.0 carat is equal to 200 mg (0.200 g). if the density of a ruby is 4.02 g/cm3, what is the volume of a 1.00 carat ruby?

Answers

Answer 1

If the density of the ruby is 4.02 g/cm³, the volume of a 1.00 carat ruby is  0.049 cm³.

The density of the ruby = 4.02 g/cm³

The mass of the ruby = 1 carat

1 carat = 200 mg = 0.200 g

The mass of the ruby 0.200 g

The density is expressed as :

Density = mass / volume

The volume = mass / density

Volume = 0.200 / 4.02

Volume = 0.049 cm³

The volume of the ruby in mL = 0.049 mL.

Thus, the volume of the ruby is 0.049 mL in the 1 carat of the ruby.

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Related Questions

Describe the geologic events that occur at a divergent tectonic plate boundary and the process that causes these events.

Answers

Answer: A divergent boundary occurs when two tectonic plates move away from each other. Along these boundaries, earthquakes are common and magma (molten rock) rises from the Earth's mantle to the surface, solidifying to create new oceanic crust.

yes very good

properties are dependent on the amount of substance. an example is . properties are independent of the amount of substance. an example is .

Answers

A property known as an extensive property depends on the quantity of matter in a sample.

Intensive properties are independent of the amount of substance present.

What is substance?

A form of matter with predictable chemical composition and physical properties is referred to as a chemical substance. According to some references, a chemical substance cannot be physically divided into its component parts without rupturing chemical bonds.

Any substance that takes up space has mass, and is inert is said to be matter. The distinctive qualities that each substance possesses can be used to distinguish these substances from one another. Depending on how much of the substance is being described, these characteristics may or may not be affected.

The amount of the substance present has no bearing on the intensity of the properties. They could also be bulk properties. The trait remains constant. Intensive properties remain the same size. Intensive properties include things like density, temperature, pressure, and others.

The quantity of a substance affects its extensive properties. They are simple to recognize. Extensive properties' sizes change. It is calculable. Some examples of extensive properties are size, mass, length, and weight.

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In straight-chain alkanes, the carbon atoms on each end of the molecule always form bonds with atoms of hydrogen; the carbons within the molecule always form bonds with hydrogen atoms. A) 2; 2 B) 4; 4 C) 3; 2 D) 4; 2 E) 3; 3

Answers

In straight-chain alkanes, the carbon atoms on each end of the molecule always form bonds with atoms of hydrogen; the carbons within the molecule always form bonds with hydrogen atoms, 3; 2. so, option (c) is correct.

What is atoms ?

the smallest component of a substance that is resistant to chemical oxidation. Each atom's nucleus (centre) is composed of a proton (a positive particle) and a neutron (a neutral particle) (particles with no charge).

Negative electrons are present in the nucleus in large quantities. Atoms are indivisible particles that cannot be created or destroyed by chemical reactions. Atoms of an element have the same mass and chemical composition. Different elements have different atom masses and chemical properties.

What is molecules ?

Each molecule contains an individual number of atoms. Now a part of Molecule's expanding line of sleep necessities are pillows, sheets, and mattress toppers. The Molecule AirTEC Mattress Topper combines three layers of polyfoam, open-cell memory foam, and AirTEC foam to provide sleepers with a comfortable, cool sleeping surface.

Therefore, in straight-chain alkanes, the carbon atoms within the molecule always form bonds with hydrogen atoms, 3; and the carbon atoms on either end of the molecule always form bonds with hydrogen atoms, 2. The answer should be (c).

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A rock has a mass of 40 grams. When analyzed the rock is found to contain 10 grams of a radioactive material and 30 grams of a stable product. How many half-lives old is the rock?
please explain too :) i will give brainliest

Answers

Answer:

Explanation:

The half-life of a radioactive material is the time it takes for half of the material to decay. We can use this fact to determine how many half-lives old the rock is.

