Identify when it is appropriate for a scientist to use highly technical jargon and a structured format in their writing.

in communicating with other scientists
in writing books that help interest the general public in science
during television or radio interviews
in providing information to the media

Answers

Answer 1
The only appropriate situation, would be in communicating with other scientists. Since these other scientists would know the jargon. All the other answers lead information to the general public, in which case jargon shouldn't be used.
Answer 2
Final answer:

For a scientist, using technical jargon and a structured format is appropriate when communicating with fellow scientists. However, when reaching out to the general public or media, more straightforward language is more effective.

Explanation:

In scientific writing, the utilization of technical jargon and a structured format is often applicable while communicating with other scientists. This is because other scientists are more likely to understand the highly technical terms due to their background and expertise. For instance, a molecular biologist writing a research paper for a peer-reviewed journal would engage an academic tone and utilize specific terminologies that his or her fellow scientists can understand. However, when scientists are writing books to generate interest among the general public, giving TV or radio interviews, or presenting information to the media, it’s crucial to simplify the language. This ensures that science remains accessible to non-specialists who may not be familiar with the jargon.

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Related Questions

how to find volume with mass and density

Answers

volume is mass divided by density or mass/density.

so 244/2.70
is equal to 90.3703703704 which is the volume

Final answer:

To find the volume of an object, use the formula Volume = Mass / Density. This can be applied by dividing the object's mass by its given density, yielding the volume in appropriate units.

Explanation:

How to Find Volume Using Mass and Density:

To find the volume of an object when you have the mass and the density, you can use the formula:

Volume = Mass / Density
This formula is derived from the basic density equation, Density = Mass / Volume, which can be rearranged to find volume. For example, if the mass of an object is given in grams and its density is given in grams per cubic centimeter, dividing mass by density will give you the volume in cubic centimeters.

Example Problem:

Lets say we want to find the volume of an object with a mass of 250 grams and a density of 5 grams per cubic centimeter. Applying the formula:

Volume = Mass / Density = 250g / 5g/cm3 = 50 cm3

In this case, the volume of the object would be 50 cubic centimeters.

Mark the statement as true or false All of the proposed ideas by Dalton, Thompson, and Rutherford are still used in the modern theory of the atom

Answers

False

Although we use many of their ideas to describe atoms today, such as the existence of a tiny, dense nucleus in an atom (proposed by Rutherford), or the notion that all atoms of an element are identical (proposed by Dalton), some of their ideas have been rejected by the modern theory of the atom.

For example, Thompson came up with the plum pudding model to describe an atom, which resembled a sphere of positive charge with electrons embedded in it. We know now, however, that atoms are mostly empty space with a tiny, dense nucleus.

Another example is Dalton's atomic theory, which stated that atoms are indivisible particles. However, this was disproved by the discovery of subatomic particles.

Answer:

Its false

Explanation:

DIMENSIONAL ANALYSIS PLSSSS
convert 19 inches to feet(show work)

Answers

19 in = 1.6 ft

You know that

12 in = 1 ft

If you divide both sides by 12 in, you get the conversion factor: 1 = 1 ft/12 in.

If you divide both sides by 1 ft, you get the conversion factor: 12 in/1 ft = 1.

Both are conversion factors because they both equal one and multiplying a measurement by one does not change its value.

You choose the conversion that gives you the correct dimensions for your answer. It must have the correct dimensions on top (in the numerator),

Thus, to convert 19 in to ft, you use the conversion factor with “ft” on the top.

∴ Length = 19 in × (1 ft/12 in) = 1.6 ft

Which of the following is the correct name for the compound KBrO3? Potassium bromate Potassium (II) bromate Potassium (I) bromate Dipotassium monobromate

Answers

The correct name of the compound is potassium bromate.

KBrO₃ contains a metal, so it is an ionic compound.

The name of an ionic compound is: name of metal cation + name of anion .

Name the metal

The name of the cation is the name of the metal — potassium

The ion has only one charge (+1), so the name of the ion does not use a Roman numeral in parentheses.

Name the anion

BrO₃⁻ is an oxyanion. Name = (stem)ate = bromate.

Name the compound

The names of salts do not use multiplying prefixes like mono- or di-.

∴ metal ion + anion → potassium bromate

Final answer:

The correct name for the compound KBrO3 is potassium bromate.

