defense mechanisms, or Abwehrmechanismen in German, are psychological techniques used by the unconscious mind to control, reject, or distort reality in order to combat anxiety-inducing emotions and undesirable impulses and to preserve one's self-schema or other schemas.Repression, or the hiding of an unpleasant feeling or thought from one's awareness, even though it might reappear in a symbolic form; identification, or assimilating an object or thought into oneself; and rationalization, or the justification of one's behavior and motivations by substituting "good" acceptable reasons for the actual motivations, are some of the processes that manipulate, deny, or distort reality.

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i cant figure out the last one because the first one is toxic the second one is radiation danger and the third one is biohazard but i don't know the last one

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Answer: Chemical weapon

Explanation: This symbol usually exists where a chemical agent is being produced. It's to tell you to be really careful around these kinds of places.

Part A What are the four quantum numbers for each of the two electrons in a 4s orbital? For first electron: n=4, l=3, ml=3, ms=+1/2 n=3, l=1, ml=0, ms=-1/2 n=1, l=0, ml=0, ms=-1/2 n=4, l=0, ml=0, ms=+1/2

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For an electron in 4s orbital, the principal quantum number is 4, Azimuthal quantum number is 0, magnetic quantum number is 0 and spin quantum number is -1/2 or + 1/2.

There are four quantum numbers are used to describe completely the movement and trajectories of each electron within an atom. In atoms, there are a total of four quantum numbers. Principal quantum number n, designates the principal electron shell. The magnetic quantum number ml determines the number of orbitals and their orientation within a subshell. Electron spin quantum number designates the direction of the electron spin and may have a spin of +1/2. The orbital angular momentum quantum number determines the shape of an orbital, and therefore the angular distribution. The number of angular nodes is equal to the value of the angular momentum quantum number l.

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which type of crystalline solid is characterized by high mobility of electrons throughout the solid?

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Metals are excellent conductors of electricity because electrons can travel freely throughout the entire solid. Metals are excellent at distributing energy, which contributes to their high electron mobility and their ability to conduct heat.

Glass and plastic are frequent examples of this type of solid. Four different varieties of crystalline solids exist: Solids with ions— electrostatic forces hold the positive and negative ions that make up the substance together. They have poor solid-state conductivity and extremely high melting points and brittleness.

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Why is stoichiometry important?

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Stoichiometry is a key concept in chemistry that allows us to calculate reactant and product amounts using balanced chemical equations. We employ the ratios from the balanced equation in this situation.

It aids in predicting the amount of a reactant that will be involved in a chemical reaction, the amount of product you'll get, and the amount of reactant that may be left over. The manufacture of many items you use on a daily basis is based on stoichiometry. Some of the products you use that are chemically manufactured or created through chemical reactions include soap, tires, fertilizer, fuel, deodorant, and chocolate bars. We may utilise stoichiometry to forecast and plan the results of numerous chemical processes, from planning for s'mores to simplifying manufacturing and generating environmental data.

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enter your answer in the provided box. what mass of ki is dissolved in 600.0 g of a solution that is 90.0% ki by mass? g ki

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540.0 grams mass of KI is dissolved in 600.0 gm of a solution that is 90.0% KI by mass.

The concentration of a solution is defined as the mass of the solute (in this case, KI) divided by the mass of the solvent (in this case, water). Since the solution is 90.0% KI by mass, this means that 90.0% of the mass of the solution is KI and 10.0% of the mass of the solution is water.

Since the mass of the solution is 600.0 g, the mass of KI in the solution is 600.0 g x 90.0% = 540.0 g, and the mass of water in the solution is 600.0 g x 10.0% = 60.0 g.

Therefore, the mass of KI that is dissolved in the solution is 540.0 g.

Therefore, the answer is 540.0 g.

Mass fraction can also be expressed as a percentage of mass with a denominator of 100. (often referred to as percentage by weight in commercial contexts; see mass versus weight). Two other methods for describing the composition of a mixture in an arbitrary size are the mole fraction (percentage by moles, mol%) and the volume fraction (percentage by volume, vol%). When the prevalences of interest are those of particular chemical elements rather than compounds or other substances, the phrase "mass fraction" can also refer to the ratio of an element's mass to the total mass of a sample. Another term that might be used in similar contexts is mass percent composition. The term "quantity" is not used to describe this amount. In textbooks for younger pupils in particular, this inaccurate name is still used.