First, we need to find out how much of the radioactive material is left in the rock. We know that the rock has a mass of 40 grams, and 10 grams of that mass is the radioactive material. If we assume that all of the decay products (the stable product) are still in the rock, then the remaining mass of the radioactive material is:

10 grams * (1/2)^(number of half-lives)

where the factor (1/2) represents the fraction of the radioactive material that decays in each half-life.

We can rewrite this equation as:

(10 grams)/(40 grams) = (1/2)^(number of half-lives)

Solving for the number of half-lives, we get:

number of half-lives = log2(10/40) = log2(0.25) ≈ -2

This means that the rock is about 2 half-lives old. Since we can't have a negative number of half-lives, we can say that the rock is about 2 half-lives old or approximately 2 times the half-life of the radioactive material.

Answer:

The radioactive material in the rock undergoes radioactive decay, meaning that it spontaneously decays over time, transforming into another element and releasing radiation. The rate of decay is measured by the half-life, which is the amount of time it takes for half of the radioactive material to decay.


Since the rock contains 10 grams of radioactive material and 30 grams of stable product, we know that it originally contained a total of 40 grams of material. This means that half of the original material has decayed, since 20 grams of radioactive material would have decayed into 10 grams of stable product.


Since we know that one half-life has passed, we can use the formula N = N0(1/2)^(t/t1/2) to solve for t, the time that has passed in terms of the half-life. Here, N is the current amount of radioactive material, N0 is the original amount, t is the time that has passed, and t1/2 is the half-life.


Plugging in the values we know, we get:


10 = 40(1/2)^(t/t1/2)


Simplifying, we get:


1/4 = (1/2)^(t/t1/2)


Taking the logarithm of both sides, we get:


log(1/4) = (t/t1/2)log(1/2)


Solving for t/t1/2, we get:

t/t1/2 = log(1/4)/log(1/2) = 2

So, the rock is two half-lives old.

in a reaction, the concentration of a reactant was increased from 2.5 m to 7.5 m and the rate was observed to change from 1.30e-2 m/s to 1.17e-1 m/s. what is the order of the reactant?

Answers

In a reaction, the concentration of a reactant was increased from 2.5 m to 7.5 m and the rate was observed to change from 1.30e-2 m/s to 1.17e-1 m/s. 2 is the order of the reactant.

The rate law of a chemical reaction expresses the dependence of the reaction rate on the concentrations of the reactants. For a simple reaction involving only one reactant, the rate law has the form:[tex]rate = k[A]^n[/tex]

In this case, we have two sets of initial concentrations and rates:

Experiment 1:

[A] = 2.5 M

rate = 1.30 × [tex]10^-2 M/s[/tex]

Experiment 2:

[A] = 7.5 M

rate = 1.17 × [tex]10^-1 M/s[/tex]

Substituting the values from the experiments, we get:

[tex]1.17 × 10^-1 M/s / 1.30 × 10^-2 M/s = (7.5 M / 2.5 M)^n[/tex]

[tex]9 = 3^n[/tex]

Taking the logarithm of both sides, we get:

n = log(9) / log(3) = 2

Therefore, the order of the reaction with respect to the reactant is 2.

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any help with this please? it'd be great if the arrow chart was written on paper

Answers

Electron configuration of Cu - [Ar] 3d¹⁰ 4s¹

Electron configuration of F - [He] 2s2 2p5

Electron configuration of K - [Ar] 4s¹

What is the electronic configuration?

We have to note that the electronic configuration of the atom has to do with the way that electrons are arranged in the orbitals of the atom. We know that the electrons are arranged in orbitals and that the orbits as well as the orbitals are found to be at various energy levels.

The quantum numbers has to do with the numbers that can help us to describe the position of the electron that is present in the atom.

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If you take 40 milliliters of a 60% solution and add it to 100 milliliters of water. What is the concentration
and volume of the final solution?

Answers

1. The final volume of the resulting solution is 140 milliliters

2. The final concentration of the resulting solution is 17%

1. How do I determine the final volume?

The final volume of the resulting solution cvan be obtained as illustrated below:

Initial of volume solution (V₁) = 40 millilitersVolume of water = 100 millilitersFinal volume of solution (V₂) =?

