A basketball weigh more after it was inflated with air then when it was deflated how does this show that gas is matter

Answers

Answer 1
For example it’s like a human body in like your in hailing the air. He basket ball since it has more weight inside than before you blew it up.
Answer 2
Final answer:

The fact that a basketball weighs more when inflated compared to when it's deflated is indicative that gas (air, in this case) is matter because it contributes to the mass and occupies space within the basketball.

Explanation:

The phenomenon that a basketball weighs more after it is inflated with gas (in this case, air) compared to when it is deflated, shows us that gases have mass and occupy space, hence they are considered matter. The principle of matter states that it has mass and occupies space. When you inflate the basketball, you are filling it with air, which is a gas, and increases the total mass of the basketball. Thus, making the basketball heavier than it was when it was deflated. This change in weight clearly demonstrates that gas is indeed matter as it contributes to the overall mass of the basketball.

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Related Questions

Which state(s) of matter do not have a definite shape nor volume? A. Liquids only B. Liquids and gases C. Gases only D. Gases and plasmas

Answers

Answer:

C. Gases only

Explanation:

Gases are the state of matter that has no definite shape and volume while liquids have no definite shape but have definite volume and solids have both definite shape and definite volume. so the correct option is "C".

The prefix mili-means a thousand
so a kilo -gram is a thousand of a liter
1 kilogram = 1,000 grams
how many kilograms is 1,216 grams?

Answers

Answer:

Given data:

1 kilogram = 1,000 grams

how many kilograms is 1,216 grams?

Solution:

1000 grams = 1 kilogram

1 gram = 1/1000 kilograms

1216 grams = 1/1000 * 1216 = 1.216 kilograms.

                                                    Hence 1216 grams =  1.216 kilograms.

what is the  concentration of a NaCl solution, in Molarity, if you add 59.76 g of NaCl into 270 mL of H2O

Answers

Hey there!

Molar mass NaCl = 58.44 g/mol

Number of moles

n =  mass of solute / molar mass

n = 59.76 / 58.44

n = 1.0225 moles of NaCl

Volume in liters:

270 mL / 1000 => 0.27 L

Therefore:

M = number of moles / volume ( L )

M = 1.0225 / 0.27

= 3.78 M

Hope that helps!

The transition metals are involved in:


alloys


coordination complexes


catalysts


all of the above

Answers

all of above ! they are involved in all thee mentioned here

The prefix 'kilo-' means a thousand. So a kilo-gram is a thousand grams. 1 kilogram=1,000 grams How many kilograms is 1,008 grams? Round your answer to the nearest tenth of a kilogram.

Answers

Answer:  1.0 kilograms.

Explanation:

One kilogram is equal to a thousand grams.

Supposing x to be the number of kilograms equal to one thousand and eight grams, we can write it as:

1 kg = 1000 grams

x kg = 1008 grams

To solve for x, we can simply divide 1008 grams by 1000 thousand grams to get the answer.

x = 1008 / 1000

x = 1.008

Rounding this value to the nearest tenth, it will become 1.0 kilograms.

1,008 grams is equivalent to 1.008 kilograms, and when rounded to the nearest tenth of a kilogram, it is 1.0 kilogram.

To find out how many kilograms 1,008 grams is, we need to convert grams to kilograms. We know that 1 kilogram is equal to 1,000 grams. Therefore, we need to divide the number of grams by 1,000 to convert to kilograms. For 1,008 grams, the calculation is as follows:

1,008 grams / 1,000 = 1.008 kilograms

When rounding to the nearest tenth of a kilogram, we get 1.0 kilograms because the hundredth place is less than 5.

So, the answer is that 1,008 grams is equivalent to 1.0 kilogram when rounded to the nearest tenth.

a 75.0 liter canister contains 15.82 moles of argon at a pressure of 546.8 kilopascals. What is the temperature of the canister?

Answers

Pressure of argon = 546.8 kPa

Conversion factor: 1 atm = 101.325 kPa

Pressure of argon = 546.8 kPa x 1 atm/101.325 kPa = 5.4 atm

Moles of argon = 15.82

Volume of argon = 75.0 L

According to Ideal gas law,

PV = nRT

where P is the pressure, V is the volume , n is the number of moles, R is the universal gas constant, and T is the temperature

T = PV/nR = (5.4 atm x 75.0 L) / (15.82 x 0.0821 L.atm.mol⁻¹K⁻¹)

T = 311.82 K

Hence the temperature of the canister is 311.82 K.