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a 9.394mg sample of compound yielded 31.154 mg of carbon dioxide and 7.977 mg of water in combustion. calculate percent compositiobn of compound

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%C = 90.5% and%H = 9.5%, You can determine by mass the amount of every element is contained in a compound using its percent composition.

Which is larger, mass or moles?

Masses percent composition too is referred to as mass percent. The symbol for it is w/w%. A solution's mass percent is calculated by dividing the mass of each element present in one moles of the compound by the compound's molar mass and multiplying the result by 100%.

What do mass percent and composition percent mean?

Despite their interchangeability, the phrases mass percent or percent composition are distinct. While the average concentration refers to a percentage of a certain chemical element inside a mixture, it weight percentage refers to the proportion of the a component in a combination.

Briefing:

Mass of compound = 9.394 mg

Mass of CO2 yielded = 31.154 mg

Mass of H2O yielded = 7.977 mg

Molar mass of CO2 = 44.01 g/mol

Molar mass of H2O = 18.02 g/mol

mass of C = 7.08 × 10^-4 mol × 12.01 g/mol

mass of C = 0.0085 grams

mass of H = 8.86 × 10^-4 mol × 1.01 g/mol

mass of H = 0.000894 grams

Total mass of the compound = 0.0085 grams + 0.000894 grams =  0.009394 grams 9.394 mg

%C = (8.50 mg / 9.394 mg) x 100 = 90.5%

%H = (0.894 mg / 9.394 mg) x 100 = 9.5%

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citric acid, the compound responsible for the sour taste of lemons, has the following elemental composition: cc, 37.51%%; hh, 4.20%%; oo, 58.29%%. calculate the empirical formula of citric acid.

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The compound responsible for the sour taste of lemons, has the empirical formula C₆H₈O₇.

given that :

Carbon = 37.51 %

hydrogen = 4.20 %

oxygen = 58.29 %

moles of the carbon ,C = mass / molar mass

                                      = 37.51 / 12

                                      = 3.12 mol

moles of the hydrogen , H = 4.20 / 1

                                             = 4.20 mol

moles of the oxygen , O = 58.29 / 16

                                        = 3.64 mol

diving by the smallest one :

C = 3.12 / 3.12 = 1

H = 4.20 / 3.12 = 1.33

O = 58.29 / 3.12 = 1.17

by diving by the 6 we get : C₆H₈O₇

The empirical formula is  C₆H₈O₇

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An electrolyte will yield ions by undergoing a:

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An electrolyte will yield ions by Dissolving in water.

Electrolytes:

Some compounds undergo a physical or chemical change that results in ions in solution when they are dissolved in water. These substances belong to the significant class of substances known as electrolytes. Nonelectrolytes are substances that do not produce ions when dissolved. A substance is referred to as a strong electrolyte if the physical or chemical process that produces the ions is virtually 100% effective (all of the dissolved molecule gives ions). Weak electrolytes are those in which only a very small portion of the dissolved substance goes through the ion-producing process.By measuring the electrical conductance of an aqueous solution containing the substance, substances can be classified as strong, weak, or nonelectrolytes. A substance must include freely moving, charged species in order to conduct electricity. Electricity is most commonly conducted through metallic wires, in which case electrons are the moving, charged particles. If dissolved ions are present in a solution, it may also conduct electricity, with conductivity increasing with ion concentration. The relative concentration of dissolved ions can be determined by applying a voltage to electrodes positioned in a solution. This can be done quantitatively by measuring the electrical current flow or qualitatively by examining the brightness of a light bulb incorporated into the circuit.

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Draw the Lewis structure for bromoethane C2H5Br . Be certain you include any lone pairs.

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The Lewis structure is attached below:

What is the Lewis structure?

Lewis  structures also called electron dot structures, or Lewis electron dot structures, are diagrams that show the bonding between atoms of a molecule, as well as the lone pairs of electrons that may exist in the molecule.

The Lewis rule states that Hydrogen atoms form only single bonds and they are always at the ends of a sequence of atoms. Hydrogen often is bonded to carbon, nitrogen or oxygen. Oxygen atoms usually do not bond to each other, except for O2, O3, superoxides and peroxides.

