If two objects have the same mass, what must be true? choose the correct answer A. They have the same volume B. They are made of the same material C. they contain the same amount of matter D. They have the same density

Answers

Answer 1
Final answer:

If two objects have the same mass, it means they contain the same amount of matter.

Explanation:

The correct answer is C. they contain the same amount of matter.

If two objects have the same mass, it means they have the same amount of matter. Mass is a measure of the amount of material within an object, and objects with the same mass have the same quantity of atoms and molecules. The other options, such as volume, material, and density, can vary between objects with the same mass.

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Related Questions

When an electric current passes through liquid water, hydrogen gas passes accumulates at one electrode and oxygen accumulates at the other. Which of the following is true? A) A physical change has occurred, with energy is being absorbed. B) A chemical change has occurred, with energy being given off. C) A physical change has occurred, with energy being given off. D) A chemical change has occurred, with energy being absorbed.

Answers

I believe the correct answer is option D. When an electric current passes through liquid water, a chemical change has occurred, with energy being absorbed. This process is called electrolysis of water. It is a chemical decomposition of water using electricity as the energy source. Any chemical reaction involves a chemical change.

Answer: Option (D) is the correct answer.

Explanation:

A chemical change is defined as the change which occurs due to change in chemical composition of a substance. A chemical change always leads to the formation of a new compound or substance.

For example, when an electric current passes through liquid water, hydrogen gas passes accumulates at one electrode and oxygen accumulates at the other.

Since, atoms of water are separating out. As a result, chemical properties will change. This means that a chemical change has occurred.

Also, bonds of water, ([tex]H_{2}O[/tex]) are breaking down. Hence, energy will be absorbed to break the bonds.

Whereas energy is always released upon formation of bonds.

Thus, we can conclude that the statement a chemical change has occurred, with energy being absorbed, is true.

PLEASE HELP !!!
A) state the number of atoms of each element present.
B) Give the total number of atoms present in each compound.

Answers

According to the Law of Definite Proportions from Dalton's Atomic Theory, each compound is composed of a fixed ratio of each of its individual elements. So, the number of individual elements per 1 particle of that compound is represented by the subscripts. The answers are as follows:

Table sugar: 12 atoms of carbon, 22 atoms of hydrogen; 11 atoms of oxygen; 45 total atoms
Marble: 1 atom of calcium, 1 atom of carbon; 3 atoms of oxygen; 5 total atoms
Natural gas: 1 atom of carbon, 4 atoms of hydrogen; 5 total atoms
Rubbing alcohol: 3 atoms of carbon, 8 atoms of hydrogen; 1 atom of oxygen; 12 total atoms
Table sugar: 1 atom of silicon; 2 atoms of oxygen; 3 total atoms

Chemistry Help Please? 20 points?
Since each element produces a characteristic spectrum, what can you conclude about the location of the electron?

Answers

the electron rides around the nucleus on an electromagnetic wave that the nucleus has formed
Final answer:

The characteristic spectrum an element produces indicates the location of its electron as each unique spectral line indicates the electron's movement between specific energy levels or shells in the atom.

Explanation:

The location of an electron can be determined based on the spectrum that an element produces. When an electron absorbs energy, it moves to a higher energy level or shell, also known as an excited state. When it falls back to its original energy state, it emits energy in the form of electromagnetic radiation, producing a unique spectral line. This spectral line or pattern is characteristic of the element, and it can hint at an electron's location in a specific energy level or shell around the nucleus.

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The average density of whole milk is 1.034 g cm ^3. What is it’s density in lb gal ^-1?

Answers

you will need to look up some conversions of gram to lbs

1 gram = 0.00220462262 pounds


1 mL = 0.000264172052 US gallons

and mL to gal

1.035 g / cm^3 x 0.0022 lbs / 1 gram x 1 mL / 0.000264 gal

Answer:

The average density of whole milk is 8.6291 lbs/gal.

Explanation:

The average density of whole milk is [tex]1.034 g/cm ^3[/tex].