Answer:

311.82

Explanation:

Devise a way to separate sand from a mixture of charcoal, sand, sugar, and water

Answers

A mixture of charcoal, sand, sugar, and water is a heterogeneous mixture. Sugar can easily dissolve in water. Slightly heating the mixture will ensure all of the sugar is dissolved in the water. The mixture then can be filtered to separate out sugar solution from sand and charcoal. The mixture of sand and charcoal is washed several times with water and filtered so that no traces of sugar solution remain in the mixture. To the mixture containing sand and charcoal, water is added. Charcoal being lighter floats on the surface of water, whereas sand being heavy sinks to the bottom. The charcoal floating can be removed manually. After all the charcoal is removed, the mixture of sand and water is again filtered and the sand collected on filter paper is dried. Therefore, by using the above process sand can be separated out from a mixture of charcoal, sand, sugar, and water.

Final answer:

The process of separating sand from a mixture of charcoal, sand, sugar, and water involves sedimentation, decantation, filtration, and evaporation. Sedimentation and decantation help in separating sand and charcoal from sugar and water, filtration further separates sand and charcoal, and the remaining sugar and water can be separated through evaporation.

Explanation:

To separate sand from a mixture of charcoal, sand, sugar, and water, you can apply the process of filtration, sedimentation, and evaporation. First, sedimentation and decantation could be used to separate the sand and charcoal from the sugar and water. Given that sand and charcoal are insoluble, they will settle at the bottom of the container after some time, which can then be separated by gently pouring out the water and sugar solution. Then, you could proceed to use filtration to separate the charcoal and the sand. Due to their differences in size, the sand will be caught in the filter, while the charcoal will pass through. Lastly, the evaporation method can be used to separate the sugar from the water. When the mixture is heated, the water will evaporate, leaving the sugar behind.

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The density of an unknown crystal is 2.65 g/mol. What will the volume read if a 4.46 g sample is added to a graduated cylinder containing 25.0 ml of water?

Answers

The density of crystal is 2.65 g / mL

we know that

Density = Mass / Volume

So volume occupied = Mass / density

Mass of crystal = 4.46 g

So volume occupied by crystal = 4.46 / 2.65 = 1.68 mL

As the graduated cylinder contains water upto 25.0 mL

So if we immerse the crystal in that cylinder the water level will rise to 25+1.68 = 26.68mL

so the new read will be 26. 68 mL

Final answer:

To calculate the volume of the unknown crystal, subtract the initial volume of water from the final volume, assuming the crystal is insoluble. Use the formula: Volume of Crystal = Final Volume - Initial Volume (water). Substitute the given values to find the volume of the crystal.

Explanation:

The volume of the unknown crystal can be calculated using the given density and the mass of the sample added to the graduated cylinder.

First, we need to calculate the volume of water in the graduated cylinder by subtracting the initial volume (25.0 ml) from the final volume. Assuming the unknown crystal is insoluble in water, the total volume will be the sum of the water volume and the volume of the crystal.

The final volume can be calculated using the formula:

Final Volume = Initial Volume (water) + Volume of Crystal

By rearranging the formula, we can solve for the volume of the crystal

Volume of Crystal = Final Volume - Initial Volume (water)

Substituting the given values, the volume of the crystal can be calculated.

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use the words in the list to answer each question

Answers

a) atomsb) moleculesc)  elementsd) pure materialse) particles

A certain shade of blue has a frequency of 7.29 × 1014 hz. What is the energy of exactly one photon of this light?

Answers

To solve this problem, we're going to have to use the equation: E=hv

This equation tells us that the energy of a particle of light (E), called a photon, is proportional to its frequency (v), by a constant factor (h). That constant (Planck's constant) we know to be 6.626 × 10^-34 J·s. So, we can plug in the frequency and Planck's constant to solve for the energy (E).

E=( 6.626 × 10^-34 J·s)(7.29 × 10^14 hz)

E= 4.830354 × 10^-19

Round to 3 significant figures, and you're done!

E= 4.83 × 10^-19


Answer:

[tex]4.83\times 10^{-19} J[/tex] is the energy of exactly one photon of this light.

Explanation:

Frequency of the blue shade light = [tex]\nu =7.29\times 10^{14} Hz[/tex]

Energy of the photon is given by Planck's equation = E

[tex]E=h\nu[/tex]

h = Planck's constant = [tex]6.634\times 10^{-34} Js[/tex]

[tex]E=6.634\times 10^{-34} Js\times 7.29\times 10^{14} s^{-1}[/tex]

[tex]E=4.83\times 10^{-19} J[/tex]

[tex]4.83\times 10^{-19} J[/tex] is the energy of exactly one photon of this light.

A chemist divides a large sample of a mixture into three smaller portions. Each of these portions contains different ratios of the component substances that make up the mixture. Which description best fits the mixture?

A.
compound
B.
element
C.
heterogeneous mixture
D.
homogeneous mixture
E.
pure substance


Which statement about scientific consensus is true?