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g if 2 moles of al is stoichiometrically equivalent to 3 moles of h2, how many moles of hydrogen form from 6 moles of aluminum?

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9 moles of [tex]H_{2}[/tex] can be made from complete reaction of 6 moles of Al with hydrogen chloride.

In chemistry, stoichiometry is the measurement of the ratios in which different substances or elements interact. The laws of conservation of mass and energy as well as the law of combining weights or volumes serve as the foundation for the rules used in the determination of stoichiometric relationships.

In the field of chemistry known as stoichiometry, needed quantitative data is ascertained by exploiting relationships between the reactants and/or products of a chemical process. Stoichiometry literally translates as the measure of elements because the Greek words stoikhein and metron both mean element and measure, respectively.

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draw the product of the reaction between 1-pentyne and li in liquid nh3, then ch2i2/zn(cu).

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The product of the reaction between 1-pentyne and li in liquid nh3, then ch2i2/zn(cu) results in the formation of 1-penetene.

Alkenes having the chemical formula C 5H are pentene. Each molecule's molecular structure consists of one double bond. There are six different compounds in this class, and they are distinguished from one another by the shape of the double bond and whether the carbon atoms are linked linearly or in a branching arrangement. Alpha-olefins include 1-pentene. Most frequently, 1-pentene is produced as a byproduct of the catalytic or thermal cracking of petroleum, or during the thermal cracking of hydrocarbon fractions to produce ethylene and propylene. Sasol Ltd. is the sole producer of 1-pentene on a commercial scale, and it uses the Fischer-Tropsch technique to extract it from petroleum. Cis-2-pentene and trans-2-pentene are the two geometric isomers of 2-pentene. Olefin metathesis uses cis-2-pentene. Two-methylbut-1-ene, three-methylbut-1-ene (isopentene), and two-methylbut-2-ene are the branching isomers (isoamylene). One of the three primary byproducts of deep catalytic cracking (DCC), which operates very similarly to fluid catalytic cracking, is isoamylene (FCC). Vacuum gas oil (VGO) is the main feedstock used by the DCC to create propylene, isobutylene, and isoamylene. The growth of the DCC, which is run very similarly to the FCC, has been driven by the increase in demand for polypropylene.

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11. The boiling point of ethanol, C2H5OH, is 78.5°C. and the boiling point for dimethyl ether, CH3OCH3, is-24.0 °C. Explain why you should expect C2H5OH to have a higher boiling point than CH3OCH3 in three sentences or less.

Answers

Ethanol has a higher boiling point than dimethyl ether due to intermolecular hydrogen bonding.

Why ethanol has a higher boiling point than dimethyl ether when both have the same molecular weight?

In ethanol, the hydrogen of the hydroxyl group is attached to an electronegative oxygen atom. Due to this reason, the hydrogen is free to form hydrogen bonding with other ethanol molecules. The hydrogens of dimethyl ether are bound with a carbon atom which is not electronegative. Hence, the hydrogens do not form any intermolecular hydrogen bonding with other dimethyl ether molecules. This is why ethanol boils at a higher temperature compared to dimethyl ether.

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Draw the Lewis structure of IF4+ and then answer the following questions about it.

What is its steric number? [ Select ] ["0", "1", "2", "3", "4", "5", "6"]

What is the electron group geometry? [ Select ] ["linear", "trigonal planar", "tetrahedral", "trigonal bipyramidal", "octahedral"]

What is the molecular geometry? [ Select ] ["linear", "trigonal planar", "bent", "tetrahedral", "trigonal pyramidal", "trigonal bipyramidal", "see saw", "T-shaped", "octahedral", "square pyramidal", "square planar"]

What is the hybridization of I? [ Select ] ["sp", "sp2 (the 2 should be superscript)", "sp3 (the 3 should be superscript)", "sp3d (the 3 should be superscript)", "sp3d2 (the 3 & 2 should be superscript)"]

Is the molecule polar? [ Select ] ["yes", "no"]

How many sigma bonds are in the molecule? [ Select ] ["0", "1", "2", "3", "4", "5", "6"]

How many pi bonds are in the molecule? [ Select ] ["0", "1", "2", "3", "4", "5", "6"]

Answers

A total of 36 valence electrons make up the IF4: seven from the iodine atom, seven from each of the four fluorine atoms, and one from the negative charge. Iodine will serve as the main atom. Four single bonds will be created with fluorine atoms, totaling 8 of the 36 available valence electrons.

