Answer:
I believe your answer is
Explanation:
when the pressure is less I believe it means rain is coming
The combustion of octane, C8H18, proceeds according to the reaction shown.
2C8H18(l)+25O2(g)⟶16CO2(g)+18H2O(l)
If 354 mol of octane combusts, what volume of carbon dioxide is produced at 15.0 ∘C
and 0.995 atm?
The concept ideal gas equation is used here to determine the volume of the carbondioxide. Combustion reactions are generally highly exothermic reactions. The volume of CO₂ is
A combustion is a chemical reaction in which a fuel undergoes oxidation as a result of the reaction with an oxidizing agent which causes the release of energy in the form of heat.
15.0 °C = 288 K
The ideal gas equation is:
PV = nRT
V = nRT / P
V = 354 × 0.0821 × 288 / 0.995 = 8412.3 L
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Lab: Limiting Reactant and Percent Yield
Step 10: Complete Calculations to Fill in the Remainder of the Data Table
Record the difference... answer .71g
.011 moles
Theoretical yield = .014
Percent yield = 79
Are these answers correct? Yes they are I did the lab. Hope these answers help!
The difference between the actual yield and the theoretical yield was 0.71 grams, the moles of copper produced was 0.011 moles, the theoretical yield was 0.014 grams, and the percent yield was 79%. The main answers are correct.
The actual yield was determined by weighing the copper product and subtracting the weight of the filter paper used. The theoretical yield was calculated based on the amount of limiting reactant used and stoichiometric ratios.
The percent yield was calculated by dividing the actual yield by the theoretical yield, and then multiplying by 100. A percent yield of 79% indicates that the reaction was somewhat efficient, but there were some factors that led to a lower yield than expected. Possible factors could include experimental error, loss of product during filtration, or incomplete reaction.
Overall, the results suggest that there may be room for improvement in the experimental procedure to increase the efficiency of the reaction.
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Calculate the volume in mL of 0.600 M NaCl solution that contains 0.00123 moles of NaCl
Answer:
2.05 mL
Explanation:
Hope this helps :)
SAMPLE QUESTIONS
1. Four mg of NaCl was weighed and topped up to 50 mL.
a. Determine the concentration of NaCl in M
b. Determine the concentration of Na in ppm
c. What is the concentration of Cl in normality
d. What is the concentration of NaCl in %.
2. How much water must be added to a 2 M NH₂Cl solution to bring the concentration to 0.5 M
Determine the percent ammonium in the new solution
The percent ammonium in the new solution is 80ppm
What is the concentration of a substance like NaCl?The concentration of a compound like NaCl (sodium chloride) refers to the quantity of matter that is included in a specified amount or mass of solution.
This magnitude can be expressed through various units, comprising of molarity (moles of the material per liter of liquid), molality (moles of the part per kilogram of solvent), mass/volume percent (mass of the element per volume of fluid), and parts per million (ppm).
For instance, a fluid of NaCl with an intensity of 0.1 M (0.1 moles of NaCl per liter of solution) contains 58.44 grams of NaCl for every liter of water, whereas a concoction with an intensity of 1% (mass/volume percent) comprises 10 grams of NaCl per 100 ml of fluid.
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What is the answer to this?
3. What is the percentage composition of Ba(NO3)2?
(Find the mass percent of each element.)
Ba(NO₃)₂ has the following percentage composition: 52.6% Ba, 10.7% N, and 36.7% O.
How to calculate percentage composition?The molar mass of Ba(NO₃)₂ is:
Ba: 1 x 137.33 g/mol = 137.33 g/mol
N: 2 x 14.01 g/mol = 28.02 g/mol
O: 6 x 16.00 g/mol = 96.00 g/mol
Adding these up gives us a total molar mass of 261.35 g/mol.
The mass percent of each element is then:
Ba: (137.33 g/mol / 261.35 g/mol) x 100% = 52.6%
N: (28.02 g/mol / 261.35 g/mol) x 100% = 10.7%
O: (96.00 g/mol / 261.35 g/mol) x 100% = 36.7%
Therefore, the percentage composition of Ba(NO₃)₂ is: 52.6% Ba, 10.7% N, and 36.7% O.
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12. What is the chemical name for the compound
CH3CH₂CH₂CH3?
(1) butane
(3) decane
(2) butene
(4) decene
The chemical name for the compound CH3CH₂CH₂CH3 is butane.
