How did atomists describe fire?

Answers

Answer 1
They explained it up be one of the four naturally occurring elements

Related Questions

what is the wavelength of a 4.89 Hz wave

Answers

Final answer:

The wavelength of a wave can be calculated by using the formula λ = v/f, where v is the wave's speed and f is its frequency. Without knowing the type of wave or its speed, we cannot find the specific wavelength for a wave with a frequency of 4.89 Hz. If it's a sound wave in air, the wavelength would be approximately 70.14 m.

Explanation:

To calculate the wavelength of a wave with a given frequency, we use the formula for wave speed: v = fλ, where v is the speed of the wave, f is the frequency, and λ(lambda) is the wavelength. Typically, the speed of a sound wave in air is about 343 m/s. However, the question does not specify the type of wave or its speed, so we cannot make this assumption without more information. In general, with the speed of the wave and its frequency, we could re-arrange the formula to find the wavelength: λ = v/f.

Therefore, if the type of wave and its speed were known, you could substitute the given frequency and the known speed into the formula to find the wavelength. For instance, if you know that you're working with a sound wave travelling through air at room temperature (v approximately equal to 343 m/s), you could calculate the wavelength as follows: λ = v/f = 343 m/s / 4.89 Hz = approximately 70.14 m.

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All of the atoms of argon have the same

Answers

Number of electrons or protons <<<====

Fill in the coefficients that will balance the following reaction:
_____Hg(CO3)2+______AgCl---> ______HgCl4+______Ag2CO3

Answers

Hg(CO₃)₂ + 4AgCl  → HgCl₄ + 2Ag₂CO₃

Looking at the forward reaction, at what rate is equilibrium reached?

at 0.00 mol/min


at 0.25 mol/min


at 1.0 mol/min


at 0.5 mol/min

Answers

At 1.0 mol/min my teacher told me when I asked her yuh

how did the electron change the model of an atom

Answers

The discovery of electrons proved the existence of subatomic particles. thus making the plum pudding model.

Atoms on the left side of the periodic table tend to form positive ions because

Answers

They all lose electrons

How many ml of 0.01-m naoh will be required to titrate 0.061-g of khp to it's endpoint?

Answers

The volume of NaOH needed for the titration is calculated by equating the number of moles of KHP and NAOH.

(1) number of moles of KHP:
         n = mass of KHP / molar mass of KHP
Substituting,
         n = 0.061 g / (204.22 g/mol) = 2.987 x 10⁻⁴ moles KHP

(2) number of moles of NaOH
         n = (volume NaOH in L)(molarity of NaOH)
          n = V x 0.01

Equating,
       0.01V = 2.987 x 10⁻⁴

The value of V from the equation is 0.0299L of NaOH. 

Converting the value to mL will give us the answer of 29.87 mL. 

Based on your observations in the virtual lab, complete the data table.



Question 3 options:

separated using a filter; mass


separated using a magnet; magnetism


separated using a filter; density


separated using a filter; not soluble in water


Answers

D. or separated using a filter; not soluble in water. The sand is insoluble. Its like salt when you boil the water with salt, the water boils away then all you're left with is the salt. Same thing with sand.   

Sand was separated from the mixture using a filter because it is not soluble in water, making it a suitable method for separating insoluble solids from liquids.

Based on the provided information, let's analyze how the mixture of sand was separated and which physical property was used for the separation:

Mixture: Sand

How did you separate it?

Separated using a filter; not soluble in water.

Which physical property did you use to separate it?

The physical property used to separate sand from the mixture was "not soluble in water."

Here's the explanation:

Separated using a filter: This separation method suggests that sand was separated from the mixture by passing the mixture through a filter. The filter allows the liquid components of the mixture (if any) to pass through while retaining the solid sand particles.

Not soluble in water: This property indicates that sand doesn't dissolve in water. Since it doesn't dissolve, it remains as solid particles when mixed with water, allowing it to be separated by filtration.

So, the method used to separate the sand from the mixture was filtration, and the physical property applied was that sand is not soluble in water. This combination of properties makes it possible to separate sand from the mixture efficiently.

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Which of these pairs of elements is most likely to be part of a polyatomic ion?

Cr and O
K and F
Li and Br
Mg and O

Answers

Cr and O I believe. I feel like I've seen it before as a polyatomic ion

Cr and O are most likely to be part of a polyatomic ion.