Explanation:

The correct name for the compound KBrO3 is potassium bromate. It is a chemical compound that was formerly used as a food additive in baking to improve dough elasticity and bread volume. It acts as a strong oxidizing agent. However, due to concerns about its potential carcinogenicity, many countries have banned or restricted its use in food products.

Potassium bromate can potentially break down into bromide, which can react with other compounds in baking to form brominated byproducts. As a result, safer alternatives like ascorbic acid (vitamin C) and potassium iodate are now commonly used in the baking industry to achieve similar results without health risks.

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Darwin called this idea of certain traits being selected in order for an organism to reproduce sexual selection. In crickets and frogs, males call to attract mates and females are attracted to superior males by characteristics of their calls. How can this also be a disadvantage to survival of the species? A) Only the superior male traits are passed to the next generation. B) Female choice for mating reflects only the genes of the superior males. C) Calling can be hazardous because it also attracts parasites and predators. D) Inferior males intercept the females from the superior males and mate anyway.

Answers

Th correct answer is option C. Calling can be hazardous because it also attracts parasites and predators.

The mating call is used by the males to attract females for sexual reproduction. By using vocal sounds males are not only making themselves attractive to females, they are also making themselves vulnerable to predators.

Thus the mating call can have a disastrous effect on the survival of the species.

Answer: C.

Calling can be hazardous because it also attracts parasites and predators.

Explanation:

What are two parts of the peripheral nervous system

Answers

The two parts of the peripheral nervous system are the somatic nervous system and the autonomic nervous system.

Answer:

The Somatic nervous system and The autonomic nervous system

are two parts of the peripheral nervous system.

Explanation:

The peripheral nervous system is a part of the nervous system which is present outside the spinal cord and the brain.

Its function is to link the central nervous system to the organs and limbs.

The peripheral nervous system is of two types

Somatic nervous system: its main function is to regulate the body movements and the control of voluntary muscular activity is called reflex arcs

The autonomic nervous system: its function is to control all the body functions like digestion, urination.heart rate, pupillary response, and respiratory rate.

Is frying something a physical or chemical change?

Answers

i believe it is chemical change.

hope it helps

Frying something is a Chemical change.
Take frying an egg for example. The egg white turns solid and this chemical reaction can't be reversed. This is because the egg white is made of proteins and due to the heat the enzymes get denatured meaning it can't do its function properly anymore.

Consider the following data showing the initial rate of a reaction (A→products) at several different concentrations of A. [A](M) Initial rate (M/s) 0.15 0.014 0.30 0.113 0.60 0.905. What is the order of the reaction? Express your answer as an integer.

Answers

Given:

A → Products

         [A] M            Rate(M/s)

1.        0.15            0.014

2.       0.30           0.113

3.       0.60           0.905

To determine:

Order of the reaction

Explanation:

The rate of the given reaction can be expressed as:

Rate = k [A]ⁿ-----(1)

where k = rate constant

[A] = concentration of A

n = reaction order

Based on equation (1) the Rates 1 and 2 can be expressed as:

0.014 = k[0.15]ⁿ ------(3)

0.113 = k[0.30]ⁿ-------(4)

Dividing eq (4) by (3) we get:

0.113/0.014 = [0.30/0.15]ⁿ

8 = 2ⁿ

i.e. 2³ = 2ⁿ

n = 3

Ans: Thus, the order of the reaction is 3



The order of the given reaction is [tex]\boxed{3}[/tex] .

Further Explanation:

Order of reaction:

This indicates dependence of rate on power of concentration of reactants involved in the chemical reaction. On the basis of order of reaction, reaction can be first-order, second-order and so on.

Given reaction is as follows :

[tex]A\rightarrow\text{Products}[/tex]

Consider n to be the order of this reaction. So rate of reaction for the given reaction is expressed as follows:

[tex]\text{Rate}=k\left[A\right]^n[/tex]                                                   ...... (1)

Here,

k is the rate constant for the reaction.

[A] is the concentration of A.

n is the order of reaction.

When concentration of A is 0.15 M, rate of reaction is 0.014 M/s.

Substitute 0.15 M for [A] and 0.014 M/s for rate in equation (1).

[tex]\text{0.014\text{M}}=k\left[0.15\right]^n[/tex]                                              ...... (2)

When concentration of A is 0.30 M, rate of reaction is 0.113 M/s.

Substitute 0.30 M for [A] and 0.113 M/s for rate in equation (1).

