What about energy can change and what does not change, according to the law?

Answers

Answer 1
Conservation of energy implies that energy can be neither created nor destroyed, although it can be changed from one form into another.
Answer 2

Energy cannot be created or destroyed, but can only change forms according to the law of conservation of energy. The total amount of energy in a closed system remains constant, even though it may convert to different forms such as kinetic or potential energy.

According to the law of conservation of energy, in any process, the total energy of the universe, or any closed system, remains constant. This means that energy cannot be created or destroyed; instead, it can only be transformed from one form to another. For instance, in a closed system, energy may shift between kinetic energy, potential energy, thermal energy, and various other forms, but the total amount of energy within that system does not change.

Consider the example of a roller coaster. As the coaster climbs a hill, it is converting the kinetic energy from the speed it has into potential energy due to its height. When the coaster comes down the hill, that potential energy is converted back into kinetic energy. Throughout these changes, the overall energy within the coaster system remains the same, illustrating the conservation of energy in a practical scenario.

It is also important to note that energy conversions are not 100% efficient, and some energy is often lost as heat due to friction or other non-conservative forces. However, this energy is not lost from the system; rather, it changes form and still obeys the conservation of energy principle.


Related Questions

How many protons, neutrons and electrons are there in a neutral atom of the isotope of lithium named lithium-6?

Answers

Well first of all the atomic mass is the number of protons + the number of neutrons this is the mass of the nucleus and meaning that the protons and neutrons make up the nucleus which is where all the mass is located. So the number of protons will be equal to the number of electrons if it is a neutral atom. So the atomic number of Lithium is 3 and this is equal to the number of protons. So if you want to find the number of neutrons you have to subtract the number of protons which in this case is 3, so you're going to subtract 3 from 6 (6-3) and this is going to leave you with 3 neutrons. So in this case there are 3 Protons, 3 Neutrons, And 3 Electrons. 
Final answer:

A neutral atom of lithium-6 contains three protons, three neutrons, and three electrons, with an isotope symbol of 6Li or 3Li.

Explanation:

The neutral atom of the isotope lithium-6 contains three protons, three neutrons, and three electrons. The atomic number for lithium, which signifies the number of protons in an atom, is always 3. The mass number of lithium-6 indicates that it has a total of six protons and neutrons, meaning this isotope has three neutrons since the number of protons is known to be three. The isotope symbol for lithium-6 is either 6Li or 3Li, with the mass number given as the superscript before the elemental symbol (Li).

An element of Group II loses two electrons in the process of a chemical combination. What is its ionic charge?

Answers

The answer is +2

Hope this helps!

Explanation:

An element that gains one electron will tend to acquire a negative charge whereas an element that tend to lose an electron will acquire a positive charge.

Similarly, an element losing two electrons will acquire a 2+ charge.

For example, calcium is a group II element and has 2 valence electrons. Therefore, to attain stability it loses two electrons and thus changes into [tex]Ca^{2+}[/tex] ion.

Hence, we can conclude that an element of Group II loses two electrons in the process of a chemical combination then its ionic charge will be +2.

The most common sulfur ion has a charge of __________.

Answers

Elemental sulfur actually has 16 electrons with a neutral charge. 
The most common sulfur ion that is formed is the sulfide ion which has a negative 2 charge.

An atoms gets a negative 2 charge by absorbing 2 electrons, hence fulfilling the octet rule.

When ammonium nitrate, NH4NO3(s) is added to water at 25 °C, it dissolves spontaneously and the temperature of the solution decreases. This indicates that the factor causing the substance to dissolve is a change in:
a). Energy
b). Enthalpy
c). Entropy
d). temperature

My guess is Entropy, but I'm wavering on some of the other options too. Could someone help and clarify? Thanks!

Answers

Final answer:

The dissolution of ammonium nitrate in water is driven by an increase in entropy, despite it being an endothermic process. The decrease in temperature indicates energy is absorbed, but the dissolution still occurs spontaneously due to the significant increase in disorder in the system. So the correct option is C.