Cr belongs to the transition metal series in the periodic table and has vacant d-orbitals. As a result it can exist in more than one oxidation state, the most common being +6, +3 and +2. Oxygen exists in -2 oxidation state. Hence, Cr and O can combine to form different polyatomic ions like: CrO₄²⁻ and Cr₂O₇²⁻ (Cr in +6 state)

K, Li and Mg exist in only one oxidation state +1 (K and Li) and +2(Mg). F and Br exhibit an oxidation state of -1. Therefore, they are not likely to form polyatomic ions.

Ans (a) Cr and O

Why can you separate isomers through distillation

Answers

because they have different boiling points.

please mark me as brainliest.

Final answer:

Isomers can be separated through distillation because they often have distinct boiling points. Distillation processes, like simple and fractional distillation, leverage these differences to achieve separation, applying this principle widely in industrial applications.

Explanation:

The question posed, why can you separate isomers through distillation, revolves around the foundational principles of physical chemistry and the separation of mixtures. Distillation is a technique that separates components of a mixture based on differences in their boiling points. Isomers, being different structural or spatial arrangements of the same molecular formula, can often have differing boiling points. This variance allows for the separation of isomers through distillation processes, such as simple distillation or fractional distillation.

Simple distillation is effective when the boiling points of the substances in the mixture have a wide gap (more than 150°C apart), primarily separating a more volatile substance from a less volatile one. Fractional distillation, on the other hand, is used for substances whose boiling points are closer together and relies on a fractionating column packed with material that provides a large surface area for multiple cycles of vaporization and condensation. This repeated process allows for finer separation of components, making it ideal for separating isomers with somewhat similar boiling points.

Distinct boiling points of isomers, hence, are the key reason why distillation can be used as a method of separation. This principle is widely applied in industries, for example, in the refining of crude petroleum or the production of alcoholic spirits, where the separation of components based on their boiling points is crucial.

A mixture that results when substances dissolve to form a homogeneous mixture

Answers

A mixture that results when substances dissolve to form a homogeneous mixture is a solution.

What happens to the atomic radius when an electron is lost

Answers

The positive ionic radius is smaller than the neutral atomic radius.

Answer : When an electron is lost then the atomic radius is, decreases.

Explanation :

Atomic radius of an atom is defined as the total distance from the nucleus to the valence shell of the atom.

As moving from left to right in a period, more electrons are added in the same shell and the attraction between the last electron and nucleus increases, which results in the shrinkage of size of an atom.

Thus, atomic radii from the left to right across a period tend to decrease.

As moving from top to bottom in a group, there is an addition of shell around the nucleus and the outermost shell gets far away from the nucleus and hence, the distance between the nucleus and outermost shell increases.

Thus, atomic radii from the top to bottom in a group tend to increases.

When atom loses an electron then it becomes positively charged and the atomic radius of positively charged ion is lower than neutral atom.

When atom gains an electron then it becomes negatively charged and the atomic radius of negatively charged ion is more than neutral atom.

Hence, when an electron is lost then the atomic radius is, decreases.

A nitrogen oxide is 63.65% by mass nitrogen. the molecular formula could be ________.

Answers

To answer this question you need to know the molecular mass for both atoms. Nitrogen molecular mass is 14. Oxygen molecular mass is 16. If the 63.65% mass is nitrogen, then the 36.35% would be oxygen.

Then the ratio of nitrogen/oxygen would be: (63.65% /14) / (36.35% /14)= 4.53 /2.28 = 2
That mean there will be 2 nitrogen for every 1 oxygen. The molecular formula should be N2O

Answer:

[tex]N_{2}O[/tex]

Explanation:

1. First suppose that the mass of the compound is 100g, so:

mass of N + mass of O = 100g

2. Multiply the percentages of N and O by the total mass of the compound:

For the N:

[tex]63.65*100g=63.65g[/tex] of N

For the O:

[tex]100-63.65=36.35g[/tex] of O

3. Divide the mass of each atom between the molar mass:

For the N:

[tex]\frac{63.65g}{14g}=4.54[/tex]

For the O:

[tex]\frac{36.35g}{16g}=2.27[/tex]

4. Divide each value by the smallest:

For the N:

[tex]\frac{4.54}{2.27}=2[/tex]

For the O:

[tex]\frac{2.27}{2.27}=1[/tex]

5. Write each atom with its number to obtain the molecular formula:

[tex]N_{2}O[/tex]

According to the periodic table, the neutral atom of what element has 4 protons,5 neutrons,and 4 electrons

Answers

Since it has a 4 protons and 5 neutrons, it has a mass number of 9. The number of electrons is irrelevant for this question. Atomic number is the number of protons, so it is 4. So it is Beryllium

Answer:

Is your answer right or are you asking a question??

