A chemist dissolved crystals of an unknown substance into water at room temperature. He found that 33 g of the substance can be dissolved into 100 mL of water. What property of the unknown substance was the chemist most likely investigating? its solubility its rate of dissolution its chemical reaction to water its reaction to temperature changes

Answers

Answer 1

Answer:

He must be investigating its solubility in water.

Explanation:

Solubility is the maximum amount of a substance that can be dissolved in 100mL or 100g of water at a given temperature.

So if a chemist dissolves some amount of a crystal in 100mL then it shows that is he investigating the solubility.

The rate of dissolution will be measured only if time is also noted.

To understand the reaction one has to do some other test after reaction.

To note the temperature change the chemist must use thermometer.

Answer 2

Answer: its solubility

Explanation:


Related Questions

Please, can i get some help with these question? Can anyone please answer what exactly i should write?
All questions.
Please

Answers

Use photomath. I would really recommend it! Hope this helps!
"Photomath" was the answer for your question, Buddy

The second electron shell of an atom can hold a maximum of ______ electron(s).

Answers

can hold max of 8 electrons

Describe how the burning of fossil fuels affects the carbon cycle

Answers

When humans burn fossil fuels, the stored carbon is released into the atmosphere as carbon dioxide. The carbon is then free to cycle through the Earth and can upset the natural balance of the carbon available, changing the way that processes occur on Earth.
Final answer:

The burning of fossil fuels raises CO₂ levels in the atmosphere, intensifying the greenhouse effect and causing global climate change. Deforestation further aggravates this issue as there are fewer trees to absorb CO₂.

Explanation:

Impact of Fossil Fuel Combustion on the Carbon Cycle

The burning of fossil fuels has significantly altered the natural carbon cycle. During this cycle, plants remove carbon dioxide (CO₂) from the atmosphere through photosynthesis, and animals and plants return CO₂ through respiration. The extraction and combustion of fossil fuels—coal, oil, and natural gas—release large amounts of CO₂ that have been stored underground for millions of years. This excess CO₂ contributes to a rise in atmospheric CO₂ levels beyond what is used by photosynthesis, leading to an enhanced greenhouse effect. Greenhouse gases trap solar energy in the form of heat, akin to the panes of a greenhouse, which has resulted in global climate change. Deforestation exacerbates this issue by decreasing the number of trees that can absorb CO₂. Additionally, increased atmospheric CO₂ has led to ocean acidification, affecting marine life adapted to a narrow pH range.

The greenhouse effect and the increase in global temperatures, known as global warming, have several negative effects. This includes the rise of sea levels that threaten coastal cities, more extreme weather events, and disruption of ecosystems. It is thus important to shift from fossil fuels to non-carbon energy sources like hydro, solar, wind, and nuclear to mitigate these impacts.

How many grams of solid kcl are needed to prepare 250 ml of 0.235 m solution?

Answers

Final answer:

To prepare 250 mL of a 0.235 M solution of KCL, you would need roughly 4.38 grams of solid KCl. This is calculated using the formula for molarity, converting volume in ml to liters, and then using the molar mass of KCl to convert moles to grams.

Explanation:

The task is to find out how many grams of solid KCl are needed to prepare 250 mL of 0.235 M solution. This is a question about molarity, which is a measure of the concentration of a solute in a solution.


Start by knowing that molarity (M) is defined as moles of solute per liter of solution. Hence, we can calculate the moles of KCl needed using the formula: moles = Molarity * Volume (in liters). In this case, the volume in litres is 250 mL / 1000 = 0.250 L.


Moles of KCl = Molarity * Volume

Moles of KCl = 0.235 M * 0.250 L = 0.05875 mol


Now to convert moles to grams, we use the molar mass of KCl, which is approximately 74.55 g/mol.


Mass of KCl = Moles * Molar mass

Mass of KCl = 0.05875 mol * 74.55 g/mol = approximately 4.38 g


So, you would need around 4.38 grams of solid KCl to prepare 250 mL of a 0.235 M solution.


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To prepare 250 mL of a 0.235 M solution of KCl, you need a. 4.38 grams of KCl.

To prepare 250 mL of a 0.235 M solution of KCl, you need 4.38 grams of KCl.

This is calculated by first finding the moles of KCl and then converting it to grams using the molar mass of KCl. Hence, 4.38 grams of KCl is required.To prepare 250 mL of a 0.235 M solution of KCl, you need to calculate the number of moles of KCl first and then convert that to grams.