Explanation:

When ammonium nitrate, NH4NO3(s), is added to water at 25 ℃, it dissolves spontaneously and the temperature of the solution decreases. This process is indicative of an endothermic reaction where energy is absorbed during the dissolution of the solute, causing the temperature of the solution to decrease. However, the factor causing the substance to dissolve is a change in entropy (c). The dissolution process results in an increase in entropy due to the increase in disorder that accompanies the formation of the solution, overriding the fact that it's an endothermic process that requires energy input.

what crystals are formed when a molten ceramic cools slowly

Answers

You get large crystals, hope this helped <3

Bigger crystals of rock are formed when a molten ceramic cools slowly.

What is the igneous process?

Igneous rock can be described as one of the three rock types, sedimentary and metamorphic. Igneous rock can be formed through the cooling and solidification of magma or ceramic.

The magma derives from partial melts of rocks in either a mantle or crust. The melting is caused by three processes: an increase in temperature, a decrease in pressure, or a variation in composition.

Solidification occurs either below the surface and can form with crystallization to form granular, crystalline rocks to form natural glasses.

The rate of cooling the ceramic determines the size of the crystals of the rock. If the ceramic cools down slowly then it takes a longer period of time, therefore, the grain size will be bigger. If the ceramic cools rapidly then it takes a shorter period of time, therefore, the grain size will be smaller.

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Explain how scientific knowledge and reasoning can help us make difficult decisions.

Answers

 Scientific reasoning consists of observation, forming a workable hypothesis and arriving at a conclusion. Almost without exception major scientific discoveries were made and are being made today based on these same precepts. It only seems logical when an individual makes a difficult decision he/she will apply all or part of these processes. Let;s say that you want to make someone;s acquaintance to possibly become serious. Certainly, you would begin by quietly observing them, then you might make a hypothesis, "This person might make a good companion for me." Then in your conclusion you would test your hypothesis and proceed as directed. THis may be a bit simplistic, and I hope that it helps.

How many electrons will a calcium (ca) atom gain or lose in forming an ion?

Answers

Calcium has an atomic number 20. This means that calcium has 20 electrons.
The electronic configuration of these 20 electrons is as follows: 2,8,8,2

For the calcium to become stable, it should have eight electrons in its outermost energy level.
Based on this, calcium loses two electrons to form an ion and become stable.

There are __________ naturally occuring elements.
a.71
b.92
c.103
d.112

Answers

the answer is B! hope it helps

The correct answer is B. Hope I helped!

How many valence electrons are in an atom of phosphorus? (atomic number 15)?

Answers

It is in Group 5A => 5 valence electrons

Answer:

Connexus D,B,B,A,A

Explanation:

Write a balanced equation for the reaction of solid iodine with fluorine gas.

Answers

Final answer:

The balanced equation for the reaction of solid iodine with fluorine gas is I2(s) + 3 F2(g) → 2 IF3(g), indicating one molecule of iodine reacts with three molecules of fluorine to form two molecules of iodine trifluoride.

Explanation:

The student asked for a balanced chemical equation for the reaction between solid iodine (I2) and fluorine gas (F2). The balanced equation for this reaction is:

I2(s) + 3 F2(g) → 2 IF3(g)

This equation indicates that one molecule of solid iodine reacts with three molecules of fluorine gas to produce two molecules of iodine trifluoride gas. In balancing the equation, it is important to ensure that the same number of each type of atom appears on both sides of the equation.

The compound zinc sulfate is a strong electrolyte. write the reaction when solid zinc sulfate is put into water:

Answers

zinc sulfate solid is ZnSO4(s)

The product is the ionization of the strong electrolyte:

                   H2O
ZnSO4 (s)  --------> Zn(2+)  (aq) + SO4(2-) (aq)

The sates are:

 s = solid
 aq = aqueous

This is each molecule of solid ZnSO4 will produce one cation Zn(2+) and one anion SO4(2-) in aqueous solution.

Final answer:

Solid zinc sulfate dissolves in water by dissociating into zinc ions (Zn²⁺) and sulfate ions (SO₄²⁻), making it a strong electrolyte. This shows the nature of ionic compounds dissociating in solutions.

