A bug travels at the rate of 3.0 miles per hour. How fast is this in um/nsec? Hint: 2.54cm = 1 inch and 1 mile = 5,280 feet

Answers

Answer 1
Note that
1 mi = 1609.34 m = 1609.34 x 10⁶ um
1 h = 3600 s = 3600 x 10⁹ ns

Therefore the speed of the bug is
 (3.0 mi/h)*(1609.34x10⁶ um/mi)*(1/3600x10⁹ h/ns)
[tex](3.0 \, \frac{mi}{h}) (1609.34\times10^{6}\, \frac{um}{mi} )( \frac{1}{3600\times 10^{9}} \frac{h}{ns} ) =1.34\,\times 10^{-3} \, \frac{um}{ns} [/tex]

Answer: [tex]1.34 \times 10^{-3} \, \frac{\mu m}{ns} [/tex]

Related Questions

Solid barium sulfate dissolves into its respective ions at 25°C. Suppose that in a particular solution, [Ba2+ ] = 1.76 x 10-3 M. Find the value of Ksp.

Answers

BaSO₄(s) ⇄ Ba²⁺(aq) + SO₄²⁻(aq)

Ksp=[Ba²⁺][SO₄²⁻]

[Ba²⁺]=[SO₄²⁻]

Ksp=[Ba²⁺]²

Ksp=(1.76*10⁻³)² =3.0976×10⁻⁶ ≈3.1×10⁻⁶

Answer:

The value of solubility product of barium sulfate is [tex] 3.09\times 10^{-6}[/tex].

Explanation:

[tex]BaSO_4\rightarrow Ba^{2+}+SO_4^{2-}[/tex]

                         S         S

1 mole of barium sulfate dissociates into 1 mole of barium ion and one mole sulfate ion.

So, [tex][Ba^{2+}]=[SO_4^{2-}]=S[/tex]

[tex][Ba^{2+}]=S=1.76\times 10^{-3} M[/tex]

The solubility product the barium sulfate will be given by:

[tex]K_{sp}=S\times S=S^2[/tex]

[tex]K_{sp}= (1.76\times 10^{-3})^2=3.09\times 10^{-6}[/tex]

The value of solubility product of barium sulfate is [tex] 3.09\times 10^{-6}[/tex].

The partial charges on a water molecule occur because of ______________.

Answers

The partial charges on a water molecule occur because of  the unequal sharing of electrons between the hydrogen and the oxygen atoms of a water molecule.

Water molecule has partial charges since the electrons shared are closer to the oxygen than the hydrogen. This means that each water molecule has a partial positive charge on the hydrogens and a partial negative charge on the oxygen.

A 18.21 g sample of a compound contains 5.81 g potassium (k), 5.27 g chlorine (cl), and oxygen (o). calculate the empirical formula.

Answers

To determine the empirical formula of the compound given, we need to determine the ratio of the elements present in the compound. To do that we use the given amount of sample of the compound and the masses of each of the element included. Then, we calculate for the number of moles of each element. We do as follows:
                       mass                                       moles
Potassium       5.81                                       0.1486
Chlorine          5.27                                       0.1487
Oxygen           18.21 - 5.81 - 5.27 = 7.13     0.4456

Dividing the number of moles of each element with the smallest value of number of moles, we will have the ratio of the elements:

K = 1  Cl = 1 O = 3

Therefore, the empirical formula would be KClO3.

Final answer:

The empirical formula of the compound is KClO3.

Explanation:

To calculate the empirical formula, we need to determine the ratio of the different elements present in the compound. In this case, we have 5.81 g of potassium (K), 5.27 g of chlorine (Cl), and an unknown amount of oxygen (O).

To find the amount of oxygen, we subtract the combined mass of potassium and chlorine from the total mass of the compound: 18.21 g - (5.81 g + 5.27 g) = 7.13 g.

Now we can find the moles of each element by dividing their masses by their molar masses (K = 39.10 g/mol, Cl = 35.45 g/mol, O = 16.00 g/mol). The moles of each element are approximately K: 0.148, Cl: 0.149, O: 0.445.