What is alkane?Alkanes are any acyclic saturated hydrocarbon with a carbon to carbon single bond e.g. methane, ethane etc.
Alkanes have a general molecular formula of CnH2n+2. The number of carbon atoms determines the name of the alkane member.
According to this question, a chemical compound with the molecular formula; CH3CH₂CH₂CH3 is given. This compound posseses 4 carbon atoms and 10 hydrogen atoms, hence, is butane.
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1) Describe the aromaticity of benzene
2) Write brief notes about reactions of amino acids resulting into peptides
3) How are the following groups of molecules distinguished in the laboratory?
a) Monosaccharides and disaccharides
b) Polysaccharides and disaccharides
Polysaccharides can be differentiated from monosaccharides by enzymatic assays.
What is aromaticity?When I hear the term aromaticity what comes to my mind is the Huckel rule. In accordance with the Huckel rule, for a compound to be aromatic, then the compound must have to contain 4n + 1 number of pi elecryons of which benzene satisfies by having 6 pi electrons in its molecular orbital.
Peptides, which are chains of amino acids joined together by peptide bonds, are created when amino acids interact with one another through peptide bonds.
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How many grams of COz are in a 5.3 L container if the pressure in the container is 101 kPa and the temperature is 280 K?
The mass in grams of CO₂ in the 5.3 L container at 101 kPa and 280 K is 10.1 grams of CO₂
What is the mass in grams of CO₂?The mass in grams of CO₂ can be calculated using the Ideal Gas Law equation:
PV = nRTwhere:
P is pressure = 101 kPa or 0.998 atm
V is volume = 5.3 L
n is the number of moles of gas = ?
R is the molar gas constant = 0.08206 L·atm/(mol·K)
T is the temperature = 280 K
solving for n;
n = PV/(RT)
n = (0.998 atm * 5.3) /(0.08206 * 280 K)
n = 0.229 moles of CO₂
Mass of CO₂ = number of moles * molar mass
molar mass of CO₂ = 44.01 g/mol
mass of CO₂ = 0.229 × 44.01
mass of CO₂ = 10.1 g
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Neon gas at 3 atm and 20°C is decompressed to 0.2 atm. What will be the new temperature be if volume remains constant?
The new temperature of the neon gas, with a volume held constant, is approximately -253.6°C.
What is the new temperature of the Neon gas?Gay-Lussac's law states that the pressure exerted by a given quantity of gas varies directly with the absolute temperature of the gas.
It is expressed as;
P₁/T₁ = P₂/T₂
Given that:
Initial pressure P₁ = 3 atm Initial temperature T₁ = 20.0°C = 20°C + 273.15 = KFinal pressure P₂ = 0.2 atmInitial temperature T₂ = ?Plug the given values into the above formula and solve for the final temperature.
P₁/T₁ = P₂/T₂
P₁T₂ = P₂T₁
[tex]T_2 = \frac{P_2T_1}{P_1}\\ \\ P_2 = \frac{ 0.2 * 293.15}{3}\\ \\P_2 = 19.543 K[/tex]
Now, convert from Kelvin to celsius
P₂ = 19.543K − 273.15
P₂ = -253.6°C
Therefore, the new temperature is -253.6°C.
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What has a higher boiling point C2H4O or CH3OH
Answer:
Explanation:
i wish i can help
How would you describe the reactivity of this element?
Reactivity is the propensity of an element to gain or lose electrons. The most reactive metals are alkaline metals.
Reactivity in chemistry is an indication of how easily a substance reacts chemically. The chemical may react on itself or with other atomic particles or compounds, and in either case, energy will typically be released. The most reactive substances and elements have the potential to spontaneously or explosively ignite.
Periodic trends (patterns in the Periodic Table) can be used to anticipate an element's reactivities. Let's begin with cyclical tendencies. Reactivity is the propensity of an element to gain or lose electrons. The most reactive metals are alkaline metals (Group 1) because they have the highest propensity to lose electrons.
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Calculate the volume in mL of 0.727 M Ca(OH)2 needed to neutralize 22.8 mL of 0.390 M H3PO4 in a titration.
51.4 mL is the volume in mL of 0.727 MCa(OH)₂ needed to neutralize 22.8 mL of 0.390 M H₃PO₄ in a titration.