Final volume of solution (V₂) = Initial volume + Volume of water

Final volume of solution (V₂) = 40 + 100

Final volume of solution (V₂) = 140 milliliters

Thus, the final volume of solution is 140 milliliters

2. How to determine the final concentration?

The final concentration of the solution can be obtained as follow:

Initial of volume solution (V₁) = 40 millilitersInitial concentration of solution (M₁) = 60%Final volume of solution (V₂) = 140 millilitersFinal concentration of solution (M₂) =?

M₁V₁ = M₂V₂

60 × 40 = M₂ × 140

Divide both side by 140

M₂ = (60 × 40) / 140

M₂ = 17%

Thus, the final concentration of the solution is 17%

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a standard airbag is fully inflate at 140 l. how much nan3 (in grams) is needed to fully inflate the bag? note: at room temperature, 1 mole of gas (any ideal gas) occupies approximately 24 l of volume.

Answers

Approximately 4.08 g of NaN3 is needed to fully inflate a 140 L airbag.

To calculate the amount of NaN3 needed to fully inflate an airbag with a volume of 140 L, we can use the Ideal Gas Law:

PV = nRT

Where P is the pressure, V is the volume, n is the number of moles of gas, R is the gas constant (8.31 J/mol*K), and T is the temperature (assumed to be at room temperature, approximately 298 K).

Given that one mole of gas at room temperature occupies approximately 24 L of volume, we can convert the volume of the airbag to moles:

n = V / 24 L/mol

Solving for n, we get:

n = (P * V) / (R * T)

n = (1 atm * 140 L) / (8.31 J/mol*K * 298 K)

The number of moles of NaN3 needed is approximately 0.0048 mol. To convert this to grams, we multiply by the molar mass of NaN3 (85 g/mol):

m = n * M

m = 0.0048 mol * 85 g/mol

The amount of NaN3 needed to fully inflate the airbag is approximately 4.08 g.

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would you expect beo to have the sodium chloride, zinc blende, or fluorite structure? based on your answer, determine (a) the lattice parameter; (b) the density; and (c) the packing factor

Answers

Berkelium oxide (BeO) has a hexagonal close-packed (HCP) crystal structure, similar to the fluorite structure.

The lattice parameter can be calculated using the formula for the HCP structure: a = 4R/√3, where R is the radius of the bekelium ion. The density of BeO can be determined using the formula: density = mass/volume, where the mass can be calculated based on the number of BeO molecules and their atomic masses and the volume can be calculated based on the lattice parameter. The packing factor is the ratio of the volume occupied by the ions to the total volume of the crystal structure and can be calculated based on the arrangement of ions in the HCP structure. Overall, to determine the lattice parameter, density, and packing factor of BeO, it is necessary to know the exact crystal structure and atomic arrangement of the material.

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A 0. 674M cobalt (II) chloride (CoCl2) solution is prepared with a total volume of 0. 0750L. The molecular weight of CoCl2 is 128. 9 g/mol. What mass of CoCl2 in grams is needed for this solution?

Answers

A 0. 674M cobalt (II) chloride (CoCl₂) solution is prepared with a total volume of 0. 0750L. The molecular weight of CoCl₂ is 128. 9 g/mol. 6.55 g of CoCl₂ in grams is needed for this solution

Given that

A 0. 674M cobalt (II) chloride (CoCl₂) solution is prepared with a total volume of 0. 0750L.  

And the molecular weight of CoCl₂ is 128. 9 g/mol. The mass of CoCl₂ in the solution is 6.55 grams.

Calculation of Mass of Cobalt (II) Chloride in Solution

To determine the mass of cobalt (II) chloride (CoCl₂) present in a 0.0750 liter solution with a concentration of 0.674 M, a few calculations must be performed.

Firstly, the moles of CoCl₂ can be found by multiplying the concentration by the volume. The concentration of 0.674 M means there are 0.674 moles per liter, so for the 0.0750 liter solution, there are

0.674 moles × 0.0750 L

= 0.0505 moles of CoCl₂.