Does the planar square shape of if 4 exist?

Hybridization is therefore [sp3d2], and although the molecule has an octahedral structure, the atom's geometry is square planar because iodine carries two lone pairs of electrons, one above and one below the plane. As a result, the molecule has a square planar shape.

What is water's steric number?

In the case of water, the central oxygen atom possesses two non-bonding pairs and is connected to two hydrogen atoms. The steric number for water is 4, which is calculated as the sum of the number of atoms linked to the central atom plus the number of non-bonding pairs.

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calculate the frequency of light produced from a wave length of 450 x 10^-9m

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The formula for frequency in terms on time is as follows: f = 1/T, where f seems to be the frequency expressed in hertz and T is the duration of one cycle expressed in seconds. 4.5 × 10-7 meters .

What is the light's frequency?

The range of the frequency of visible light is roughly 400 to 700 THz.A Terahertz, or THz, is a frequency measurement equal to the one trillion Hertz.the range of electromagnetic fields.

What is the speed of light equation?

One universal physical characteristic that really is significant in many branches of physics is the speed if light in a vacuum, typically abbreviated as c.The exact value of the speed of light, c, is 299,792,458 meters per second.

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what is the emf generated by an cu-co electrode pair in a 1 molar solution of ions at standard temperature? answer in volts.

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An pt-cu electrode pair in a 1 molar solution of ions at room temperature produces an emf of 4.124 v.

The temperature of a substance is defined as the sum of the kinetic energies of all its atoms or molecules. As a result of withdrawing energy, atoms and molecules move less quickly, which causes the temperature to drop (cooling). The three temperature scales that are now in use are Fahrenheit, Celsius, and Kelvin.

E-cell = E-cathode-E-anode, or 1.2-(-2.924) = 1.2+2.924 = 4.124 v

4.124 v for E° cell

What is the SI equivalent of EMF?

Volt is used to measure electromotive force. The number of Joules of energy provided by the source divided by each Coulomb to permit a unit electric charge is how electromagnetic fields are mathematically expressed.

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Draw Lewis structure for an isomer of C3H6O2 that is a carboxylic acid, and draw another Lewis structure for an isomer of C3H6O2 that is an ester.

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The most crucial functional group found in C=O are the carboxylic acids. Different methods, including certain carboxylic acids, can be used to obtain this sort of organic molecule.

In Lewis structures, formal charge is assigned to atoms according to the following rule or formula: Formal charge is equal to the amount of valence electrons minus (lone pair electrons plus half the number of bonding electrons). It's important to note that "lone pair electrons" are also referred to as "nonbonding pairs" or "unshared pairs". carboxylic acids. rule to keep in mind is that the net charge on a molecule or ion must match the sum of the formal charges of the Lewis structure of the molecule or ion. If not, there is an error in either the official charge assignments or the charges themselves.

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What is the electron configuration for a neutral atom of manganese?

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A manganese neutral atom has the following ground-state electron configuration: 1s2, 2s2, 2p6, 3s2, 3p6, and 4s2, 3d5.

How do you determine the configuration of an electron?

The shell number (n) is the first symbol used to represent an electron configuration, followed by the kind of orbital and the superscript number of electrons in the orbital. Consider this: The periodic table shows that oxygen has eight electrons.

What does 1s 2s 2p 3s 3p mean?

The electric orbitals' energy levels are 1s, 2s, and 3s. One atom may have numerous electronic orbitals, and as a result, different quantum numbers are used to classify different energy levels: 1s 2s 2p 3s 3p 6s 4f 5d 6p 7s 5f 6d 7p. 4s 3d 4p. We can understand what the ω momentum quantum number l means.

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a chemist measured the amount of hydrogen bromide produced during an experiment. she finds that of hydrogen bromide is produced. calculate the number of moles of hydrogen bromide produced.

Answers

Molar mass of HBr  is 80.91194 g/mol.

