What is the difference between applied and pure chemistry?

Answers

Answer 1
I hope this helps.
have a great day.
What Is The Difference Between Applied And Pure Chemistry?

Related Questions

Scale test mineral 10 diamond 9 corundum 8 topaz 7 quartz 6 feldspar 5 apatite 4 fluorite 3 calcite 2 gypsum 1 talc mineral h. density, g/cc tellurium 2 2.07 galena 2.5 7.58 anglesite 2.5 - 3 6.4 chalcocite 2.5 - 3 5.6 copper 2.5 - 3 9.0 gold 2.5 - 3 19.3 silver 2.5 - 3 10.5 arsenic 3.5 5.7 barite 3 - 3.5 4.4 dolomite 3.5 - 4 2.9 platinum 4.5 21.5 willemite 5.5 4.0 magnetite 6 5.18 pyrite 6 - 6.5 5.02 pyrolusite 6 - 6.5 5.0 cassiterite 6.5 6.9 diamond 10 3.52 volume of water displaced = 0.175 l mass: g density. g/cm³ hardness: = - determine the unknown mineral. unknown mineral:

Answers

Answer:

Mass: 981.0 g

Density: 5.61 g/cm^3

Hardness: 2.5-3

Unknown Mineral: chalcocite

Final answer:

The Mohs scale of mineral hardness is a qualitative scale used to determine the hardness of minerals.

Explanation:

The Mohs scale of mineral hardness is a qualitative scale developed by Frederich Mohs in 1822. It is used to determine the hardness of minerals based on their ability to resist scratching or abrasion. The scale consists of 10 minerals, with diamond being the hardest mineral with a rating of 10. By comparing the unknown mineral's hardness to the minerals on the scale, we can identify the unknown mineral.

In a salt solution, what happens to sodium and chloride ions?

Answers

In a salt solution (a solution of water (H2O) and Salt, chemical formula NaCl), the positively charged Hydrogen atoms from water form bonds with the negatively charged Chloride atoms of Salt (which is the formulate NaCl), and the negatively charged oxygen atom of water (one atom per water molecule) form a bond with the positively charged Sodium ions (Na) of salt.

Final answer:

In a salt solution, sodium and chloride ions dissociate from each other and become electrolytes, capable of conducting an electrical current in solution.

Explanation:

In a salt solution, sodium and chloride ions dissociate from each other. When table salt (NaCl) is mixed in water, the positive and negative regions on the water molecule attract the negative chloride and positive sodium ions, pulling them away from each other. These ions are electrolytes, capable of conducting an electrical current in solution.

In addition to atp, what are the 2 other end products of glycolysis?
a. h2o and pyruvate
b. co2 and nadh
c. co2 and ethyl alcohol
d. co2 and h2o
e. nadh and pyruvate

Answers

The end products of glycolysis  are two Pyruvate, two NADH, and two ATP..
so from above
E is the answer

How many total atoms are in one molecule of nickel hydroxide, Ni(OH)2?

1
3
4
or 5?

Answers

answer is five atoms

the answer is 5 atoms

Which would not be be an appropriate procedure for the observation of a living paramecium under a compound light microscope?

Answers

covering the specimen with a securely- placed cover slip. hope this helps 

Covering the specimen with a securely held cover slip where with drop slides the cover slip is not used but with conventional microscope slides which will make viewing more difficult.

What is Microscope?

Optical microscope is also known as light microscope which is defined as the type of microscope that typically uses visible light and a system of lenses to generate magnified images of small objects. The term compound refers to the use of more than one lens in a microscope where compound microscope is one of the types of optical microscope while the other type of optical microscope is a simple microscope.

This instrument is used as a laboratory instrument, which is used to examine objects that are too small to be visible to the uncovered eye. Microscopy is define as the science of examining small objects and structures using a microscope, where the word microscopic means invisible to the eye unless aided by a microscope.

Thus, covering the specimen with a securely held cover slip where with drop slides the cover slip is not used but with conventional microscope slides which will make viewing more difficult.

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Which atom in the ground state requires the least amount of energy to remove its valence electron?

Answers

rubidium atom is your answer!
Hope this helps!          

Atoms of dissimilar element can not have same atomic number because only similar  atoms combine to form element. Therefore, rubidium atom  requires the least amount of energy to remove its valence electron.

What is element?

Element generally consist of atoms or we can atoms combine to form element. Atoms of an element is always same, means all the features of all atoms of one type of element is same. Two or more than two atoms with dissimilar physical or chemical properties can not combine together to form an element.

