The smooth ER differs from the rough ER in that:
A. The rough ER contains no ribosomes, the smooth ER contains ribosomes.
B. The smooth ER produces carbohydrates and lipids, rough ER produces proteins.
C. The smooth ER produces proteins, rough ER produces lipids.
D. The rough ER is the site of mRNA transcription, smooth ER is the site of protein translation.

Answers

Answer 1

The smooth ER differs from the rough ER in that the smooth ER produces carbohydrates and lipids, whereas the rough ER produces proteins. (Option B)

What distinguishes the smooth Endoplasmic reticulum from the rough Endoplasmic reticulum?

The manufacture, folding, quality assurance, and shipment of some proteins take place in the rough ER, which is dotted with millions of membrane-bound ribosomes.

The production of steroid hormones, lipid (fat) synthesis, and metabolism are all heavily correlated with SER. It also serves as a detoxifier. The production of proteins is greatly aided by the rough endoplasmic reticulum.

The fundamental distinction between the rough endoplasmic reticulum and the smooth endoplasmic reticulum is that the RER contains ribosomes, which give it its rough appearance and enable protein synthesis.

Ribosomes cover the rough endoplasmic reticulum, which is important in the synthesis and creation of proteins.

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Related Questions

In argon Fluoride laser used in some reflective eye surgeries of electro magnetic radiation at a wavelength of 193.3nm what is the frequency of the a A
RF lasers radiation what is the
energy of a single quantum of the radiation

Answers

In argon Fluoride laser used in some reflective eye surgeries of electro magnetic radiation at a wavelength of 193.3nm  then the frequency is 1.72×10⁶Hz

Electromagnetic radiation is the is the form of energy that propagated both as electrical and magnetic waves traveling in packets of energy called photons

Here given data is

Wavelength = 193.3nm

Velocity = 3×10⁸m/sec

We have to find frequency = ?

Then the formula is V = λf

So rearrange this formula

f = V/ λ

f = 3×10⁸m/sec/193.3nm

f = 1.72×10⁶Hz

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Why is it important for the body's different parts to be at specific pH levels?

Answers

Different organs function at their optimal level of pH. For example, the enzyme pepsin requires low pH to act and break down food, while the enzymes in intestine require high pH or alkaline environment to function. Similarly, any increase or decrease in the blood pH can lead to several disorders.

Answer:

Our bodies live and die at a cellular level and the cells must maintain alkalinity in order to function and stay alive. An acidic state causes lack of oxygen at a cellular level. A pH of below 7.4 is sub-optimal providing the perfect environment for bacteria, mold and viruses to grow

Explanation:

Compare the behavior of the mixture of gases with each solitary gas in the presence of flame.

Answers

The heat made by a mixture of gases is less than that produced by solitary gases of hydrogen or oxygen.

How are the gases behave in the mixture?

The property becomes a solution of a homogeneous mixture. Some of the effects of gas mixtures are easy to control. if we know the composition of the gases in the mix. In gas mixtures, all components in the gas phase can be used separately. The atmosphere is a mixture of different gases. The part, usually present in solution, first has to be atomized in a flame. Premixed combustion flame, a mixture of fuel and oxidant gas, and diffusion. compared to liquid streams, is relatively simple because the bulk characterization of a single phase is implicit. However, when gas. The heat produced by a mixture of gases is less than that produced by solitary gases. of hydrogen or oxygen.

so we can conclude that the flame appears yellow if there are impurities in the air whereas a pure hydrogen gas flame will not produce any smoke.

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Write a chemical equation for the reaction of CO2 and limewater (Ca(OH)2). Write a physical description of the products formed.

Answers

The balanced reaction equation between carbon dioxide and  lime water is shown in the image attached to this answer.

What is a reaction?

The term reaction has to do with the combination of two or more substances in order to yield new substance. Let us note that the substances on the left hand side are called the reactants while the substances on the right hand side are called the products.

In this case, we are trying to write an equation for the combination of carbon dioxide and lime water. We know that the product that is formed in this reaction is calcium carbonate.

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C2H5OH(l) + 3O2(g) → 2CO2(g) + 3H2O(g)

Which type of reaction is this?

Answers

Answer: Combustion

Explanation:

Please help with this question

Answers

Answer:

I am guessig B

Explanation:

Answer:bro

Explanation: you cant cheat on test


Classify each compound/molecule based on its ability to form a "Strong Electrolyte", "Weak Electrolyte", or "Nonelectrolyte" aqueous solution.
© (NH)2CO (Urea)

Answers

Urea is a nonelectrolyte.