[tex]\text{0.113\text{M}}=k\left[0.30\right]^n[/tex]                                              ...... (3)

Dividing equation (3) by equation (2),

[tex]\begin{aligned}\dfrac{\text{0.113\text{M}}}{\text{0.014\text{M}}}=&\dfrac{k\left[0.30\right]^n}{k\left[0.15\right]^n}\\\left(2\right)^3=&\left(2\right)^n\end{aligned}[/tex]

Solving for n,

[tex]n=3[/tex]

Therefore order of reaction becomes 3.

Learn more:

1. Rate of chemical reaction: https://brainly.com/question/1569924

2. The main purpose of conducting experiments: https://brainly.com/question/5096428

Answer Details:

Grade: Senior School

Subject: Chemistry

Chapter: Chemical Kinetics

Keywords: order, rate, k, A, products, 3, n, rate constant, order of reaction, 0.15 M, 0.30 M, 0.113 M/s, 0.014 M/s.

how many grams of oxygen is needed to completelt react with of 9.30 of aluminum

Answers

Hey there!

Given the reaction:

4 AI + 3O2 ------>  2 AI2O3

4 moles Al --------- 3 moles O2

9.30 moles Al  --------- ?? moles  O2

9.30 * 3 / 4  =>  6.975 moles of O2

Molar mass O2 => 32.0 g

Therefore:

6.975 * 32.0 =>  223.3 g of Oxygen

Hope that helps!

What is the concentration (in M) of a 225ml potassium sulfate solution that contains 4.15g of potassium?

Answers

The concentration of solution in M or mol/L can be calculated using the following formula:

[tex]C=\frac{n}{V}[/tex] .... (1)

Here, n is number of moles and V is volume of solution in L.

The molecular formula of potassium sulfate is [tex]K_{2}SO_{4}[/tex] thus, there are 2 moles of potassium in 1 mol of potassium sulfate.

1 mol of potassium will be there in 0.5 mol of potassium sulfate.

Mass of potassium is 4.15 g, molar mass is 39.1 g/mol.

Number of moles can be calculated as follows:

[tex]n=\frac{m}{M}[/tex]

Here, m is mass and M is molar mass

Putting the values,

[tex]n=\frac{(4.15 g}{(39.1 g/mol}=0.1061 mol[/tex]

Thus, number of moles of  [tex]K_{2}SO_{4}[/tex] will be [tex]0.1061\times 0.5=0.053 mol[/tex].

The volume of solution is 225 mL, converting this into L,

[tex]1 mL=10^{-3}L[/tex]

Thus,

[tex]225 mL=0.225 L[/tex]

Putting the values in equation (1),

[tex]C=\frac{(0.053 mol}{0.225 L}=0.236 M[/tex]

Therefore, concentration of potassium sulfate solution is 0.236 M.


which of these equations are balance a) 3 H2SO + 2AI = AI2(SO4)3 3H2 b) 2KCI + Pb(NO3)2 = 2KNO3 + PbCI2

Answers

Both equations are balanced.

a) 3H₂SO₄ + 2Al ⟶ Al₂(SO₄)₃ + 3H₂

On the left On the right

      6H                6H

      3S                 3S

    12O               12O

     2Al                2Al

b) 2KCl + Pb(NO₃)₂ ⟶ 2KNO₃ + PbCl₂

On the left   On the right

      2K                 2K

      2Cl               2Cl

      1Pb                1Pb

     2N                 2N

     6O                 6O

The distance between happyville and Giggleland is 60 miles. How far is this kilometers

Answers

96.56064 is the kilometers for 60 miles.

Final answer:

The distance between Happyville and Giggleland is approximately 96.56 kilometers when converted from miles.

Explanation:

To convert distance from miles to kilometers, we utilize the conversion factor of 1 mile = 1.60934 kilometers. Given that the distance between Happyville and Giggleland is 60 miles, you will multiply 60 by 1.60934.

So, Giggleland is approximately 96.56 kilometers from Happyville.

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which of the following statements are TRUE reguarding unicellular and multicellular organisms?
A. Bacteria are made of many cells and are therefore considered multicellular
B. Humans are made up of many cells and are therefore considered unicellular
C. Humans are made of many cells and are therefore considered multicellular

Answers

C is considered true

Answer:C

Explanation:

two scientists work together on an experiment but they have different hypothesis when the scientist look at experimental results they interpret the data in different ways and come up with different conclusions which of the following does this situation best illustrate
a) scientific consensus
b) peer view
c) selection bias
d) confirmation bias

Answers

Answer: Option (d) is correct.  