A measurement of three-dimensional space is volume. It is frequently expressed in numerical form using SI-derived units or different imperial or US-standard units (such the gallon, quart, and cubic inch). Volume and length (cubed) have a symbiotic relationship.
The volume much a container is typically thought of as its capacity, not as the amount of space it takes up. In other words, the volume is the volume of fluid (liquid or gas) that the container may hold.
2H₃PO₄ + 3Ca(OH)₂ —> Ca₃(PO₄)₂ + 6H₂O
MaVa / MbVb = nA / nB
( 0.390 × 22.8) / (0.727 × Vb) = 2/3
Vb = 51.4 mL
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will the product of KOH + FeCl3 form precipitate
Answer:
The reaction between ferric chloride and potassium hydroxide leads to the formation of ferric hydroxide and potassium. It is a precipitation reaction in which ferric and hydroxide ion on reaction with each other results in the formation of ferric hydroxide as reddish-brown precipitate.
on (1 point)
The vapor pressure of carbon disulfide is 355.6 torr at 25°C. What is the vapor pressure of a solution prepared by dissolving 11.60 g naphthalene
(C₁0H, Molar Mass-128.2 g/mol) in 155 ml. CS₂ liquid (Molar Mass - 76.14 g/mol, density-1.261 g/ml)? Assume the solution obeys Raoult's law.
and treat naphthalene as a nonvolatile solute.
____ torr
What is the pressure of a 50.0L tank that contains 4.04kg of oxygen at 23 degrees celcius
Balance equation Pb(C2H3O2)2 + CO2 + H2O= PbCO3 + HC2H3O2
The balanced equation is: Pb(C2H3O2)2 + CO2 + H2O → PbCO3 + 2 HC2H3O2
Balancing chemical equationsIn a balanced chemical equation, the number of atoms of each element is the same on both sides of the equation. Thus, the balanced equation of the reaction is:
Pb(C2H3O2)2 + CO2 + H2O → PbCO3 + 2 HC2H3O2
The coefficients used to balance the equation are:
1 Pb(C2H3O2)2 + 1 CO2 + 1 H2O → 1 PbCO3 + 2 HC2H3O2
After balancing the equation, we can see that one molecule of lead(II) acetate reacts with one molecule of carbon dioxide and one molecule of water to produce one molecule of lead(II) carbonate and two molecules of acetic acid.
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If a jar of saltwater sits in the sun, the liquid level steadily decreases, and finally, crystals appear. Explain what is happening.
When a jar containing saline solution is exposed to sunlight, its liquid content gradually diminishes and eventually forms crystals as a result of the evaporation process.
What is the saltwater about?The energy from the sun's heat accelerates the movement of molecules in saltwater, which leads to their subsequent release from the liquid surface as water vapor. As a result of this process, the moisture transforms into gas and ascends, scattering throughout the atmosphere.
The concentration of salt in the remaining liquid increases as water evaporates from saltwater, as salt is unable to evaporate like water. As time passes, the salt concentration within the water triples to a point where it becomes incapable of remaining dissolved and commences the process of crystal formation.
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The following reaction forms 16.5 g of Ag(s): 2Ag2O(s)→4Ag(s)+O2(g)
What total volume of gas forms if it is collected over water at a temperature of 25 ∘C
and a total pressure of 763 mmHg?
10.5L is the total volume of gas forms if it is collected over water at a temperature of 25 ∘C and a total pressure of 763 mmHg.
A measurement of three-dimensional space is volume. It is frequently expressed quantitatively using SI-derived units, like the cubic metre or litre, or different imperial or US-standard units, including the gallon, quart and cubic inch.
Volume and length (cubed) have a symbiotic relationship. The volume more a container is typically thought of as its capacity, not as the amount of space it takes up. In other words, the volume is the quantity of fluid (liquid or gas) that the container may hold.
2Ag[tex]_2[/tex]O(s)→4Ag(s)+O[tex]_2[/tex](g)
moles of Ag = 16.5/ 107.8=0.15 moles
moles of oxygen = (1/2)×0.15 =0.075moles
P×V = n×R×T
763×V =0.075×0.081×25
V= 10.5L
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What is Specific Heat Capacity?
DR0uQu
Answer:
Specific heat capacity is a measure of how much energy is needed to raise the temperature of a material and is defined as follows:
A compound contains 64 g of O and 4 g of H. What is the empirical formula for this compound?