1 g = 0.00220462 lbs

[tex]1 cm^3=0.000264172 gallons[/tex]

[tex]1.034 g/cm ^3=\frac{1.034\times 0.00220462 lbs}{1\times 0.000264172 gal}[/tex]

[tex]=8.6291 lbs/gal[/tex]

The average density of whole milk is 8.6291 lbs/gal.

Is household ammonia a heterogeneous mixture?

Answers

No ,household Ammonia is a homogeneous mixture.

Homogeneous mixtures are the same throughout and heterogeneous mixtures are not.

Carl had four metal blocks.. Each block was a different type of metal, but it had the same size and volume. All four blocks were weighed on a balance and their masses recorded in the table below. Which one of these metals is the least dense?
Block 1: 65 grams

Block 2: 32 grams

Block 3: 100 grams

Block 4: 79 grams

options:

Block 1


Block 2


Block 3


Block 4

Answers

Block 2 was the least dense. I beleive the formula is volume over mass or mass over volume.

Answer is: Block 2 is the least dense.

d(metal) = m(metal) ÷ V(metal).

Volume is the same for all metals, so density only depends on mass of the block of the metal.

Smaller the mass of the block, smaller is the density:

d(block 1) = m(block 1) ÷ V.

d(block 1) = 65 g/V.

d(block 2) = 32 g/V.

d(block 3) = 100 g/V.

d(block 4) = 79 g/V.

dicing potatoes is a physical change. true or false?

Answers

Hello there!

The answer to this is True. Although you cannot reverse a cut potato, it's still considered a physical change because its composition of matter remained the same. If you were to, for example, deep-fry the potato, that would already be a chemical change. Because, the potato's composition of matter changed due to the oil that fried it. 

Hope I helped!

Final answer:

Dicing potatoes is a physical change since it alters their shape and size but not their chemical identity. This kind of physical change, while being irreversible, does not transform the potatoes into a new substance.

Explanation:

Dicing potatoes is indeed a physical change. This is because when you dice potatoes, you are only changing their shape and size, not their chemical structure or identity. Physical changes can be reversible or irreversible, but they do not alter the fundamental identify of a substance.

Some examples of reversible physical changes include melting, where ice changes to liquid water and can be refrozen, and dissolving, such as when salt is dissolved in water and can be recovered by evaporating the water. Conversely, irreversible physical changes do not easily revert to the original form, such as cutting hair—once it is cut, it cannot grow back instantly.

In the case of dicing potatoes, the physical change is irreversible as you cannot restore the potatoes to their original, uncut state. However, the potatoes remain chemically identical before and after dicing.

Which solute produces the highest boiling point in a 0.15 m aqueous solution?

Answers

Final answer:

The solute that increases the boiling point the most in a 0.15 m aqueous solution is one that dissociates into the most particles, like NaCl, because it has a larger effect on boiling point elevation than a non-dissociating substance like glucose.

Explanation:

The solute that produces the highest boiling point in a 0.15 m aqueous solution is determined by the number of particles it provides in the solution upon dissolving. According to the colligative property known as boiling point elevation, the more particles a solute generates, the higher the increase in the boiling point. Salts such as NaCl dissociate into ions, thereby increasing the boiling point of the solution more than non-dissociating molecules like glucose. Therefore, a solute like NaCl, which dissociates into two separate ions Na+ and Cl- would generate a higher elevation than glucose at the same molality because the ionization of NaCl results in twice the number of particles in the solution.

Using the formula ΔT = Kb × m (where ΔT is the increase in boiling point, Kb is the molal boiling-point elevation constant, and m is the molality), we can calculate the boiling point elevation. With a given Kb for water of 0.51°C/m, a 0.15 m solution of NaCl would lead to a higher boiling point than a 0.15 m solution of a non-electrolyte like glucose. This is because each mole of NaCl provides 2 moles of particles, doubling the ΔT value compared to glucose which does not dissociate.

what tools can scientists use to measure the volume of liquid

Answers

Beakers, Erlenmeyer flasks, graduated cylinders, pipets, burets and volumetric flasks.
Graduated cylinder is one of them

What is the mass of 0.28 mol of iron

Answers

Iron=55.85g/mol
x=mass of .28mol of Fe
55.85g Fe/1 mole Fe=x/.28 mole Fe
(55.85gFe)(.28 mole Fe)=(1 mole Fe)(x)
15.64g /mol Fe=x

The mass of 0.28 mol of iron is 15.638 grams.