For neutral atoms, ionization energy is positive, indicating that ionization is indeed an endothermic process. The higher the ionization energy of an atom, roughly speaking, the nearer the outer electrons are to nucleus. Rubidium atom  requires the least amount of energy to remove its valence electron.

Therefore, rubidium atom  requires the least amount of energy to remove its valence electron.

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Occasionally, deposition causes the main channel of a stream to divide into several smaller channels called _____.


deltas

oxbow lakes

meanders

distributaries

Answers

distributaries ithink

ANSWER: D) distributaries

EXPLANATION: When a deposition causes the main channel of a stream to divide into several smaller channel it is called a distributary. They are a common feature of river deltas and is also known as river bifurcation. A distributary generally occurs near a lake or ocean and can also occur near a confluence of large stream. This is popularly also known as arm or channel.

During heating of the hydrate, loss due to splattering can cause a serious error. if a significant amount of sample is lost, will the calculated waters of hydration be too high or too low? explain.

Answers

Final answer:

A significant loss of sample during the heating of a hydrate will result in the calculated waters of hydration being too low. Heating involves breaking intermolecular forces to cause water to evaporate, hence an incorrectly lesser mass used in calculations due to sample splatter will lead to a lower value of water of hydration.

Explanation:

If a significant amount of the hydrate sample is lost during heating, the calculated waters of hydration will be too low. This is because the loss of the hydrate due to splattering during the heating process results in a smaller-than-actual mass being used in the calculations for the determination of waters of hydration. To calculate waters of hydration, the mass difference between the unheated and heated samples is divided by the molecular weight of water. A lost sample will cause a smaller mass difference, thus leading to a lower calculated value of water hydration.

Heating a hydrate involves breaking of the intermolecular forces between the water molecules and the ionic compound, causing the water to evaporate, hence it requires a significant amount of heat. If during this process, the sample splatters, the mass measured after heating will be less than expected. This is why a larger sample size and gentle heating procedures are preferred to minimize this error.

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How many protons, neutrons, and electrons are contained in uranium-238?

Answers

It has 92 protons, 92 electrons, and 238 — 92 : 146 neutrons.

Myriah wants to use dimensional analysis to find out how many centimeters (cm) are in 1.4 meters (m).

Which of these equalities will be useful for this calculation?
2.54 cm = 1 in.
1 m = 39.37 in.
1 cm = 10 mm
100 cm = 1 m

Answers

1400 centimeters in 1.4 millimeters

Answer:

D: 100 cm = 1 m

Explanation:

she needs to know how many cm are in a meter

Which has the greater mass? 1 l copper or 1 l silver?

Answers

SILVER!!!!!!!!!! ITS SILVER ITS HEAVY

What are valence electrons and why are they so important in chemistry?

Answers

Valence electrons is an electron that can participate in the formation of a chemical bond.Also, valence electrons have the ability to absord or release energy in the form of a photon. Valence electrons are in the energy level that is farthest aways from the nucleus. The valence electrons are the ones, that in a chemical reaction, are gained, lost or shared.

Valence electrons are termed to be the electrons that are located at the outermost shell of an atom.

The number of valence electrons for an atomic element can be determined by the group into which the atomic element falls in the periodic table with the exception of transition metals located between group 3 - group 12.

Valence electrons are important in chemistry for the determination of the formation of chemical bonding between atoms because they help to explain information about the properties of the atom such as:

electronegativityionization energyelectron affinity

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Is liquid starch with water a suspension, colloid, or solution?

Answers

liquid with water is a suspension

Sodium metal reacts with water to form aqueous sodium hydroxide and hydrogen gas. which equation below best describes the balanced equation for this reaction? na + h2o → naoh (aq) + h2 (g) 2na + 2h2o → 2naoh (aq) + h2 (g) na + h2o → naoh (aq) + h (g) 2na + h2o → na2oh (aq) + h (g) s + h2o → soh (aq) + h (g)

Answers

Final answer:

The balanced equation for the reaction of sodium metal with water is 2Na (s) + 2H₂O (l) → 2NaOH (aq) + H₂ (g), where sodium and water react to form sodium hydroxide and hydrogen gas.

Explanation:

The balanced chemical equation for the reaction of sodium metal with water to form aqueous sodium hydroxide and hydrogen gas is:

2Na (s) + 2H₂O (l) → 2NaOH (aq) + H₂ (g)

This equation indicates that two moles of solid sodium (Na) react with two moles of liquid water (H₂O) to produce two moles of aqueous sodium hydroxide (NaOH) and one mole of molecular hydrogen gas (H₂). It is important to note that hydrogen gas is always produced as diatomic molecules, hence H₂(g), not H(g).

