Match the term with the correct response.
4% milkfat
2% or 1% milkfat
less than .02% milkfat
35% to 40% milkfat
15% to 18% milkfat

Answers

Answer 1

Following are the match-ups of different milkfats.

Whole milk (3.25% milk fat), reduced-fat milk (2%), low-fat milk (1%), and fat-free milk, sometimes known as skim milk, are the four main forms of milk that are readily available. Each one has 8 grammes of high-quality protein and 13 other necessary elements. The quantity of fat in each type of milk, expressed as a percentage of milkfat, varies. To display the milkfat at a glance, these percentages are mentioned on the box and via the various cap colours.

All milk, including fat-free, low-fat, organic, and lactose-free varieties, remains a naturally nutrient-rich, straightforward, and healthful food. However, the amount of milk fat does impact the number of calories and fat in each serving.

4% milkfat                                                          whole milk

2% or 1% milkfat                                                 reduced fat milk

                       

less than .02% milkfat                                       skim or fat-free

35% to 40% milkfat                                           heavy cream

15% to 18% milkfat                                             half-and-half

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Related Questions

The limiting reactant is
a
the reactant that does not get completely used
b
completely consumed; there is no excess remaining
c
said to be the reactant that is in excess

Answers

In the concept of percent yield, the  limiting reactant is completely consumed; there is no excess remaining.

What is percent yield?

Percent yield is defined as the ratio of actual yield to the theoretical yield multiplied by 100. If the actual and theoretical yield are same then the percent yield is 100%.If actual yield is less than the theoretical yield then the percent yield is less than 100%.Reason of this condition arising is the incompletion of reaction or loss of sample during recovery process.

In cases where percent yield is over 100% it indicates that more sample is recovered than the predicted amount.This condition arises when there are other simultaneous reactions taking place leading to the formation of product. It can also arise if there is incomplete removal of impurities from the sample .

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If 50.5 g of KBr are dissolved in 400.0 g of water at 25.0 °C in an insulated container, a temperature change is observed. The ∆H of solution of KBr is 19.9 kJ/mol. Assuming that the specific heat of the solution is 4.184 J/(g °C), and that no heat is gained or lost by the container, what will be the final temperature of the solution?

Answers

The final temperature of the solution is 30 degrees.

What is the final temperature of the solution?

We know that we can be able to obtain the heat that has been evolved or absorbed by the system by the use of the formula that says; q = mcdT

m = mass of the object

c = heat capacity

dT = temperature change

We would then have;

Number of moles of KBr = 50.5 g/119 g/mol

= 0.42 moles

Then;

19.9 * 10^3 *  0.42 moles = 400 * 4.184 * (T - 25)

8358 = 1673.6T - 41840

T = 8358 + 41840/1673.6

T = 30 degrees

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Consider the reversible reaction

A(g)↽−−⇀B(g)

Which values would indicate that there is more B than A at equilibrium?

=1×10–5

=7000

=8×105

=0.2

Answers

Answer:

=8×105

Explanation:

This value represents the equilibrium constant, Kc, of the reaction. The equilibrium constant is a measure of the relative concentrations of reactants and products at equilibrium. If the value of Kc is greater than 1, it means that there is more product than reactant at equilibrium, and if the value of Kc is less than 1, it means that there is more reactant than product at equilibrium.

The value 8×105 is greater than 1, so it means that there is more B than A at equilibrium. =8×105.

A tank contains 5.00 moles of O_2, 3.00 moles of neon, 6.00 moles of H_2S, and 4.00 moles of argon at a total pressure of 1620.0 mm Hg. Complete the following table

Answers

The complete table is shown in the attachment in which total 18 moles have a mole fraction of 1, Pressure fraction is also 1 and the total Partial pressure is 1620 mm Hg.

The mole fraction of any ingredient in a mixture is the ratio of the amount of that ingredient's moles to all other ingredients' combined moles. The partial pressure of each gas in a mixture of gases is calculated by multiplying the total pressure by the mole fraction of that gas.

An idea is the partial pressure of a gas (rather than something we can measure). We consider the pressure of each gas in a mixture to be a component of the combination's overall pressure. Each gas has a certain pressure when contained by itself. Those are highlighted and located at the top. The same amounts are then once more pushed into the same container, increasing both the pressure and the total number of moles.