Secondly, the molecular weight of CoCl₂ is 128.9 g/mol, which can be used to find the mass in grams by multiplying the moles of CoCl₂ by the molecular weight.

The final calculation is

0.0505 moles × 128.9 g/mol

= 6.55 g,

Meaning that the mass of CoCl₂ in the solution is 6.55 grams.

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a hydrogen nucleus, which has a charge e, is situated to the left of a carbon nucleus, which has a charge 6e. which statement is true?

Answers

The right response is B. The power of attraction between two charged particles is conversely relative to the square of the distance between them.

Since the hydrogen nucleus is nearer to the carbon nucleus than the other way around, the power experienced by the hydrogen nucleus is more prominent than that accomplished by the carbon nucleus. In this way, the extent of the power experienced by the hydrogen nucleus is higher than that of the carbon nucleus, and the heading of the power is towards the carbon.

This implies that the electrical power experienced by the hydrogen nucleus is to one side, and the extent is more prominent than the power applied to the carbon nucleus.

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The question is -

A hydrogen nucleus, which has a charge e, is situated to the left of a carbon nucleus which has a charge 6e. Which statement is true?

A) The electrical force experienced by the hydrogen nucleus is to the left, and the magnitude is equal to the force exerted on the carbon nucleus.

B) The electrical force experienced by the hydrogen nucleus is to the left, and the magnitude is greater than the force exerted on the carbon nucleus. C) The electrical force experienced by the hydrogen nucleus is to the left, and the magnitude is less than the force exerted on the carbon nucleus.

D) The electrical force experienced by the hydrogen nucleus is to the right, and the magnitude is equal to the force exerted on the carbon nucleus

cooking an egg is endothermic because the egg gains heat from the surrounding Formation of snow is exothermic because water loses heat to the surroundings wh becomes snow. Cooking an egg is exothermic because the egg loses heat to its surroundings.

Answers

Cooking an egg is endothermic because the egg gains heat from the surrounding and Formation of snow is exothermic because water loses heat to the surroundings wh becomes snow.

What is endothermic and exothermic ?

Exothermic processes generate heat, which raises the temperature of the surrounding environment. Endothermic processes absorb heat and cool the environment."

Simply put, endothermic reactions absorb energy from their surroundings in the form of heat. An exothermic reaction, on the other hand, releases energy into the system's surroundings. Photosynthesis is a well-known example of an endothermic chemical reaction.

Thus, Cooking an egg is an endothermic process.

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Your question is incomplete, most probably your question was

Which of the following are exothermic and endothermic ?

cooking an egg is endothermic because the egg gains heat from the surrounding Formation of snow is exothermic because water loses heat to the surroundings wh becomes snow. Cooking an egg is exothermic because the egg loses heat to its surroundings.

if 40.4 g ne, 12 g of he, and 83.8 g kr are in a container at a pressure of 950 mmhg, what is the partial pressure of the he?

Answers

Partial pressure of the He in a container at a pressure of 950mmHg is 475mmHg.

In a combination of gases, every constituent gas has a fractional strain which is the notional pressure of that constituent gas as though it alone involved the whole volume of the first blend at the equivalent temperature.[1] The complete tension of an ideal gas combination is the amount of the halfway tensions of the gases in the combination (Dalton's Regulation).

The partial pressure of a gas is a proportion of thermodynamic movement of the gas' particles. Gases break up, diffuse, and respond as per their fractional pressure however not as per their fixations in gas blends or fluids. This overall property of gases is likewise obvious in substance responses of gases in science. For instance, the essential measure of oxygen for human breath, and the sum that is poisonous, is set by the incomplete tension of oxygen alone.

Partial pressure=mole fraction amount ×total pressure.

So,mole fraction= [(12/4) / (12/4) + (40/20.179) + (83.8/83.798) ]

=>Partial pressure=3 / (3+2+1) ×950

=>Partial pressure=(3 ×950) / 6

=>Partial pressure=475mmHg.

Hence,partial pressure of the He is 475mmHg.

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does salicylic acid or benzoyl peroxide work better for cystic acne?