Upon dissolving in water, sodium hydroxide disassociates into sodium ions (Na+) and hydroxide ions (OH−), increasing the concentration of OH− ions in the solution, making it a strong base.

An atom with an atomic number of 12 and a mass number of 25 can best be described by which of these?
a.an atom that contains 12 protons and 13 neutrons.
b.an atom that contains 13 protons and 12 neutrons. eliminate
c.an atom that contains 12 protons and 25 neutrons.
d.an atom that contains 25 protons and 12 neutrons.

Answers

A is the correct answer

The atom with atomic number 12 and mass number 25 contains 12 protons and 13 neutrons, making it most likely an isotope of magnesium.

An atom with an atomic number of 12 and a mass number of 25 can best be described by option (a): an atom that contains 12 protons and 13 neutrons. The atomic number represents the number of protons in the nucleus of the atom, which is 12 in this case. Since the mass number is the sum of protons and neutrons, we subtract the number of protons (12) from the mass number (25) to find that there are 13 neutrons. The atom described is likely an isotope of magnesium, as magnesium has an atomic number of 12.

Is gasoline a heterogeneous mixture or a homogeneous mixture?

Answers

Gasoline is a mixture of compounds called hydrocarbons (compounds of hydrogen and carbon). It is obtained by purifying crude oil by fractional distillation. Gasoline is most commonly referred to as a mixture of compounds, therefore it is a mixture. Gasoline is composed of hydrocarbons combined with different concentrations of ethanol. Pure substances can be either elements or compounds. Mixtures can be eitherhomogeneous or heterogeneous. Another term for a homogeneous mixture is a solution. ... Gasoline is thus a blend of different compounds, so it is a mixture.

Describe the spectrum you would observe for the absorption spectrum of elemental hydrogen gas

Answers

The emission spectrum for hydrogen gas are red, blue-green, blue-violet and violet so I believe the absorption spectrum would be the same and these are given off when a glass that has hydrogen gas is passed through with an electric current at low pressure and it gives off blue light which when passed through a prism is broken down into the above light colors.

Dark lines are observed in the absorption spectrum of hydrogen atom.

Further explanation:

Electronic transition:

An electronic transition is a process that occurs when an electron undergoes emission or absorption from one energy level to another energy level.

When an electron undergoes a transition from lower energy level to the higher energy level then it requires energy to complete the process. This transition is an absorption process.

When an electron undergoes a transition from higher energy level to lower energy level then it emits energy to complete the process. This transition is an emission process.

A hydrogen atom has one proton and one electron. This single electron will be present in specific energy level. The atomic number of hydrogen atom is 1 so it has only one shell and every orbital in this shell have the same energy. The range of energy levels starts from n =1 and can reach up to infinity.

The formula to calculate the energy levels for hydrogen is as follows:

[tex]{E_n}=-\frac{{{R_H}}}{{{n^2}}}[/tex]                                                                                 ...... (1)

Here,

[tex]{E_n}[/tex]  is the energy of the nth orbital.

n is the principal quantum number.

[tex]{R_H}[/tex]  is the Rydberg constant.

The energy that is associated with the transitions is the energy difference between the two levels in which the transition takes place.

The formula to calculate the difference between two energy levels of the hydrogen atom is,

[tex]\Delta E={R_{\text{H}}}\left({\frac{1}{{{{\left({{{\text{n}}_{\text{i}}}} \right)}^2}}}-\frac{1}{{{{\left({{{\text{n}}_{\text{f}}}}\right)}^2}}}}\right)[/tex]

Where,

[tex]\Delta E[/tex] is the energy difference between two energy levels.

[tex]{R_{\text{H}}}[/tex] is a Rydberg constant.

[tex]{{\text{n}}_{\text{i}}}[/tex] is the initial energy level of transition.

[tex]{{\text{n}}_{\text{f}}}[/tex] is the final energy level of transition.

The gaseous hydrogen molecule dissociates when electric discharge through it. The lines that are produced due to the emission from [tex]{{\text{n}}_{\text{i}}}[/tex] equal to 2 appear in the emission spectrum.

The emission spectrum of hydrogen shows 4 lines. One line is in the higher range that is [tex]656\;{\text{nm}}[/tex] and the other three lines in the range of  [tex]400 - 500\;{\text{nm}}[/tex] .

Since hydrogen is present in the first shell, it will always absorb some amount of energy to reach the higher levels. So absorption spectrum is observed in hydrogen atom. Absorbed photons show black lines. The absorbed photons show black lines in the spectrum. In such photons, energies of particular wavelengths are absorbed, but these are not visible and therefore absorption spectrum is just the opposite of emission spectrum.