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Write the balanced net ionic equation for the precipitation of zinc phosphate from aqueous
solution:
Include states of matter in your answer.

Answers

The precipitation of zinc phosphate from aqueous solution:

Zn2+ (aq) + SO42- (aq)  = Zn3(PO4)2 (s)

What is precipitation?

The process of precipitation is the formation of a solid from ions and chemical species dissolved in an aqueous solution. When this solid forms, it sinks to the bottom of the solution and remains there rather than remaining suspended. Filtration can be used to further separate the precipitate from the solution.

When two ionic compounds react, the one containing zinc ions and the other containing phosphate anions, the result is the precipitate zinc phosphate. The interaction between those two ionic compounds would be a precipitation reaction, which entails the dissociation of the two ionic compounds in the solution, followed by the bonding of zinc ions and phosphate ions and precipitation.

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two tablets of the antibiotic isoniazid were crushed, dissolved, and homogenized in 100 ml of water. the solution was then assayed using redox titration. given the equation below, if 12.16 ml of 0.020 m kbro3 was required to reach the endpoint, how many mg of isoniazid were present in each isoniazid tablet? (note: mw of isoniazid

Answers

Dosage for an isoniazid and rifapentine combo regimen administered in 12 once-weekly doses while being closely monitored for the treatment of latent Mycobacterium tuberculosis infection. There are 100 mg and 300 mg tablets available of isoniazid (INH).

How much Isoniazid is the MG?Depending on the schedule that your doctor determines for you, the typical dose is 10 to 20 mg per kg (4.5 to 9.1 mg per pound) of body weight, up to 300 mg, once a day; or 20 to 40 mg per kg (9.1 to 18.2 mg per pound) of body weight, up to 900 mg, twice a week; or three times a week.Dosage for an isoniazid and rifapentine combo regimen administered in 12 once-weekly doses while being closely monitored for the treatment of latent Mycobacterium tuberculosis infection. There are 100 mg and 300 mg tablets available of isoniazid (INH).        

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Read the Safety Data Sheet (click SDS icon below) of hydrogen peroxide to identify the recommended way to store this substance. SDS Select one: In an open container in a bright and humid environment In a glass, leak-proof bottle on a shelf or cabinet In a tightly closed container in a dry and well-ventilated place In a well-ventilated container in a closed, dry area

Answers

The recommended way to store hydrogen peroxide is in a tightly closed container in a dry and well-ventilated place.

What is hydrogen peroxide?

Hydrogen peroxide is a chemical compound with the formula H2O2. It is a colourless liquid, slightly more viscous than water, and is a strong oxidizing agent. Hydrogen peroxide is used in a variety of industries and applications, including as a bleaching agent, antiseptic, and disinfectant. It is also used in rocket propulsion and to manufacture rocket fuels. The compound has many other uses, such as in the production of paper, textiles, and dyes, and in water treatment. Hydrogen peroxide is highly reactive, and can be dangerous if handled improperly.

This is to ensure that the hydrogen peroxide does not become contaminated with air, moisture, or other contaminants that could reduce its efficacy. It is also important to store the hydrogen peroxide away from combustible materials and sources of ignition, as well as away from food and beverages. Additionally, it is important to keep the container away from direct sunlight and other sources of heat. Finally, it is important to keep the container away from children and pets.

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A 13.0 ml sample of an acid requires 37,3 ml of 0.303N NaOH for neutralization. Calculate the normality of the acid.​

Answers

The amount of 0.303N NaOH needed to neutralize a 13.0 ml sample of acid is 37,3 ml. Acid is 0.823N normal, according to the standard.

Explain about the neutralization.

The idea of neutralization, according to which an acid reacts with a base to create salt and water. By comparing the molarity of the base to the amount of base needed for neutralization, it is possible to calculate the molarity of the acid. Once the molarity and the acid's valence (or charge) have been multiplied, the acid's normalcy can be determined.

By deducting the volume of NaOH (37.3 ml) from the volume of the acid sample in Step 1, you can calculate the amount of acid that was utilized in the neutralization procedure (13.0 ml).

Consequently, 13.0 ml to 37.3 ml

= -24.3 ml

Use the equation moles = normality x volume to determine the number of moles of acid that were used in the process.

