In what ways are sulfate and sulfide minerals the same? In what ways are they different?

In What Ways Are Sulfate And Sulfide Minerals The Same? In What Ways Are They Different?

Answers

Answer 1
They both have Sulfur in them but sulfate has 4 Oxygen atoms in the compound and Sulfide doesn't have Oxygen atoms.
Answer 2
Final answer:

Sulfate and sulfide minerals are both inorganic and share similar crystal structures. Sulfates contain SO4^2- while sulfides contain S^2-. They differ in solubility, formation conditions, and typically found in different environments.

Explanation:

Sulfate and sulfide minerals are both types of minerals that contain sulfur. They are the same in that they are both inorganic solids with a definite chemical composition and crystalline structure, which means they have an orderly arrangement of atoms. The key differences between the two are based on their chemistry. Sulfate minerals contain the sulfate anion (SO42-), whereas sulfide minerals contain the sulfide anion (S2-). Sulfates typically form in oxidizing conditions and tend to be more soluble in water compared to sulfides, which are usually formed in reducing conditions and are generally less soluble in water. These characteristics influence the physical properties and formation environments of these minerals. For example, sulfate minerals, such as gypsum (CaSO4·2H2O), often occur in evaporative environments, while sulfide minerals, such as pyrite (FeS2), commonly form in reducing environments such as sedimentary layers with organic material or hydrothermal veins.


Related Questions

determine the number of significant figures in the following numbers. 0.02

Answers

0.02 

This has only 1 significant figure.
This is because the zeros before the first non-zero number are not significant, so 2 is the only significant one.

A 50-mL beaker only has a scale that measures 10, 20, 30, and 40 mL. What is the uncertainty associated with the 50 mL beaker.

Answers

Usually the uncertainty of a graduated cylinder is given however if it is not, then it is simply assumed to be equal to half of the least interval of that instrument. In this case, the least interval is 10 ml, so half of this is 5 ml. Hence, the graduated cylinder has an uncertainty of +/- 5 ml

describe the nucleus. what can be found inside the nucleus?

Answers

The nucleus is the positively charged central core of an atom, consisting of protons and neutrons and containing nearly all its mass.

The small, central core of an atom. The nucleus of an atom is made up of both  protons "positive charges" and neutrons "no charge."

Iron has a density of 7.86 g/cm^3. Calculate the volume (in dL) of a piece of iron having a mass of 3.52
kg. Note that the density is provided in different units of volume and mass than the desired units of volume (dL) and the given units of mass (kg). You will need to express the density in kg/dL (1 cm^3 = 1 mL) before calculating the volume for the piece of iron.

Answers

Density is the ratio of mass to volume
D = m / V
V = m / D
V = 4770 g / 7.86g/cm³
V = 606.9 cm³

V = 606.9 cm³ x (1 dL / 100 cm³)
V = 6.069 dL

The answer, 6.07 dL, is reported to three significant digits due to the precision reported for the density.
Final answer:

To calculate the volume of a piece of iron, we need to use the formula: Volume = Mass / Density. First, convert the density from g/cm^3 to kg/dL, then substitute the given mass and density into the formula. By converting the final volume from cm^3 to dL, the answer will be in the desired units.

Explanation:

To calculate the volume of a piece of iron with a given mass, we need to use the formula:

Volume = Mass / Density

First, we need to convert the density from g/cm3 to kg/dL. There are 10 g in 1 dL and 1,000 cm3 in 1 L, so:

Density = 7.86 g/cm3 x (1 dL/10 g) x (1 L/1,000 cm3)

Now, we can substitute the given mass of 3.52 kg and the converted density into the formula to find the volume:

Volume = 3.52 kg / (converted density)

After calculating the value, we can convert the final volume from cm3 to dL by recognizing that 1 cm3 is equal to 0.1 dL.

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A certain ore is 29.9% nickel by mass. How many kilograms of this ore would you need to dig up to have 75.0 g of nickel?

Answers

75g ---- 29,9%
Xg ----- 100%
X = 7500/29,9
X = 250,836g :)
Final answer:

To obtain 75 g of nickel from an ore that is 29.9% nickel by mass, approximately 0.252 kilograms of the ore would be required.

Explanation:

This type of problem is a matter of conversion between the mass of the ore overall and the mass of the specific component, in this case, nickel. The ore is 29.9% nickel by mass, which means for every 100 g of ore, there are 29.9 g of nickel.

To find out how much ore is needed to yield 75 g of nickel, we can set up a proportion: (29.9 g nickel / 100 g ore) = (75 g nickel / x g ore).