Learn more:

1. Component of John Dalton’s atomic theory: https://brainly.com/question/2357175

2. Basis of investigation for the scientists: https://brainly.com/question/158048

Answer details:

Grade: Senior School

Subject: Chemistry

Chapter: Atomic structure

Keywords: transition, hydrogen atom, Rydberg constant, absorption spectrum, electronic transition, initial energy level, final energy level, RH, ni, nf, energy difference between two levels.

Density is given in ____. a. Pa/cm3 c. g/s2 b. N/m2 d. g/cm3 Please select the best answer from the choices provided A B C D

Answers

Density is given in Mass/Volume so the answer is D
Indeed Density (d) is in fact given in
[tex] g \div {cm}^{3} [/tex]
Answer [D].

Since density (d) is a measurement of a substance's mass per volume, or d = m/v, we can see that units would be in g, kg, etc for mass and mL, L, etc for volume. And then where does
[tex] {cm}^{3} [/tex]
come from?? Well 1 mL of water occupies a cylindrical space of 1 cubic cm.

Chemical formula for copper I acetate

Answers

Cu(CH3COO)2 is your formula
Glad to help

Final answer:

The chemical formula for copper(I) acetate is CuC₂H₃O₂, formed by combining copper with a +1 oxidation state and the acetate ion CH₃COO- in a 1:1 ratio.

Explanation:

The chemical formula for copper(I) acetate is CuC₂H₃O₂. In this compound, copper(I) has a +1 oxidation state and is paired with the acetate ion, whose formula is CH₃COO- (also written as C₂H₃O₂-). Since the charge of the acetate ion is -1 and copper(I) has a +1 charge, they combine in a 1:1 ratio to form copper(I) acetate. It's important to note the difference between copper(I) and copper(II) compounds, as the latter has an oxidation state of +2 and would form different compounds, such as copper(II) sulfate (CuSO₄).

Which kind of nuclear decay does not alter the identity of the atom?

Answers

Hmmmmmm, Gamma Radiation 
The answer would be 
Gamma Radiation

Use the atomic weight in the periodic table to determine the equivalent weight of magnesium.

Answers

The atomic weight of Magnesium (Mg) is about 24.305 g / mol.

Magnesium when forms an ion can donate two electrons hence forming Mg2+. Since it can donate two electrons, therefore it has an equivalence of 2 equivalence per mole, therefore:

equivalent weight = (24.305 g / mol) * (1 mol / 2 equivalence)

equivalent weight = 12.1525 g / equivalence

Which graph BEST represents the motion of an airplane flying with equal amounts of thrust and air resistance?

Answers

we gotta see the graph bud

Answer:

A) thrust equal to its resistance.

Explanation:

This might help.

Very reactive, nonmetals with seven valence electrons is in group ____.

Answers

elements in group 17 called halogens

Suppose 2.145 g of magnesium is heated in air. what is the theoretical yield of megnesium oxide that should be produced?

Answers

The Theoretical Yield of Magnesium Oxide is 3.55 grams 

The Theoretical Yield of Magnesium Oxide is 3.55 grams

What is theoretical yield?The theoretical yield is the maximum mass of a product that can be produced in a chemical process. It can be calculated using the balanced chemical equation. the product's relative formula mass, as well as the mass and mass-relative formula mass of the limiting reactantIn chemistry, yield, also known as reaction yield, is the number of moles of a product produced in relation to the amount of reactant consumed during a chemical reaction.Theoretical yields are the amounts of products calculated from the complete reaction of the limiting reagent, whereas actual yields are the amounts actually produced of a product.

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what are some observable properties that can be used to identify these metals?

Answers

Measure with a scale. Hoop this Helps!!!

The reaction of 11.9 g of chcl3 with excess chlorine produced 11.2 g of ccl4, carbon tetrachloride: what is the percent yield?

Answers

First, we need to calculate the theoretical yield as follows:
The balanced chemical reaction is:
2CHCl3 +2Cl2 ----> 2CCl4 +2HCl
molar mass of CHCl3 = 119.378 grams
molar mass of CCl4 = 153.823 grams
number of moles = mass / molar mass = 11.9 / 119.378 = 0.0997 moles
From the balanced equation, 2 moles of CHCl3 produce 2 moles of CCl4.
Therefore, 0.0997 moles of CHCl4 will produce 0.0997 moles of CCl4.
number of moles = mass / molar mass
mass (theoretical) = molar mass * number of moles
mass (theoretical) = 153.823 * 0.0997 = 15.336 grams