Consequently, moles equal 0.303N x -24.3 ml.

= -7.33 moles

Determine the acid's normality by multiplying the volume by the formula normalcy = moles.

As a result: normalcy = -7.33 moles / 13.0 ml

= -0.823N

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The standard definition of a quart is equal to 947 mL.

Calculate the percent error of a student's measurement if she found the experimental value of the volume of one quart of water to be equal to 925 mL.

Type answer:

Answers

Answer:

2.32%

Explanation:

% error = (|experimental value - actual value| / actual value) x 100

where the actual value is the accepted or true value, and the experimental value is the value obtained through measurement.

In this case, the actual value of the volume of one quart of water is 947 mL and the experimental value is 925 mL.

% error = (| 925 - 947 | / 947) x 100

% error = (22 / 947) x 100

% error = 2.32 %

So, the percent error of the student's measurement is 2.32%. This means that the student's measurement is 2.32% different from the true value.

rutherford's gold foil experiment was very important in developing the nuclear model of the atom. which of the following statements correctly describe the observations made and the implications of each for atomic structure? select all that apply. Most α particles passed straight through the foil, implying that the atom consists largely of empty space.-A few α particles showed major deflections, indicating the presence of a dense central core within the atom.

Answers

Experiments with cathode rays led Thomson to propose that the electron was a negatively charged particle.

What is meant by cathode ?

The positive terminal of a battery or other source of electrical energy via which electrons exit and the cathode, negative terminal or electrode through which they enter a direct current load, such as an electrolytic cell or an electron tube.The anode is the negative or reducing electrode that undergoes electrochemical reactions and delivers electrons to the external circuit while oxidising.The positive or oxidising electrode known as the cathode is decreased during the electrochemical process after receiving electrons from the external circuit.An x-ray tube's cathode serves to expel the electrons from the circuit and concentrate them in a beam on the anode's focal spot.

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What is the mass, in grams, of 9.56 x 1024 molecules of methanol (CH3OH) ?

Answers

Explanation:

Step (1) : find number of moles of (CH3OH)

[tex]moles = \frac{number \: of \: molcule}{6.022 \times {10}^{23} } \\ = \frac{9.56 \times {10}^{24} }{6.022 \times {10}^{23}} \\ = 15.8[/tex]

Step (2): find mass of (CH3OH)

[tex]mass \: = moles \times molecules \: mass \: of \:(CH3OH) \\ = 15.8 \times 32.04 \\ = 506.2g[/tex]

Ao, answer is 506.2 g (approx 506g)

2 BaO2(s) ⇄ 2 BaO(s) + O2(g)
ΔH° = 162 kJ/molrxn
A sealed rigid vessel contains BaO2(s) in equilibrium with BaO(s) and O2(g) as represented by the equation above.
Which of the following changes will increase the amount of BaO2(s) in the vessel?
(A)Removing a small amount of O2(g)
(B) Removing a small amount of BaO(s)
(C) Adding He gas to the vessel
(D) Lowering the temperature

Answers

'Removing a small amount of O2(g)' will increase the amount of BaO2(s) in the vessel.

What do you mean by a vessel?

In chemistry, a vessel is a container, typically made of glass, that is used to hold and heat liquids or solids in a chemical reaction. It is an essential piece of laboratory equipment, and it is used to safely and accurately measure, mix, and store materials. Vessels come in many different forms and sizes, and are used for everything from simple mixing applications to complex, high-temperature reactions.

When oxygen is removed from the vessel, the equilibrium of the reaction will shift in favor of the formation of BaO2(s). This is because the reaction is exothermic and the decrease in O2(g) will reduce the amount of energy available for the reaction to occur, thus favoring the formation of BaO2(s).

Hence, option A is correct.

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Step 1:H2(g)+ICl(g)→HI(g)+HCl(g)(slow)Step 2:HI(g)+ICl(g)→HCl(g)+I2(g)(fast)Which of the following represents a rate law for the overall reaction that is consistent with the proposed mechanism?

Answers

The rate law that is consistent with the proposed mechanism is [-d[H2]/dt = k[H2][ICl].

The overall reaction is the sum of the two steps, which is:

H2(g) + 2ICl(g) → 2HCl(g) + I2(g)

To determine the rate law for the overall reaction, we need to consider the rate-determining step, which is the step that has the slowest rate. In this case, it is step 1.