Dividing these mole values by the smallest one (0.148), we find that the ratio of elements is approximately K: 1, Cl: 1, O: 3. Therefore, the empirical formula of the compound is KClO3.

The net ionic equation for the reaction between aqueous sulfuric acid and aqueous sodium hydroxide is ________.

Answers

H₂SO₄(aq) + 2NaOH(aq) → Na₂SO₄(aq) + 2H₂O(l)

2H⁺ + SO₄²⁻ + 2Na⁺ + 2OH⁻ → 2Na⁺ + SO₄²⁻ + 2H₂O

H⁺ + OH⁻ → H₂O (the net ionic equation)

The net ionic equation for the reaction will be [tex]\rm \bold{2\;H^+\;+\;2\;OH^-\;\rightarrow\;2\;H_2O}[/tex].

A chemical equation has been the chemical representation of the reactants involved with the formed products. The ionic equation has been consisted of the ionic form of the reactants and products.

The reaction for Sulfuric acid and Sodium hydroxide will be:

[tex]\rm H_2SO_4\;+\;2\;NaOH\;\rightarrow\;Na_2SO_4\;+\;2\;H_2O[/tex]

The ionic equation for reactants will be:

[tex]\rm H_2SO_4\;+\;2\;NaOH[/tex] = [tex]\rm 2\;H^+\;+\;SO_4^2^-\;+\;2\;Na^+\;2\;OH^-[/tex]

The ionic equation for the products has been:

[tex]\rm Na_2SO_4\;+\;2\;H_2O[/tex] = [tex]\rm 2\;Na^+\;+\;SO_4^2^-\;+\;4\;H^+\;+\;2\;O^-[/tex]

The total equation will be:

[tex]\rm 2\;H^+\;+\;SO_4^2^-\;+\;2\;Na^+\;2\;OH^-[/tex] [tex]\rightarrow[/tex] [tex]\rm 2\;Na^+\;+\;SO_4^2^-\;+\;4\;H^+\;+\;2\;O^-[/tex]

In the net ionic equation, the ions same on both sides of the products and reactants are eliminated.

The net ionic equation for the reaction will be:

[tex]\rm 2\;H^+\;+\;2\;OH^-\;\rightarrow\;4\;H^+\;+\;2O^-[/tex]

[tex]\rm \bold{2\;H^+\;+\;2\;OH^-\;\rightarrow\;2\;H_2O}[/tex]

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Compare rutherford's expected outcome of the gold-foil experiment with the actual outcome.

Answers

Rutherford was one of the early scientists who worked on the atomic model. Before his discovery of the nucleus, the widely accepted theory was J.J Thomson's Plum Pudding Model. In this model, all the protons, electrons and neutrons are in the nucleus. But the electrons are more in number such that the electrons act as the 'pudding' and the proton and nucleus the 'plum'. This was Rutherford's hypothesis in his gold foil experiment. In order to test the Plum Pudding model, he hypothesized that when a beam of light is aimed at the atom, it would not diffract because the charges in the nucleus are well-distributed. However, his experiment disproved Thomson's model. Some light indeed passed through but a few was diffracted back to the source. He concluded that this was because there is a dense mass inside the atom called nucleus. Thus, from there on, he proposed the model that the electrons are orbiting around the nucleus.

Final answer:

Rutherford's expected outcome of the gold-foil experiment was for the alpha particles to pass through the foil un-deflected, but the actual outcome showed scattering of the particles at large angles. This discovery challenged the plum pudding model of the atom and led to the development of the nuclear model.

Explanation:

Rutherford's expected outcome of the gold-foil experiment was that the alpha particles would pass through the gold foil un-deflected, similar to bullets passing through a Styrofoam sheet. However, the actual outcome of the experiment showed that while most of the alpha particles did pass through the foil without deflection, some were scattered at large angles and a few even came back in the direction they came from.

This result, known as Rutherford scattering, indicated that the gold nuclei were actually very small compared to the size of the gold atom. It suggested the presence of a small, dense, positively-charged nucleus at the center of the atom. This discovery challenged the plum pudding model of the atom and led to the development of the nuclear model of the atom.