EXplanation:

The susceptibility to search for interpreted data in such a way that confirms the hypothesis is known as confirmation bias.

Scientific consensus is the collective decision or opinion of scientists in an experiment or study.

Peer view is the collective view of two or more persons in an experiment that will lead to a collective conclusion.

Selection bias is the bias that occurs because of selection of data due to which proper results are not obtained.

Therefore, when two scientists work together on an experiment but they have different hypothesis and when the scientist look at experimental results they interpret the data in different ways and come up with different conclusions, this situation is a confirmation bias.

Thus, out of the given options, option (d) is correct.  

Which of the following best describes technology

Answers

IMPROVES RESULTS APEX!!!!1

The following best describes technology is:

C. the application of engineering to create useful products.

Technology is the application of scientific knowledge to solve practical problems. It is the use of tools, machines, and other methods to do things more efficiently and effectively. Technology can be used to create products, services, and systems that improve our lives.

Engineering is the discipline that applies scientific principles to design and build structures, machines, and other products. Engineers use their knowledge of science and mathematics to solve problems and create new products.

When engineers apply their knowledge to create useful products, they are using technology. For example, engineers used their knowledge of physics and chemistry to create the first computers. They also used their knowledge of engineering to design and build the machines that are used to manufacture computers.

So, technology is the application of engineering to create useful products. It is the use of scientific knowledge to solve practical problems and improve our lives.

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The complete question is:

Which of the following best describes technology

A. Something created for only scientists to use

B. the method of thinking that scientists use.

C. the application of engineering to create useful products.

D. A scientific idea

Was john dalton a good scientist? why?

Answers

he is a good scientist because he postulated that chemical reactions resulted in the rearrangement of the reacting atoms

Final answer:

John Dalton was a good scientist known for laying the foundation of modern atomic theory in Chemistry. Unlike his predecessors, he backed his theories with experimental evidence. His work in the field earned him considerable honor and influence.

Explanation:

John Dalton was indeed a good scientist, and his work had a profound impact on the field of Chemistry. Not only did Dalton lay the foundations of the modern atomic theory, but he also provided experimental evidence to support his ideas, which differentiated him from earlier philosophers who merely speculated about the nature of matter.

Dalton observed that matter combined in fixed ratios and that chemical compounds always contain the same proportion of elements by mass, a concept supporting the law of definite proportions. It's also worth noting that Dalton was recognized for his work in science with numerous honors, and his influence was significant enough that over 40,000 people in Manchester paid their respects at his funeral.

You are doing chores to earn your allowance. For each chore you do, you earn $3.00. What is the independen variable?

Answers

The independent variable is the number of chores you do. The independent variable is the one that changes; in this case, the money earned per chore is always $3, but the number of chores completed will vary.

Ben's dog is 2 m^3 and 10 kg/m^3. How many kg is she? Question 2 options: 20
10
0.2
5

Answers

The mass of Ben’s dog is 20 kg.

Mass = 2 m³ × (10 kg/1 m³) = 20 kg

do you think rayon when burnt will stick to the body like other synthetic fibres? why? pleeeeeeeaaaaaassseeeeee answer this question. half of the nerds in my class say yes and the other half say no. somebody pleaaaassseeee tell me the answer, 10 points for this

Answers

It will stick to the body because a synthetic fibre has the property to cohere with the substance.

In this case substance is our skin. After having a burn, the Rayon will stick to the skin.

And if it has a lesser quality then it will make your skin melt.

Hope helps ...

As mentioned in its properties, one of the properties of synthetic fibres is that it will stick to the body if in contact with fire, or high temperatures. Hence, as the answer follows, rayon, being a synthetic fibre, will stick to the body.

Can someone help me? 20points plz!!!

Answers

Answer

The answer is 38.05 years

Explanation

To solve this question, we should convert the given seconds to the year.

So,

Number of seconds in a year = [tex]3.154 * 10^7[/tex]

Seconds the man lived = [tex]11.2 * 10^9[/tex].2 * 10^9

How many years, he lived = ?

Here a unit method will be applied as

Total years the man lived= [tex]1.2 * 10^9/3.154 * 10^7[/tex]

Total years the man lived = 38.05 years


What is a possible quantum number set for an electron in the 2s orbital of a beryllium (Be) atom?