The rate-determining step is H2(g) + ICl(g) → HI(g) + HCl(g)

The rate law for this step is -d[H2]/dt = k[H2][ICl]

Since step 2 is fast, we can assume that the concentration of HI is always in equilibrium with the concentrations of H2 and ICl

Therefore, the rate law for the overall reaction is -d[H2]/dt = k[H2][ICl]

So, the rate law that is consistent with the proposed mechanism is [-d[H2]/dt = k[H2][ICl]

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A prescription medication requires 8.00 mg per kg of body weight . Express your answer to three significant figures.

Answers

A prescription medication requires 8.00 mg per kg of body weight . The 0.017 grams is required per pound of the body weight. 1.7 × 10⁻² grams is required per pound of the body weight.

What is significant figure ?

The term significant figure is defined as the number of digits in a value, often a measurement, that contribute to the degree of accuracy of the value.

We are given:

Medication requirement = 5.98 mg/kg

To convert the given amount in grams per pounds, we use the conversion factor:

1 kg = 2.20462 lb

1 g = 1000 mg

Converting the value into grams per pounds, we get:

= 8 mg / kg × 1g / 1000mg × 2.20462 lb / 1kg

= 0.017 grams

Thus, 1.7 × 10⁻² grams is required per pound of the body weight.

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When limestone is heated during Step 1, an equilibrium is established. Which of the following expressions is the equilibrium constant for the decomposition of limestone?
A.
[CaO]
B.
[CaCO3]
C.
[CO2]
D.
[CaO] × [CaCO3]

Answers

The decomposition of limestone is the reaction of calcium carbonate (CaCO3) with heat to form calcium oxide (CaO) and carbon dioxide (CO2).

The equilibrium constant for a reaction is typically represented by a specific symbol, such as Kc or Kp, and is a measure of the relative concentrations of the reactants and products at equilibrium.The equilibrium constant for the decomposition of limestone is represented by Kc and is the product of the concentrations of the products raised to their stoichiometric coefficients, divided by the product of the concentrations of the reactants raised to their stoichiometric coefficients. Kc = [CaO] * [CO2] / [CaCO3]. Therefore the correct answer is D. [CaO] × [CaCO3]

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What is the final temperature (in °C) of 690.1 g of water

Answers

Answer:

32C Is the water hot or cold?

Explanation:

The final temperature of 690.1 g of water is 20.024°C.

To find the final temperature of 690.1 g of water, we need to know the initial temperature and the amount of heat added to the water. Water has a specific heat capacity of 4.184 J/g°C.

Here is an example calculation:

Let's say the initial temperature of the water is 20°C and we add 100 J of heat. To find the final temperature, we can use the equation:

q = mcΔT

where q is the heat added, m is the mass of the water (690.1 g), c is the specific heat capacity of water (4.184 J/g°C), and ΔT is the change in temperature.

Solving for ΔT:

ΔT = q / (mc)

ΔT = (100 J) / (690.1 g × 4.184 J/g°C)

ΔT = 0.024°C

We multiply the original temperature by the temperature change to obtain the final temperature:

final temperature = initial temperature + ΔT

final temperature = 20°C + 0.024°C

final temperature = 20.024°C

So the final temperature of 690.1 g of water is 20.024°C.

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This chemical reaction follows the law of conservation of mass
Cao(s) + CO₂(g) - CaCO3(s)
How much CaCO3 will be formed if 2.2 grams of CaO are used for this reaction? Assume there are enough reactants to complete the reaction. The final answer should be rounded to one
place after the decimal point
A 1.1 grams

B. 2.2 grams

C 3.9 grams

D 4.3grams

Answers

A 1.1 grams that's the answer because you calculate it together

Say the acid solution is currently in equilibrium. How would diluting the acid by adding water change the equilibrium position? Le Chatelier's Principle says pure liquids like water do not affect the equilibrium position. Using the equilibrium constant, it is easy to show the reaction should shift towards the right, but how can we show that with Le Chatelier's Principle?

Answers

Pure liquids, such as water, have no influence on the equilibrium position, according to Le Chatelier's Principle. It is straightforward to show that the response should shift to the right.