Answers

Salicylic acid by itself should effectively unclog your pores if you have blackheads and whiteheads. Choose benzoyl peroxide to stop outbreaks at the root if your acne frequently manifests as inflammatory papules and pustules. Start with salicylic acid for sensitive skin because it's less likely to irritate it.

What is salicylic acid?

Depending on the dose form and strength of the preparation, salicylic acid topical is used to treat a variety of skin conditions, including psoriasis, psoriasis of the skin and scalp, calluses, corns, common warts, and plantar warts.

What is the difference between benzoyl peroxide and salicylic acid?

Salicylic acid and benzoyl peroxide differ greatly in how they are used: While benzoyl peroxide truly destroys the bacteria that causes acne, salicylic acid purges whatever is hiding in your pores.

Salicylic acid opens pores and has a slight sloughing, exfoliating action, according to research on the chemical distinctions between these two acne-fighting ingredients. But because benzoyl peroxide has higher antioxidant and anti-microbial properties, it is more effective at curing acne.

Therefore, Salicylic acid or benzoyl peroxide work better for cystic acne is mentioned above.

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How can crystals form? Select all that apply.
when a gas turns into a liquid
when a liquid cools and solidifies
when a liquid evaporates and leaves a solid behind
when a mineral is mined from the Earth

Answers

Crystals form through the process of crystallization which occurs when a liquid cools and solidifies.

The correct option is B

What is the process of crystallization?

The formation of crystals is the process by which solid substances are removed from solutions. This technique is mostly used to separate a pure solid from the solution. There is a visible change.

A supersaturated solution nucleates the solute in the process of crystallization, which is a technique for turning a solution into a solid under the control of chemical equilibrium. The result is the formation of uniform particles with clearly defined morphologies that easily dissolve again.

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determine the number of molecules present in 3.50 mol of nitrogen dioxide and the number of atoms of oxygen.

Answers

The number of molecules present in 3.50 mol of nitrogen dioxide and number of atoms of oxygen are 2.108 x 10²⁴ molecules and 4.2161 x 10²⁴ molecules respectively.

Molecular formula of Nitrogen dioxide

= NO₂

Avogadro's number, defined as the number of units per mole of a substance (defined as molecular weight (g)), 6.02214076 × 10²³.

Using Avogadro's number, the number of atoms or molecules in one mole of a substance is 6.023 × 10²³. That is one mole NO₂ contains 6.023 × 10²³ molecules.

Number of NO₂ molecules in 3.50 mol

= 3.5 x 6.023 × 10²³

= 2.108 x 10²⁴ Molecules

Number of O₂ Molecules = 3.5 x 2 x 6.023 × 10²³

= 4.2161 x 10²⁴ Molecules

Oxygen will be two times more than NO₂ because each NO₂ molecule has 2 oxygen atoms.

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the ground state of a neutral atom is group of answer choices a pulverized state the most ionized state the state of lowest possible energy the true nature of the atom

Answers

The ground state of a neutral atom is the state of lowest possible energy. Option C is correct.

In physics, the ground state of a system refers to the state with the lowest possible energy. In the case of a neutral atom, the ground state is the state in which all of the electrons are in their lowest possible energy levels, and there are no ions present in the atom. The ground state is considered to be the most stable and "at rest" state of an atom.

It is important to note that the ground state of an atom can change as it gains or loses electrons or as it experiences changes in temperature or pressure, which can cause the electrons to move to different energy levels.

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--The given question is incomplete, the complete question is

"The ground state of a neutral atom; is group of answer choices. A) a pulverized state B) the most ionized state C) the state of lowest possible energy D) the true nature of the atom"--

why did we define the system (in the previous slide) as the dissolved ions and their respective solvation shells?

Answers

Any chemical compound or biomolecule that makes up the solute has an interface with the solvent known as a solvation shell or sheath. A hydration shell or sphere is what is created when water serves as the solvent. The hydration number of a solute is the sum of the number of solvent molecules surrounding each unit of the solute.

What are ions?