What is a nonelectrolyte?

A material that conducts electricity poorly and does not easily ionize when dissolved or melted.

Chemical substances that don't conduct electricity in any condition are called non-electrolytes. As a result, current does not flow through the solution since it does not add ions to it. Naphthalene, latex, and sugar solution are a few examples of covalent compounds that are not electrolytes. An object is an electrolyte if it is electrically conductive when it is liquid or dissolved. It is a nonelectrolyte if it does not conduct electricity while it is a liquid. In an aqueous solution, nonelectrolytes—such as sugar, alcohol, and many organic compounds—occur as uncharged molecules and do not conduct electrical current.

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A titration procedure between H2SO4 and LiOH required a volume of 15.50 ml of 0.1000 M LIOH solution to reach the end point. If this titration utilized 20.00 ml. of H2SO4
what is the molarity of this H2SO4 solution?
Express your answer using four sig figs

Answers

The molarity of the 20 mL H₂SO₄ solution required for the titration is 0.0388 M

How do I determine the molarity of H₂SO₄

We can obtain the molarity of the H₂SO₄ solution by doing the following:

H₂SO₄ + 2LiOH —> Li₂SO₄ + 2H₂O

The mole ratio of the acid and base obtained from the equation is:

The mole ratio of the acid, H₂SO₄ (nA) = 1The mole ratio of the base, LiOH (nB) = 2

From the question given, we obtained the following:

Volume of base, LiOH (Vb) = 15.50 mLMolarity of base, LiOH (Mb) = 0.1000 MVolume of acid, H₂SO₄ (Va) = 20 mLMolarity of acid, H₂SO₄ (Ma) =?

MaVa / MbVb = nA / nB

(Ma × 20) / (0.1 × 15.5) = 1 / 2

(Ma × 20) / 1.55 = 1 / 2

Cross multiply

Ma × 20 × 2 = 1.55

Ma × 40 = 1.55

Divide both side by 40

Ma = 1.55 / 40

Ma = 0.0388 M

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I need help with this!

Answers

Answer:

1. Fe: 26, 26, 30

2. Rh: 45, 45, 58

3. Sr: 38, 38, 50

4. Li: 3, 3, 4

5. Bi: 83, 83, 126

Explanation:

Protons = electrons = atomic number

Atomic mass - atomic number = neutron

Butane gas (C4H10) burns in oxygen gas to produce carbon dioxide gas and water vapor. Balance the equation for this reaction (in the lowest multiple integers).What are the formulas for the reactants and products?

Answers

The balanced chemical equation for the reaction between butane gas and oxygen gas is as follows: 2C₄H₁₀ + 13O₂ → 8CO₂ + 10H₂O

What is combustion reaction?

Combustion reaction is a process wherein a fuel is combined with oxygen, usually at high temperature, releasing heat.

According to this question, a combustion reaction occurs between butane gas and oxygen gas to form carbon dioxide and water vapor.

2C₄H₁₀ + 13O₂ → 8CO₂ + 10H₂O

The formula of the reactants of this combustion reaction are as follows; C₄H₁₀ and O₂ while the formula of the products are as follows; CO₂ and H₂O.

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Which one of the following gas samples occupies the largest volume at 745 mm Hg and 44 °C? EXPLAIN.

a) 16 g methane
b) 32 g oxygen
c) 38 g fluorine
d) they all occupy the same volume

Answers

From the calculations, we can see that the methane gas, oxygen gas and fluorine gas all have the same volume.

What is the largest volume?

Now we know that we could be able to obtain the volume in each case by the use of the idea gas equation. We know that the temperature is  44 °C or 317 K and the pressure is 745 mm Hg or 0.98 atm.

Now;

For methane;

n = 16 g/16 g/mol = 1 mole

V = nRT/P

V = 1 * 0.082 * 317/0.98

= 26.5 L

For oxygen;

n = 32 g/32 g/mol = 1 mole

V = nRT/P

V = 1 * 0.082 * 317/0.98

= 26.5 L

For fluorine;

n = 38 g/38 g/mol = 1 mole

V = nRT/P

V = 1 * 0.082 * 317/0.98

= 26.5 L

Hence, they all occupy the same volume

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how many molecules O2 has in 32 oxygen?​

Answers

Answer:

One mole of oxygen gas, which has the formula O2, has a mass of 32 g and contains 6.02 X 1023 molecules of oxygen but 12.04 X 1023 (2 X 6.02 X 1023) atoms, because each molecule of oxygen contains two oxygen atoms.