Elements are arranged in the periodic table based on their _____. mass number atomic number atomic mass percent abundance

Answers

The answer to this question would be: atomic number

In the chemistry table, you can find the molecular mass and atomic number. Atomic number represents the number of the protons of an atom, and molecular mass represents the mass of the atom. The mass of an atom is made from proton and neutron. The element is made by arranging it based on the number of protons, which was the atomic number. 

Answer: atomic number

Explanation:

The pks for the ionizable groups in the amino acid lysine are pk1 = 2.18, pk2 = 8.95, and pk3 = 10.53. what would be the net charge on lysine at ph = 7.0

Answers

i think u should add it up i think

What supports Wegener's theory of the continental drift?
A.Different continents had different rock types
B.The earths rotation could provide enough force to move continents apart
C.Identical fossils were found on continents that were far apart
D.Each continent had mountain ranges

Answers

C) just took test please make brainiliest


Different continents had different rock types supports Wegener's theory of continental drift. Therefore, option (A) is correct.

What is  Wegener's theory of continental drift?

According to Wegener’s Continental Drift theory, all the continents were united as one single continental mass named a Super Continent, and Pangaea and a Mega Ocean surrounded this supercontinent.

The similarity in geological formations of the southern continent had led Roberto Mantovani that all the continents had once been joined into a supercontinent. Then Wegener noted the similarity between Mantovani's and his own maps of the previous positions of the southern continents.

In Mantovani's conjecture, the continent split due to volcanic activity led by thermal expansion, and the newly formed continents drifted away from each other due to further expansion of the rip zones, where the oceans presently lie.

The continents were separated by the centrifugal pseudo force of the rotation of the earth but calculations showed that the force was not sufficient.

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The photoelectric effect is the basis for how solar energy panels work today.

Select one:
True
False

Answers

Your answer would be false

Final answer:

The photoelectric effect is indeed fundamental to how solar energy panels operate by using the energy of sunlight to eject electrons in a photovoltaic cell, creating electrical current that can be used as power. True

Explanation:

The photoelectric effect is indeed the basis for how solar energy panels, also known as photovoltaic cells, work today. When photons from sunlight strike the surface of a solar cell, they may have sufficient energy to eject electrons from the material of the cell, typically a semiconductor like silicon. This creates free electrons and corresponding holes. If there is an electrical circuit connected, these free electrons will flow through the circuit, thereby generating an electric current. This electric current can then be harnessed and used to power electrical devices or feed into the electrical grid.

It's important to note that the exact mechanism in solar cells is a bit different from the classic photoelectric effect observed in metals because semiconductors have a band gap that must be overcome by the incoming photons. This process is often referred to as the photovoltaic effect, which is closely related to the photoelectric effect as described by Albert Einstein.

A 3.677g sample of nac2h3o2 x 3h2o is heated until all the water molecules are gone. nac2h3o2 has mass of 2.216g left in the test tube. determine the ratio of moles of water to moles of nac2h3o2 in the original compound.

Answers

The mass of water is determined by calculating the difference in mass of the sample before and after the heating. 

Mass of water = 3.677 - 2.216
Mass of water = 1.461 g
Moles of water = 1.461 / 18 = 0.0812

Mass of NaC₂H₃O₂ = 2.216 g
Moles of NaC₂H₃O₂ = 2.216 / 82 = 0.0270

Molar ratio = 0.0812 / 0.0270 = 3.00

Therefore, there are 3 moles of water for every mole of NaC₂H₃O₂

The mass of water was determined by subtracting the mass of anhydrous NaC2H3O2 from the hydrated sample. The moles of each component were calculated based on their molar masses, and the ratio of moles of water to moles of NaC2H3O2 was found to be approximately 3:1.

To determine the ratio of moles of water to moles of NaC2H3O2 in the original hydrated compound, we first need to find the mass of the water that was in the sample. We subtract the mass of the anhydrous NaC2H3O2 from the original mass of the hydrated sample:

Mass of water = 3.677g (original mass) - 2.216g (anhydrous NaC2H3O2) = 1.461g

Next, we calculate the moles of NaC2H3O2 using its molar mass (82.03 g/mol):

Moles of NaC2H3O2 = 2.216g / 82.03 g/mol ≈ 0.0270 moles

We do the same for the water using its molar mass (18.02 g/mol):

Moles of water = 1.461g / 18.02 g/mol ≈ 0.0810 moles

Finally, we find the ratio of moles of water to moles of NaC2H3O2:

Ratio = Moles of water / Moles of NaC2H3O2 ≈ 0.0810 moles / 0.0270 moles ≈ 3

Therefore, the ratio of moles of water to moles of NaC2H3O2 in the original compound is approximately 3:1.

