A total of 0.1102 moles of Ag will be produced from 3.50 g of Cu.
To determine the number of moles of Ag produced from 3.50 g of Cu, we need to use stoichiometry.
From the balanced chemical equation, we see that 1 mole of Cu reacts with 2 moles of Ag to produce 1 mole of Cu(NO₃)₂ and 2 moles of Ag.
First, we need to convert 3.50 g of Cu to moles by dividing by its molar mass, which is 63.55 g/mol.
3.50 g Cu / 63.55 g/mol = 0.0551 mol Cu
Next, we use the stoichiometry ratio to determine the number of moles of Ag produced:
0.0551 mol Cu x (2 mol Ag / 1 mol Cu) = 0.1102 mol Ag
In summary, we use stoichiometry to determine the number of moles of Ag produced from 3.50 g of Cu by first converting the mass of Cu to moles, and then using the stoichiometry ratio from the balanced chemical equation.
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A demand o2 delivery system utilizes a _________________ to trigger o2 flow.
A demand O2 delivery system utilizes a "pressure drop" mechanism to trigger oxygen flow.
In a demand oxygen delivery system, the flow of oxygen is triggered by a pressure drop that occurs when the user initiates inhalation. When the user takes a breath, the drop in pressure in the system activates the mechanism that releases oxygen.
This mechanism can be a valve or regulator that opens to allow oxygen to flow from the source to the user.
The pressure drop required to trigger the oxygen flow depends on the specific design of the system and can vary. Generally, the pressure drop is set at a level that ensures the user's inhalation effort is sufficient to activate the oxygen flow while maintaining a safe and reliable operation.
The pressure drop is typically calibrated and adjusted during the manufacturing process to meet the desired specifications and requirements of the system.
In summary, a demand oxygen delivery system relies on a pressure drop mechanism to initiate the flow of oxygen. This mechanism ensures that oxygen is released when the user inhales, providing them with the required oxygen supply.
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A company known as Arten industries is wanting to build a factory in the watershed that is pictured.The company wants to limit the ecological impact it has on surrounding areas where should the company build its factory
In an ecosystem in the hilly areas the should built its factory away from the river so that pollution does not reach the river.
What is an ecosystem?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.As a result of this transfer of matter and energy takes place through the system .Living organisms also influence the quantity of biomass present.By decomposition of dead plants and animals by microbes nutrients are released back in to the soil.
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Lee molecular weight of urea is 60.07 do you
think urea will diffuse through the 20 MWCO
membrane?
There is a golden role of solubility, polar solute dissolve in polar solvent and non polar solute dissolve in non polar solvent. Therefore, it was unable to diffuse through the 20 MWCO membrane.
What is solution?Solutions are a homogeneous mixture of two or more substances. A solution is a homogeneous mixture of solvent and solute molecules. Solvent is a substance that is in large amount in solution. solute is the substance which is in small amount in a solution. There are two types of mixture that is homogeneous and heterogeneous. Solution is a homogeneous solution.
Lee molecular weight of urea is 60.07 . It was unable to diffuse through the 20 MWCO membrane due to urea being unable to fit through the pores of the membrane.
Therefore, it was unable to diffuse through the 20 MWCO membrane.
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A student is asked to standardize a solution of calcium hydroxide. he weighs out 0.990 g potassium hydrogen phthalate (khc8h4o4, treat this as a monoprotic acid). it requires 39.5 ml of calcium hydroxide to reach the endpoint. a. what is the molarity of the calcium hydroxide solution? m this calcium hydroxide solution is then used to titrate an unknown solution of hydroiodic acid. b. if 17.9 ml of the calcium hydroxide solution is required to neutralize 13.8 ml of hydroiodic acid, what is the molarity of the hydroiodic acid solution? m
The molarity of the calcium hydroxide solution is 0.0696 M
These are essentially 4-step problems.
1. Write and balance the equation. If we call potassium hydrogen phthalate just KHP, then
Ca(OH)2 + 2KHP ==> 2H2O + CaP + K2P
2. Convert grams to moles. moles KHP = 0.990/molar mass KHC8H4O4 = 0.990/179 = approximately 0.0055
3. Using the coefficients in the balanced equation, convert moles KHP to moles Ca(OH)2
0.0055moles KHP x (1 mole Ca(OH)2/2 moles KHP) = 0.0055 x (1/2) = 0.00275 moles Ca(OH)2.