An unknown substance has a specific heat capacity of 2.22 J/g °C. If 92.3 grams are heated with 1,760.0 joules of energy, what will the change in temperature be?​

Answers

An unknown substance has a specific heat capacity of 2.22 J/g °C. If 92.3 grams are heated with 1,760.0 joules of energy the change in temperature be will be 360°C

Specific heat is defined by the amount of heat needed to raise the temperature of 1 gram of a substance 1 degree celsius (°C)

Here given data is unknown substance

Specific heat capacity means Q =  2.22 J/g °C

Mass = 92.3 grams and

C = 1,760.0 joules and

We have to calculate change in temperature = ?

So the formula is Q = mc×ΔT

2.22 J/g °C = 92.3 ×1,760.0 joules×ΔT

ΔT = 360°C

So the change in temperature be360°C

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86. Which electron configuration notation describes an
atom in an excited state?
A. [Ar]4s23d¹04p²
B. [Ne]3s23p5
C. [Kr]5s²4d¹
D. [Ar]4s²3d84p¹

Answers

Electron configuration notation describes an atom in an excited state as [Ar]4s²3d84p¹. Option D.

An electron is in an excited state when it temporarily occupies a higher energy state than its ground state. Electrons are excited when additional energy is supplied. When it absorbs a photon or packet of light or collides with a nearby atom or particle.

When an electron absorbs energy and shifts from a lower energy orbital to a higher energy atomic orbital the atom assumes an exciting electronic configuration. Usually an unstable electronic configuration. As a result, the electron returns to the ground state and releases a certain amount of energy. Ground state means the state with the lowest energy. When an electron absorbs energy and pops into an outer orbit, this state is called an excited state.

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How many moles of N are in 0.179 g of N₂O?

Answers

0.008134 moles of N are in 0.179 g of N₂O.

1mole = 6.022 ×1023 number of moles of atoms or molecules or ions

Number of moles = Mass /molar mass

Number of moles of N2O = 0.179g/44.014g/mol = 0.004067mol

one mole of N2O contains two moles of N

Number of moles of N = 2× 0.004067 = 0.008134  moles.

What is  mole fraction ?

The mole fraction can be calculated by dividing the number of moles of one factor in the reaction by  the total number of moles of all impurities in the  solution. It should be noted that the sum of the mole fractions of all  components of the solution must be equal to one.

A mole fraction is a unit of attention.  the relative amount of solute and solvent in the reaction is measured as a mole fraction and reported. Mole fraction is the wide range of moles of a given substance in solution divided by  the total range of moles.

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A mineral is dropped into a weak acid and bubbles form.
What type of property does this demonstrate?

Answers

The test consists of putting a drop of a weak solution of hydrochloric acid on a mineral sample. If the acid reacts with the mineral, carbon dioxide gas will form and bubble out of the acid. The bubbles show that the mineral is a carbonate. Some minerals have a property known as fluorescence (flu-REHS-uhns).


Interpret the following equation for a chemical reaction using the coefficients given: N2(g) + 2 O2 (g) = 2 NO2 (g)

Answers

Interpretation of equation for a chemical reaction using the coefficients

On the particulate level: 1 molecule of N₂(g) reacts with 1 molecule of 2O₂(g) to form 2 molecules of NO₂(g).

On the molar level: 1 mole of N₂(g) reacts with 1 mole of 2O₂(g) to form 2 moles of NO₂(g).

What is a chemical reaction?

chemical reaction: a process in which one or more substances—the reactants—are changed into one or more additional substances—the products. Chemical elements and compounds are both substances. To produce different substances as products, a chemical reaction rearranges the atoms that make up the reactants. Technology, culture, and life itself are all influenced by chemical reactions.

Numerous activities that involve chemical reactions have been known and used for thousands of years, including burning fuels, smelting iron, creating glass and pottery, brewing beer, and producing wine and cheese.

Numerous intricate processes that take place in all living systems, as well as the Earth's geology, atmosphere, and oceans, involve chemical reactions.

We have given the following chemical reactions

N₂(g) + 2O₂(g) → 2NO₂(g)

The changes in two levels, the particulate level and the molar level, can be  interpret using the balanced equation.

On the particulate level, we always consider discrete molecules.

On the particulate level: 1 molecule of N₂(g) reacts with 1 molecule of 2O₂(g) to form 2 molecules of NO₂(g).

We think in terms of moles On the molar level, considering 1 mole of particles = 6.02 × 10²³ particles.