An atom or molecule with a net electrical charge is known as an ion. Conventionally, the charge of an electron is thought to be negative; this charge is equal to and opposite to the charge of a proton, which is thought to be positive.

The negative oxygen atoms of water are drawn to the Na+ ions. The positive hydrogen atoms of water are drawn to the Cl ions. A water-molecule solvation shell forms around the ions.

The stability of the system increases with the distance that the opposing charges can travel. The ions are therefore stabilized by solvation.

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A student placed a straw into the water and blew bubbles into the water for 30 seconds. The pH of the glass of
tested again.
ater was
Use the pH scale below to determine the pH value of the water in this test. Record the value. Also, determine whether the
pH stayed the same, became more acidic, or became more alkaline compared to the first test.

Answers

Answer:

the water would most likely become more acidic.

Explanation:

this is due to carbon dioxide being slightly acidic, it dissolves into the water inturn decreasing the pH.


i also posted this on your question a minute ago before you posted it in the right catagory.

an atom has an atomic mass of 74, and contains 42 neutrons. how many protons does this atom have, and what element is it?

Answers

The atom has 32 protons.

If an atom has an atomic mass of 74 and contains 42 neutrons, we can use the following equation to calculate the number of protons:

Protons + neutrons = atomic mass

In this case, we have:

Protons + 42 = 74

Solving for the number of protons, we get:

Protons = 74 - 42 = 32

So, the atom has 32 protons.

The atomic number of an element is equal to the number of protons in its nucleus. So, the atomic number of this atom is 32. The element with an atomic number of 32 is sulfur (S).

Sulfur (S) is a non-metal element found in nature in its elemental form as well as in various compounds. It is an essential element for life and is widely used in the production of various products, including fertilizers, dyes, detergents, and rubber.

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The summer solstice occurs during which months in the Northern and Southern Hemispheres?

A. June in the Northern Hemisphere; December in the Southern Hemisphere
B. both occur in June
C. December in the Northern Hemisphere; June in the Southern Hemisphere
D. both occur in December

Answers

Answer:

The summer solstice occurs in June in the Northern Hemisphere and December in the Southern Hemisphere.

what is the boiling point of a solution prepared by dissolving 120 grams of nacl in 500 grams of water

Answers

The boiling point of a solution prepared by dissolving 120 grams of sodium chloride (NaCl) in 500 grams of water will be higher than the boiling point of pure water.

The boiling point elevation of a solution depends on its concentration, which can be expressed as the molality (moles of solute per kilogram of solvent). To calculate the molality, we need to know the number of moles of NaCl in 120 grams. The molar mass of NaCl is 58.44 g/mol, so the number of moles of NaCl in 120 grams is 120 g / 58.44 g/mol = 2.06 moles.

The molality of the solution is therefore 2.06 moles / (500 g / 1000 g/kg) = 0.0412 moles/kg.

The boiling point elevation, ΔT, of a solution can be calculated using the formula ΔT = Kb x molality, where Kb is the molal boiling point elevation constant. The value of Kb for water is 0.52 °C/m.

So, the boiling point elevation of the solution is ΔT = 0.52 °C/m x 0.0412 moles/kg = 0.0212 °C.

The boiling point of pure water is 100 °C at standard atmospheric pressure, so the boiling point of the solution will be 100 °C + 0.0212 °C = 100.0212 °C.

Note that this is an approximation, as the boiling point elevation is not a linear function of molality, and the actual value will depend on various factors such as the pressure and temperature.

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can there be an ionic bonding between 2 metals or 2 non-metals?

Answers

Answer:

No

Explanation:

Ionic bonding is where an one atom wants to gain e- while the other wants to lose e-

Such as NaCl.

why does sudan iii dye turn orange when it detects lipids?

Answers

One of the four main macromolecules necessary for an individual's growth, development, metabolism, and nutrition are lipids.

Which four primary macromolecules does the body require?

Proteins, lipids, carbohydrates, and nucleic acids make up the four main groups of biological macromolecules; each is a vital part of the cell and has a variety of jobs to do. These molecules make up most of the dry mass of a cell when combined (recall that water makes up the majority of its complete mass).

