What happens when you add phenolphthalein to water?

Answers

Answer 1
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

Related Questions

How many milliliters of 1.50 m koh solution are needed to provide 0.113 mol of koh?

Answers

 (0.113 mol) / (1.50 mol/L) = 0.0753 L = 75.3 mL

Why are tin granules used instead of just a piece of tin?

Answers

The reason why Tin granules is mostly used or preferred than just a piece of Tin because a piece of Tin is plainly metal, in which this will be difficult in having it to be oxidized when it is exposed or in the air rather than Tin granules.

Answer:

To increase the surface area of reaction.

Explanation:

The tiny granules are used as they increase the surface-area to volume ratio. Smaller granules have a higher surface area to volume ratio. In a chemical reaction, it means that the reaction increases as there is more particle to particle reaction.

Hence the granules are preferred to solids.

Which statements correctly describe compounds? Check all that apply.

-Compounds can be broken down into simpler substances by chemical means.
-Each compound is composed of one type of molecule.
-Compounds can be broken down into simpler substances by physical means.
-Each compound is composed of one type of atom.
-Each compound is composed of two or more types of atoms.
-Compounds cannot be broken down into simpler substances by chemical means.

Answers

Compounds can be broken down into simpler substances by chemical means.

Each compound is composed of two or more types of atoms

In essence, compounds are chemicals that are composed of two or more atoms or elements. Compounds or molecules have a specific chemical formula, and have a definite and constant proportion of constituents.

Answer:

Compounds can be broken down into simpler substances by chemical means.

Each compound is composed of two or more types of atoms

Explanation:

im doing a 50 question quiz and this is my answer

Is adding hot cocoa to hot water a chemical or physical change?

Answers

Adding hot cocoa to hot water would be a chemical change

Adding hot cocoa to water is a physical change because it involves combining substances without changing their chemical compositions.

Adding hot cocoa to hot water is considered a physical change. When you mix hot cocoa powder with hot water, the hot cocoa dissolves and the two substances combine, but this process does not result in new chemical substances being formed. Just like other physical changes such as the melting of ice or the dissolving of sugar in water, the composition of the resulting mixture is still a combination of water and cocoa particles.

In contrast, a chemical change involves a substance transforming into a new substance with a different chemical composition, as exemplified by iron rusting (Fe + O₂ → Fe₂O₃) or the burning of gasoline.

A student cleaned a crucible with hcl. after pouring the hcl into the waste container, the crucible was neither rinsed with water nor dried before the student added the nahco3-nacl mixture. the crucible contained some residual hcl. how would this affect the calculated percentage of nahco3 in the mixture

Answers

The calculated percentage of NaHCO3 will be lower than it should be. The HCl left in the crucible will react with the NaHCO3. The formula is HCl + NaHCO3 = NaCl + H2O + CO2 The key thing to note is that some of the NaHCO3 will be converted to NaCl so it will look like the original concentration of NaHCO3 is lower than it should be.

Presence of residual HCl will react with [tex]NaHCO_3[/tex], reducing its amount and thus lower the calculated percentage of [tex]NaHCO_3[/tex] in the mixture.

If a student cleaned a crucible with HCl and then added a [tex]NaHCO_3[/tex]-NaCl mixture without rinsing or drying it, this would affect the calculated percentage of [tex]NaHCO_3[/tex] in the mixture due to the reaction between the residual HCl and [tex]NaHCO_3[/tex]. Specifically, HCl is an acid which would react with [tex]NaHCO_3[/tex], a base, to produce NaCl, [tex]CO_2[/tex], and [tex]H_2O[/tex].

[tex]NaHCO_3[/tex] (s) + HCl (aq) → NaCl (aq) + [tex]CO_2[/tex] (g) + [tex]H_2O[/tex] (l)

This reaction would decrease the amount of [tex]NaHCO_3[/tex] in the crucible, leading to a lower calculated percentage of [tex]NaHCO_3[/tex] in the mixture than actually present. This is because the [tex]CO_2[/tex] produced escapes as a gas, reducing the mass that is attributed to [tex]NaHCO_3[/tex].