4. M Ca(OH)2 = moles Ca(OH)2/L Ca(OH)2
M Ca(OH)2 = 0.00275/0.0395 = approximately 0.0696 M
Part B is done the same way. Now that you have the Ca(OH)2 standardized, use that, with the same process, to determine the molarity of the HI.
Remember that moles = M x L.
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Explain why rinsing your hands in lemon juice would make them less slick.
Answer:
Washing your hands with lemon juice does not have any beneficial effects.
Explanation:
washing with lemon juice does not protect against any major diseases.
What does it mean when a compound is aqueous (aq) in solution?
Answer:
Water
Explanation:
An aqueous solution is a solution in which the solvent is water.
In an experiment, 125ml of H2 is collected over water at 27C and barometric pressure of 753 torr. the vapor pressure of water at 27C is 26.74 what is the partial pressure of H2?
Answer:
Partial pressure of H₂ = 0.9556 atm
Explanation:
Given:
Barometric pressure = 753 torr
Vapor pressure of water = 26.74 torr
FInd:
Partial pressure of H₂
Computation:
Partial pressure of H₂ = Barometric pressure - Vapor pressure of water
Partial pressure of H₂ = 733 - 26.74
Partial pressure of H₂ = 726.26 torr
1 atm = 760 torr
So,
Partial pressure of H₂ = 726.26/760
Partial pressure of H₂ = 0.9556 atm
What is the fancy name for the cell membrane?
Answer:
plasma membrane
Explanation:
One molecule of ATP provides 0. 30 eVeV when it is used to power cellular processes. Photosynthesis in a typical plant requires 8 photons at 550 nmnm to produce 1 molecule of ATP. What is the overall efficiency of this process?
Photosynthesis in a typical plant requires 8 photons at 550 nm to produce 1 molecule of ATP. The overall efficiency of this process 1.66%.
Photosynthesis is the process by which plants convert sunlight, carbon dioxide, and water into glucose and oxygen. This process requires energy in the form of ATP, which is produced through the electron transport chain during the light-dependent reactions of photosynthesis. The efficiency of photosynthes ATP. According to the question, 8 photons at 550 nm are required to produce one molecule of ATP, and each ATP molecule provides 0.30 eV of energy.
To calculate the efficiency, we first need to convert the energy provided by one ATP molecule from eV to Joules (J). 1 eV is equal to 1.6 x \(10^{-19}\) J, so 0.30 eV is equal to 4.8 x \(10^{-20}\)J.
Next, we can calculate the energy provided by 8 photons at 550 nm. The energy of one photon can be calculated using the equation E = hc/λ, where E is energy, h is Planck's constant, c is the speed of light, and λ is the wavelength of the photon. Plugging in the values for h, c, and λ, we get:
E = (6.626 x 10^-34 J.s)(3.00 x \(10^{8}\) m/s)/(550 x \(10^{-9}\)m) = 3.61 x \(10^{-19}\)J
Multiplying the energy of one photon by 8 gives us the total energy required to produce one molecule of ATP:
8 x 3.61 x \(10^{-19}\)J = 2.89 x \(10^{-18}\) J
Finally, we can calculate the efficiency of photosynthesis by dividing the energy provided by one ATP molecule by the total energy required to produce one ATP molecule: 4.8 x \(10^{-20}\) J / 2.89 x \(10^{-18} J = 0.0166 or 1.66%. Therefore, the overall efficiency of photosynthesis in a typical plant, based on the given information, is approximately 1.66%.
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In alcohol fermentation, yeast converts glucose to ethanol and carbon dioxide: C 6 H 12 O 6 (s)→2C 2 H 5 OH(l) + 2CO 2 (g) If 5.97 g of glucose are reacted and 1.44 L of CO 2 gas are collected at 293 K and 0.984 atm, what is the percent yield of the reaction.
Answer:
89.4%
Explanation:
We'll begin by obtaining the actual yield of CO2. This can be obtained calculating the number of mole of CO2 produced from the reaction as follow:
Volume (V) = 1.44 L
Temperature (T) = 293 K
Pressure (P) = 0.984 atm
Gas constant (R) = 0.0821 atm.L/Kmol
Number of mole (n) =..?
PV = nRT
0.984 x 1.44 = n x 0.0821 x 293
Divide both side by 0.0821 x 293
n = (0.984 x 1.44) / (0.0821 x 293)
n = 0.059 mole
Therefore, the actual yield of CO2 is 0.059 mole.