Molar mass of Br = 79.904

molar mass of H = 1.00794

Molar mass of HBr = 79.904 + 1.00794 = 80.91194

The mass of a sample of a chemical compound divided by the quantity, or the number of moles in the sample, expressed in moles, is known as the compound's molar mass. The molar mass is a bulk property of a material rather than a molecular one. The compound is present in many different forms, each with a different mass as a result of the isotopes. The molar mass is the average of these masses. The molar mass is most frequently calculated using the standard atomic weights and is a function of the relative abundance of the constituent atoms' isotopes on Earth. It is thus a terrestrial average. The conversion between a substance's mass and amount can be done using the molar mass.

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a glucose solution being administered with an iv has a flow rate of 4.00cm3/min4.00cm3/min . what will the new flow rate be if the glucose is replaced by whole blood having the same density but a viscosity 2.50 times that of the glucose? all other factors remain constant.

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If glucose is substituted with whole blood that is the same density but has a viscosity that is 2.50 times that of glucose, the new flow rate will be 1.60cm3/mm.

Q=V/t

Q=Av

R=8ql/πr⁴

Q=P₂ -P₁/R

Q=(P₂ -P₁)πr⁴/8ql

(P₁+(1/2)ρv²+ρgh)Q=power

P₁+(1/2)ρv₁²+ρgh₁=P₂+(1/2)ρv₂²+ρgh₂

Q[tex]_{g}[/tex]R[tex]_{g}[/tex]=Q[tex]_{b}[/tex]R[tex]_{b}[/tex]

Q[tex]_{b}[/tex]=Q[tex]_{g}[/tex]R[tex]_{g}[/tex]/R[tex]_{b}[/tex]

=4.00/2.5=1.60cm³/mm

Viscosity is a fluid's (liquid or gas) resistance to a change in shape or motion of adjacent parts with respect to one another. Viscosity indicates resistance to flow.

viscosity is the ability of a fluid (liquid or gas) to resist change in form or motion of adjacent parts with respect to one another. Viscosity indicates resistance to flow. The fluidity, which measures how easily something may flow, is the reciprocal of viscosity. The viscosity of molasses, for instance, is higher than that of water. Viscosity can be thought of as internal friction between the molecules; this friction prevents the development of velocity disparities within a fluid since a section of a fluid that is compelled to move carries along nearby parts to some degree.

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consider a simple cubic (a.k.a, primitive cubic) unit cell as shown here.

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Cubic Unit Cells. Eight atoms, which represent the real cube, define the simple cubic unit cell. Since they are corner atoms, each one only adds an eighth of an atom to the unit cell, giving us a total of just one net atom.

What is a primitive cubic cell?

Each simple cubic unit cell in the primitive cubic lattice (cP) has a total of one lattice point since there is one lattice point on each of the cube's four corners. The unit cell contains one atom overall (18 8), because each atom at a lattice point is subsequently distributed equally among eight neighbouring cubes.

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What the frequency of an electromagnetic radiation with wavelength of 4. 257 x 10^-9 m what type of EMR i thi

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the wavelength of an electromagnetic wave is 4. 257 x 10-9 m, and its frequency is 0.7047 * 10¹⁷ s⁻¹

λ=4.257nm=4.257x 10^-9 m       [∵1nm=10⁻⁹m]

c=3×10⁸ m/sec

c=vλ

[tex]v=\frac{c}{λ}[/tex]  

=3*10⁸/4.257x 10⁻⁹

=0.7047 * 10¹⁷ s⁻¹

Physically speaking, electromagnetic radiation (EMR) is made up of electromagnetic (EM) field waves that travel through space carrying electromagnetic radiant energy. It consists of microwaves, X-rays, gamma rays, infrared, visible light, and other electromagnetic waves. A spectrum of electromagnetic wave includes each of these waves.

Traditional electromagnetic radiation is made up of electromagnetic waves, which are coordinated oscillations of the electric and magnetic fields. A periodic shift in the electric or magnetic field is what causes electromagnetic radiation or waves to be produced. Different electromagnetic spectrum wavelengths are created depending on the power generated and how this periodic shift happens. Electromagnetic waves move at the speed of light in a vacuum, typically abbreviated as c. The two fields oscillate in a manner that is perpendicular to one another in homogeneous, isotropic media.

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