Group 7 on the periodic table are called halides. if you decided to do a taste test on all of those elements, what would they probably taste like

Answers

Answer:  "salt" ; or "salty" .
________________________________________________

In a compound that contains monatomic ions, which of the following gets named first?

Question 5 options:

the roman numeral of the valence number

the nonmetal

the anion

the metal

Answers

Answer:

It's the metal that gets named first.

Explanation:

Compounds are named based on the ions they produced on dissolution. In a compound that contains monatomic ions, the metallic ion is a named first. Thus 4th option is correct.

What is monoatomic ion?

A monatomic ion is a single atom possessing a positive charge or negative charge. The ion bearing a positive charge is called cation and the ion bearing negative charge is called anion.

Cations are formed by the losing or donation of electrons. Whereas, anions are formed by withdrawal of electrons. For example Na+ is a cation and Cl- is an anion formed by losing of one electron from sodium metal and accepting an electron Cl gas respectively.

These single atomic  cation and anions together forms ionic compounds called monatomic ions. For example NaCl containing sodium ion and chloride Cl- ion is a monatomic ion and its name is started with the metal sodium namely sodium chloride.

Similarly HBr containing H + ion and Br- ion have the name hydrogen bromide. Therefore, the metal named first for a compound containing monatomic ions.

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Magnesium reacts with hydrochloric acid, hcl, to produce hydrogen gas (hint: a diatomic molecule)and magnesium chloride. write a balanced equation for this reaction.

Answers

as metal + acid will form hydrogen gas and salt , the chemical equation is :
Mg + 2HCl --> H2 + MgCl2

IS Typtophan an element on the periodic table?

Answers

No it is an amino acid present in the synthesis of certain proteins. Elements are pure substances so an acid (which is a compound of different elements) would not be considered an element.

If 14.6 g of iron(iii) oxide (rust) is produced from a certain amount of iron, how many grams of oxygen are needed for this reaction?

Answers

Final answer:

To form 14.6 grams of iron(iii) oxide, or rust, about 4.4 grams of oxygen are required, based on the stoichiometry of the rust-forming reaction.

Explanation:

The formation of rust, or iron(iii) oxide, involves the reaction of iron with oxygen. To determine the amount of oxygen needed for this process, we need to understand the stoichiometry of the reaction. Two moles of iron react with one mole of oxygen to produce two moles of iron(iii) oxide. The molar mass of iron (Fe) is approximately 56 g/mol, of oxygen (O) is about 16 g/mol, and Iron(III) Oxide (Fe2O3) is ~160 g/mol.

To calculate the grams of oxygen needed for 14.6 g of rust (Fe2O3), you first convert the given mass of iron(iii) oxide into moles, then use the stoichiometry of the reaction to determine how many moles of oxygen are required.

14.6g Fe2O3 * (1 mol Fe2O3/160 g) = 0.09125 mol Fe2O3

The reaction indicates that for every 1 mole of Fe2O3 produced, 1.5 moles of oxygen(O2) are needed. So:

0.09125 mol Fe2O3 * (1.5 mol O2/1 mol Fe2O3) = 0.137 mol O2

Finally, convert moles of oxygen into grams:

0.137 mol O2 * (32 g/mol) = approximately 4.4 grams

So, for 14.6g of Fe2O3 to form, around 4.4 g of O2 are needed.

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To produce 14.6 g of iron(III) oxide, approximately 4.39 grams of oxygen are needed. The nearest answer is option b. 4.4 g

The calculation involves converting grams to moles, using the stoichiometric ratio from the balanced equation, and then converting back to grams.

Each step uses the molar masses of the reactants and products.

To determine how many grams of oxygen are needed for the reaction, we start with the balanced chemical equation for the formation of iron(III) oxide (rust):

4 Fe + 3 O₂ → 2 Fe₂O₃

We know that 14.6 g of Fe₂O₃ is produced.

The molar mass of Fe₂O₃ is calculated as follows:

(2 x 55.85 g/mol Fe) + (3 x 16.00 g/mol O) = 111.7 g/mol Fe + 48.0 g/mol O = 159.7 g/mol Fe₂O₃

Next, we convert 14.6 g of Fe₂O₃ into moles:

14.6 g Fe₂O₃ / 159.7 g/mol Fe₂O₃ ≈ 0.0914 mol Fe₂O₃

According to the balanced equation, 2 moles of Fe₂O₃ are produced from 3 moles of O₂. Thus, the moles of O₂ needed are:

(3 moles O₂ / 2 moles Fe₂O₃) x 0.0914 mol Fe₂O₃ ≈ 0.1371 mol O₂

Finally, we convert moles of O₂ to grams of O₂ using the molar mass of O₂ (32.00 g/mol):

0.1371 mol O₂ x 32.00 g/mol = 4.3872 g O₂

Therefore, approximately 4.39 grams of oxygen are needed to produce 14.6 g of iron(III) oxide.