On the molar level: 1 mole of N₂(g) reacts with 1 mole of 2O₂(g) to form 2 moles of NO₂(g).

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Bart and Homer are building a mini nuclear reactor to put in the backyard (don't try this at home). They need rectangles of metal for their reactor casing. Bart and Homer each measure the perfect sized sheet of metal, but with different tape measures. Homer records 2.6m X 4.4m X 3.0m. Bart records 2.65m X 4.38m X 3.05m.

After taking sig figs into account, what will be the difference in their volume measurements in m3?

(Hint: remember you need to do the correct type of sig fig/rounding every time you hit the equal sign)

The difference is ______ m3

Answers

The difference in volume measured by Bart and Homer is equal to 1.08 m³.

What is the volume of the rectangular prism?

The volume of a rectangular prism is calculated by multiplying the length, breadth, and height of the rectangle. A prism consists of 2 parallel rectangular bases and four rectangular faces.

It contains six flat rectangular faces and all the angles between faces are right-angled.

The volume of a rectangular prism = l × b × h

Where “b” is the base length “l” is the base width and “h” is the height of the rectangular prism.

If the nuclear reactor is made from a rectangular sheet then we can consider the metal sheet as a rectangular prism.

The Homer's volume of metal sheet =  2.6m × 4.4m × 3.0m = 34.32 m³

The Bart's volume of metal sheet =   2.65m × 4.38m × 3.05m = 35.40 m³

The difference between Bart's volume and  Homer's volume is :

= 35.40 m³ - 34.32 m³

= 1.08 m³

Therefore, the difference between the volume of the metal sheet measured by Bert and Homer is 1.08m³.

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look at the picture

Answers

The different types of neon with varied numbers of neutrons are best referred to as isotopes.

What are isotopes?

In chemistry, isotopes are atoms of the same elements. These atoms have the same number of protons in their nuclei. Thus, they have the same atomic number.

However, isotopes of the same elements do not have the same number of neutrons in their nuclei. Thus, isotopes have the same number of protons but different mass numbers because of the difference in the number of neutrons.

Now consider different neon atoms with 10, 11, and 12 neutrons. These atoms are best described as isotopes of neon.

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A weather balloon contains 14.0 L of helium at a pressure of 95.5 kPa and a temperature of 12.0°C. If this had been stored in a 1.50-L cylinder at 21.0°C, what must the pressure in the cylinder have been?

Answers

The pressure in the cylinder must have been 919.5 kPa.

What is the pressure in the cylinder?

The pressure in the cylinder is calculated by applying general gas equation as follows;

P₁V₁/T₁ = P₂V₂/T₂

where;

P₁ is the initial pressure of the cylinderT₁ is the initial temperature of the cylinderV₁ is the initial volume of the cylinderP₂ is the final pressure of the cylinderT₂ is the final temperature of the cylinderV₂ is the final volume of the cylinder

P₂ = (P₁V₁T₂/T₁V₂)

The initial temperature of the cylinder = 12⁰C = 285 K

The final temperature of the cylinder = 21⁰C = 294 K

P₂ = (95.5 x 14 x 294/285 x 1.5)

P₂ = 919.5 kPa

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Why do you think the temperature does not change much during a phase change? If possible, discuss your answer with your classmates and teacher

Answers

There's no increase in the kinetic energies of the particles, and hence no rise in temperature, because the energy required for phase shifts is employed to break bonds.

Briefing :

If the pressure around a solid, liquid, or gas stays constant throughout a phase shift, the temperature will not change. In other words, once a liquid hits its boiling point, the temperature won't rise any further until the entire volume of the liquid has transformed into a gas.

How temperature and energy during a phase change are correlated?

As a solid transforms into a liquid during a phase change, its temperature stays constant because the heat energy is converted to potential energy. Similarly, when heat is supplied to a liquid, the temperature rises as the molecules once more move more quickly.

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Balance the equation KO2(s)+CO2(g)→K2CO3(s)+O2(g)

Answers

The balanced equation is

4 KO2(s) + 2 CO2(g) = 2 K2CO3(s) + 3 O2(g).

What is the are balanced equation?

The law of conservation of mass states that the mass of the reactants and products of a chemical reaction should be equal. The amount of atoms for each element doesn't really increase as a consequence of the chemical reaction. Thus, the chemical equation illustrating the chemical process must be balanced. A chemical equation is said to be balanced when the number of atoms involved on the reactants and products sides are equal.