Use quantum numbers to represent the locations of electrons.

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Thank you, I really need this, Seriously if you know this then please be a good person and answer it.

There is a clear difference between a Person Who Knows it then a person who doesn't know it

Giving out 16 pts for this Question being Answer in the next Couple of Hours before its 4:15 P.M Tomorrow for My Oral Discussion with my Teacher.

Answers

The quantum numbers used to refer to the outermost valence electrons of the Carbon (C) atom, which are located in the 2p atomic orbital, are; n = 2 (2ndelectron shell), ℓ = 1 (p orbital subshell), mℓ = 1, 0 or −1, ms = ½ (parallel spins).

pleaseeeeee helpppp with a right answer

Answers

answer is the last one, it will not ionize, it already has an octet of electrons in it's valance shell

What does conserving mass mean in a chemical equation?

Answers

The law of conservation of mass states that mass or matter cannot be created or destroyed, only transferred or recombined.
For chemical equations, this law means that each element must be accounted for equally both for reactants and products. So the same numbers of each atom must match on each side, hence the necessity for balancing the chemical equation accurately. This created a field of chemistry called Stoichiometry, which accounts for the conservation of matter throughout chemical reactions and processes.

Conserving mass in a chemical reaction means the atoms of each type should be the same on both the reactant and the product side.

Further explanation:

Balanced chemical reaction:

The chemical reaction that contains an equal number of atoms of the different elements in the reactant as well as in the product side is known as a balanced chemical reaction. The chemical equation is required to be balanced to follow the Law of conservation of mass.

Law of conservation of mass:

According to this law, the mass of an isolated system can neither be created nor be destroyed in any chemical reaction. The mass of reactants and the products should be equal in accordance with this law. In other words, the number of atoms of each type should be same on both sides of the chemical reaction. The reactant is the substance that undergoes a change in itself in a chemical reaction whereas the product is the one that is formed as a result of the chemical reaction.

For example, the balanced chemical reaction between [tex]{{\text{P}}_{\text{4}}}[/tex] and [tex]{\text{C}}{{\text{l}}_{\text{2}}}[/tex] occurs as follows:

[tex]{{\text{P}}_4} + 10{\text{C}}{{\text{l}}_2} \to 4{\text{PC}}{{\text{l}}_5}[/tex]

Here,

[tex]{{\text{P}}_{\text{4}}}[/tex] and [tex]{\text{C}}{{\text{l}}_{\text{2}}}[/tex] are the reactants.

[tex]{\text{PC}}{{\text{l}}_5}[/tex] is the product.

In the above reaction, the number of potassium atoms on both reactant and product side is 4 while the number of chlorine atoms on both sides is 20. So Law of conservation of mass is followed.

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Answer details:

Grade: High School

Subject: Chemistry

Chapter: Basic concepts of chemistry

Keywords: balanced chemical reaction, law of conservation of mass, reactant, product, P4, Cl2, PCl5, 10 Cl2, 4 PCl5, atoms, same.

Which one of the quantum numbers does not result from the solution of the schrodinger equation?

Answers

The spin quantum number does not result from the solution of the Schrodinger equation.

Schrodinger equation solutions provide the principal, orbital and magnetic quantum number. However, since the spin quantum number is not dependent on any other quantum number, therefore, it is not provided from the solution.

Spin quantum number describes the direction of the electron spin.

What is the ph of a solution with hydrogen ion concentration of 0.001m?

Answers

Find the pH using the concentration of hydrogen ions [H+] of 0.001M (molarity) by taking the negative log of the value:

-log[H+]=pH
-log[0.001] = pH
-log[1x10^-3]=pH
3=pH

Which intermolecular force of attraction is the strongest between molecules of hcl?