Which statements about viscosity are true? (i) viscosity increases as temperature decreases. (ii) viscosity increases as molecular weight increases. (iii) viscosity increases as intermolecular forces increase?

Answers

Answer : All the statements are true.

Explanation :

Viscosity : It measures the resistance of a liquid to flow is known as the viscosity.

There are many factors affects the viscosity which are temperature, pressure, molecular weight and inter-molecular forces.

Viscosity and Temperature :

There is an inverse relationship between the viscosity and the temperature. As the temperature decreases, viscosity increases and the temperature increases, viscosity decrease.

Viscosity and Pressure :

There is a direct relationship between the viscosity and the pressure. As the pressure decreases, viscosity decreases and the pressure increases, viscosity increases.

Viscosity and Molecular weight :

There is a direct relationship between the viscosity and the molecular weight. As the molecular weight decreases, viscosity decreases and the molecular weight increases, viscosity increases.

Viscosity and Inter-molecular force :

There is a direct relationship between the viscosity and the inter-molecular force. As the inter-molecular force decreases, viscosity decreases and the inter-molecular force increases, viscosity increases.

Hence, all the statements are true.

Statements about viscosity are true:

(i) viscosity increases as temperature decreases.

(ii) viscosity increases as molecular weight increases.

(iii) viscosity increases as intermolecular forces increase

Viscosity is a measure of a fluid's resistance to flow. A viscous fluid flows slowly, while a non-viscous fluid flows quickly.

(i) Temperature affects viscosity because it affects the kinetic energy of the molecules in a fluid. As temperature decreases, the kinetic energy of the molecules decreases. This means that the molecules move more slowly, and the fluid becomes more viscous.

(ii) Molecular weight affects viscosity because it affects the strength of the intermolecular forces between the molecules in a fluid. As molecular weight increases, the intermolecular forces become stronger. This means that it is more difficult for the molecules to move past each other, and the fluid becomes more viscous.

(iii) Intermolecular forces affect viscosity because they are the forces that hold the molecules in a fluid together. As intermolecular forces increase, the molecules are held more tightly together. This means that it is more difficult for the molecules to move past each other, and the fluid becomes more viscous.

Therefore, all three statements about viscosity are true.

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Potassium-40 has a half-life of 1.25 billion years (by) and decays to argon-40. how old is a fossil that has a 40k/40ar ratio of ~ 26%?

Answers

You can do a very quick estimation by telling the ~ 26% is close to 25%, end then two half-life have passed: one from 100% to 50% concentration, and other from 50% to 25% concentration. So, 2 * 1.25 billion years = 2.50 billion years.

The answer, then is that the fossil is 2.50 by old.

Given that this method has an accuracy of +/- 10% this answer is good enough.

For didactical purposes, I am goint to show you the exact procedure.

C = Co * e^ (- kt)

Half-life time => C = Co / 2

=> C / Co = (1/2) = e ^ (-kt)

=> -kt = ln(1/2) => kt = ln(2)

t = 1.25 by => k (1.25) = ln(2) => k = ln(2) / 1.25 = 0.5545

=> C/Co = e ^ (-kt)

In the problem C/Co = 26/100 => 0.26 = e^ (-0.5545t)

=> -0.5545t = ln (0.26)

=> t = - ln (0.26) / 0.5545 = 2.43 by.

So with the exact procedure you obtain 2.43 by while with the estimation that ~26% is close to 25% you obtain 2.50 by.

Metals present in municipal wastewater may still be present in treated sewage sludge; ______

Answers

Metals present in municipal waste water may still be present in treated sewage sludge IN CONCENTRATIONS THAT MAY AFFECT THE PUBLIC HEALTH. Sewage sludge is an end product of municipal waste water treatment and it contains many of the pollutant that are removed from the waste water. 

Except in the case of hydrocarbons, when naming virtually all compounds made up of two elements, the second element mentioned

Answers

The second element would end with the suffix, -ide

goodluck partner, :-)

What is being oxidized?

Answers

An example of something oxidizing is iron turning into iron oxide, or rust. This reaction is very slow, but you know something has iron in it if it rusts. Also, bonus fact, you won't get tetanus if you touch a rusty nail. The rust has to enter the bloodstream for that to happen.