The molecular formula of a compound is the whole number multiple of its empirical formula. The empirical formula is also called the simplest formula, the percent composition of a compound leads to the empirical formula.
The empirical formula of a compound can be defined as the formula which gives the simplest whole number ratio of atoms of various elements present in one molecule of the compound.
To calculate empirical formula:
1. Calculate the moles of each element of the compound using percentage or mass
2. Calculate the ratio of each mole
3. Write the empirical formula
n (H) = m / M = 4 / 1 = 4 mol
n (O) = 64 / 16 = 4
H = 4/4 = 1
O = 4/4 = 1
So empirical formula is OH.
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what is the answer to this question
Help with number 17 please
The partial pressure of O₂ is 0.954 atm
The moles O₂ that formed is 0.000859 moles
The mass of NaNO₃ that reacted is 0.146 g.
What is Dalton's law of partial pressures?The balanced chemical equation for the reaction is given below:
2 NaNO₃ (s) → 2 NaNO2 (s) + O₂(g)Using Dalton's Law of partial pressures:
The partial pressure of O₂ = Total pressure - Partial pressure of water vapor
The partial pressure of O₂ = (0.98 atm) - (0.026 atm)
The partial pressure of O₂ is 0.954 atm
b. Using the ideal gas law to determine the moles of oxygen gas formed:
PV = nRT
Making subject of the formula:
n = PV/RT
n = (0.954 * 0.0230)/(0.0821 * 295.15)
n = 0.000859 moles
Moles of O₂ formed = 0.000859 moles
c. the mass of NaNO₃ that reacted is calculated as follows:
mass NaNO₃ = moles NaNO₃ x molar mass NaNO₃
molar mass NaNO = 84.99 g/mol
From the mole ratio of the reaction, moles of NaNO₃ = 0.000859 moles * 2
moles of NaNO₃ = 0.001718 moles
mass NaNO3 = 0.001718 * 84.99
mass NaNO3 = 0.146 g NaNO₃
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In addition to pH meter, what other methods and/or experimental devices may be used to determine the Ksp values of sparingly soluble electrolytes? Please give at least three examples.
What factor(s) may change Ksp values? Please elaborate your answer.
According to the solubility of of sparingly soluble electrolytes by conductometer and potentiometer.
Solubility is defined as the ability of a substance which is basically solute to form a solution with another substance. There is an extent to which a substance is soluble in a particular solvent. This is generally measured as the concentration of a solute present in a saturated solution.
The solubility mainly depends on the composition of solute and solvent ,its pH and presence of other dissolved substance. It is also dependent on temperature and pressure which is maintained.It can also be determined for electrolytes.
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At which time does this reaction reach equilibrium?
T1
T2
T3
It does not reach equilibrium
Which is true when a reaction is in equilibrium?
The reaction has stopped entirely
Only products are present
The forwards and reverse reactions are occurring at the same rate, and no change in concentration is observed
Only reactants are present
Equilibrium in a chemical reaction is the state of a system in which the rate of the forward reaction is equal to the rate of the reverse reaction.
In a chemical reaction, chemical equilibrium is the state in which both the reactants and products are present in concentrations which have no further changes.
According to this question, the reactants (blue line) equates the products (red line) in the time, T2.
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what mass of oxygen is required to oxidise 10g of ammonia to NO? Can someone explain to me step by step on how to do this reacting mass calculation?
4 NH3 + 5 O2 = 4 NO + 6 H2O
Taking into account the reaction stoichiometry, 13.33 grams of oxygen is required to oxidise 10g of ammonia to NO.
Reaction stoichiometryIn first place, the balanced reaction is:
4 NH₃ + 5 O₂ → 4 NO + 6 H₂O
By reaction stoichiometry (that is, the relationship between the amount of reagents and products in a chemical reaction), the following amounts of moles of each compound participate in the reaction:
NH₃: 4 molesO₂: 5 molesNO: 4 molesH₂O: 6 molesThe molar mass of the compounds is:
NH₃: 17 g/moleO₂: 32 g/moleNO: 30 g/moleH₂O: 18 g/moleBy reaction stoichiometry, the following mass quantities of each compound participate in the reaction:
NH₃: 4 moles ×17 g/mole= 68 gramsO₂: 5 moles ×32 g/mole= 160 gramsNO: 4 moles ×30 g/mole= 120 gramsH₂O: 6 moles ×18 g/mole= 108 gramsMass of O₂ requiredThe following rule of three can be applied: If by reaction stoichiometry 120 grams of NO are produced by 160 grams of O₂, 10 grams of NO are produced by how much mass of O₂?
mass of O₂= (10 grams of NO ×160 grams of O₂)÷120 grams of NO
mass of O₂= 13.33 grams
Finally, 13.33 grams of O₂ is required.