Answers

There are two kinds of forces, or attractions, that operate in a molecule so hydrogen would be the strongest attraction

What are 8 elements that are the major components to organic compounds in the environment?

Answers

I know four elements 

Oxygen 
Carbon
Hydrogen
Chlorine 

What are the charges and relative masses of the three main subatomic particles?

Answers

Proton:
    Charge= +1         Relative Mass=1
Neutron:
    Charge= 0          Relative Mass=1
Electron:
    Charge= -1         Relative Mass= 1/1836(negligible) 
Final answer:

The three main subatomic particles in an atom are protons, neutrons, and electrons. Protons have a mass of 1.0073 amu and a charge of +1, neutrons have a mass of 1.0087 and no charge, and electrons have a mass of 0.00055 amu and a charge of -1. The sum of the particles' masses doesn't equal an atom's actual mass which is termed as a mass defect in nuclear chemistry.

Explanation:

The question refers to the basic properties of three primary subatomic particles found in an atom: protons, neutrons, and electrons. A proton has a mass of 1.0073 atomic mass units (amu) and a charge of +1. A neutron has a slightly higher mass of 1.0087 amu and is neutral, holding no charge. An electron has a much lighter mass of about 0.00055 amu and it carries a charge of -1.

However, it's interesting to note that if you add up the mass of these subatomic particles, the total doesn't equal the actual mass of an atom. For instance, the total mass of six protons, six neutrons, and six electrons is approximately 12.0993 amu, a bit larger than the known 12.00 amu of a carbon atom. The discrepancy is referred to as the mass defect and is explained in detail in the field of nuclear chemistry.

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a hamster weighs less then a (n) ?

Answers

Than a horse I would think
a hamster weighs less than multiple things but if you really want to get serious with it. I would say a hamster weighs way less than a car. A car weighs about 3,000 to 4,000 depends on what type of vehicle you do get and a hamster weighs about 1.0 oz so this shows that a hamster weighs way less than a car.

Calculate the ph of a solution that is 0.278 m in sodium formate (nahco2) and 0.222 m in formic acid (hco2h). the ka of formic acid is 1.77 × 10^-4.

Answers

Use the formula:

pH = pKa + log[Conjugate base] / [Acid]

      =  -log(1.77 × 10^-4)  + log[0.278] / [0.222]

     =   3.75 + 0.097
     = 3.84

The ph of a solution that is 0.278 m in sodium formate (NaHCO₂)  and 0.222 m in formic acid (HCO₂H) is 3.84

To calculate the pH of the solution containing sodium formate (NaHCO₂) and formic acid (HCO₂H), we first need to determine the concentrations of the formate ion (HCO₂⁻) and the formic acid (HCO₂H) in the solution.

Given:

Concentration of sodium formate (NaHCO₂) = 0.278 MConcentration of formic acid (HCO₂H) = 0.222 MKa of formic acid (HCO₂H) = 1.77 × 10⁻⁴

1. Since sodium formate dissociates completely in water, the concentration of formate ion (HCO₂⁻) is equal to the concentration of sodium formate

[HCO₂⁻] = 0.278 M

2. The formic acid (HCO₂H) will partially dissociate in water according to the equilibrium equation:

HCO₂H ⇌ H⁺ + HCO₂⁻

Let x be the concentration of H⁺ ions formed from the dissociation of formic acid. Therefore, at equilibrium:

[H⁺] = x[HCO₂⁻] = x[HCO₂H] = 0.222 - x

3. The equilibrium constant expression for the dissociation of formic acid is given by:

Ka = [H⁺][HCO₂⁻] / [HCO₂H]

Substitute the expressions in terms of x into the equation above:

Ka = x * x / (0.222 - x)4. Use the given Ka value to solve for x:1.77 × 10⁻⁴ = x² / (0.222 - x)

4. Calculation of pH

pH = pKa + log[Conjugate base] / [Acid]pH=  -log(1.77 × 10⁻⁴)  + log[0.278] / [0.222]pH =   3.75 + 0.097pH  = 3.84