Solving for x, we find x = (75 g nickel * 100 g ore) / 29.9 g nickel = approximately 251.67 g ore.

This is the mass of the ore required in grams. Since the question asks for the answer in kilograms, we will need to convert this to kg. Knowing that 1 kilogram = 1000 grams, we divide the answer by 1000 and find that approximately 0.252 kg of the ore would need to be dug up in order to have 75.0 g of nickel.

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How wold you balance this equation?

HCL+Ba⇒ BaCL2+H2

(a) Place a 2 in front of the HCL and a 2 in front of the Ba
(b) Place a 2 in front of the HCL
(c) Place a 2 in font of the Ba
(d) It is already balanced

Answers

equation HCl+Ba(OH)2=BaCl2+H2O+H2 can be balanced in an infinite number of ways: this is a combination ... You can always ask for help in the forum.
Or just B

Answer:

The answer is B. Place a 2 in front of the HCl

Ba + 2HCl → BaCl2 + H2

Explanation:

According to the law of the conservation of matter, no atom can create or destroy in a chemical reaction. Then the number of atoms that are present in the reagents has to be equal to the number of atoms present in the products. Therefore, if the number of atoms is not equal, the equation must be balanced.

First you must determine the amount of atoms of each element present in both reagents and products. For that you must observe the subscripts next to each atom. In this case:

Reagents (left side of the reaction):

H: 1 atomCl: 1 atomBa: 1 atom

Products (right side of the equation):

Ba: 1 atomCl: 2 atomsH: 2 atoms

You can see that there aren't the same number of atoms of Cl and H in reagents and products. So you have to balance the chemical reaction.

In a chemical equation, you can change coefficients, but you should never alter the subscripts. And it is always preferable not to start balancing with H. In this case, you start balancing the chlorine. For that you add the coefficient 2 to the HCl molecule to the right of the equation to balance it with the 2 Cl atoms to the left of the equation (present in BaCl2). So:

Ba + 2HCl → BaCl2 + H2

Now you must determine the amount of atoms of each element present in both reagents and products again to see if the reaction is balanced or not. Remember that by multiplying the coefficient by the subindice of each atom, you get the amount of that atom.

Reagents (left side of the reaction):

H: 2 atomCl: 2 atomBa: 1 atom

Products (right side of the equation):

Ba: 1 atomCl: 2 atomsH: 2 atoms

You can see that you have the same amount of each atom on each side of the reaction. This means that the reaction is balanced.

So the answer is

Ba + 2HCl → BaCl2 + H2

and you placed a 2 in front of the HCL

What is not part of every chemical reaction? A. reactants B. products C. gases D. energy

Answers

C) gasses is the correct answer

Final answer:

Gases are not a part of every chemical reaction, unlike reactants, products, and energy changes which are essential components of all reactions.

Explanation:

What is not part of every chemical reaction? The answer is C. gases. While every chemical reaction involves reactants and products, and energy changes (either absorption or release), not all chemical reactions produce or involve gases. Reactants are the substances present at the beginning of a reaction, and products are the substances formed as a result of the reaction. Energy is a fundamental component of chemical reactions, as it is either released or absorbed during the process. In contrast, the production of gases is specific to certain types of reactions and is not a universal aspect of all chemical reactions.

In every chemical reaction, energy is not always a part of the reactants or products involved. While reactants and products are essential components of a chemical reaction, gases and energy are not universally present in every reaction.

Object A has a mass of 10 g and a volume of 8 cm3. Object B has a mass of 10 g and a volume of 6 cm3. Which object has a greater density and by how much? Object A, by 2 grams per cubic centimeter Object A, by 0.42 gram per cubic centimeter Object B, by 2 grams per cubic centimeter Object B, by 0.42 gram per cubic centimeter

Answers

Mass of object A = 10g
volume of object A = 8cm³
Mass of object B = 10g
Volume of Object B = 6cm³
we use the following formula to calculate the density of object A and B.
Density = Mass / Volume
Density of Object A = 10g / 8cm³ = 1.25g/cm³
Density of Object B = 10g / 6cm³ =1.67 g/cm³
So the density of object B is greater than object A
and if we find the difference:
1.67 - 1.25 = 0.42
So the answer is; Object B, by 0.42 gram per cubic centimeter

It’s D honey, Object B, by 0.42 gram per cubic centimeter

Water has a density of 1.0 g/cm3. Glycerin, a liquid used in some soaps, has a density of 1.26 g/cm3. If an object sinks in water but floats at a constant depth in glycerin, its density is _____.
A. between 1.0 g/cm3 and 1.26 cm3
B.exactly 1.26 g/cm3
C.greater than 1.26 cm3
D.less than 1.0 g/cm3