Explanation:

The question asks about the reaction when solid zinc sulfate is dissolved in water, incorrectly referencing reactions of zinc with hydrochloric acid and copper(II) sulfate. However, for zinc sulfate in water, the correct dissociation reaction is:

ZnSO₄(s) → Zn²⁺(aq) + SO₄²⁻(aq)

This equation shows that solid zinc sulfate dissociates into zinc ions (Zn²⁺) and sulfate ions (SO₄²⁻) when it is put into water, making it a strong electrolyte. It highlights the process by which ionic compounds like zinc sulfate split into their respective ions in a solution, thereby enhancing the solution's ability to conduct electricity.

For the complete combustion of 1.000 mole of methane gas at 298 K and 1 atm pressure, ΔH° = -890.4 kJ/mol. What will be the amount of heat released when 1.97 g of methane is combusted under these conditions?

Answers

Oh hooray a practice problem:

That might be wrong

The amount of heat released is equal to 109.58 KJ/mol when 1.97 g of the methane is combusted.

What is the combustion reaction?

A combustion reaction can be defined as a reaction that forms fire and occurs at an elevated temperature. It is an exothermic reaction as well as a redox chemical reaction that commonly occurs between a fuel and oxygen gas in the atmosphere.

During the combustion, methane reacts with two molecules of oxygen gas to give carbon dioxide and two molecules of water.

[tex]CH_4 + 2O_2\longrightarrow CO_2+2H_2O[/tex]

The mass of the methane = 1.97 g

The molecular mass of the methane = 16g/mol

The number of the moles of methane = 1.97/16 = 0.123 mol

The enthalpy of combustion for 1 mole of methane,  ΔH° = -890.4 kJ/mol

The heat released during the combustion of 0.123 mol of methane

= 0.123 × 16 = 109.58 KJ/mol

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The list below includes some of the properties of butane, a common fuel. Identify the chemical properties in the list. Check all of the boxes that apply.denser than water

burns readily in air

boiling point of –1.1°C

odorless

does not react with water

Answers

the answer is just 2 and 5

Explanation:

Butane is a four member carbon chain.

The properties of butane are as follows.

Butane is less denser than water. In the presence of air, it readily burns to form water vapour and carbon dioxide. The reaction is as follows.

           [tex]2C_{4}H_{10} + 13O_{2}(g) \rightarrow 8CO_{2}(g) + 10H_{2}O(aq)[/tex]

It has a boiling point of [tex]-11.7^0C[/tex]. Butane has faint petroleum like odor. Butane does not react with water.

Butane has weak dispersion force and water has strong hydrogen bonding.  The weak dispersion force is unable to break the hydrogen bonding hence, butane does not dissolve in water.

Thus, we can conclude that the chemical properties butane burns readily in air and does not react with water are true out of the given list of options.




CHEMISTRY HELP !!!!

1. If you were to grind up a pepperoni pizza and test it for each of the macromolecules, what color would each test tube turn? For each macromolecule listed, (give the color that the solution would change if it is present.)

Pizza Test Tube / Color of solution
Starch 
Protein 
Lipid 

Answers

When testing a pepperoni pizza for macromolecules, an iodine solution will turn blue-black for starch, a Biuret reagent will turn purple for protein, and fats will create transparent oil stains on paper. The Benedict's solution will change color from green to reddish-orange if reducing sugars like glucose are present.

If you were to grind up a pepperoni pizza and test it for each of the macromolecules, you would expect different colors in test tubes indicating the presence of those macromolecules. Specifically, the colors will change based on the reactions of the food components with certain chemicals.

Starch: If there is starch in the pizza, you would use an iodine solution for testing. The presence of starch would turn the iodine solution from its original orange-brown color to a blue-black color.Protein: The Biuret reagent is commonly used to test for proteins. If proteins are present, the solution would change to a purple hue.Lipids: The test for lipids, such as fats and oils, is known as the fat emulsion test. After crushing a piece of the pizza with ethanol and allowing it to evaporate, the appearance of transparent oil stains on paper would indicate the presence of lipids.

In the context of the specific examples provided, when Benedict's solution is added and the mixture is heated, a positive result for the presence of reducing sugars like glucose would change the solution to a range of colors from green to reddish-orange, depending on the quantity of the reducing sugar.

The Ability of a material to be drawn into a thin wire is called??