Therefore, The ph of a solution that is 0.278 m in sodium formate (NaHCO₂)  and 0.222 m in formic acid (HCO₂H) is 3.84

The reaction nacl(s) → nacl(aq) is performed in a coffee cup calorimeter, using 100 ml of h2o(l) and 5.00g of nacl. if the temperature of solution after mixing decreased by 2.30°c, what is the δhrxn in kj/mol? assume the heat capacities of all solutions are 4.18 j/g°c, and densities of all solutions are 1.00 g/ml. the molar mass of nacl is 58.44 g/mol

Answers

Since the density of water is 1 g /mL, hence there is 100 g of H2O. So total mass is:

m = 100 g + 5 g = 105 g

 

=> The heat of reaction can be calculated using the formula:

δhrxn = m C ΔT

where m is mass, C is heap capacity and ΔT is change in temperature = negative since there is a decrease

 

δhrxn = 105 g * 4.18 J/g°C * (-2.30°C)

δhrxn = -1,009.47 J

 

=> However this is still in units of J, so calculate the number of moles of NaCl.

 

moles NaCl = 5 g / (58.44 g / mol)

moles NaCl = 0.0856 mol

 

=> So the heat of reaction per mole is:

δhrxn = -1,009.47 J / 0.0856 mol

δhrxn = -11,798.69 J/mol = -11.8 kJ/mol

Which substance has polar covalent bonds? which substance has polar covalent bonds? n2 bao f2 so2?

Answers

Fluorine and Nitrogen are both non-metals which posses non polar covalent bonds. BaO on the other hand is a combination of a metal (Ba) and non metal (O) hence making it an ionic bond. So in this case, only SO2 has polar covalent bond.

 

Answer:

SO2

Final answer:

Sulfur dioxide (SO2) is a substance with polar covalent bonds among the given options. It has atoms with different electronegativities, hence the unequal sharing of electrons. SO2's bent molecular shape also contributes to its overall polarity.

Explanation:

The substance with polar covalent bonds among N2, BaO, F2, and SO2 is SO2 (sulfur dioxide). Polar covalent bonds occur when there is an unequal sharing of electrons between atoms with different electronegativities.

Nitrogen (N2) and Fluorine (F2) are both diatomic molecules of the same element and thus have nonpolar covalent bonds because they share electrons equally. Barium oxide (BaO) is an ionic compound because it is composed of a metal and a nonmetal.

Sulfur dioxide (SO2), on the other hand, has atoms with different electronegativities which leads to an unequal sharing of electrons and the formation of polar covalent bonds. The molecule is also bent in shape, which contributes to its overall polarity.

What product of the krebs cycle is considered a waste product of the reaction?

Answers

the answer is carbon dioxide 

Why do atoms get smaller as you move left to right in a period?

Answers

The reason that atoms get smaller as you move left to right is because this attraction is much stronger than the relatively weak repulsion between electrons.

Hope dissss helped. :D have a great day!!

The atoms get smaller as move left to right of the periodic table which is because this attraction is much stronger than the relatively weak repulsion between electrons.

What are the properties of periodic table ?

Periodic table is tabular form of the chemical elements with increasing order by their atomic number and the elements are arranged in groups on the basis of similar properties.

Elements of the periodic table which are arranged from left to right and top to bottom with respect to increasing atomic numbers.

Elements in the same group will have the same valence electron configuration have same chemical properties while elements  will have an increasing order of valence electrons.

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What are the details if the albany plan and what are ben franklins goal?

Answers

The Albany plan was created to make a more centralized government for the British American colonies. Each colony had sent a representative to represent their state when the framers had started crafted the Albany Plan. Despite the efforts of these people behind the Albany Plan, the plan was not pushed through.