The equilibrium constant is used. According to Le Chatelier's Principle, the system will adjust to changes in focus. The concentration of an acid is often expressed as moles per liter. Increase the amount of solvent (water) on the reactant side of the equation to dilute the in equilibrium acid solution, pushing the system to adapt. I'm a little baffled by the final portion of your request. Pure liquids, such as water, have no influence on the equilibrium position, according to Le Chatelier's Principle. It is easy to illustrate that the reaction should shift to the right. Le Chatelier's Principle is incorporated into the equilibrium equation. If I wanted to show how the system works.

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the atomic mass unit is a standardized unit defined as exactly 112 the mass of a(n) -12 atom. the atomic mass (weight) of any element is determined relative to this standard and is not a whole number, since it is a(n) of the masses of its naturally occurring isotopes.

Answers

The atomic mass of an element is  the total number of protons and the neutrons in a particular atom of the element.

The atomic mass unit is a standardized unit and defined as the exactly 1 / 12 the mass of a carbon -12 atom. The atomic mass or weight of any element is determined by the relative to this standard and is not a whole number, since it is an average of the masses of its naturally occurring isotopes.

The atomic mass of an element is total number of protons and the neutrons. The atomic mass is average weight of all  the isotopes of that element.

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water molecules form hydrogen bonds between each others. hydrogen bonds are: (select all that apply) (check all that apply)

Answers

Water molecules form hydrogen bonds between each others. Hydrogen bonds are Non - Covalent bond. Hence the correct option is (b).

Hydrogen bonds are a type of non-covalent bond that form between electronegative atoms, such as nitrogen, oxygen, or fluorine, and hydrogen atoms that are covalently bonded to these electronegative atoms. In water molecules, hydrogen bonds form between the partially positive hydrogen atoms of one water molecule and the partially negative oxygen atoms of another water molecule. Hydrogen bonds are relatively weak compared to covalent bonds, but they play a crucial role in determining the properties of water and many other biologically important molecules. For example, the hydrogen bonds between water molecules are responsible for the high boiling point and low vapor pressure of water, as well as its high surface tension. Hydrogen bonds also play a key role in stabilizing the shape and function of proteins, DNA, and RNA, as well as in mediating the interactions between these biological molecules. Overall, hydrogen bonds are a unique type of non-covalent interaction that are essential for the stability and function of many important biological and chemical systems.

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Question - Water molecules form hydrogen bonds between each others. hydrogen bonds are_____. Select the correct option from the following:-

(a) Covalent bond

(b) Non - Covalent bond

(c) Ionic bond

(d) Polar bond

ph-dependent; a small change in ph produces a large change in the rate of the process. this is true not only for the many reactions in which the ion is a direct participant, but also for those reactions in which there is no apparent role for ions. the enzymes that catalyze cellular reactions, and many of the molecules on which they act, contain ionizable groups with characteristic values. the protonated amino and carboxyl groups of amino acids and the phosphate groups of nucleotides, for example, function as weak acids; their ionic state is determined by the ph of the surrounding medium.

Answers

when the ph of the medium changes, the ionization state of the active groups of the enzyme and its substrate also change, thus altering the rate of the reaction.

What is reaction?

A response is an action that is made in response to an event. It can be physical, mental, or emotional in nature, and can range from positive to negative. Reaction can be used to express feelings such as joy, surprise, anger, disappointment, and even fear. It is most commonly seen in social situations, where people respond to one another and the environment around them. Reactions can also be seen in animals and other organisms, as they respond to their environment in order to survive. Reactions can help us to understand ourselves and the world around us, and can help us to make decisions and take actions.

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pure substance x decomposes according to the equation above. which of the following graphs indicates that the rate of decomposition is second order in x ?

Answers

The decompositionrate is second order on x, as shown by a positive (1/x) L—> R graph..

In Graph 1, two molecules of NO react for every molecule of O2 that reacts because O2 consumption is half that of NO consumption. H2(g)+2ICl(g)2HCl(g)+I2(g) is the overall reaction, and rate=k is the percentage law for step 2. [HI][ICl]rate=k[HI][ICl]. The following is the empirically discovered rate rule for ozone depletion: k [O3] = rate. A system must be in accordance with the rate law discovered through decomposition. As a result, in the zero-order reactions, the rate is free of the reactant concentration and the unit of rate and rate constant, which are mol/L/time, are equal.