Answers

Metals are also easily distinguished from non-metals and other materials in their ductility (ability to be drawn into a wire) and malleability (the ability to be beaten into a sheet). Some metals like gold can be drawn out into wires or beaten into sheets only a few atoms thick and still retain their strengt

 
Final answer:

Ductility is the ability of a material, usually a metal, to be drawn into thin wires. This property is particularly significant in industries that rely on flexible, resilient materials.

Explanation:

The ability of a material to be drawn into a thin wire is known as ductility. Ductility is a property pertaining to a material's ability to deform under tensile stress, which is typically seen in metals such as copper or gold. A high degree of ductility means that a material can be stretched into a long, thin wire without breaking. This property is important when considering materials for things like electrical wiring, jewelry making, or any process where a thin, flexible wire is needed.

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Which of the following does not represent a molecular compound ?

Answers

B) bal2 is the answer
Final answer:

LiBr does not represent a molecular compound; it is an ionic compound because it is made up of lithium (metal) and bromine (nonmetal).

Explanation:

The student is inquiring about which of the provided options does not represent a molecular compound. Molecular compounds, also known as covalent compounds, are formed when nonmetal atoms share electrons to form discrete molecules with covalent bonds. Examples include water (H₂O) and carbon dioxide (CO₂). On the other hand, ionic compounds like sodium chloride (NaCl) are formed from the electrostatic attraction between cations and anions, which result from the transfer of electrons from metal to nonmetal atoms. Here, the substance that does not represent a molecular compound is LiBr, as it is an ionic compound composed of lithium (a metal) and bromine (a nonmetal). The formulas for molecular compounds generally display the number of each type of atom in a molecule, whereas the formula for an ionic compound represents the relative number of ions rather than discrete molecules.

A decimeter (dm) is one tenth of a meter. The diameter of Earth is 1.3 x 104 km. What is the diameter expressed in decimeters?

1.3 × 107 dm

1.3 × 1011 dm

1.3 × 108 dm

1.3 × 10–5 dm

Answers

1.352 x 10^7 dm so it is the first one

A decimeter (dm) is one tenth of a meter are the unit of length of measurement.  The diameter of Earth is 1.3 x 104 km.,  the diameter expressed in decimeters is 1.352 x 10^7 dm so it is the first one.

What are the unit of length measurement ?

It can be defined as the measuring of  the length of objects with some specific units representing the symbol and it can divided into standard or non-standard.

Some measuring tools are ruler, measuring tape used to determine the length. For example, the height of students  can be measured using a feet scale, some units of length measurements are inches, centimeters, meters, feet, etc

The units of length measurement are two types such as Standard and non-standard units of measuring length.

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How does the composition of a mixture of hydrogen and oxygen differ from the composition of a compound containing hydrogen and oxygen

Answers

Chemical compounds have chemically bonded molecules so that they exhibit different properties (i.e. chemical) compared to the individual molecules comprising the compound. Mixtures are simply the combinations of different molecules and compounds that are not chemically bonded together, and can therefore be separated by physical means. Mixtures usually retain the properties of its components. 

The hydrogen and oxygen molecules in a mixture do not form strong bonds between each other. The molecules of both gases are only contained in the same space or volume and the individual molecules retain their chemical properties. 

A compound containing hydrogen and oxygen molecules exhibit different chemical (and even physical) properties compared to the individual molecules themselves.

Water for example, is a compound with 2 hydrogen atoms and 1 oxygen atom, chemically-bonded together. Hydrogen gas is highly flammable, water is not. Oxygen gas is an essential reagent for combustion (or burning) reactions, water is not. 
 
Thus, throwing a lighted match to a gaseous mixture of hydrogen [tex] (H_{2}) [/tex] and oxygen [tex] (O_{2}) [/tex] would create fire, or even an explosion (since hydrogen is flammable and oxygen feeds the reaction). Throwing a match to water vapor [tex] (H_{2}O) [/tex] would not create fire. 

How many valence electrons does holmium have?

Answers

It has 3 valence elctrons

What mass, in g, of agcl is formed from the reaction of 75.0 ml of a 0.078 m agc2h3o2 solution with 55.0 ml of 0.109 m mgcl2 solution? 2 agc2h3o2(aq) + mgcl2(aq) â 2 agcl(s) + mg(c2h3o2)2(aq)?