The formula to find moles is:

Moles = Molarity × Volume (in liters)

Given:

Molarity (M) = 0.235 MVolume (V) = 250 mL = 0.250 L

First, calculate the moles of KCl:

Moles of KCl = 0.235 M × 0.250 L = 0.05875 moles

Next, convert the moles of KCl to grams using the molar mass of KCl.

Molar mass of KCl = 39.10 g/mol (K) + 35.45 g/mol (Cl) = 74.55 g/mol

Calculate the grams of KCl:

Grams of KCl = 0.05875 moles × 74.55 g/mol = 4.38 grams

Therefore, to prepare 250 mL of a 0.235 M solution of KCl, you need 4.38 grams of KCl.

Correct question is: How many grams of solid kcl are needed to prepare 250 ml of 0.235 m solution?

a. 4.38 g

b. 5.67 g

c. 3.67 g

d. 2.78 g

Write a net ionic equation to show why solid lithium hydroxide, lioh (s), forms a basic solution when it dissolves in water.

Answers

Final answer:

The net ionic equation for the dissolution of lithium hydroxide (LiOH) in water is LiOH(s) -> Li+(aq) + OH-(aq). The hydroxide ions (OH-) created from this process make the solution basic as they can accept H+ ions. Being an alkali metal, lithium forms a strong base when it reacts with water due to the complete dissociation of its hydroxide ions.

Explanation:

The topic at hand is the dissolution of solid lithium hydroxide, LiOH (s), in water to form a basic solution. This process can be understood through the concept of the alkali metals reacting with water to form hydrogen gas and a basic solution of the metal hydroxide.

The net ionic equation for this process is:
LiOH(s) -> Li+(aq) + OH-(aq)

When lithium hydroxide (LiOH) dissolves in water, it dissociates into lithium ions (Li+) and hydroxide ions (OH-). It's the OH- ions that make the solution basic, as they can accept H+ ions.

In general, alkali metals like lithium form strong bases when they react with water due to the complete dissociation of their hydroxide ions in the solution. The formation of these hydroxide ions is what characterizes the solution as basic.

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What is the water table?
A. a flat, table-like body of water
B. the bottom surface of underground water
C. the bottom layer of water in oceans, lakes, and rivers
D. the upper surface of underground water

Answers

I think the answer is D. the upper surface of undergound water.

Answer: Option (D) is the correct answer.

Explanation:

Water table is defined as the upper most level of water that is present under the ground surface where there is permanent separation of soil or rocks with water.

Water table is maintained through a natural process as when it rains then the rain water seeps through the ground and reaches below the ground.

Water table is also known as ground water table.

Therefore, we can conclude that the water table is the upper surface of underground water.

In order to amend the Articles of Confederation, how many votes were needed? A) 7 B) 9 C) 10 D) 13

Answers

B is the answer
Hope it helped!

Stand on a bathroom scale and read your weight. When you lift one foot up so you’re standing on one foot, does the reading change? Does a scale read force or pressure?

Answers

I think it doesn't change.

The number of valence electrons found in an atom of a group a element is equal to

Answers

it's equal to group number

Stable nuclei with low atomic numbers, up to 20, have a neutron to proton ratio of approximately ________.

Answers

1 to 1. Most small atoms have the same number of protons and neutrons

How many valence electrons are found in one atom of nitrogen (n)? 2 5 7 14?

Answers

Seven!!!!
In first shell 2 electrons.
in second shell 5 electrons.
we have 5 valence electrons in an atom of nitrogen

When water evaporates from salt is it a chemical or physical change?

Answers

Water evaporating from salt would be a chemical change

The second shell in the ground state of oxygen contains how many electrons

Answers

The atomic number of oxygen is 8. It has 8 electrons in its electron shells. The first electron shell can hold only 2 electrons. Thus, the second shell of the oxygen will contain the rest amount of electrons i.e. 6 electrons.
Answer: The second shell in the ground state of oxygen contains "6" electrons. 

Why did one liter of nitrogen prepared by lord rayleigh appear to have a greater mass than the other liter prepared by a different method?

Answers

There were two methods that Lord Rayleigh used in his experiment. First, nitrogen was obtained from the atmosphere by passing air over hot copper. Second, air was bubbled through an ammonia mixture, then passed over hot copper. The second method would have a greater mass of nitrogen than the first, because the nitrogen from the atmosphere was contaminated by the nitrogen from the ammonia mixture.