One of the several oxides of tin found in the earthâs crust is 78.77% by mass tin. what is its empirical formula and name?

Answers

To determine the empirical formula of the compound given, we need to determine the ratio of each element in the compound. To do that we assume to have 100 grams sample of the compound with the given composition. Then, we calculate for the number of moles of each element. We do as follows:
         mass        moles
Sn     78.77       0.6636
O      21.23       1.3269

Dividing the number of moles of each element with the smallest value, we will have the empirical formula:

         moles                 ratio
Sn    0.6636          0.6636/0.6636 = 1
O     1.3269          1.3269/0.6636 = 2

The empirical formula would be SnO2.

Final answer:

The empirical formula of the tin oxide with 78.77% tin by mass is SnO2, also known as tin (IV) oxide.

Explanation:

One of the several oxides of tin found in the earth's crust is 78.77% by mass tin. To determine its empirical formula and name, we first assume a 100 g sample for simple calculations. This approach implies we have 78.77 g of tin (Sn) and the remainder, 21.23 g, being oxygen (O).

To find the mole ratio, we divide the mass of each element by its respective atomic mass (Sn = 118.71 g/mol, O = 16.00 g/mol), resulting in:

For tin: 78.77 g / 118.71 g/mol = 0.663 molesFor oxygen: 21.23 g / 16.00 g/mol = 1.327 moles

By dividing each element's mole count by the smallest number of moles obtained, we find the empirical formula ratio. In this case, the ratio for Sn to O approximates to 1:2. Hence, the empirical formula of the tin oxide in question is SnO2, which is commonly named tin (IV) oxide.

How can you distinguish a substance from a mixture

Answers

Mixtures are physically combined structures that can be separated into their original components. 
Substances, if chemical, is composed of one type of atom or molecule.
It's basically a particular kind of matter with uniform properties.

In metallic bonding, the electrons

Answers

A metallic bond is a bond between two metals or cations. In metallic bonding, the electrons are shared between the positive ions. The electrons move around between atoms. This is what allows objects with metallic bonds to be malleable and able to conduct electricity.

Answer:

In metallic bonds the electrons of the valence shell can move freely within the metal, thus explaining its electric conductivity.

What isotope has 13 protons and 14 neutrons? enter the name of the element followed by a hyphen and the mass number (e.g., uranium-234)?

Answers

13 protons = Aluminum

13+14 = 27

Aluminum-27

During a lab, you heat 1.62 g of a CoCl2 hydrate over a Bunsen burner. After heating, the final mass of the dehydrated compound is 0.88 g. Determine the formula of the hydrate and also give the full name of the hydrate. Please show all your work for the calculations for full credit.

Answers

Let the number of moles of water in the required formula be "y".
The final formula should be in the form of : CoCl2 yH2O
1.62 g is the weight of CoCl2 and water in the sample
After heating, the remaining mass represents  the mass the salt only
mass of water in sample = 1.62 - 0.88 = 0.74 g

From the periodic table:
molar mass of cobalt is 59 g
molar mass of chlorine is 35.5
molar mass of hydrogen is 1
molar mass of oxygen is 16

molar mass of formula = 59 + 2(35.5) + 18y = 130 + 18y g
Now we have calculate the mass/molar mass for each part of the formula (salt and water) and equate them to get number of moles of water as follows:
0.88 / 130 = 0.74 / y18 
y = 6.07 which is approximately 6 moles

Thus, the final formula is CoCl2 6H2O. This hydrate is called cobalt(II)chloride hexahydrate.

After heating a CoCl₂ hydrate to remove water, the formula is determined using the mass of water lost and the molar masses of CoCl₂ and H₂O. The calculations show that every mole of CoCl₂ is associated with 6 moles of H₂O, giving the hydrate a formula of CoCl₂•6H₂O, known as cobalt(II) chloride hexahydrate.

To determine the formula of the hydrate of cobalt(II) chloride (CoCl₂ hydrate), you first need to calculate the mass of water lost during heating. The initial mass of the hydrate was 1.62 g and the mass after heating was 0.88 g. The mass of the water is therefore the difference between these two masses.