Answers

Answer:

The mass we will get from AgCl is 0.839g

Explanation:

Hello!

Let's solve this!

The reaction is:

2AgC2H3O2 + MgCl2 ---> 2AgCl + Mg (C2H3O2) 2

The data we have are:

V1 = 75mL * (1L / 1000L) = 0.075L

M1 = 0.078M

V2 = 55mL * (1L / 1000mL) = 0.055L

M2 = 0.109M

The molarity formula is

M = mol / V

We calculate the moles of each compound:

molAgC2H3O2 = 0.075L * 0.078mol / L = 0.00585mol

molMgCl = 0.055L * 0.109M = 0.005995

We calculate the compound that is in excess, and then use the limiting reagent to calculate the amount of product we will obtain.

Since there are two Cl in MgCl2, this means that we have 0.01199 mol to produce the product, but we will only use 0.00585 mol which is the amount we have of AgC2H3O2. So MgCl is the excess reagent.

Then:

AgCl mass = 0.00585mol * (2mol AgCl / 2molAgC2H3O2) * (143.34g AgCl / 1mo AgCl) = 0.839gAgCl

The mass we will get from AgCl is 0.839g

0.839 g of AgCl is formed.

Further explanation

Given a reaction between:

75.0 ml of a 0.078 M AgC₂H₃O₂ solution 55.0 ml of 0.109 M MgCl₂ solution

Question:

What mass, in g, of AgCl is formed?

The Process:

Step-1:

Let us find the mole numbers of both reagents:

[tex]\boxed{ \ Concentration \ (M) = \frac{moles \ (n)}{volume \ (V)} \ } \rightarrow \boxed{ \ n = MV \ }[/tex]

AgC₂H₃O₂ → 0.078 x 0.075 = 5.85 mmol

MgCl₂ → 0.109 x 0.055 = 5.995 mmol

Step-2:

The equation for the reaction is

[tex]\boxed{ \ 2 AgC_2H_3O_2_{(aq)} + MgCl_2_{(aq)} \rightarrow 2 AgCl_{(s)} + Mg(C_2H_3O_2)_2_{(aq)} \ }[/tex]

According to the equation, 2 mol of AgC₂H₃O₂ react with 1 mol of AgCl.

Let us check which substances will be a limiting reagent.

AgC₂H₃O₂ → [tex]\boxed{ \ \frac{5.85}{2} = 2.925 \ }[/tex]

MgCl₂ → [tex]\boxed{ \ \frac{5.995}{1} = 5.995 \ }[/tex]

AgC₂H₃O₂ is the limiting reagent because the test results are the smallest.

Step-3:

As AgC₂H₃O₂ is the limiting reagent, the amount of AgCl produced will be determined by the amount of AgC₂H₃O₂. Since the proportion between the mole numbers of AgC₂H₃O₂ and AgCl is one to one, their mole numbers will be equal:

[tex]\boxed{ \ The \ mole \ of AgCl = \frac{1}{1} \times the \ mole \ of \ AgC_2H_3O_2 \ }[/tex]

So the amount of AgCl is 5.85 moles.

Step-4:

Prepare the molar mass of AgCl.

Mr = 108 + 35.5 = 143.5 g/mol

Let us find out how many mass, in g, of AgCl is formed.

[tex]\boxed{ \ mol \ (n) = \frac{mass \ (g)}{molar \ mass \ (Mr)} \ } \rightarrow \boxed{ \ g = n \times Mr \ }[/tex]

Mass = 5.85 mmol x 143.5 g/mol

Mass = 839.475 mg ≈ 0.839 g.

Thus the amount of AgCl is formed is 0.839 g.

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Bohr model for silicon

Answers

hope this answer helps you

Final answer:

The Bohr model for silicon primarily describes the atom’s electron configuration and how introducing atoms with different numbers of valence electrons, like phosphorus, affects this configuration and the silicon's electrical properties.

Explanation:

The Bohr model for silicon involves understanding how electrons are arranged around the nucleus of the silicon atom and how this structure is affected by processes such as n-type doping. In its essence, silicon has four valence electrons that participate in forming bonds with neighboring atoms, perfectly filling the valence band in a crystalline lattice.