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Factors that affect the rate of a chemical reaction include which of the following? I. Frequency of collisions of reactant particles II. Kinetic energy of collisions of reactant particles III. Orientation of reactant particles during collisions a. I and Il only 0 b. I, Il, and Ill c. Il and IIl only d. Il only e. I and Ill only

Answers

Some elements that impact a chemical reaction's pace are collisions between reactant particles have kinetic energy.

What are the factors affecting the chemical reaction?

Two or more molecules colliding with the proper energy and orientation to create a new chemical compound is known as a chemical reaction. It should be possible to maintain the reaction's whole mass. Chemical reactions come in a wide variety of forms, such as double displacement reactions and combination reactions.

There are a multitude of variables that might influence a reaction's rate, and one of these is the kinetic energy of reactant particle collisions. Chemical reaction rates are inversely correlated with reaction rates. Five variables have been identified as having an impact on chemical reaction rates: the reactants' state of subdivision (one big lump versus many little particles), the chemical composition of the reacting substances,

Therefore the correct answer is option d ) Il only

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an ideal gas is cooled from 100 c to -43 c in a sealed container while maintaining a constant pressure. which of the following statements are true?

Answers

The volume of the gas decreases as it is cooled, while maintaining a constant pressure.

What is pressure?

Pressure is defined as the force exerted per unit area. It is a scalar quantity and is measured in units of force per unit area, such as pascals (Pa) or pounds per square inch (psi). Pressure can be exerted by a gas, liquid, or solid on a surface, and it can be exerted in any direction. It is the ratio of force to the area over which that force is distributed. This means that a small force exerted over a large area will have the same pressure as a larger force exerted over a smaller area.

When an ideal gas is cooled from 100°C to -43°C at a constant pressure, the temperature decreases and the volume of the gas decreases. This is because the gas molecules lose energy and move slower, which means they take up less space.

The ideal gas law, PV = nRT, states that the product of pressure and volume is directly proportional to the number of moles of gas and the absolute temperature. As the temperature decreases and the pressure remains constant, the volume of the gas decreases.

The other statements are not true:

-The number of moles of gas decreases as it is cooled.

-The pressure of the gas decreases as it is cooled.

-The number of gas molecules decreases as it is cooled.

As long as the volume is kept constant and the temperature is lowered, the pressure of the gas decreases.

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Zinc reacts with hydrochloric acid according to the following equation: Zn(s) + 2HCl(aq) → ZnCl2(aq) + H2(g) In a certain experiment, a 3.77 g sample of impure zinc is reacted with excess hydrochloric acid. If 1.09 L of H2 gas is collected at STP, what percentage of the original sample was zinc? Assume that the impurities do not react with HCl.

Answers

Answer:

approximately 69.24% of the original sample was zinc.

Explanation:

According to the equation, 1 mole of zinc reacts with 2 moles of HCl to produce 1 mole of ZnCl2 and 1 mole of H2.

We can use the Ideal Gas Law PV = nRT to find out the number of moles of H2 produced. Given that the pressure P = 1atm and temperature T = 273K (STP).

n = PV / RT = (1.09L) * (1atm) / (8.314J/mol * 273K) = 0.04 moles

Now we know that 0.04 moles of H2 is produced, we can use the balanced equation to find out the number of moles of zinc that reacted.

0.04 moles H2 is produced for every 1 mole of Zn.

thus 0.04 moles of zinc reacted.

The mass of zinc that reacted can be calculated by multiplying the number of moles by the molar mass of zinc (65.38g/mol)

0.04 moles * 65.38 g/mol = 2.6152 g

Now we can calculate the percentage of zinc in the original sample using the following equation:

% zinc = (mass of zinc reacted / mass of original sample) * 100

= (2.6152g / 3.77g) * 100 = 69.24%

So approximately 69.24% of the original sample was zinc.

2K3N + 3CaCl2 → 6KCl + Ca3N2

1 mol K3N = 131.301 g K3N

1 mol CaCl2 = 110.984 g CaCl2

1 mol KCl = 74.551 g KCl

1 mol Ca3N2 = 148.248 g Ca3N2

How many grams of CaCl2 would it take to make 1.5 moles of KCl?