Answers

Answer is: 2,0,0,±1/2.

1) n = 1. The principal quantum number (n) is one of four quantum numbers which are assigned to each electron in an atom to describe that electron's state.

2) l = 0. The azimuthal quantum number is a quantum number for an atomic orbital that determines its orbital angular momentum and describes the shape of the orbital.

3) ml = 0. Magnetic quantum number specify orientation of electrons in magnetic field and number of electron states (orbitals) in subshells.

Magnetic quantum number (ml) specifies the orientation in space of an orbital of a given energy and shape . Magnetic quantum number divides the subshell into individual orbitals which hold the electrons, there are 2l+1 orbitals in each subshell.  

4) The spin quantum number, ms, is the spin of the electron; ms = +1/2 or -1/2.

Final answer:

The possible quantum number set for an electron in the 2s orbital of a beryllium (Be) atom is n=2, l=0, ml=0, and ms=+1/2 or -1/2.

Explanation:

The possible quantum number set for an electron in the 2s orbital of a beryllium (Be) atom can be described as follows:

Principal quantum number (n): 2Azimuthal quantum number (l): 0Magnetic quantum number (ml): 0Spin quantum number (ms): +1/2 or -1/2

These quantum numbers represent the energy level, shape, orientation, and spin of the electron in the 2s orbital.

How much chalcopyrite had to be mined to produce 100 pennies if reaction 1 had a percent yield of 63.00 % and all other reaction steps had yield of 100%?

Answers

1) Balanced chemical reaction 1:

2CuFeS₂ + 3O₂ → 2CuS + 2FeO + 2SO₂.  

Balanced chemical reaction 2: 2FeO + SiO₂ → 2FeSiO₃.  

Balanced chemical reaction 3: 2CuS → Cu₂S + S.

Balanced chemical reaction 4: Cu₂S + S + O₂ → 2Cu + 2SO₂.

m(Cu) = 3.0 g; mass of copper in one penny.  

n(Cu) = m(Cu) ÷ M(Cu).


n(Cu) = 3 g ÷ 63.55 g/mol.

n(Cu) = 0.047 mol; amount of copper in one penny.

2) From balanced chemical reactions: n(Cu) : n(CuFeS₂) = 1 : 1.

n(CuFeS₂) = 0.047 mol.

ω(CuFeS₂) = 63.00% ÷ 100%.

ω(CuFeS₂) = 0.630; a percent yield of chemical reaction 1.

m(CuFeS₂) = 0.047 mol · 183.54 g/mol ÷ 0.630.

m(CuFeS₂) = 13.692 g; mass of chalcopyrite for one penny.

m(CuFeS₂) = 13.6927 g · 100.

m(CuFeS₂) = 1369.27 g; mass of chalcopyrite for 100 pennies.

Final answer:

The percent yield of a reaction indicates the percentage of the theoretical maximum product that is actually obtained. Due to a 63% yield in the first reaction stage, more chalcopyrite than the actual weight of 100 pennies needs to be mined. This original amount of chalcopyrite can be found by reverse calculating the theoretical yield that leads to 250g as the actual yield.

Explanation:

To answer this question, we need to first understand the concept of percent yield. This is a measure of how much of a product is obtained in a chemical reaction relative to the theoretical maximum amount that could be produced. It is calculated using the formula:

Percent Yield= (actual yield/theoretical yield) x 100%

In the given question, the percent yield of the reaction involving chalcopyrite is 63.00%. Post that, all other reaction steps had a yield of 100%, implying no loss in those stages. Therefore, to produce 100 pennies, we would need to mine more chalcopyrite than the actual weight of 100 pennies, to account for the loss in the first stage of the reaction.

Assuming a penny weighs about 2.5 g and is composed primarily of copper, 100 pennies would weigh approximately 250 g. To calculate how much chalcopyrite needed to be mined considering the percent yield, we would reverse calculate the theoretical yield that gives us 250g as actual yield at 63%. That would indicate the original amount of chalcopyrite needed to be mined.

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which atom in each pair has the larger atomic radius Li or K?

Answers

Potassium has the electrons filled till the fourth energy shell but lithium just has electrons filled till the second energy shell.

This is the reason why K has a larger atomic radius than Li

Potassium (K) has a larger atomic radius than lithium (Li) because it is located further down in Group 1 of the periodic table, indicating it has more electron shells.