When an atom like phosphorus, with five valence electrons, is introduced into this lattice, it contributes an extra electron. This extra electron, due to the high dielectric constant of the semiconductor, is bound in a hydrogen-like molecular orbital significantly larger than the orbitals in isolated atoms. This scenario, pertinent to the Bohr model, is critical in understanding semiconductors and their doping which alters electrical properties, primarily by introducing extra charge carriers.

How to write a balanced chemical equation from empirical formula?

Answers

Let's use the example: H2O --->  H2 + O2
We find how many elements of a product are on one side and how many elements on the other side.
Reactant: H=2 O=1
Product:   H=2 O=2
We need to make the same amount of hydrogen and oxegyn atoms on each side, regardless of how high the numbers are, and we do this by adding coefficients to the compounds.

Reactant: H=4 O=2
Product  : H=4 O=2
2 H2O--->   2 H2 + O2
Final answer:

To write a balanced chemical equation from an empirical formula, identify the reactant and products, write an unbalanced equation, balance the elements one by one, and make sure to use whole numbers. It's important to note that the final equation must reflect the law of conservation of matter.

Explanation:

To write a balanced chemical equation from an empirical formula, you need to follow a few steps:

Identify the empirical formula. Say, we have C₂H₆.Identify the reactant and products. In this case, we have O₂ as the reactant and H₂O and CO₂ as products.Set up an unbalanced equation: C₂H₆ + O₂ → H2O + CO2.Balance the elements one by one. Start with carbon (C): C₂H₆ + O₂ → 2CO2 + H2O; then balance the hydrogen (H): C₂H₆ + O₂ → 2CO2 + 3H2O.Finally, balance the oxygen (O) on both sides. This could result in a fraction (since there could be an odd number of oxygen atoms), but that's acceptable for intermediate steps: C₂H₆ + 7/2O₂ → 2CO2 + 3H2O.However, we generally prefer to use whole numbers, so if you do have fractions, multiply everything by 2: 2C₂H₆ + 7O₂ → 4CO2 + 6H2O.

This process ensures that the final balanced equation reflects the law of conservation of matter, where the numbers of each type of atom are equal on both sides of the equation.

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David observed properties of four different compounds, only one of which is an ionic compound. his observations are shown in the chart. which is most likely the ionic compound? w x y z

Answers

z is the answer to this question

Answer: the answer is Z

All the elements of a family in the periodic table have what feature in common?a)they all have similar chemical properties.b)they all have the same number of protons in the nucleus.c)they are all located in the same horizontal row or period.d)they all have the same number of electrons in the electron cloud.

Answers

Answer: D. They all have the same number of electrons in the electron cloud

A) They all have similar chemical properties.


Which element has a mass percent composition of 54.50% in vitamin c, c6h8o6?

Answers

Vitamin C has the formula C₆H₈O₆, it means there are 6 carbon, 8 hydrogen and 8 oxygen.
to find the mass percent composition of each element, we will divide the mass of element in the compound by total molar mass of the compound and then multiply it with 100..
Now, the molar mass of vitamin c =176.12g/mol
Molar mass of carbon in the compound = 12 x 6 =72
mass percent composition of carbon = 72/ 176.12 x100 = 0.4088 x 100 = 40.88%
Molar mass of hydrogen in the compound = 1.008 x 8 = 8.064
mass percent composition of hydrogen = 8.064/176.12 x 100 = 0.0458 x 100 = 4.58%
Molar mass of oxygen in the compound = 16 x 6 = 96
mass percent composition of oxygen = 96/176.12 x 100 = 0.5450 x 100 = 54.50%
Thus, the element is Oxygen which has a mass percent composition of 54.50% in vitamin C.

The element with a mass percent composition of 54.50% in vitamin C (C6H8O6) is Oxygen. This is determined by calculating the contribution of oxygen's mass relative to the total molecular mass. Therefore, oxygen constitutes approximately 54.50% of the mass in vitamin C.

The element with a mass percent composition of 54.50% in vitamin C (ascorbic acid) is Oxygen (O). To determine this, you would calculate the mass percent composition of each element in the compound.

Given the molecular formula of vitamin C is C6H8O6 and its molecular mass is 176 amu:

Oxygen's atomic mass is 16 amu.