Correct question is: Consider the reaction 2Fe(s) + 30₂ (g) ► Fe₂O₃(g) . If 14.6 g of iron(III) oxide (rust) is produced from a certain amount of iron, how many grams of oxygen are needed for this reaction?

a. 1.85 g

b. 4.4 g

c. 3.74 g

d. 2.68 g

A repetition of properties occurs when elements are arranged in order of increasing atomic number. read answer items for question 1

Answers

Answer:

Where is. Best of information

Explanation:

The type of bond that forms between two atoms when electrons are shared is a(n) _______________ bond.

Answers

covalent. When two atoms share valence electrons, such a type of a bond is called a covalent bond. An example of such a bond could be the H2 molecule, where two H (hydrogen) atoms share electrons in a covalent bond.

A laboratory technician needs to make a 108 ​-liter batch of a 20 ​% acid solution. how can the laboratory technician combine a batch of an acid solution that is pure acid with another that is 10 ​% to get the desired​ concentration?

Answers

The answer to this question would be:
100% solution= 12 liter
10% solution= 96 liter

In this question, you have 2 kinds of a solution with different concentration and try to make the third solution. To answer this question, you need to understand that you need to match the amount of the molecule. You can get the amount of molecule by multiplying the concentration with the volume. 
The calculation would be:
volume1+volume2= volume3
volume1 + volume2= 108l
volume1 = 108l - volume2

amount1 + amount 2 = amount3
volume1 * concentration1 + volume2 * concentration2 = volume3 * concentration3
volume1 * 100% + volume2 * 10% = 108 liter * 20%
volume1 + 1/10 volume2 = 21.6 liter
(108liter - volume2) + 1/10 volume2 = 21.6liter
108liter - 9/10 volume2- 21.6liter
108liter - 21.6 liter = 9/10 volume2
9/10 volume2= 86,4 liter
volume2= 96liter

volume1 = 108liter - volume2
volume1= 108 liter - 96 liter= 12 liter

Researchers have discovered that a moon rock brought back by the Apollo astronauts has a mass of 5.671 kg and a volume of 1,698 cm3. What is the density of the rock? Remember to use the correct number of significant digits in your answer. 3.3398 g/cm3 3.340 g/cm3 0.2994 g/cm3 3.3398 x 10-3 g/cm3

Answers

I believe the answer is 3.340 g/cm3 .

Answer:The density of the moon rock is [tex]3.3398 g/cm^3[/tex].

Explanation:

Mass of the  moon rock = 5.761 kg = 5671 g

(1 kg = 1000 g)

Volume of the moon rock = [tex]1,698 cm^3[/tex]

[tex]Density=\frac{Mass}{Volume}=\frac{5761 g}{1,698 cm^3}=3.3398 g/cm^3[/tex]

The density of the moon rock is [tex]3.3398 g/cm^3[/tex].

The chemistry lab is 0.3394km from the nurses office. How many feet is the distance?

Answers

Distance is the measurement that defines the length of the points covered by the object. The chemistry lab is 1113.51706 feet from the nurse's office.

What is the distance?

Distance is said to be the measurement that defines how far an object has moved from its initial point at the given time. It is an interval and span between the two defined points.

In physics, distance is estimated and measured in kilometers, meters, centimeters, inches, feet, miles, and yards. They are units of length as the distance is said to be the length between two points.

It has been known that one kilometer contains 3280.84 feet.

Given,

Distance between chemistry lab and nurse office = 0.3394 km

Converting the values from km to feet as:

1 km = 3280.84 feet

0.3394 km = 0.3394 km × 3280.84 feet

= 1113.51706 feet

Therefore, the distance is 1113.51706 feet.

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What element makes protein different from carbohydrate and fat? select one:
a. hydrogen
b. oxygen
c. carbon
d. nitrogen?

Answers

Nitrogen element makes protein different from carbohydrate and fat

d. nitrogen

What are the constituents of protein, carbohydrates and fats

Proteins differ from carbohydrates and fats in that they contain the element nitrogen. While carbohydrates and fats are composed of carbon, hydrogen, and oxygen, proteins also contain nitrogen in addition to these elements.

Nitrogen is an essential component of amino acids, which are the building blocks of proteins. This nitrogen-containing structure allows proteins to have unique properties and functions that are distinct from carbohydrates and fats.

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