Answers

For an object to sink in something, it's density has to be higher than the object it is in, so if it sinks in water the number has be higher than 1

And to float, and objects density has to be lower than that of the substance it is put in, so it has to be lower than 1.26

So between 1 and 1.26

Hello! Since the object will sink in the water that has a density as 1.0, then it obviously cannot be D. If it floats at the Glycerin level at 1.26, then it cannot be C. An object or a substance can float on the exact level of density as water or liquids. The answer is B. Exactly 1.26 g/cm3. I hope I helped! Please mark me brainliest if you find suitable! Have a fantastic day! :)

Evidence of a chemical change would be a ___________________. Question options: spinning top. rusting car fender. spilled bucket of water. melting popsicle.

Answers

The answer is the second option "rusting car fender." Hope this helps.
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X-ray photons with a wavelength of 0.135 nm

Answers

The energy of the X-ray photons with a wavelength of [tex]\(0.135 \, \text{nm}\)[/tex] is [tex]\(1.473 \times 10^{-18} \, \text{kJ}\)[/tex].

To calculate the energy of X-ray photons with a given wavelength, you can use the energy-wavelength relationship given by Planck's equation:

[tex]\[ E = \dfrac{hc}{\lambda} \][/tex]

Where:

E is the energy of the photon,h is Planck's constant [tex](\(6.626 \times 10^{-34} \, \text{J} \cdot \text{s}\))[/tex],c is the speed of light [tex](\(3.00 \times 10^8 \, \text{m/s}\))[/tex],[tex]\lambda \)[/tex] is the wavelength of the X-ray photons.

Let's plug in the values:

[tex]\[ E = \dfrac{(6.626 \times 10^{-34} \, \text{J} \cdot \text{s}) \times (3.00 \times 10^8 \, \text{m/s})}{0.135 \times 10^{-9} \, \text{m}} \][/tex]

[tex]\[ E \approx \dfrac{(1.9878 \times 10^{-25} \, \text{J} \cdot \text{m})}{0.135 \times 10^{-9} \, \text{m}} \][/tex]

[tex]\[ E \approx 1.473 \times 10^{-15} \, \text{J} \][/tex]

Now, convert this energy from joules to kilojoules:

[tex]\[ E_{\text{kJ}} = \dfrac{1.473 \times 10^{-15} \, \text{J}}{1000} \][/tex]

[tex]\[ E_{\text{kJ}} \approx 1.473 \times 10^{-18} \, \text{kJ} \][/tex]

So, the energy of the X-ray photons with a wavelength of [tex]\(0.135 \, \text{nm}\)[/tex] is approximately [tex]\(1.473 \times 10^{-18} \, \text{kJ}\)[/tex].

The complete question: X-ray photons with a wavelength of 0.135 nm . express the energy numerically in kilojoules per mole.

What things can water do while in the gaseous phase?

Answers

move anywhere and can be anywhere while it is in that phase

M=40g V=31cm^3 what is the density

Answers

40g/31cm^3=1.3g/cm^3
Final answer:

The density of the object can be calculated using the formula Density = Mass / Volume. With the given mass of 40g and an volume of 31 cm³, the calculated density is 1.29 g/cm³.

Explanation:

The essential formula to remember here is: Density = Mass / Volume (represented as p=m/v), which you can use to calculate the density of any object if you know its mass and volume.

In this scenario, the mass (m) is given as 40g and the volume (V) as 31 cm³. Substituting m and V into the density formula gives:

Density = 40g / 31 cm³ = 1.29 g/cm³

Therefore, the density of the object in question is 1.29 g/cm³.

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Compare the sounds produce by wave A and wave B. The human ear would hear
A) wave A as a louder sound than wave B.
B) wave A as a higher pitched sound than wave B.
C) wave A and B with the same pitch, but wave A as louder.
D) wave B has a louder and higher pitched sound than wave A.

Answers

D. When sound travels faster, wavelengths tend to vibrate fast. Where, the crests are near each other.

Answer:

It is A) A and wave B. The human ear would hear.

Explanation:

It is on Usa Test Prep and Wave A has a greater amplitude than wave B. That is perceived as a louder sound. Wave B has a higher frequency; that would be perceived as a higher pitch.

___ Particles of which of the following have the greatest thermal energy

A. a liquid
B. a crystalline solid
C. a gas
D. an amorphous solid

Answers

Salutations!