To find the mass of 0.28 mol of iron, we need to use the molar mass of iron. The molar mass of iron, as given in the periodic table, is 55.85 g/mol. This means that 1 mole of iron weighs 55.85 grams.

Step-by-Step Calculation:

1. Find the molar mass of iron:

According to the periodic table, the molar mass of iron (Fe) is 55.85 g/mol.

2. Calculate the mass of 0.28 mol of iron:

We will use the formula:Mass = Number of moles × Molar mass

So,

Mass = 0.28 mol × 55.85 g/molMass = 15.638 g

Therefore, the mass of 0.28 mol of iron is 15.638 grams.

Which tools would be necessary to determine whether or not a large regular block will float, without using water?

Answers

Scale and measuring tape. 
To determine the mass and volume, you can find the density. The block will float if its density is less than that of water.

Answer:

Explanation:

To determine if the bock will float you need:

A scale to calcualte the weight of the blockA ruler or metric tape to measure the block and calculate its volume

The block has 3 dimmentions: lenght, wide and height, its volume is:

[tex]V=wide*lenght*height[/tex]

Once calculated it and measured the  weight, you calculate the density:

[tex]\rho=\frac{m}{V}[/tex]

If the density of the block is smaller than the density of water (arroung 1000 kg/m3) the block will float.

Will give BRAINLIEST!
Which is more active (a) iron or copper, (b) iron or silver, (c) silver or copper? Arrange the three metals in order of decreasing activity.

Answers

A and b if u choose one
 the answer is a
in order its a,c,b

When scientists make measurements in the laboratory, they use the system?

Answers

metric is the answer


What is the substance produced by iron reacting with oxygen in the air?

Answers

The substance produced by iron reacting with oxygen in the air is rust. 

What is the formula mass of beryllium chloride , becl2?

Answers

To determine the formula mass of beryllium chloride, BeCl₂, we start up with the basis of one mole first. 

Basis: 1 mole BeCl₂
To determine the molar mass of BeCl₂, we add up the mass of one mole of beryllium and two moles of chlorine. 

    1 mol Be = 9 g/mol 
     1 mol of Cl = 35.45 g/mol

Solving,
    molar mass of BeCl₂ = (1 mol Be)(9 g/mol) + (2 mols Cl)(35.45 g/mol)
             molar mass of BeCl₂ = 79.9 g

Then, we take into consideration that 1 mol is equal to 6.022 x 10²³ formula units. 
            formula mass BeCl₂ = (79.9 g/mol)(1 mol/6.022 x 10²³ formula units)
               formula mass of BeCl₂ = 1.33 x 10⁻²² g/formula unit

Answer: 1.33 x 10⁻²² g/formula unit

A student has a sample of a mineral that is too big to fit in a graduated cylinder. The density of the sample is known. How can the student determine the volume of the sample?

Answers

The formula for density is given as:

density = mass / volume

 

So given the density and the mass, we can get the volume. The mass can simply be measured using a weighing scale therefore the student can now determine the volume by rearranging the formula:

volume = mass / density

Which is an aspect of the kinetic-molecular theory and can be used to explain the behavior of plasmas?

Answers

Particle exchange energy though elastic collision , hope this helps .

Particles move independently of one another and are widely spaced.

Which would have the highest concentration of h+ ions acetic acid or sodium hydroxide?

Answers

Obviously it will be acetic acid. Because it is an acid which releases H+ ion. 