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Given the balanced equation representing a reaction at 101.3 kPa and 298 K:
N2(g) + 3H2(g) --> 2NH3(g) + 91.8 kJ
Which statement is true about this reaction?
The statement that is true is that It is endothermic and DH equals +91.8 kJ.
What is the truth?We can see that in this case that the heat of the reaction which we cam also call the enthalpy of the reaction is positive. Let us know that when we have a positive enthalpy what we have is an endothermic reaction.
Endothermic reactions are typically observed as a decrease in temperature, as energy is absorbed from the surroundings to fuel the reaction. Examples of endothermic reactions include the melting of ice.
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Missing parts;
Given the balanced equation representing a reaction at 101.3 kPa and 298 K:
N2(g) + 3H2(g) => 2NH3(g) + 91.8 kJ
Which statement is true about this reaction?
(1) It is exothermic and DH equals -91.8 kJ.
(2) It is exothermic and DH equals +91.8 kJ.
(3) It is endothermic and DH equals -91.8 kJ.
(4) It is endothermic and DH equals +91.8 kJ.
Completely describe the electrolytic cell corresponding to the following equation. (Hint: you may need to combine 2 half reactions from Table 17-1 to make one of the half reactions for this cell)
Cr2O7^2– + I^– → Cr^3+ + IO3^–
With work please COMPLETELY DESCRIBE please
The three main components of electrolytic cells are cathode, anode and electrolyte. The negatively charged electrolytic cells are cathode and the positively charged electrolytic cells are anode.
An electrolytic cell can be defined as the electrochemical device which uses the electrical energy to perform a non-spontaneous redox reaction. They are mainly used for the electrolysis of certain compounds.
Here the anode cell is:
3H₂O (l) + I⁻ (aq) → IO⁻₃ (aq) + 6e⁻ + 6H⁺ (aq)
cathode cell is:
14H⁺ (aq) + Cr₂O₇²⁻ (aq) + 6e⁻ → 2Cr³⁺ (aq) + 7H₂O (l)
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The whole series of reactions is summarized by the following equation.
4H → He + 2e+ + 2ve
Calculate the energy, in MeV, that is released.
nuclear mass of He = 4.00150 u
Mass of H¹ = 1.00723
[Ans: 24.7 MeV]
The energy released in the nuclear reaction of 4H → He + 2e+ + 2ve is 2.224 MeV.
Understanding how to solve for energy in nuclear reactionRecall that the mass-energy equivalence formula,
E=mc²
We need to convert the masses from atomic mass units (u) to kilograms (kg) first, and then multiply by the speed of light squared (c²) in units of meters per second.
The change in mass between the reactants and products is:
Δm = (4.00150 u - 4 x 1.00723 u) x 1.66054 x 10⁻²⁷kg/u
= 0.02916 kg
where we have used the conversion factor 1 u = 1.66054 x 10⁻²⁷kg/u
The energy released is then:
E = Δm x c² / (1.60218 x 10⁻¹³ MeV/J)
= 0.02916 kg x (299792458 m/s)² / (1.60218 x 10⁻¹³ MeV/J)
= 2.224 MeV
Therefore, the energy released in this nuclear reaction is 2.224 MeV.
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How does understanding weather patterns help make predicting the weather more accurate?
If the weather seems to have a constant pattern that has barely been or has not been changed, you can assume that there will be a greater chance the weather pattern will remain constant, or at least similar to the pattern.
help What is the bestmethod for the preservation of water quality?
In an ecosystem, the best method for the preservation of water quality is that humans should cease all recreational and agricultural uses of water resources.
Ecosystem is defined as a system which consists of all living organisms and the physical components with which the living beings interact. The abiotic and biotic components are linked to each other through nutrient cycles and flow of energy.
Energy enters the system through the process of photosynthesis .Animals play an important role in transfer of energy as they feed on each other. Components present include air, water, soil,etc.
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