Mass of water lost = Initial mass \'96 Final mass = 1.62 g \'96 0.88 g = 0.74 g

Next, calculate the number of moles of CoCl₂ and H₂O. The molar mass of anhydrous CoCl₂ is 129.84 g/mol.

Moles of CoCl₂ = Mass of anhydrous CoCl₂ / Molar mass of CoCl₂ = 0.88 g / 129.84 g/mol = 0.006776 moles of CoCl₂

The molar mass of H₂O is approximately 18.015 g/mol.

Moles of H2O = Mass of water / Molar mass of H₂O = 0.74 g / 18.015 g/mol = 0.04107 moles of H₂O

To find the ratio of CoCl₂ to H₂O in the hydrate, divide the moles of water by the moles of CoCl₂.

Ratio = Moles of H₂O / Moles of CoCl₂ = 0.04107 / 0.006776 = 6.06, which rounds to 6.

The formula of the hydrate is CoCl₂•6H₂O. The full name of the hydrate is cobalt(II) chloride hexahydrate.

How many moles of hydrogen gas (h2) would be produced from the reaction of 0.30 moles of water (h2o) and excess sodium? (na)?

Answers

2Na + 2H₂O → 2NaOH + H₂

2 mol H₂O - 1 mol H₂
0.30 mol H₂O - x mol H₂

x=0.30*1/2= 0.15 mol
Final answer:

When 0.30 moles of water react with excess sodium, 0.15 moles of hydrogen gas are produced, judged by the 2:1 molar ratio between water and hydrogen in the reaction.

Explanation:

The reaction between water (H2O) and sodium (Na) produces sodium hydroxide (NaOH) and hydrogen gas (H2). The balanced chemical equation for this reaction is: 2Na + 2H2O -> 2NaOH + H2.

In this reaction, it's clear that the molar ratio between water and hydrogen gas is 2:1. That means, for every two moles of water consumed in the reaction, one mole of hydrogen gas is produced. If only 0.30 moles of water is reacted, then 0.30 / 2 = 0.15 moles of hydrogen gas would be produced.

So, in the reaction of 0.30 moles of water and excess sodium, 0.15 moles of hydrogen gas would be produced.

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Friction is not related to the efficiency of a machine.

True
False

Answers

false,the efficiency of a machine indicates how well its input energy is conveyed.
the efficiency of a machine is the ratio of its output to its input. 


An electrochemical cell is powered by the half reactions shown below.

Ag+(aq) + e–  Ag(s)        Eo = +0.80 V
Pb2+(aq)  + 2e–  Pb(s)        Eo = –0.13 V

Which value represents the overall electric cell potential?
Use Ecell =  Ered, cathode – Ered, anode.

–0.13 V

–0.93 V

+0.67 V

+0.93 V

Answers

Reduction reactions are those reactions that reduce the oxidation number of a substance. Hence, the product side of the reaction must contain excess electrons. The opposite is true for oxidation reactions. When you want to determine the potential difference expressed in volts between the cathode and anode, the equation would be: E,reduction - E,oxidation. 

To cancel out the electrons, the e- in the reactions must be in opposite sides. To do this, you reverse the equation with the negative E0, then replacing it with the opposite sign. 

Pb(s) --> Pb2+ +2e-      E0 = +0.13 V
Ag+ + e-  ---> Ag           E0 = +0.80 V

Adding up the E0's would yield an overall electric cell potential of +0.93 V.

Sodium hydroxide reacts with carbon dioxide as follows: which is the limiting reactant when 1.85 mol naoh and 1.00 mol co2 are allowed to react? how many moles of na2co3 can be produced? how many moles of the excess reactant remain after the completion of the reaction?

Answers

First,let's illustrate the problem into chemical formulas in a complete balanced reaction.

2NaOH + CO2  ⇒ Na2CO3 + H2O

To abide with the Law of Conservation of Mass, we balance the equation. We use these stoichiometric coefficients to determine the yield and which is the limiting reactant. Let's take 1.85 mol of NaOH. How many moles CO2 does it take to completely react NaOH?