To determine which atom has a larger atomic radius between lithium (Li) and potassium (K), we need to look at the periodic table. Atomic size increases as we move down a group because each successive element has an additional electron shell. Thus, lithium, which is located at the top of Group 1, has fewer electron shells compared to potassium that is found further down the same group.

Lithium is in the second period and contains only two electron shells, while potassium is in the fourth period and contains four electron shells. This additional number of shells in potassium means its electrons are held further away from the nucleus compared to lithium. Therefore, potassium has a larger atomic radius than lithium.

C4H4O62−(aq) + 2 MnO4−(aq) + 8 H3O+(aq) → 2 Mn2+(aq) + 4 CO2(g) + 14 H2O(l)
element being reduced
element being oxidized

I really do not understand how to do this at all

Answers

Oxidized is that which goes up in oxidation number. The Fe goes from +2 to +3. Reduced goes down. Mn goes from +7 to +2. The oxidizing agent gets reduced. Mn. The reducing agent gets oxidized.

In which two types of reactions do opposite chemical changes occur

Answers

Hello!

Before I can answer your question we need to know the different types of chemical reactions that can occur:

Single ReplacementDouble ReplacementSynthesisDecompositionCombustion

Combustion is an answer that can usually be ruled out unless oxidation is occuring in the chemical equation (hyrdrogen occuring with oxygen to react)

Synthesis reaction, also known as a Combination reaction, is when the reactants combine to form a single product.

Decompostion is when a single reactant is deconstructed to form multiple products, or the opposite of Synthesis.


With these definitions alone, since they are opposite types of reactions, the answer would be Synthesis and Decomposition reactions !

Hope this helps and if you need anymore clarification feel free to ask.


Answer: Synthesis and decomposition

Calcium, carbon dioxide, and water combine to form calcite. True or False?


Answers

Answer:

The given statement is True

Explanation:

Calcium, carbon dioxide, and water combine to form calcite. Calcite is a mineral that is composed of calcium carbonate (CaCO3). The chemical reaction that occurs when calcium, carbon dioxide, and water react together to form calcite is called a precipitation reaction.

solve first image
second image am i correct
other choices
1.fact
2.hypothesis
3.theroy

dropdown 2
1.conduct electricy
2.generate hypothesis
3.hold different opinons

Answers

1. Plasma is "the state..." because plasma is rarely natural on earth (only lightning strikes) and has the highest temp

gas is "particles move freely" they do move freely

liquid is "it expands to fill volume" they do not have definite boundaries so they fill up the container

solid is "it retains its shape" yup dis is pretty obvious ig


2.

I agree with your answers.

it wouldnt be hypothesis or theory because they are basically the same thing and they explain facts. fact would be the best answer

conduct experiments would be the most logical here because you can gain new knowledge from conducting experiments instead of the rest.

A sample of propane, C3H8, contains 15.5 moles of carbon atoms. How many total moles of atoms does the sample contain?
Express the total number of moles of carbon and hydrogen numerically.

Answers

Answer:

H = 41.3 mol H; Atoms = 56.8 mol

Explanation:

A molecule of propane contains eight atoms of H for every 3 atoms of C or 8 mol H atoms for every 3 mol C atoms.

∴ [tex]\text{Moles of H atoms} = \text{15.5 mol C atoms} \times \frac{\text{8 mol H atoms }}{\text{3 mol C atoms }} = \text{41.3 mol H atoms}[/tex]

Total atoms = 15.5 mol C atoms + 41.3 mol H atoms = 56.8 mol atoms

Final answer:

Given 15.5 moles of carbon atoms in a sample of propane (C3H8), there are a total of 56.87 moles of atoms (carbon and hydrogen combined). This is calculated by dividing the given carbon moles by the count of carbon atoms in a propane molecule, then multiplying the result with the total count of atoms in one molecule of propane.

Explanation:

The question pertains to the calculation of total moles of atoms in propane (C3H8), given the moles of carbon atoms as 15.5. Propane is a hydrocarbon which contains 3 moles of carbon atoms and 8 moles of hydrogen atoms per molecule. Therefore, for every 1 mole of propane, there are 3 moles of carbon and 8 moles of hydrogen, totaling 11 moles of atoms.

If 15.5 moles of carbon atoms are present, this means that there are 15.5/3 = 5.17 moles of propane. Therefore, the total moles of atoms in your propane sample would be 5.17 moles propane x 11 moles atoms/mole propane = 56.87 moles of atoms. This figure consists of the number of moles of carbon and hydrogen atoms combined in the propane sample.