___ Particles of which of the following have the greatest thermal energy

Gas is the particle that has the greatest thermal energy. Gas has the greatest thermal energy because the movement between particles is clump. This thermal energy is then converted into kinetic energy.

Thus, your answer is option C.

Hope I helped (:

Have a great day!

several scientists are working together to study the change in the number of whales born each year along the northern coast of California. What is the controlled parameter

Answers

I believe that in this case the controlled parameter is the type of animal that they are observing. There are a lot of animals in the ocean, therefore to have a scope of their study of observation, they are controlling or limiting their observations on the whale alone. Hence the controlled parameter is the type of animals, whales.

(26+2)÷7 what is the answer

Answers

First, we have to to whatever is in the parentheses:

(26 + 2)/7
(28)/7

Now solve:

28/7
4

Hope this helps!

Create a graph of
y=2x−6
.
Construct a graph corresponding to the linear equation
y=2x−6

Answers

Y=2x-6
Domain is (2,6) and the range is (-2,-18)

What are the main concepts that make up the study of earth science?

Answers

The structure and history of Earth and what forces formed it. The investigation of earth in the context of the solar system and universe

Answer:

to study the earth.

Explanation:

there are five branches.

geology-geologists- people who study the earth.

oceanography- oceanographers- people who study the oceans

environmental science- environmental scientists- people who study the environment.

meteorology- meteorologists- people who study the weather.

astronomy- astronomers- people who study the universe  beyond earth.

two objects of different masses are sitting on a different balance scales. object A has a greater mass than object B how will the weights of the objects compare to each other?

Answers

A will be lower on the scale compared to b because it is heavier

Explanation:

Since it is given that object A has greater mass this means that object A is heavier than object B.

Therefore, when both object A and object B is placed on a balance scale on either side then the balance scale will move downwards on the side where object of heavier mass is placed.

That is, balance scale will be in downward direction where object A is placed. Whereas balance scale will move upwards where object B is placed.

If a compound is separated into separate parts does the substance remain the same substance

Answers

no, if H2O is separated into H2 and O, then it is not the same substance

Explain whether nitrogen atoms will form bonds with other atoms

Answers

Yes, the nitrogen atoms will form bonds with other atoms is called covalent bonds, this is also called a molecular bond. This is a chemical bond that involves the sharing of electron pairs. When the process of sharing is occur is known as covalent bonding.

carbon dioxide is a gas with the relative formula mass of 44. calculate the mass of the 36 dm3 of the CO2 at room temperature? ?? ANYONE WHO GET CHHEMISTY HELP

Answers

At STP 44g = 22.4 L Temp increases by 25 at room temp
Vol increases 298/273=1.09
New volume of 44g =24.45 L
36dm cubed=.036L
44g/24.45L=x/.036L
Should be 0.065g of CO2

Final answer:

The mass of 36 dm3 of CO2 at room temperature is 66.02 grams, calculated by first determining the number of moles and then multiplying by the molar mass of CO2.

Explanation:

To calculate the mass of 36 dm3 of CO2 at room temperature, we can use the molar volume of a gas at room temperature, which is approximately 24 dm3/mol. Given that the molar mass of CO2 is 44.01 g/mol, we can first find the number of moles of CO2 by dividing the volume by the molar volume.

Number of moles = Volume / Molar volume = 36 dm3 / 24 dm3/mol = 1.5 moles

Now, to find the mass, we multiply the number of moles by the molar mass of CO2.

Mass = Number of moles × Molar mass = 1.5 moles × 44.01 g/mol = 66.02 g CO2

Which statement about distinguishing an ionic compound from a covalent compound by its formula is true? A. It is impossible to tell from the formula. B. It is determined by the presence of subscripts. C. Knowing the presence of pluses and minuses determines the difference. D. Knowing the total number of atomic particles makes it possible.

Answers

B Yeah its B Pretty sure its B Go Ahead Answer It Im Know
Which statement about distinguishing an ionic compound from a covalent compound by its formula is true? A. It is impossible to tell from the formula.

Which of the following statements is true regarding scientific hypotheses?
A.There are no valuable hypotheses.
B. A testable hypothesis is valuable only if all evidence supports it.
C. Every hypothesis is valuable, whether or not it is testable.
D. A testable hypothesis is valuable, even if evidence shows that it is false.

Answers

I would say D.  

A is incorrect by simple reasoning.