Answers

It would take 83.238g of CaCl2 to make 1.5 moles of KCl.

A Lewis acid is a. a proton donor b. a proton acceptor c. an electron-pair donor. d. an electron-pair acceptor. e. never viewed also as a Bronsted-Lowry acid.

Answers

Option (d) is correct. Lewis acid is a electron pair acceptor. It accepts the electron pair.  

Lewis acid is a substance that can accept a pair of nonbonding electrons. A Lewis acid is an electron-pair acceptor. It accept an electron pair. Lewis Acids are Electrophilic. They are electron attracting. All cations are Lewis acids because they are able to accept electrons. The atom, ion or molecule with an incomplete octet of electrons can act as an Lewis acid. The Molecules where the central atom can have more than 8 valence shell electrons  are classified as Lewis acids. Molecules that have multiple bonds between two atoms of different electronegativities considered as Lewis acid.

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How many particles are in 176 grams of Fe(OH)2.

Answers

To solve this we must be knowing each and every concept related to mole and  and its calculations. Therefore, 1.17×10²⁴particles are in 176 grams of Fe(OH)[tex]_2[/tex].

What is mole?

A mole is merely a measuring unit. In reality, it is one of International System of Units' seven foundation units (SI). When basically determines are insufficient, new units are created.

Chemical reactions frequently occur at levels that use grams would be inappropriate, but using actual figures of atoms/molecules/ions would also be misleading.

It's much easier to write' mole' than '6.02x10²³' whenever you wish to refer to a huge number of things. That is essentially why and how this particular component was created.

mole =given mass ÷ molar mass

given mass of Fe(OH)[tex]_2[/tex] =176 grams

Molar mass of Fe(OH)[tex]_2[/tex]  =89.8g/mol

number of moles=176/ 89.8

                           =1.95moles

number of molecules=1.95moles ×6.022×10²³

                                  =11.7

                                    =1.17×10²⁴particles

Therefore, 1.17×10²⁴particles are in 176 grams of Fe(OH)[tex]_2[/tex].

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How do I fill out this chart?

Answers

Group is the vertical column (Up and down).

Period is the horizontal part (left and right).

The Family name is the category it is in such as Alkali Earth Metal, Alkali Metals, Transition Metals, Metalloids, Non-Metal, Halogens, and Noble Gases.

End Orbital is the ending of the electron configuration (complete this first before starting on end orbital.

VE is the valance electron (the number of electrons on the outer more shell) You can find this by looking at the periodic table. Group 1 = 1 VE
Group 2 = 2 VE
Group 13 (3A) = 3 VE
Group 13 (4A) = 4 VE

Cation (positive charge) and Anion (negative charge) are the charges of the element.
Group 1 = +1 charge
Group 2 = +2 charge
Group 13 (3A)= +3 charge
Group 15 (5A) = -3 charge
Group 16 (6A) = -2 charge
Group 17 (7A) = -1 charge

I am unsure about Block and Nature section

What following actions are permitted in balancing a chemical equation?
-Multiplying all coefficients by a common factor
- Inserting coefficients and front of formulas of reactants and products

Answers

The actions that aren't permitted in balancing a chemical equation is given below.

What is chemical equation?

A chemical equation is an expression that represents the chemical reaction between two or more substances. It consists of the chemical formulas of the reactants (the starting materials) and the products (the end result of the reaction), along with the physical states of the reactants and products (solid, liquid, gas, etc.) and the symbols that denote the type of reaction that is taking place (e.g. double arrow for a reversible reaction). The number of atoms of each element in the reactants and products must be the same on both sides of the equation.

Multiplying all coefficients by a common factor
- Inserting coefficients and front of formulas of reactants and products to balance the equation
- Adding coefficients in front of formulas of reactants and products to balance the equation
- Ignoring common elements in the equation
- Using the law of conservation of mass to balance the equation
- Combining like terms on both the reactants and products side of the equation
- Splitting a compound into its constituent elements with their respective coefficients
- Cancelling out any coefficients that are equal on both sides of the equation
- Rearranging terms to obtain the desired balance
- Substituting coefficients until the equation is balanced
- Checking the equation after balancing to verify that all atoms are balanced on both sides of the equation.

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