[tex]CH_3COOH ----\ \textgreater \ CH_3COO^- + H^+[/tex]

while:


which light packs the highest energy per photon

Answers

It is the "Ultraviolet".  Ultraviolet means "beyond violet"  which comes from Latin ultra, "beyond" violet being the color of the highest frequencies of visible light. This light has a higher frequency than violet light. Of the visible spectrum, violet waves have the most energy. When the wavelength decreases, there is an increase in the frequency and so does the energy that the waves carry. Short wavelengths have the most energy. Waves that are red have a relatively long wavelength, which are 700 nm range, and violet waves are much shorter which are roughly half of that. Violet waves have the shortest wavelength of the visible light spectrum. They carry the most energy. The one which has the highest energy is violet. In the rainbow colors, it has the shortest wavelength, thus, it contains the highest energy.

What are the advantages of using structural composite lumber rather than solid lumber?

Answers

Advantages of using structural composite lumber include its highly stable material, in that it's much less likely to warp or split, its ability to sustain heavier loads, and its wide range of different physical applications. Solid lumber does not hold any of these properties, and generally is more likely to fail.

A gold atom is a sphere with a diameter of 272 pm and a mass of 3.27 x 10-13 ng. Calculate the density of one gold atom (in g/cm3). Note the Vsphere = 4/3 π r3.

Answers

The density of one gold atom is approximately 19.34 g/cm³, calculated by dividing its mass by its volume.

To calculate the density of one gold atom, Need to find its volume and then divide its mass by that volume.

Step 1: Calculate the volume of the gold atom.

The volume of a sphere can be calculated using the formula:

[tex]V_{sphere} = (4/3)\pi r^3[/tex]

Given that the diameter (d) of the gold atom is 272 pm (picometers), you can find the radius (r) by dividing the diameter by 2:

r = 272 pm / 2 = 136 pm = 1.36 x [tex]10^{-8} cm[/tex] (since 1 pm = [tex]10^{-10[/tex] cm)

Now, plug this radius into the formula for the volume of the sphere:

[tex]V_{sphere[/tex] = (4/3)π(1.36 x [tex]10^{-8[/tex] cm)^3 ≈ 1.69 x [tex]10^{-23[/tex] cm^3

Step 2: Calculate the density of one gold atom.

Now that you have the volume of one gold atom, you can calculate its density using the given mass of 3.27 x [tex]10^{-13[/tex] ng (nanograms). First, convert the mass to grams:

1 ng = [tex]10^{-9[/tex] g, so 3.27 x [tex]10^{-13[/tex] ng = 3.27 x [tex]10^{-22[/tex] g

Now, use the formula for density, which is density (ρ) = mass (m) / volume (V):

ρ = (3.27 x [tex]10^{-22[/tex] g) / (1.69 x [tex]10^{-23[/tex] cm^3) ≈ 19.34 g/[tex]cm^3[/tex]

So, the density of one gold atom is approximately 19.34 g/[tex]cm^3[/tex].

An atom of calcium loses two electrons. What is the charge on an ion of calcium?
Question 6 options:

A.0


B.–2


C.+2


D.+3

Answers

B.-2 is correct. :) hope you pass :)
C is the answer  just took the test made 100

If isotopes are chemically alike but physically different propose which subatomic particles are

Answers

All isotopes of the same element have the same number of protons. Number of neutrons in different atoms of the same element is free to vary. Since, different elements react differently, different elements have different numbers of protons. Atoms with the same number of protons and vary neutrons behave chemically similar. The number of electrons in a neutral atom depends on the number of protons. All chemical reactions involve transfer or sharing of electrons it stands to reason, neutrons are NOT responsible for chemical reactivity. It's arguable whether protons or electrons dictate chemical reactivity certainly the SUBATOMIC nuclear particle that dictates reactivity is the PROTON.

A wooden object has a mass of 10.782 g and occupies a volume of 13.72 ml. what is the density of the object determined to an appropriate number of significant figures?