The cell membrane, which shields the cell, maintains the movement of the component across it, and gives the cell a framework, is formed in large part by lipids. The digestive systems, including the liver, process lipids, which constitute an important component of the diet.

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Full Question = Why did lipids make Sudan IV have a red-orange line at the top of the test tube?

Complete the map by filling in the missing concepts. Atoms brain pop

Answers

Nucleus is surrounded by a cloud of electrons.

Nucleus contains protons.

Protons are attracted to electrons.

Electrons have negative electrical charge.

Protons have positive electrical charge.

What are the particles present in an atom?

An atom is the smallest particle of an element that can take part in a chemical reaction.

Atoms of elements are composed of three sub-atomic particles, namely:

Protons -found in the nucleus and are positively chargedElectrons - surround the nucleus and are negatively chargedNeutrons - found in the nucleus and have a neutral charge.

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Write a procedure for making the solutions for the three compounds listed
above. Then make a procedure for mixing the compounds. Remember you want to
NOT mix them all together but rather have each mix with the other two
compounds in separate containers. The following is a list of materials available for
the lab.
Calcium chloride sodium carbonate copper sulfate
Graduated cylinders plastic solution containers
test tubes
tap water
scale

Answers

When calcium chloride is react with sodium carbonate there is formation of precipitate of calcium carbonate. The reaction is as follows:

CaCl2(aq]+Na2CO3(aq] → CaCO3(s]⏐↓+2NaCl(aq]

What is precipitation ?

The term precipitation is defined as the process of conversion of a solution into solid by converting the substance into insoluble form or by making the solution a super saturated one.

Take two containers for Calcium chloride and sodium carbonate, measure with the help of graduated cylinders, then take these two compounds in a separate test tube and add tap water in it.

Thus, When calcium chloride is react with sodium carbonate there is formation of precipitate of calcium carbonate.

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Use your answers in Part A and Part B to compare the differences in temperatures between the two sites.

Answers

Answer:

uhhh

Explanation:

uhhh

iron is used to make utensils.which properties of iron enable it to make utensil possible?​

Answers

Answer:

Good heat conductivity, low chemical reactivity, strength and durability are the qualities of Iron that make it a good material for making utensils.

Explanation:

Some materials are great in some areas but not so good in others. Iron is a great compromise. It has very good heat transfer for nice even heating and is tough.

Are cations and anions only in ionic compounds?

Answers

Yes, cations and anions are only found in ionic compounds.

An ionic compound is a type of chemical compound made up of cations (positively-charged ions) and anions (negatively-charged ions) held together by strong electrostatic forces called ionic bonds.Ions are the building blocks of ionic compounds, which are kept together by electrostatic forces.They are formed by the chemical bonding of a metal and a nonmetal. Ionic compounds are typically composed of positively charged cations (usually metals) and negatively charged anions (usually nonmetals). Examples of common ionic compounds include sodium chloride (NaCl), magnesium oxide (MgO), and calcium carbonate (CaCO3). An anion is an ion with a negative charge. Anions are formed when atoms gain electrons.A cation is an ion with a positive charge. Cations are formed when atoms lose electrons.

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why is it called a diffusion equation ? why is it referred to as a minority carrier equation ? why this equation is valid only under low-level injection conditions?

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A diffusion equation is called so because it describes the diffusion of charge carriers in a material. The equation models the way in which the concentration of charge carriers (such as electrons or holes) changes over time and space in response to a concentration gradient.

Why is it referred to as a minority carrier equation ?

The minority carrier equation refers to the equation specifically for the case where the minority carrier species (i.e., the species with a lower concentration) is being considered. The equation is used to describe the diffusion of the minority carriers in a material, such as a semiconductor.

The diffusion equation is valid only under low-level injection conditions because at high injection levels, the carrier concentration becomes so large that the diffusion process is no longer described accurately by the simple diffusion equation. In this case, other effects such as recombination and generation become important, and the equation must be modified to account for these additional processes.

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