Next we shall the theoretical yield of CO2. This can be obtained as follow:
First, we shall determine the number of mole in 5.97 g of glucose, C6H12O6.
Molar mass of C6H12O6 = (12x6) + (12x1) + (16x6) = 180 g/mol
Mass of C6H12O6 = 5.97 g
Mole of C6H12O6 =?
Mole = mass /molar mass
Mole of C6H12O6 = 5.97/180
Mole of C6H12O6 = 0.033 mole
Now, we can calculate the theoretical yield of CO2 as follow:
C6H12O6(s) → 2C2H5OH(l) + 2CO2(g)
From the balanced equation above,
1 mole of C6H12O6 produced 2 moles of CO2.
Therefore, 0.033 mole of C6H12O6 will produce = 0.033 x 2 = 0.066 mole of CO2.
Therefore, the theoretical yield of CO2 is 0.066 mole.
Finally, we shall determine the percentage of CO2 as follow:
Actual yield = 0.059 mole
Theoretical yield = 0.066 mole.
Percentage yield =?
Percentage yield = Actual yield /Theoretical yield x 100
Percentage yield = 0.059/0.066 x 100
Percentage yield = 89.4%
Therefore, the percentage yield of the reaction is 89.4%
Is C6H1206 an element or compound
C6H1206 is a compound (of glucose).
why are chemical equations balanced?A. To show that the total mass can only change when the total number of moles of substances changes B. To show that the total number of moles of substances does not changeC. To show that the mass of atoms in the products must equal the mass of atoms in the reactants D. To show that the number and type of each atom does not change
In Chemistry, we always have to balance the equations, in many topics within the subject of Chemistry, it is required to do that, this is because we have to account for every atom in the reaction, on both sides, reactant and product, the same number of atoms that are on the reactants side must be on the products side. Therefore, the best answer for this question will be letter D
What is the role of the nucleus in radiation and radioactivity?
Answer:
When the nucleus is in radiation, the nuclei will become unstable and will decay overtime.
BRAINLIEST!! PLS HELP!!
Answer:
b be aosum
Explanation:
How many particles foes 8.0 moles represent?
1 mole of any substance contains 6.023 × 10²³ particles. Therefore, 48.184 particles represents 8.0 moles.
What is mole ?The term mole is defined as the amount of substance in a system which include as many elementary entities as there are atoms present in it. It is denoted by the symbol “mol”. The word mole is coming from the Latin word moles, which means “a mass”.
The mole is also defined as it contain exactly 6.023 × 10²³ elementary entities present in it. 1 mole is exactly equal to the 6.023 × 10²³ elementary entities.
1 mole = 6.023 × 10²³
8 mole = 8 × 6.023 × 10²³
= 48.184 particles
Thus, 1 mole of any substance contains 6.023 × 10²³ particles. Therefore, 48.184 particles represents 8.0 moles.
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Which statement best describes how an ionic bond forms?
The transfer of electrons forms strong bonds between ions.
The sharing of electrons forms strong bonds between ions.
The transfer of electrons results in repulsive forces between molecules.
The sharing of electrons results in attractive forces between molecules.
The transfer of electrons forms strong bonds between ions is the best
statement that describes ionic bond formation.
Ionic bond is also known as electrovalent bonding. It involves the transfer
of electrons from an element to another. This is done so as to enable the
elements achieve a stable configuration and formation of new compounds.
The ionic bonds formed are usually strong so as to prevent the elements
from losing their stable configuration.
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Coffee has a ph of approximately 5. 0. What results would you predict if we added lactase to a solution of milk and coffee? would glucose be produced? provide your rationale.
Lactose contains sugar and glucose, which is found in lactose, glucose will be formed when coffee is added to milk and then lactose is added to the coffee and milk combination.
Because milk contains calcium, it is white in colour and contains the known sugars lactose and glucose. Lactose, a type of sugar present in milk, turns into glucose when combined with coffee.
Farmers dry the brownish bean-shaped coffee seed, which is then ground into a fine powder and combined with milk and sugar to make coffee. In general, Brazil and other nations are where you may find coffee.
Because lactose contains sugar and glucose, when coffee is added to milk and then lactose is added to the coffee and milk solution, glucose will be created.