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How does the ability to conduct heat differ between metals and nonmetals?

Answers

Poor electrical conductors like glass, plastic, wood, etc. conduct heat mainly through vibrations among the molecules. As molecules vibrate, they bump into their neighbors from time to time, transferring some of their energy (i.e. heat). Those neighbors then bump in to some of their neighbors on the other side and transfer some of the energy to them. The process continues, and the heat is transferred through the material, but it happens quite slowly because the molecules are mostly stuck in place (because they're part of a solid material. If they were liquid or gas, they could move around more freely and transport heat more quickly. That process is called convection, rather than conduction). Anyway, metals and other good electrical conductors have the ability to transfer energy through an additional mechanism. In this case, the vibrating molecules literally shake off some of their weakly-bound electrons (which are plentiful in metals and all other good electrical conductors). These high-energy electrons then fly away and bump into other molecules or electrons, transferring the heat. Unlike entire vibrating molecules, however, individual electrons are so small that they can travel much longer distances at much, much higher speeds before they bump into anything. (It's sort of like shooting a gun in a forest. The bullet may travel several hundred feet or more before it actually strikes a tree. If you tried to drive a bus in that same forest, however, you couldn't go more than a few feet without running into something) Hope this helps :)

Metals are good conductors of both electricity and heat due to the presence of free electrons that facilitate energy transfer, resulting in high thermal conductivity. Nonmetals are generally poor heat conductors and are considered insulators because they lack these free electrons, which causes them to transfer heat much slower.

The ability to conduct heat distinguishes metals from nonmetals. Metals like copper, aluminum, and silver are good conductors of electricity and, correspondingly, are also good thermal conductors. The thermal conductivity of metals can largely be attributed to the presence of free electrons that facilitate the transfer of energy as heat.

Nonmetals, on the other hand, typically have a lower thermal conductivity and are considered insulators. Materials such as wood, plastic, and rubber have a limited ability to conduct heat, causing them to be inefficient at transferring thermal energy compared to metals.

The difference is so notable that touching a metal object and a nonmetal object at the same temperature often results in the metal feeling colder due to its rapid heat conduction away from the hand. This property of metals is because they allow energy to flow more quickly throughout the material, whereas nonmetals like paper and Styrofoam conduct energy so slowly that they appear to maintain warmth for longer periods.

what is the electron configuration for iodine

Answers

Hello!

To find electron configuration for Idoine we need to understand the following steps:

Finding the Atom's Atomic Number (tells us the specific number of electrons)Determining the Charge of the Atom Understanding the orbitals (Set S [Contains 2], P [Contains 3, Holds 6], D [Contains 5, Holds 10], F [Contains 7, Holds 14], and there are some theoritical ones.) [Overall the sets go SPDFGHIKUnderstanding notations in configuartion. The notations display the number of electrons in the atom and set.

In this case, for Iodine. If we follow these rules we can see that the electron configuration is [Kr] 4d^10 5s^2 5p^5. We use Krytpon in front because that is the last full and stable noble gas before this particular element. Atoms are just trying to be stable so the goal is to achieve that full shell.

Final answer:

The electron configuration for a neutral iodine atom is 1s² 2s² 2p⁶ 3s² 3p⁶ 4s² 3d¹⁰ 4p⁶ 5s² 4d¹⁰ 5p⁵, and for an iodine anion (I⁻), it gains one more electron, resulting in 1s² 2s² 2p⁶ 3s² 3p⁶ 4s² 3d¹⁰ 4p⁶ 5s² 4d¹⁰ 5p⁶.

Explanation:

The electron configuration of iodine (I), which is a halogen with the atomic number 53, follows the aufbau principle and Hund's rule, filling orbitals in order of increasing energy. For a neutral iodine atom, the electron configuration is:

1s² 2s² 2p⁶ 3s² 3p⁶ 4s² 3d¹⁰ 4p⁶ 5s² 4d¹⁰ 5p⁵.

When iodine forms an anion with a 1- charge, such as when it's added to table salt as an essential dietary element to prevent goiter, it gains an extra electron. The electron configuration for the iodine anion (I⁻) is:

1s² 2s² 2p⁶ 3s² 3p⁶ 4s² 3d¹⁰ 4p⁶ 5s² 4d¹⁰ 5p⁶.

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