Which quantity is equivalent to 50 kilocalories

Answers

I believe this problem have these following choices:

5,000 cal

0.05 cal

5 x 10^3 cal

5 x 10 ^4 cal

 

Now 1 kilocalorie  = 1000 calories, therefore:

 

50 kilocalories * (1000 calories / 1 kilocalorie) = 50,000 calories

 

 

Since there are 4 zeroes, so the scientific notation is:

 

5 x 10 ^4 cal         (ANSWER)

The factor that is changed throughout an experiment is called the _______. A. apparatus B. constant C. variable D. hypothesis

Answers

The variable is what changes during an experiment. Hopefully this helped! :)

Answer:

C - Variable

Explanation:

Let’s see all the options in detail.

Apparatus: These are the equipment’s used in the experiment. Irrespective of the experiment result, the apparatus remains unchanged from start till the end.

Constant: These are factors that are fixed and does not change throughout the experiment.

Variable: A variable is any factor in an experiment that changes. As per dictionary, variable literally means something that varies i.e. change.  

Hypothesis: This is the underlying explanation in response to which the experiment is being conducted. Also, in an experiment, the hypothesis is not considered a factor at all.

Therefore, the correct answer is C.

When reaction with a chlorine atom, a sodium atom reacts by losing an electron to form the na+ ion, which is _________________________________________?

Answers

A positive charge.

Positive charges happen when an atom loses an electron. In a normal state, atoms have equal amounts of protons (+) and electrons (-). So when they lose an electron they will have more protons (+) which will make it positive. Sodium has 11 protons + and 11 electrons -, take away an electron and it will go from a neutral charge to positive.

Sea water, a solution composed of a variety of salts dissolved in water. the salt is the

Answers

In seawater, salt is the solute and water is the solvent.

Which contribution added to Rutherford's discovery of a positive nucleus?

Atoms are indivisible.
Electrons are scattered in an atom.
Neutrons are inside the nucleus of an atom.
Atoms of the same element have the same properties.

Answers

C, Neutrons are inside the nucleus of an atom. Rutherford was able to theorize that if neutrons were in the center, and electrons were orbiting in separate energy levels, then protons must be in the nucleus to keep the neutrons bound and not free floating, and if the nucleus has neutral and positive particles, then it has to be a positive nucleus.

Answer:

Neutrons are inside the nucleus of an atom.

Explanation:

Which element is likely to gain one electron when it combines chemically with another element? a potassium b krypton c gold d chlorine?

Answers

Chlorine because it lacks one valence electron to fill it's outer shell

What is the limiting reactant when 4.5 moles of aluminum react with 6.7 moles of oxygen gas? (4 points) Unbalanced equation: Al + O2 → Al2O3

Answers

Answer: -

The limiting reactant is Al.

Explanation: -

Number of moles of O₂ = 6.7 moles

The balanced chemical equation for this process is

4 Al + 3 O₂ → 2Al₂O₃

From the balanced reaction we see

3 mol of O₂ would react with 4 mol of Al

6.7 mol of O₂ would react with [tex] \frac{4 mol Al x 6.7 mol O2}{3 mol O2} [/tex]

= 8.933 mol of Al

But the number of moles of Al present is only 4.5 mol.

Hence the limiting reagent is Al.

Identify the major functional groups for biomolecules and list compounds where each are found

Answers

Reactive atoms such as oxygen, nitrogen and phosphorus are present in many organic molecules. ...Although it may be confusing, carbonyl and carboxyl functional groups (R―COOH) have similar names for a reason. ...Amines are organic molecules containing an amino group (R―NH2).


plz 5 star me brain list me thank me thank you 

Final answer:

The major functional groups for biomolecules include hydroxyl, methyl, carbonyl, carboxyl, amino, phosphate, and sulfhydryl. Examples of compounds where these functional groups are found include carbohydrates, amino acids, and organic acids.

Explanation:

The major functional groups for biomolecules include hydroxyl, methyl, carbonyl, carboxyl, amino, phosphate, and sulfhydryl. These functional groups confer specific chemical properties to molecules bearing them.

For example, hydroxyl groups (-OH) are found in carbohydrates, alcohols, and many other organic compounds. Amino groups (-NH2) are found in amino acids, the building blocks of proteins. Carboxyl groups (-COOH) are found in organic acids, such as fatty acids.

Carbohydrates are formed by dehydration synthesis, a process in which monomers bind together by combining their functional groups and generating water molecules as byproducts.

Write the identity of the missing nucleus for the following nuclear decay reaction: 18 9F→01e+?

Answers

18 O goodluck on your test

which option is an example of a physical properties

flammability

pH

toxicity

freezing point

Answers

The correct answer is freezing point

The correct answer would be freezing point. The other three would not be the answer because fammability, ph, and toxicity are all examples of chemical properties.