Now, we will calculate the percent yield as follows:
% yield = (actual mass / theoretical mass) * 100
% yield = (11.2 / 15.336) * 100 = 73.03%
73.0% First, lookup the atomic weights of the elements involved Atomic weight carbon = 12.0107 Atomic weight chlorine = 35.453 Atomic weight hydrogen = 1.00794 Calculate the molar masses. Molar mass CHCl3 = 12.0107 + 1.00794 + 3 * 35.453 = 119.37764 Molar mass CCl4 = 12.0107 + 4 * 35.453 = 153.8227 Calculate the number of moles we have Moles CHCl3 = 11.9 g / 119.37764 g/mol = 0.099683659 mol Moles CCl4 = 11.2 g / 153.8227 g/mol = 0.0728111 mol Since with 100% yield, each molecule of CHCl3 should produce one molecule of CCl4, divide the actual moles produced by the number of moles expected for 100% yield. So 0.0728111 / 0.099683659 = 0.730421623 = 73.0421623 % Rounding to 3 significant figures gives 73.0%

The formula weight of calcium nitrate (ca(no3)2), rounded to one decimal place, is ________ amu. the formula weight of calcium nitrate (ca(no3)2), rounded to one decimal place, is ________ amu. 204.2 150.1 116.1 164.0 102.1

Answers

164.0 First we must look up the atomic weight of all elements in calcium nitrate Ca: 40.078 N: 14.0067 O: 15.999 Then we compute the mass of the nitrate polyatomic ion which contains one nitrogen and 3 oxygen atoms. 14.0067+3*15.999 = 62.0037 For the entire molecule we calculate the weight of two nitrates and one calcium 2 * 62.0037 + 40.078 = 164.0152 rounding to the tenths place results in 164.0

Final answer:

The formula weight of calcium nitrate, Ca(NO3)2, is calculated by summing the weights of one calcium atom, two nitrogen atoms, and six oxygen atoms, resulting in a weight of 164.08 amu which, rounded to one decimal place, is 164.1 amu.

Explanation:

The formula weight of calcium nitrate, Ca(NO3)2, is calculated by adding up the atomic weights of all the atoms in its formula. The calcium atom contributes 40.08 amu, each nitrogen atom contributes 14.00 amu, and each oxygen atom contributes 16.00 amu. Since there are two nitrate ions in the formula (indicated by the subscript 2), you must account for two nitrogen atoms and six oxygen atoms. The detailed calculation is as follows:

Calcium (Ca): 1 × 40.08 amu = 40.08 amuNitrogen (N): 2 × 14.00 amu = 28.00 amuOxygen (O): 6 × 16.00 amu = 96.00 amu

Adding these contributions together gives:

40.08 amu (Ca) + 28.00 amu (N) + 96.00 amu (O) = 164.08 amu

Therefore, when rounded to one decimal place, the formula weight of calcium nitrate is 164.1 amu.

True or false atoms are made up of tiny particles called molecules true or false

Answers

False, Molecules are made of atoms and atoms are made of quarks.

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

Answers

Final answer:

When barium acetate, a strong electrolyte, is dissolved in water, it dissociates entirely into its ions. The reaction is: Ba(C2H3O2)2 (s) -> Ba2+ (aq) + 2 C2H3O2- (aq). The ions separate due to water molecules surrounding and solvating them, thus reducing strong electrostatic forces.

Explanation:

The compound barium acetate is a strong electrolyte, which means it dissociates into its ions when dissolved in water. The equation for this reaction is: Ba(C2H3O2)2 (s) -> Ba2+ (aq) + 2 C2H3O2- (aq). This process is known as dissociation.

In this case, barium acetate is a soluble salt and thus it dissociates completely in water. This dissociation process reduces the strong electrostatic forces between ions, with water molecules surrounding and solvating the ions.

For context, barium is a heavier alkaline earth metal that reacts vigorously with water. However, many alkaline earth metal salts, unlike barium acetate, are insoluble in water due to their high lattice energies.

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Final answer:

Solid barium acetate dissociates into barium ions and acetate ions in water as it is a strong electrolyte. The chemical equation for this process is: Ba(C2H3O2)2 (s) → Ba^2+ (aq) + 2 C2H3O2^- (aq).

Explanation:

The reaction when solid barium acetate is put into water involves the compound dissociating into its constituent ions because it is a strong electrolyte. The chemical equation representing this process is:

Ba(C2H3O2)2 (s) → Ba^2+ (aq) + 2 C2H3O2^- (aq)

This indicates that barium acetate separates into barium ions (Ba^2+) and acetate ions (C2H3O2^-) when it dissolves in water.

What happens when you add phenolphthalein to water?

Answers

Phenolphthalein is used to tell the acidity (how alkaline) a substance is, with water it should have no reaction (such as the Phenolphthalein changing color) unless the water is polluted
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