B is also incorrect. A hypothesis is made before evidence supports it, therefore, it doesn't matter if all evidence supports it,  as it shows an guess. It sometimes can also lead to more experimentation even if it's not true for the current experiment.

C is also incorrect. An untestable hypothesis isn't useful as you cannot test anything relating to it, and it cannot be proven or disproven.

Hope this helps!

Final answer:

The statement that is true regarding scientific hypotheses B. A testable hypothesis is valuable, even if evidence shows that it is false.

Explanation:

In the scientific method, a hypothesis is a proposed explanation for a phenomenon or observed behavior. A testable hypothesis is one that can be tested through experiments or observations. Even if the evidence shows that the hypothesis is false, it is still valuable because it helps researchers eliminate incorrect explanations and refine their understanding of the topic.

For example, let's say a researcher hypothesizes that a new drug will cure a particular disease. They conduct experiments and analyze the data, only to find that the drug does not have the desired effect. The hypothesis may be proven false, but the research process can still provide valuable insights and pave the way for new hypotheses or solutions.

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Atoms can gain lose or share electrons durning a chemical change why doesn't this cause the atoms identities to change?

Answers

An atom's identity, that is, whether it is 'oxygen' or 'plutonium', for example, is determined solely by the number of protons in the nucleus. The number of neutrons also plays a part - a differing number of neutrons can change an atom from one isotope of an element into another, but the atoms would still remain the same element, albeit a different isotope. The number of electrons orbiting the atom does not change the identity of the atom, only it's electronic state. Take electrons away and it becomes a positively charged ion of the same element. Add electrons and it becomes a negatively charged ion, but still of the same element.

which of the following is not an intensive physical property?A magnetism,B boiling point,C thermal conductivity,D volume

Answers

Final answer:

Magnetism is not an intensive physical property, while boiling point, thermal conductivity, and volume are examples of intensive physical properties.

Explanation:

An intensive physical property is a property that does not depend on the amount of the substance and physical state at a given temperature and pressure. Out of the given options, magnetism is not an intensive physical property because it depends on the presence of a magnetic field and can vary depending on the strength of the field. On the other hand, boiling point, thermal conductivity, and volume are all examples of intensive physical properties as they do not depend on the amount of the substance.

3.0 g aluminum and 6.0 g of bromine react to form AlBr3 2Al+3Br2=2AlBr3 How much product would be produced? How much reagent would remain at the end of this reaction?

Answers

2Al + 3Br2 -------------> 2AlBr3

3 g Al = 0.11 mol Al. 

6 g Br2 = 0.0375 mole bromine (it is diatomic). 

moles of aluminium will take part in reaction = 0.0375 X (2/3) = 0.025. 

Gram-mole of AlBr3 will be produced = 0.025 mole = 6.6682 g. 
moles of Al left = 0.11 - 0.025 = 0.086


Which of these is an example of a chemical change? Fireworks exploding
grinding powder
melting cheese
ironing a shirt

Answers

fireworks exploding is the answer


Answer is B. Fireworks Exploding.

Which statement best describes a balanced chemical formula?

A. There are the same number of ions on either side of the reaction.
B. There are the same molecules on either side of the reaction.
C. There are the same number of molecules on either side of the reaction.
D. There are the same number of the same kind of atoms on either side of the reaction.

Answers

Answer : Option D) There are the same number of the same kind of atoms on either side of the reaction.Explanation :

A balanced chemical equation should have same number of same kind of atoms with the same charge on both the sides of reaction.

In other words, a chemical reaction where the number of atoms for each element in the reaction and the total charge on them are the same, for both the reactants and the products is called as a balanced chemical equation.

Also, the mass and the charge should balanced on both sides of the reaction.

Final answer:

The best description of a balanced chemical equation is that it has the same number of the same kind of atoms on both sides, reflecting the conservation of matter. Balancing involves adjusting coefficients to achieve this equality.

Explanation:

The statement that best describes a balanced chemical equation is 'D. There are the same number of the same kind of atoms on either side of the reaction.' Balancing a chemical equation ensures compliance with the law of conservation of matter, indicating that atoms are neither created nor destroyed in a chemical reaction.

To balance a chemical equation, we insert coefficients in front of the appropriate reactants or products until there is the same number and type of atoms on both sides of the arrow. For instance, if a reaction produces CO₂ and H₂O, we would count the oxygen atoms in both molecules to ensure they match the total number of oxygen atoms in the reactants.

Therefore, balancing equations is a fundamental process in chemistry that illustrates the conservation of atoms during chemical reactions and ensures that the numbers of each type of atom are equal on both sides of the equation.

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