Here are the steps we need to do in order to balance an equation:

Each element's atoms in the reactants and products should be counted.Use coefficients and add them before the compounds as necessary

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Calculate how many grams of Fe2O3 (molar mass 159.70 g/mol) are formed when 16.7 g of Fr react completely with O2.4 Fe + 3 O2—> 2 Fe2O3

Answers

The first step to solve this question is to convert the given amount of grams of Fe to moles using its molecular weight.

[tex]16.7gFe\cdot\frac{mol}{55.845gFe}=0.3molFe[/tex]

According to the given reaction, 4 moles of Fe produce 2 moles of Fe2O3. Use this ratio to find how many moles of Fe2O3 are formed:

[tex]0.3molFe\cdot\frac{2molFe_2O_3}{4molFe}=0.15molFe_2O_3[/tex]

Convert this amount of moles to grams using Fe2O3 molar mass:

[tex]0.15molFe_2O_3\cdot\frac{159.70g}{molFe_2O_3}=23.9g[/tex]

It means that 23.9 grams of Fe2O3 are formed.

Each copper(II) sulfate unit is associated with five water molecules in crystalline copper(II) sulfate pentahydrate
(CuSO4 ⋅ 5H2O). When this compound is heated in air above 100oC, it loses the water molecules and also its blue color:
CuSO4 ⋅ 5H2O → CuSO4 + 5H2O

If 9.60 g of CuSO4 are left after heating 15.01 g of the blue compound, calculate the number of moles of water originally
present in the compound.

Answers

Number of moles of water originally present in the compound is 0.060 mol

Mole is the SI unit of amount of substance of a specified elementary entity

Here given reaction is

CuSO₄ ⋅ 5H₂O → CuSO₄ + 5H₂O

And given data is  CuSO₄ =  9.60 g

So we have to find number of mole of water originally present in the compound = ?

So number of mole = mass of substance/mass of one mole

Number of mole = 9.60 g/159.6

Number of mole = 0.060 mol

Water originally present in the compound is 0.060 mol

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Concentrated nitric acid, HNO3, is 16.0 mol dm–3. What volume would you need to prepare 100 cm3 of 0.50 mol dm–3 HNO3?

Answers

The question requires us to calculate the volume of concentrated HNO3 solution (concentration = 16.0 mol/dm^3) to prepare 100 cm^3 of a 0.50 mol/dm^3 HNO3 solution.

We need to calculate the volume necessary from a concentrated solution to prepare a more dilluted solution. The number of moles of HNO3 in the solutions will not change, thus we can say:

[tex]n_1=n_2[/tex]

where n is the number of moles of HNO3 and 1 and 2 refers to the initial solution and final solution, respectively.

The number of moles in a solution can be calculated as it follows:

[tex]C=\frac{n}{V}\to n=C\times V[/tex]

where C is the concentration and V is the volume of the solution.

We can combine these two equations to have the following expression:

[tex]n_1=n_2\to C_1\times V_1=C_2\times V_2[/tex]

With this expression, we can use the values given by the question to calculated the volume of the concentrated solution (V1) necessary to prepare a more dilluted solution:

[tex]\begin{gathered} C_1\times V_1=C_2\times V_2\to(16.0\frac{mol}{dm^3})\times V_1=(0.50\frac{mol}{dm^3})\times(100cm^3) \\ V_1=\frac{(0.50\text{ mol/dm}^3)\times(100cm^3)}{(16.0\text{ mol/dm}^3)}=3.12cm^3 \end{gathered}[/tex]

Therefore, the volume necessary of concentrated HNO3 to prepare 100 cm^3 of 0.50 mol/dm^3 HNO3 solution is 3.12 cm^3.

) Describe five mechanisms that promote aggregation in soils. ​

Answers

Answer:

wetting and drying

cultivation

freezing and thawing

particle size

Earthworm

A weather balloon filled with helium has a volume of 125 ft³ at launch, where the temperature is 27 C. When the
balloon reaches an altitude of 45,000 meters where the temperature is -73C, its volume has increased to 94,000 ft³.
Assuming the atmospheric pressure was 755 mmHg at launch, what is the pressure (in mmHg) at 45,000 m?

Answers

The pressure (in mmHg) at 45,000 m, given it was 755 mmHg at launch is 0.669 mmHg

How to determine the pressure (in mmHg) at 45,000 m

The folloeing data were obtained from the question:

Initial volume (V₁) = 125 ft³Initial temperature (T₁) = 27 °C = 27 + 273 = 300 K Initial pressure (P₁) = 755 mmHgNew temperature (T₂) = -73 °C = -73 + 273 = 200 KNew volume (V₂) = 94000 ft³New pressure (P₂) = ?