If an atom has 104 electrons, 157 neutrons, and 104 protons, what is its approximate atomic mass?

Answers

Atomic mass is number of protons + number of neutrons (disregard electrons in mass calculations). 104 + 157 = 261.

The atomic mass of the atom with 104 protons and 157 neutrons has been 261 amu.

An atom has been consisted of the positively charged nucleus and the negatively charged electrons revolving around the nucleus. The nucleus has been consisted of neutrons and protons.

The transfer of electrons between the atoms impart charge to the atom and helps in the reactivity of the atom. The atomic mass in an atom has been the mass of the nucleus. It has been a constant quantity in an atom.

Since the atomic mass has been the mass of the nucleus:

Atomic mass = Neutrons + Protons

Atomic mass = 157 + 104

Atomic mass = 261 amu

The atomic mass of the atom with 104 protons and 157 neutrons has been 261 amu.

For more information about atomic mass, refer to the link:

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Decide if the following definite article and noun agreement is CORRECT or INCORRECT
La mapa

Answers

It's el mapa so the answer is incorrect. Even though mapa has an 'a' at the end, you will still use el.

Answer:

wrong in corect

Explanation:

my explanation is it would be el mapa

(mark brainliest)

9. A room measures 5 m x 20000 mm x 1000 cm. What is its volume in cubic cm?

Answers

Hello!
We have the following measurement data of a room:

a = 5 m → 500 cm
b = 20000 mm → 2000 cm
c = 1000 cm

What is its volume in cubic cm?

[tex]V = a*b*c[/tex]

[tex]V = 500\:cm*2000\:cm*1000\:cm[/tex]

[tex]\boxed{\boxed{V = 1000000000\:cm^3}}\:or\:\boxed{\boxed{V = 10^9\:cm^3}}\end{array}}\qquad\quad\checkmark[/tex]



3 common items include solid liquid and gas

Answers

Ok they are all peoperties of matter
This the all the conditions that water can change into

When water and toluene are mixed two layers form. is the bottom layer water or toluene?

Answers

Final answer:

In a mixture of water and toluene, the bottom layer is water due to its higher density compared to the less dense toluene, which forms the top layer.

Explanation:

When water and toluene are mixed, two layers form due to their differences in polarity and density. Water is a polar molecule while toluene is nonpolar. Given the difference in densities, with water being more dense, the bottom layer will be water, and the top layer will be toluene. In a practical setting, this can be observed in a separatory funnel where the denser layer settles at the bottom.

Experiments often utilize this property of immiscibility, where the addition of water to a mixture can help in identifying the aqueous layer by its increase in volume. When toluene and water are mixed, the toluene would form the upper layer because it is less dense than water, in the same way oil forms a top layer when mixed with water.

Water and toluene are immiscible liquids, which means they do not mix together and form separate layers. In this case, water, being more dense than toluene, settles at the bottom. This can be observed when water droplets fall through the top layer to mix with the bottom layer.

Additionally, the higher mole fraction of toluene in the bottom layer also indicates that it is the toluene layer. Toluene and water form separate layers because toluene is less dense and immiscible in water.

Describe how the periodic trends of atomic radius, electronegativity, and ionization energy appear on the periodic table

Answers

is there more

to the senteance

it just cuts off

Periodic trends include the atomic radius, which decreases across a period and increases down a group; electronegativity, which increases across a period and decreases down a group; and ionization energy, which increases across a period and decreases down a group.

Periodic Trends: Atomic Radius, Electronegativity, and Ionization Energy

The periodic table is organized in such a way that certain properties of elements show predictable trends. These periodic trends include atomic radius, electronegativity, and ionization energy.

Atomic Radius

The atomic radius is the size of an atom. It generally decreases from left to right across a period due to the increase in the number of protons, which pulls the electrons closer to the nucleus. Conversely, the atomic radius generally increases from top to bottom within a group, as additional electron shells are added, making the atom larger.

Electronegativity

Electronegativity is an atom's ability to attract electrons. It generally increases from left to right across a period because atoms are more effective at attracting electrons due to their increased nuclear charge. In contrast, electronegativity decreases going down a group because the increased distance from the nucleus and the shielding effect make it harder to attract electrons.

Ionization Energy

Ionization energy is the energy required to remove an electron from an atom in its gaseous state. This energy increases from left to right across a period owing to stronger attraction between the nucleus and electrons. However, ionization energy decreases from top to bottom in a group because outer electrons are farther from the nucleus and more shielded by inner electrons, requiring less energy to remove them.

These periodic trends are critical for understanding elemental behavior and predicting chemical reactions.

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