1.85 mol NaOH * (1 mol CO2/ 2 mol NaOH) = 0.925 mol CO2

Since you have 1.00 mol CO2 present, it is still enough to completely react 1.85 mol NaOH. Therefore, CO2 is the excess reactant and NaOH is the limiting reactant. We base our calculations on the limiting reactant from here.

Next, how many moles of Na2CO3 are produced?

1.85 mol NaOH * (1 mol Na2CO3/2 mol NaOH) = 0.925 mol Na2CO3

Lastly, the amount of the excess reactant would be 1.00 mol CO2 - 0.925 mol CO2 (needed to react 1.85 mol NaOH) = 0.075 mol CO2 excess
Final answer:

The limiting reactant in the reaction is NaOH, 0.925 moles of Na2CO3 can be produced, and there would be 0.075 moles of CO2 remaining after the reaction is complete.

Explanation:

The given balanced reaction is: 2NaOH(aq) + CO2(aq) → Na2CO3(aq) + H2O(1). Firstly, let's identify the limiting reactant. For every mole of CO2, two moles of NaOH are required. Therefore, 1.85 moles of NaOH would react completely with 0.925 moles of CO2. But since we have 1.00 mol of CO2, our limiting reactant is NaOH.

Since the reaction produces 1 mole of Na2CO3 for every 2 moles of NaOH, we can expect to produce 0.925 moles of Na2CO3 based on the amount of our limiting reactant.

Finally, to determine the remaining amount of the excess reactant after the completion of the reaction, we subtract the amount of CO2 that reacted (0.925 moles) from the initial amount (1.00 mol), which gives us 0.075 moles of CO2 remaining.

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Which class of molecules contains the carbonyl group, co?

Answers

The answer is sugars.

There are many compounds in organic chemistry containing carbonyl group as the part of their structure.

First kind of compounds with carbonyl group are carbonyl compounds (aldehyde with R-CHO and ketone, RCOR' as their structural formula)

Next, Carboxylic acid and their derivatives

Carboxylic acid: RCOOH

Ester: RCOOR'

Acid chloride: RCOCl

Anhydride: (RCO)2O

Amide: RCONH2

And carbohydrates, amino acids also have Carbonyl group in their structures.

Structure of carbonyl group: -C=O

What are the vertical columns on a periodic table called

Answers

The answer would be Groups, or also  known as families.
The vertical columns on the period are called groups. There are 18 groups on the periodic table, and elements that are members of the same group share similar traits.

Solid lead(ii) sulfide reacts with aqueous hydrochloric acid to form solid lead(ii) chloride and dihydrogen sulfide gas. express your answer as a chemical equation. identify all of the phases in your answer.

Answers

Answer: The chemical equation is;

[tex]PbS(s)+2HCl(aq)\rightarrow PbCl_2(s)+H_2S(g)[/tex]

Explanation:

The described reaction between solid lead sulfide and aqueous hydrochloric acid can represented in the in the form of chemical equation as given below:

[tex]PbS(s)+2HCl(aq)\rightarrow PbCl_2(s)+H_2S(g)[/tex]

1 mol of lead(ii) sulfide reacts with hydrochloric acid to give 1 mole of lead chloride and hydrogen sulfide gas.

Final answer:

The balanced chemical equation is: PbS(s) + 2 HCl(aq) -> PbCl2(s) + H2S(g)

Explanation:

The balanced chemical equation for the reaction between solid lead(II) sulfide and aqueous hydrochloric acid is:

PbS(s) + 2 HCl(aq) -> PbCl2(s) + H2S(g)

In this reaction, solid lead(II) sulfide reacts with hydrochloric acid to produce solid lead(II) chloride and dihydrogen sulfide gas. The phases in the equation are represented by 's' for solid, 'aq' for aqueous, and 'g' for gas.

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What change shows a tenfold increase in concentration of h+ ions?

Answers

Your answer would be: pH2 --> pH1

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A compound is a liquid at room temperature, dissolves in water, and the resulting solution is weakly conducting. the compound is polar molecular: true of false?