The mass contribution of oxygen in C6H8O6 is

6 atoms x 16 amu/atom

= 96 amu.

The mass percent composition of oxygen is given by:

(96 amu / 176 amu) x 100%

≈ 54.55%.

This calculation shows that Oxygen accounts for about 54.50% of the mass in vitamin C.

Why is the parent rock a unique identifier for metamorphic rocks and not for igneous or sedimentary rocks?

Answers

The parent rock is a unique identifier for metamorphic rocks because these rocks are formed by the changes in the parent rock due to heat and pressure. These rocks are formed from the preexisting rocks that can be sedimentary rocks and igneous rocks. For example, metamorphosis of limestone makes marble which is a metamorphic rock. Identifying the parent rock is problematic because the parent rocks change a lot due to metamorphosis and only few minerals left can help in identification process.
Final answer:

The parent rock or protolith is key in identifying metamorphic rocks because it helps explain the mineral composition and textural changes that occur through the metamorphic process due to heat and pressure. This direct link between metamorphic rocks and their parent rock is not found in igneous or sedimentary rocks, making the parent rock a unique identifier for metamorphic types.

Explanation:

The concept of the parent rock, or protolith, is crucial in understanding metamorphic rocks because it represents the original, unmetamorphosed rock from which a metamorphic rock was formed. Unlike igneous or sedimentary rocks, metamorphic rocks undergo physical and sometimes chemical changes due to heat and pressure without melting, and these changes often result in patterns or orientations in the minerals, such as foliation.

The composition and texture of a metamorphic rock directly relate to its parent rock, providing clues to the conditions under which it formed. This unique relationship between metamorphic rocks and their parent rock allows geologists to determine the past conditions of the Earth's crust and understand the geological history more completely.

Overall, the identification of the parent rock is essential for classifying metamorphic rocks because it helps to understand the metamorphic processes that the rock has undergone and explains its current mineral composition and texture.

Which of the following would introduce bias into an experiment?

A. publishing your experimental results in a scientific journal
B. allowing other scientist to repeat and verify your experimental results
C. using a computer to record ans tore your data
D. discarding data that does not fit with your personal expectations

Answers

I believe it is A or D. since "Scientific bias is the assumption that a theory is true or false without evidence one way or another, or the attempt to dismiss or discourage research efforts to confirm or deny the theory "
D) because a bias opinion would be discarding other opinions you may not agree with

If an element contains 8 electrons how many electrons will be placed in the 2nd valence shell? 6 2 8 5 11

Answers

Any element that contains 8 electrons fas 6 in the second shell

Answer:

The correct option is 6

Explanation:

The first shell of an atom can contain a maximum of two electrons and must be completely filled (with the two electrons) before the next electron shell is considered for filling. The second electron shell can contain a maximum of eight electrons.

If an element has 8 electrons, 2 of this electrons will occupy/completely fill the first electron shell, while the second shell will only contain the remaining 6 electrons.

NOTE: A neutral atom of an element with 8 electrons is oxygen.

The number of protons in an atom’s nucleus determines its

atomic mass.
number of neutrons.
identity as an element.
total charge as an ion.

Answers

The answer to this question would be: identity as an element.

The number of protons is called atomic number unique for each element. That means there is only one element that has that number of protons, so it can be called as the identity of the element. Atomic mass is made from adding the total amount of proton with neutrons. The charge is made by subtracting the number of protons with the electrons.

What will be final temperature if you mix the 50.g of water at 0.0oc to 50.g of water at 100.0oc?

Answers

mass of water*specific heat of water(tf-0)=-mass of water(negative)*specific heat of water(tf-100)
That should do

Given:

Mass of water = 50 g

Temperature of cold water Tc= 0 C

Temperature of hot water Th= 100 C

To determine:

Final temperature Tf of water

Explanation:

Heat (Q) absorbed or evolved by a substance is given as-

Q = mc(Tf-Ti)

m = mass

c = specific heat

Tf and Ti are the final and initial temperatures

In this case:

Heat lost by hot water = Heat gained by cold water

-mc(Tf - 100 ) = mc(Tf-0)

-Tf + 100 = Tf

2Tf = 100, i.e. Tf = 50 C

Ans: the final temperature is 50 C



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