In a way, Franklin wanted their country to be independent of the Imperial British Rule by allowing them to create their own legislative, executive and judicial bodies. The British Rulers believed that if Franklin and his fellow Americans would be granted their own government, there is a possibility that people would revolt against them.

How many atoms are in 3.08 mol of pure aluminum?

Answers

To determine the number of atoms in 3.08 mol of pure aluminum, multiply the number of moles by Avogadro's number.

In order to determine the number of atoms in 3.08 mol of pure aluminum, we need to use Avogadro's number. Avogadro's number is a fundamental constant in chemistry that represents the number of atoms or molecules in one mole of a substance. It is approximately equal to 6.022 × 10²³ atoms/mol.

To find the number of atoms in 3.08 mol of pure aluminum, you can use the following calculation:

Multiply the number of moles (3.08 mol) by Avogadro's number (6.022 × 10^23 atoms/mol):

Number of atoms = 3.08 mol × (6.022 × 10²³ atoms/mol)

By performing this calculation, you will find the number of atoms in 3.08 mol of pure aluminum.

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Rubidium is comprised of two isotopes, one of which has a natural abundance of 72% and contains 48 neutrons in the nucleus. given that the calculated atomic mass for rubidium is 85.5, how many neutrons are contained in the nucleus of an atom of the second isotope?

Answers

Since there are only two isotopes, then that means the other isotope has an abundance of: 100 - 72 = 28%. Let y be the mass of the first isotope, and x be the mass of the second. The equation would be

85.5 = 0.72y + 0.28x

Now, rubidium has 37 protons, and each proton has a mass of 1.00727647 amu. When neutral, it must also have 37 electrons in which each electron weighs 0.000548597 amu. Let n be the number of neutrons, in which each neutron weighs 1.008664 amu. The solution is as follows:

y = 37(1.00727647) + 37(0.000548597) + 48(1.008664)
y = 85.7054 amu

Then, x would be:
85.5 = 0.72(85.7054) + 0.28x
x = 84.972 amu
So,
x = 84.972 = 37(1.00727647) + 37(0.000548597) + n(1.008664)
Solving for n,
n = 47.27 ~ 47

Therefore, there are 47 neutrons in the second isotope.

The correct number of neutrons in the nucleus of the second isotope of rubidium is 50.

To solve this problem, we can use the weighted average of the atomic masses of the two isotopes to find the number of neutrons in the second isotope. Let's denote the number of neutrons in the second isotope as [tex]\( n \)[/tex].

We know the following:

- The first isotope has 48 neutrons and a natural abundance of 72%.

- The calculated atomic mass of rubidium is 85.5.

- The second isotope has \( n \) neutrons and a natural abundance of [tex]\( 100\% - 72\% = 28\% \)[/tex].

The atomic mass of an isotope is calculated by adding the number of protons and neutrons in its nucleus. Since rubidium has 37 protons, the atomic mass of the first isotope is [tex]\( 37 + 48 = 85 \)[/tex].

Now, let's set up the equation for the weighted average atomic mass:

[tex]\[ 0.72 \times 85 + 0.28 \times (37 + n) = 85.5 \][/tex]

Solving for [tex]\( n \)[/tex]:

[tex]\[ 61.2 + 0.28n = 85.5 \] \[ 0.28n = 85.5 - 61.2 \] \[ 0.28n = 24.3 \] \[ n = \frac{24.3}{0.28} \] \[ n = 86.79 \][/tex]

Since the number of neutrons must be a whole number, we round to the nearest whole number:

[tex]\[ n \approx 87 \][/tex]

However, we must subtract the number of protons (37) to find the number of neutrons:

[tex]\[ n_{\text{neutrons}} = 87 - 37 \][/tex]

[tex]\[ n_{\text{neutrons}} = 50 \][/tex]

Therefore, the second isotope of rubidium contains 50 neutrons in its nucleus.

Which regions on the periodic table can adopt positive and negative oxidation numbers?