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Write the electron configuration of the element that has Z = 3 *
Answer:
1s²2s^1
Explanation:
Lithium Z = 3
Increased total serum lactic dehydrogenase (LD) activity, confined to fractions 4 and 5 is most likely to be associated with: A. Pulmonary infarction B. Hemolytic anemia C. Myocardial infarction D. Acute viral hepatitis
D.Acute Viral Hepatitis
inflammation of the liver caused by infection with one of the five hepatitis viruses
Hope it helps (≧∇≦)/
A sealed helium balloon with an internal pressure of 1.00 atm and a volume of 4.50 L at 293 K is moved. What volume will the balloon occupy at a place where the pressure is 0.600 atm and the temperature is 253 K?
Answer:
6.48 L
Explanation:
From the question,
Applying
PV/T = P'V'/T'......................... Equation 1
P = initial pressure of the helium balloon, V = Initial volume of the balloon, T = Initial temperature of the balloon, P' = Final pressure of the balloon, T' = Final temperature of the balloon, V' = Final volume of the balloon.
make V' the subject of the equation
V' = PVT'/P'T......................... Equation 2
Given: P = 1 atm, V = 4.5 L, T' = 253 K, T= 293 K, P' = 0.6 atm
Substitute these values into equation 2
V' = (4.5×1×253)/(0.6×293)
V' = 1138.5/175.8
V' = 6.48 L
4.
Which series is in order of increasing boiling point?
A. CH2CH2CH3OH CH3COCH3 CH3CH2CH3
B. CH3CH2CH3 CH3COCH3 CH2CH2CH3OH
C. CH3COCH3 CH2CH2CH3OH CH3CH2CH3
D. CH3CH2CH3 CH2CH2CH3OH CH3COCH3
The series which is in order of increasing boiling point is CH3CH2CH3 CH3COCH3 CH2CH2CH3OH
However, the boiling point of an organic substance is the temperature at which the vapor pressure of the liquid organic substance equals the pressure surrounding the liquid and the liquid changes into a vapor.
What are organic compounds?Organic compounds are substance containing carbon and hydrogen. Some few organic compounds include:
AlkanesAlkenesAlkynesAlkanolsAlkanalsAlkanonesEstersAminesSo therefore, the series which is in order of increasing boiling point is CH3CH2CH3 CH3COCH3 CH2CH2CH3OH
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To ensure that a vehicle crash is inelastic, vehicle safety designers add crumple zones to vehicles. A crumple zone is a part of a vehicle designed to crumple easily in a crash. Use Newton’s second law to explain why crumple zones reduce the force in a collision.
Answer:
well because with the velocity of the two, using the second law, it can slow the velocity before there is a casualty.
Explanation:
Please answer step by step.
3 moles of NaOH reacts with 1 mole of phosphoric acid.
What is the moles ratio of the NaOH and Phosphoric acid reaction?The moles ratio of the reaction between NaOH and Phosphoric acid is given by the equation of the reaction below:
\(3\:NaOH + H_{3}PO_{4} \rightarrow Na_{3}PO_{4} + 3\:H_{2}O \\ \)
Based on the equation of the reaction, 3 moles of NaOH reacts with 1 mole of phosphoric acid.
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Does fertilizer make a plant grow bigger?mention two variables. How change of one variable effects another one in investigation?
Trick question
Science
In scientific investigations, the effect of fertilizer on plant growth can be studied by examining various variables. Two key variables in this context are the presence or absence of fertilizer (independent variable) and the size or growth of the plant (dependent variable).
When investigating the effect of fertilizer on plant growth, the independent variable is the presence or absence of fertilizer. This variable is controlled by having two groups of plants: one group receiving fertilizer (experimental group) and another group without fertilizer (control group). By comparing the growth of these two groups, we can determine the impact of fertilizer on plant size.
The dependent variable, on the other hand, is the size or growth of the plant. This variable is measured or observed as the outcome of interest. In this case, it would be the height, weight, or overall size of the plants.
By systematically changing the independent variable (presence or absence of fertilizer), we can observe how it affects the dependent variable (plant growth). The experimental group receiving fertilizer is expected to show greater plant growth compared to the control group without fertilizer. This allows us to draw conclusions about the effect of fertilizer on plant growth.
However, it is important to note that the specific outcome may vary depending on other factors such as plant species, soil conditions, and environmental factors. Conducting a controlled experiment while considering these factors helps in obtaining more reliable results.
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Jenna took an open bowl of leftover mashed potatoes from the refrigerator and noticed a difference in smell. She determined that chemical changes occurred since the potatoes were first placed there.
Which observations most likely led to Jenna’s conclusion?