Answers

True, for example, hydrogen peroxide (liquid):

H₂O₂ + H₂O ⇄ H₃O⁺ + HO₂⁻

HO₂⁻ + H₂O ⇄ H₃O⁺ + O₂²⁻

(the resulting solution is weakly conducting)

Final answer:

The compound being a liquid at room temperature, dissolving in water, and the resulting solution being weakly conducting indeed suggests it is a polar molecular compound. This is because its behavior aligns with polar molecular compounds' typical properties, such as solubility in water and poor conductivity compared to ionic solutions.

Explanation:

The statement that a compound is a liquid at room temperature, dissolves in water, and the resulting solution is weakly conducting, indicating that the compound is polar molecular, is true. This can be understood by considering the basic properties of molecular and ionic compounds. Molecular compounds, which are composed of molecules formed by covalent bonds, can be polar if they have an uneven distribution of electron charge. When such a polar molecular compound dissolves in water, which itself is a polar solvent, it can interact with water molecules through hydrogen bonding or dipole-dipole interactions. This explains the solubility of the compound in water.

However, the weak conductivity of the solution suggests that it does not contain free ions in large amounts, as would be expected from an ionic compound dissolved in water. Instead, the slight conductivity can be attributed to a small degree of ionization or the presence of polar molecules that are not completely non-conductive but are far less efficient in conducting electricity than ions. Therefore, considering the compound's liquid state at room temperature, its solubility in water, and its weak electrical conductivity in solution, it aligns well with the characteristics of a polar molecular compound rather than an ionic compound.

Calculate the mass in grams of iodine (i 2 ) that will react completely with 20.4 g of aluminum (al) to form aluminum iodide (ali

Answers

3I₂ + 2Al → 2AlI₃

m(I₂)=3M(I₂)m(Al)/{2M(Al)}

m(I₂)=3*253.8*20.4/{2*27.0}=287.64 g

Use Cell Membrane in a sentence

Answers

The Cell membranes job is to protect the cell from its surroundings by controlling the movement of substances in and out of the cells

The function of cell membrane is to  protect the cell from its surroundings by controlling the movement of substances in and out of the cells.

What is cell membrane?

The cell membrane, provides protection for a cell. It also provides a fixed environment inside the cell, and that membrane has several different functions. One is to transport nutrients into the cell and also to transport toxic substances out of the cell. Another is that the membrane of the cell, which would be the plasma membrane, will have proteins on it which interact with other cells.

Those proteins can be glycoproteins, meaning there's a sugar and a protein moiety, or they could be lipid proteins, meaning that there's a fat and a protein. And those proteins which stick outside of the plasma membrane will allow for one cell to interact with another cell. The cell membrane also provides some structural support for a cell.

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In the reaction of 1.23 g of salicylic acid, molar mass 138.12 g/mol, with 2.85 g of acetic anhydride, molar mass 102.10 g/mol, a student obtained 1.39 g of acetylsalicylic acid, molar mass 180.17 g/mol. What is the percent yield?


I found that salicylic acid was the limiting reactant so do I just find the mass from there?

Answers

The balanced reaction would be written as:
C7H6O3 + C4H6O3--->C9H8O4 + HC2H3O2
To determine the percent yield, we need to first determine the theoretical yield if the reaction were to proceed completely. Then, we divide the actual yield that is given to the theoretical yield times 100 percent. The limiting reactant from the reaction would be salicylic acid. We do as follows: 

Theoretical yield: 1.23 g C7H6O3 ( 1 mol / 138.21 g ) ( 1 mol C9H8O4 / 1 mol C7H6O3 ) ( 180.157 g / mol ) = 1.60 g C9H8O4 should be produced

Percent yield = 1.39 / 1.60 x 100 = 86.88%

Thus, only 86.88% of the theoretical 
C9H8O4 is being produced.
Final answer:

Yes, salicylic acid is the limiting reactant. The theoretical yield is calculated using the moles of the limiting reactant and converting it to grams of the product. The percent yield is then determined by comparing the actual yield to the theoretical yield.