Answers

The region(s) of the periodic table which are made up of elements that can adopt both positive and negative oxidation numbers are the “non-metal” region. As we can see on the periodic table, the elements situated at the right side of the table have two oxidation states, one positive and the other a negative. 

Which nuclei are most useful for organic structure determination using nmr spectroscopy? (select all that apply.)?

Answers

Hydrogen-1, Carbon-13, Nitrogen-15, Fluorine-19, and Phosphorus-31 are the most useful. Out of these, Hydrogen-1 and Carbon-13 in NMR are the most useful nuclei because the these atoms are the most commonly present in organic molecules.

How do the first ionization energies of main group elements vary across a period and down a group?

Answers

They increase across each period, decrease down a group. As you go across a period the number of protons and increases. The positive nucleus then has a stronger attractive force on the electrons so it takes a larger amount of energy to remove an electron. As you go down a group the atoms are larger so the attractive force is weaker and it takes less energy to remove an electron.

How is a pure substance different from a mixture?


A. Pure substances cannot be separated by physical means.
B. Mixtures cannot be separated by physical means.
C. A pure substance is heterogeneous.
D. A mixture is made of one substance.

Answers

Pure substances are made by a single kind of matter and it cannot be separated whereas, mixtures are substance formed by the mixing of two or more pure substances. Thus, option A is correct.

What are mixtures?

Mixtures are combination of two or more substances which are mixed in a homogenous or heterogenous fashion. Homogenous mixtures are those which appear to be one component like salt solution where only one phase exists.

Heterogenous mixtures forms different phases and the individual components are not uniform will seen separately. Mixtures can be separated based on the properties of the individual components such as using distillation, filtration, chromatography etc.

Pure substances are formed by single type of atoms for example pure water, fruit pies, pure acids etc. They contains their own particles only. Hence, option A is correct.

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at what temperature would 250mL of water boils? 1000mL? is the boiling point an intensive or extensive property? explain.

Answers

Water always boils at 212 degrees F, or 100 degrees C. Because the boiling point is not dependent on the size of the sample of water, it would be an intensive property.

Answer:

Boiling point of water = 100 C. It is an intensive property.

Explanation:

Properties of matter can be broadly classified into two categories:

1) Chemical

2) Physical

Physical properties can be further classified as intensive and extensive properties

Intensive properties are properties that do not depend on the amount of matter. For example: Temperature, color, boiling point, melting point

Extensive properties are properties that  depend on the amount of matter. For example: Volume, mass, length

Water boils at a temperature of 100 C; this value is a constant irrespective of the volume (amount) of water. Hence boiling point is an intensive property.

A system used to represent the valence electrons around the chemical symbol of an element is the

Answers

Mendeleev's periodical table.

Answer:

Lewis Dot Diagram

Explanation:

Which type of observation involves exact measurement, quantitative or qualitative?

Answers

The correct answer is:  [A]:  "quantitative" .
________________________________________________

Answer:

1. Quantitative

2. Qualitative

3. Qualitative

Explanation:

What are the general properties of the elements in the group to the right in the modern periodic table?

Answers

Have low boiling points

Have low densities

They are odourless, colourless and are monatomic gases

Low chemical reactivity

The general properties of the elements to the right in the modern periodic table are low melting and boiling point, high ionization energy, high electron affinity, poor conductor, and lack of metallic luster.

What are nonmetals?

The elements present on the right-hand side of the modern periodic table are nonmetals. Nonmetals are the elements that form negative ions by gaining electrons and have 4, 5, 6, or 7 electrons in their outermost shell.

Non-metals lack all metallic attributes and are good insulators of heat and electricity. They are generally gases at room temperature and sometimes liquid.

Nonmetals are high ionization energies and high electronegativity so they gain electrons when reacting with other compounds, to form covalent bonds.

Nonmetals have high electronegativities so they have a strong tendency to attract electrons. Nonmetals exist as liquids or gases therefore, they have low melting and boiling points under normal conditions.

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