Answer:
The change in smell
Explanation:
chemical reactions ccan lead to change in temperature, change in color and also change in smell
what mass in grams of hydrogen is produced by the reaction of 4.73 g of magnesium with 1.83 of water
The mass, in grams, of hydrogen that would be produced from the reaction will be 0.102 grams
Stoichiometric calculationsFrom the balanced equation of the reaction:
\(Mg + 2H_2O -- > Mg(OH)_2 + H_2\)
The mole ration of magnesium to water is 1:2.
Mole of 4.73 grams Mg = 4.73/24.3 = 0.195 moles
Mole of 1.83 grams water = 1.83/18 = 0.102 moles
Hence, water is limiting.
Mole ratio of water to the hydrogen produced = 2:1
Equivalent mole of hydrogen gas produced = 0.102/2 = 0.05 moles
Mass of 0.05 moles hydrogen gas = 0.05 x 2 = 0.102 grams
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Mrs. Scott did a demonstration for her class. She used tongs to hold a piece of steel wool in the flame of a Bunsen burner. The steel wool caught on fire and began to burn. Mrs. Scott removed the steel wool from the flame and allowed it to burn for 20 minutes.
Later, Mrs. Scott took a piece of the burned steel wool and held it in the flame of the Bunsen burner. It did not catch on fire.
Make a claim about whether the steel wool underwent a chemical reaction while burning. Support your claim with evidence from the demonstration.
The demonstration shows that steel wool burned chemically.
From the demonstration, steel wool burned chemically. The supporting evidence is:
1. Combustion: Bunsen burner flame ignited steel wool. A material combines with oxygen to produce heat, light, and gases or new compounds in combustion. Steel wool burning implies a chemical reaction.
2. Steel wool burned for 20 minutes. This prolonged burning signals a chemical process. Shape and size alterations rarely last this long.
3. Failure to Ignite: A piece of charred steel wool held in the flame again did not ignite. This implies that the initial chemical reaction that caused the steel wool to ignite was irreversible. After a chemical reaction consumes the reactants, it may not happen again without replacing them.
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Ecclesiastes 1:4-11 discusses the consistency and predictability of life. Does the nature of radioactive decay support this or contradict this? Please explain this in detail.
Answer:
50 Points Help 1) Find the mass of 250.0 mL of benzene. The density of benzene is 0.8765 g/mL.
7) What volume of silver metal will weigh exactly 2500.0 g. The density of silver is 10.5 g/cm3.
Answer:
At 13.6 C, a 1.2 mole sample of a gas exerts a pressure of 2.4 atmospheres. 1 point If you were solving for volume, what number would you use for temperature in the ideal gas law equation (PV = nRT)? о O 13.6 o 1.2 0 24 O 286.6 0 275.4
Thank You and All Answers are found on URL below:
https://answer-helper.com/poisk?searchword=Ecclesiastes+1%3A4-11+discusses+the+consistency+and+predictability+of+life.+Does+the+nature+of+radioactive+decay+support+this+or+contradict+this%3F+Please+explain+this+in+detail.There can be emissions of radiations like gamma radiation. There can be emission of particles too like alpha particle. Therefore, the nature of radioactive decay does not support the given statement.
What is nuclear decay?Nuclear decay is process in which the radioactive element releases particles or radiations. Alpha particles is ⁴₂He. Alpha particle is nothing but helium particle. Decay of radioactive element always comes under first order kinetics.
The rate law for first order kinetics is
K=(2.303/T)×log(a/a-x)
half life=0.693/K
Where
k - rate constant
t - time passed by the sample
a - initial amount of the reactant
a-x - amount left after the decay process
Consistency and predictability are imperatives to the experience of a safe environment. The nature of radioactive decay does not support this.
Therefore, the nature of radioactive decay does not support the given statement.
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Two significance of melting point
The significance of melting points are
it gives us a idea about inter molecular force which binds the particles together.at melting point the solid and liquid states exist in equilibrium.What is melting point?The melting point is the temperature at which a given substance change its physical state from solid to liquid. At this point solids and liquids exist at equilibrium. Melting point of a substance depends on pressure. The melting point of ice increases when pressure decreases. Melting point of a substance decreases by the presence of impurities in it. so you increase or decrease the melting point on any substance by adding more impurities. Ionic bonds, shape and size of molecules are some other factors that affect the melting point.
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list Two examples of seeds that are dispersal by water
Answer:
okay
Explanation:
Coconut, palm, mangroves, water lily, water mint, are a few examples of plants whose seed are dispersed by the water.