Answers

A wooden object has a mass of 10.782 g and occupies a volume of 13.72 mL. What is the density of the object determined to an appropriate number of significant figures

Answer:

7.859 × 10^-1 g/mL

Explanation:

D=mass/volume

10.782g/13,72ml= 0.78586 g/ml

7.859 x 10^-1 g/ml

This is a model of a lithium atom. How likely is it that this atom would want to bond with another atom to fill it's outer shell?

Answers

I'd say extremely likely. Lithium is in group 1 - they're all very reactive. Although it's the least reactive of the group, it's still very reaction and therefore very likely to react to have a full outer shell. It would bond through ionic bonding, transfer its outer electron (very easily). 

Hope this helps
The Answer Choices to the Question Is

A:This atom is very likely to bond with another atom.

B:This atom is only slightly likely to bond with another atom

C:This atom is not likely at all to bond with another atom.

And I Think The Answer Is A


How many helium atoms are there in a helium blimp containing 537 kg of helium? express the number of helium atoms numerically?

Answers

To determine the number of helium atoms present in a given mass of helium, we first convert the mass into number of moles by dividing the atomic mass of helium which is 4 grams per mole. Then, we multiply the Avogadro's number which represents the number of units in one mole of any substance. This has the value of 6.022 x 10^23 units / mole. We do as follows:

537 kg He ( 1000 g / 1 kg ) ( 1 mol / 4 g ) ( 6.022 x 10^23 atom / mol ) = 8.08x10^28 atoms He
Final answer:

To find the number of helium atoms in a blimp with 537 kg of helium, first, calculate the mass of one helium atom. Then determine the number of atoms in 1 kg of helium, and multiply by 537 to get the total number of helium atoms in the blimp.

Explanation:

To calculate the number of helium atoms in a helium blimp containing 537 kg of helium, we must first know the mass of a single helium atom. A helium atom contains 2 protons, 2 neutrons, and 2 electrons. The mass of a helium atom can be approximated by considering the mass of the protons and neutrons, as the mass of electrons is negligible. This gives us a mass of about 4 atomic mass units (u) per helium atom. Since 1 u is approximately 1.66 × 10-27 kg, the mass of a helium atom is 4 × 1.66 × 10-27 kg.

To find the number of atoms in 1 kg of helium, you can divide 1 kg by the mass of one helium atom. Then, for 537 kg, multiply the number of atoms in 1 kg by 537. The Avogadro's number (6.022 × 1023 atoms/mol) is used as a conversion factor to convert moles of helium to atoms of helium. Conversely, to convert atoms to moles, you would divide the number of atoms by Avogadro's number, not multiply as stated incorrectly by the friend.

Here is the calculation in steps:

Calculate the mass of one helium atom: Mass of helium atom = 4 × 1.66 × 10-27 kg.Find the number of atoms in 1 kg of helium: Number of atoms in 1 kg = 1 kg / Mass of one helium atom.Find the number of atoms in 537 kg of helium: Number of atoms in 537 kg = Number of atoms in 1 kg × 537.

The density of gold is 19.3 g/cm3. What is the mass of 15cm3 of gold?

Answers

just multiple 19.3 by 15 because cm^3 will cancel outand you are left with g with represents mass

Final answer:

The mass of 15 cm³ of gold, with a density of 19.3 g/cm³, is 289.5 g when calculated using the formula m = d × V.

Explanation:

The density of gold is 19.3 g/cm³.

To find the mass of 15 cm³ of gold, you can use the formula for density, which is mass divided by volume (d = m/V).

Since we know both the density and the volume, we can rearrange the formula to solve for mass (m = d × V).

In this case, the mass (m) would be 19.3 g/cm³ times 15 cm³, which equals 289.5 g.

An isotope contains 16 protons 18 electrons and 16 neutrons. what is the identity of the isotope

Answers

Answer:

Sulfur ₁₆S³²

Explanation:

The sulfur have sixteen protons sixteen neutrons and sixteen electrons. The sum of neutrons and protons is equal to atomic mass. So the given element have sixteen protons and sixteen electron, the atomic mass would be 32 and the element with atomic mass 32 is sulfur.