The new pressure of the gas at 45000 m can be obtained by using the combined gas equation as illustrated below:

P₁V₁ / T₁ = P₂V₂ / T₂

(755 × 125) / 300 = (P₂ × 94000) / 200

Cross multiply

P₂ × 94000 × 300 = 755 × 125 × 200

P₂ × 28200000 = 18875000

Divide both sides by 28200000

P₂ = 18875000 / 28200000

P₂ = 0.669 mmHg

From the calculation made above, we can conclude that the pressure at 45000 m is 0.669 mmHg

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A pycnometer is a glass flask with a tight fitting glass stopper that can be used to determine the density of an insoluble solid by measuring the volume of water ejected out of the pycnometer when sample of the solid is placed in it. Determine the density in g/cm³ of an unknown metal alloy sample from the following measurements. Assume the density of water is 1.000 g/cm³.
Mass of clean pycnometer = 25.151 g
Mass of clean pycnometer plus water = 42.481 g
Mass of clean pycnometer plus metal sample = 39.605 g
Mass of clean pycnometer plus metal plus water = 54.265 g (after ejected water is dried from the outside surface)

Answers

The density in g/cm³ of an unknown metal alloy sample is 11.784g.

What does density mean?

Mass per unit volume is the definition of density for a material. The ratio of mass to volume, or mass per unit volume, is what is meant by density. It gauges the amount of "stuff" contained within an object in relation to its volume (cubic meter or cubic centimeter). The degree to which matter is packed together firmly is fundamentally measured by density. The Greek scholar Archimedes is credited with discovering the principle of density. If you know the formula and are familiar with the relevant units, you can calculate the principle of density with ease. The formula for determining density is to take an object's mass (m) and divide it by its volume (v): = m / v. Density is typically denoted by the Greek symbol "."

The SI unit for density is the kilogram per cubic meter (kg/m3). centimeter (g/cm3).

Mass of clean pycnometer = 25.151 g

Mass of clean pycnometer plus water = 42.481 g

Mass of clean pycnometer plus metal sample = 39.605 g

Mass of clean pycnometer plus metal plus water = 54.265 g

54.265 g - 42.481 g

= 11.784 g

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Copper metal has a density of 8.96 G/cm^3. What volume (in cm) does a 26.0 g piece of Cu occupy?

Answers

The volume (in cm) does a 26.0 g piece of Cu is 2.90 cm³.

Density is the substance's mass in keeping with a unit of volume. The image most often used for density is ρ, despite the fact that the Latin letter D also can be used. Mathematically, density is defined as mass divided by volume.

Mass, extent, and density are three of an object's maximum simple residences. Mass is how heavy something is, quantity tells you how big it is, and density is mass divided through volume. although mass and extent are houses you deal with each day, the concept of density is a little much less obvious and takes a cautious idea.

The components for density are the mass of an object divided by means of its volume. In equation shape, it is d = m/v, in which d is the density, m is the mass and v is the volume of the object. the standard devices are kg/m³.

Density = mass / volume

Volume = mass/density

             = 26/8.96

             = 2.90 cm³

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A 8.54 g solid sample of sodium hydroxide is dissolved in 111.5 g of water in a coffee cup calorimeter. By how many degrees will the temperature of the solution rise? The heat of solution for solid sodium hydroxide is 44.5 kJ/mol.

Answers

Based on the heat of solution, the increase in temperature rise when an 8.54 g solid sample of sodium hydroxide is dissolved in 111.5 g of water in a coffee cup calorimeter is 95.48 K.

What is the temperature rise when an 8.54 g solid sample of sodium hydroxide is dissolved in 111.5 g of water in a coffee cup calorimeter?

The increase in temperature rise when an 8.54 g solid sample of sodium hydroxide is dissolved in 111.5 g of water in a coffee cup calorimeter is determined using the formula below:

ΔH = m * c * ΔT

mass of water = 111.5 g

c = 4.18 J/g.K

Heat of solution, ΔH = 44.5 kJ/mol

ΔT = ?

Mole of NaOH in 8.54 g NaOH = 8.54/40

Mole of NaOH in 8.54 g NaOH= 0.2135 mol of NaOH

Solving for ΔT;

44.5 kJ/mol = 111.5 * 4.18 * ΔT

44.5 kJ/mol = 466.07 * ΔT

ΔT = 44.5 / 466.07

ΔT = 95.48 K

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