Explanation:

Yes, you are correct that salicylic acid is the limiting reactant in this reaction. The first step in this scenario is to calculate the theoretical yield, which is the quantity of product that would be produced assuming that the reaction proceeds perfectly and all of the limiting reactant is consumed. This is done by calculating the moles of the limiting reactant (salicylic acid), then using stoichiometry to convert this to moles of the product (acetylsalicylic acid), and finally converting this to grams. The next step is to calculate the actual yield, which is the amount of product that was actually produced in the reaction, and then use these values to calculate the percent yield using the formula:

Percent Yield = (Actual Yield / Theoretical Yield) x 100%

In this case, the actual yield is given as 1.39 g of acetylsalicylic acid. So, you would calculate the percent yield by dividing this value by the theoretical yield (which you calculated in the previous step) and then multiply by 100%.

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A key step in the extraction of iron from its ore is feo(s) + co(g) fe(s) + co2(g) kp = 0.403 at 1000°c. this step occurs in the 700°c to 1200°c zone within a blast furnace. what are the equilibrium partial pressures of co(g) and co2(g) when 1.58 atm co(g) and excess feo(s) react in a sealed container at 1000°c?

Answers

Final answer:

The extraction of iron from its ore involves reduction with carbon monoxide at high temperatures, yielding iron metal and carbon dioxide. The equilibrium partial pressures of CO(g) and CO2(g) can be determined by employing the kp equation with initial and equilibrium pressures.

Explanation:

The question is asking for the partial pressures of CO(g) and CO2(g) during the extraction of iron from its ore. Our reaction of interest is FeO(s) + CO(g) → Fe(s) + CO2(g), where kp = 0.403 at 1000°C. The reaction involves reducing FeO(s), iron(II) oxide, to Fe(s), i.e., iron metal, with carbon monoxide, or CO(g), in a high-temperature furnace. In the process, CO(g) is converted to CO2(g), or carbon dioxide gas. Given an initial pressure of CO(g) as 1.58 atm and that FeO(s) is in excess, at equilibrium, the partial pressure of CO(g) will be decreased as it is used up, while that of CO2(g) will be increased as it is produced.

From the kp equation [P of products / P of reactants], we have kp = PCO2 / PCO. We need to find the decrease in partial pressure of CO (x) such that the increase in partial pressure of CO2 equals x. This gives us PCO = (Initial P of CO) - x and PCO2 = x. Substituting these expressions into the kp equation, we get 0.403 = (x) / (1.58 - x). Solving this equation will yield the equilibrium pressures of CO(g) and CO2(g).

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The equilibrium partial pressures are approximately 0.454 atm for CO₂(g) and 1.126 atm for CO(g).

Firstly, we need to set up the equilibrium expression using the given Kp:

Kp = P(CO₂) / P(CO)
0.403 = P(CO₂) / (1.58 - x)
Assuming x is the change in pressure for both CO₂ and CO:

Kp = P(CO₂)/(1.58 − P(CO2)) = 0.403
Let P(CO₂) = y. Hence, 0.403 = y / (1.58 − y)
Solve for y (P(CO₂)):
0.403 (1.58 − y) = y
0.63734 = 1.403y
y = 0.63734 / 1.403 ≈ 0.454 atm

Thus, the equilibrium partial pressure of CO₂(g) is 0.454 atm, and for CO(g) it is 1.58 - 0.454 = 1.126 atm.

Describe, on a molecular level, how you would expect these lipids to behave in water.

Answers

lipids are hydrophobic; They would be insoluble, group together, and float to the top

According to the concept of solubility and lipids being hydrophobic they are insoluble in water and hence would float on water.

What is solubility?

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.Concept of solubility is not valid for chemical reactions which are irreversible. The dependency of solubility on various factors is due to interactions between the particles, molecule or ions.

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A certain compound is made up of two chlorine atoms, one carbon atom, and one oxygen atom. what is the chemical formula of this compound

Answers

The chemical formula for this chemical is CCl2O. This is the molecular formula for a chemical compound called dichloromethanone or carbonic dichloride or phosgene. It is a highly poisonous gas which has been used in the past as a weapon of war. It has been reported that it causes different types of respiratory distress in humans and usually result in death.

Answer:

ClCO2

Explanation:

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