The number of electrons are equal to the number of protons. In the given element two electrons are more than number of protons. It means element gain two extra electron from another element and it is present in ionic form.

It is present in given form:

S²⁻

Electronic configuration:

S₁₆ = [Ne] 3s² 3p⁴

To complete the octet sulfur gain two electrons from other element and get stable.

Answer:

[tex]^{32}_{16}S^{2-}[/tex]

Explanation:

Atomic number : It is defined as the number of electrons or number of protons present in a neutral atom.

However, when we talk about the atomic number of the ion, it is not equal to the number of electrons as electron can be gained or loosed.

This is why, more appropriately, the number of the protons which are present in the nucleus of the atom is called the atomic number.

Thus, number of protons = atomic number = 16

The element must be sulfur.

Since, number of protons is not equal to the number of electrons, thus the isotope will not be neutral.

There are 2 more electrons than the number of protons and thus, the isotope will be having a charge of -2.

Mass number is the number of the entities present in the nucleus which is the equal to the sum of the number of protons and electrons.

Mass number = Number of protons + Number of neutrons  = 16 + 16 = 32 neutrons

The identity is:- [tex]^{32}_{16}S^{2-}[/tex]

What is the smallest particle that has all the properties of a specific element?

Answers

An atom is the smallest particle that has all the properties of a specific element.
I think the correct answer was
"An Atom"

If 28 ml of 5.8 m h2so4 was spilled, what is the minimum mass of nahco3 that must be added to the spill to neutralize the acid?

Answers

First we have to refer to the reaction between the acid and the base: 

H2SO4 + 2 NaHCO3 ---> 2 H2O + 2 CO2 + Na2SO4 

From this balanced equation we can see that for every 1 mol of acid (H2SO4), we need 2 mol of base (NaHCO3) to neutralize it. Given 28 ml of 5.8 M acid, we need to find out how many mols of acid that is: 

28mL * (1L/1000mL) * 5.8 mol/L =  0.1624 mol H2SO4


Since we need 2 mol of base per mol of acid, we need:

 2*0.1624 mol = 0.3248 mol NaHCO3 

MolarMass of NaHCO3 is 84.01 g/mol 

0.3248 mol*(84.01g/mol) = 27.29 g NaHCO3

Answer: The mass of sodium hydrogen carbonate that must be added is 27.28 g

Explanation:

To calculate the number of moles for given molarity, we use the equation:

[tex]\text{Molarity of the solution}=\frac{\text{Moles of solute}\times 1000}{\text{Volume of solution (in mL)}}[/tex]

Molarity of sulfuric acid solution = 5.8 M

Volume of solution = 28 mL

Putting values in above equation, we get:

[tex]5.8M=\frac{\text{Moles of sulfuric acid}\times 1000}{28mL}\\\\\text{Moles of sulfuric acid}=0.1624mol[/tex]

The chemical equation for the reaction of sulfuric acid and sodium hydrogen carbonate follows:

[tex]H_2SO_4(aq.)+2NaHCO_3(aq.)\rightarrow Na_2SO_4(aq.)+2CO_2(g)+H_2O(l)[/tex]

By Stoichiometry of the reaction:

1 mole of sulfuric acid reacts with 2 moles of sodium hydrogen carbonate.

So, 0.1624 moles of sulfuric acid will react with = [tex]\frac{2}{1}\times 0.1624=0.3248mol[/tex] of sodium hydrogen carbonate

To calculate the number of moles, we use the equation:

[tex]\text{Number of moles}=\frac{\text{Given mass}}{\text{Molar mass}}[/tex]

Molar mass of sodium hydrogen carbonate = 84 g/mol

Moles of sodium hydrogen carbonate = 0.3248 moles

Putting values in above equation, we get:

[tex]0.3248mol=\frac{\text{Mass of sodium hydrogen carbonate}}{84g/mol}\\\\\text{Mass of sodium hydrogen carbonate}=(0.3248mol\times 84g/mol)=27.28g[/tex]

Hence, the mass of sodium hydrogen carbonate that must be added is 27.28 g

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