A.
It represents the beliefs of most scientists.
B.
It is the only way to prove a theory true.
C.
It is necessary to form a hypothesis.
D.
It is an assurance that the interpretations of a study are correct.
E.
It is necessary before research can be published in a science journal.

Answers

1) The answer is: C.  heterogeneous mixture.

Heterogeneous mixture is not uniform in composition.

This substance is not element or compound, because different components could be observed in the substance.  

Pure substance is made of only one type of atom (element) or only one type of molecule (compound), mixtures and solutions are made from two or more types of pure substances.

For example, aluminium is an element and ammonia is compound.

This substance is not a homogeneous mixture, because different samples of the substance appeared to have different proportions of the components.  

2) The answer is: A. It represents the beliefs of most scientists.

Consensus is general agreement, but not necessarily unanimity.

Consensus is achieved through communication at conferences, the publication process, replication and peer review.

For example, 97 percente of scienties agree that climate warming trends over the past century are extremely likely due to human activities.

Which term is used when sugar is dissolved in water?a: covalentb: homogeneousc: amphibigeneousd: heterogeneous

Answers

Homogeneous because it completely dissolved so its now one. Heterogeneous would be when they don't dissolve and you see 2 separate substances like sand in water.

Match the formula for the following compound:
dinitrogen pentoxide

NO
N5O2
N2O5
N3O2

Answers

Dinitrogen = 2 Nitrogens, which is represented as N2
Pentoxide = 5 Oxygen atoms, which is O5

Slap em together and you get N2O5.

Answer : The correct formula of the compound is, [tex]N_2O_5[/tex]

Explanation :

Dinitrogen pentoxide  is a covalent compound in which both the elements nitrogen and oxygen are non-metals.

The formula of covalent compound is given by:

The less electronegative element is written first with prefix number like 'mono' for 1 atom, 'di' for 2 atoms, 'tri' for 3 atoms and so on.... in the subscript.The more electronegative element is written then with their prefix number in the subscript.

So, the formula of given compound is, [tex]N_2O_5[/tex]

What is the molarity of a 250.0 ml aqueous solution of sodium hydroxide that contains 15.5 grams of solute?

Answers

The molar concentration of the solution is 1.55 mol/L.


1. Convert grams to moles.


[tex]\text{Moles of NaOH} = 15.5 \text{g NaOH} \times \frac{\text{1 mol NaOH}}{\text{40.00 g NaOH}} = \text{0.3875 mol NaOH}\\[/tex]

2. Convert millilitres to litres


[tex]V = 250.0 \text{mL} \times \frac{\text{1 L}}{\text{1000 mL}} = \text{0.2500 L}\\[/tex]

3. Calculate the molar concentration (c)


[tex]c = \frac{\text{moles}}{\text{litres}} = \frac{\text{0.2875 mol}}{\text{0.2500 L}} = \textbf{1.55 mol/L}[/tex]



Answer:

Molarity of solution is 1.5501

Explanation:

Given data:

Molarity of NaOH = ?

Volume of solution = 250 ml

Mass of solute = 15.5 grams

Solution:

Formula:

Molarity = Mass of solute/Molar mass of solute * 1/volume of solution in liters.

First convert volume into Liters = 250/1000 =0.25 L

Now put the values in formula:

Molarity of NaOH = 15.5/39.997 * 1/0.25

                              = 1.5501

                                         Molarity of NaOH      =  1.55011


Which of these is true of the first ionization energy within a group?
Question 13 options:

There is no pattern of ionization energy within a group.

The first ionization energy does not vary within a group.

The first ionization energy increases from top to bottom within a group.

The first ionization energy decreases from top to bottom within a group.

Answers

As you move down a group, first ionization energy decreases. Electrons are further from the nucleus and thus easier to remove the outermost one

The first ionization energy decreases from top to bottom within a group, as valence electrons are further away from the nucleus and more shielded by inner electrons. The correct statement is: The first ionization energy decreases from top to bottom within a group.

The first ionization energy typically follows a clear pattern within a group on the periodic table. According to the periodic trend in ionization energy, the first ionization energy decreases from top to bottom within a group.

This decrease occurs because, as you move down a group, valence electrons are further away from the nucleus and thus experience less pull. This reduced attraction makes it easier to remove an electron, resulting in lower ionization energies.

For instance, this can be seen in Group 1 alkali metals, where the outermost electron experiences lower effective nuclear charge due to increased electron shielding from inner filled shells.

A gas has a volume of 27.5 L at 302 K and 1.40 atm. How many moles are in the sample of gas?

A. 0.0401 mol
B. 0.645 mol
C. 1.55 mol
D. 2.14 mol

Answers

According to ideal gas equation, there are 1.55 moles in the sample of gas.

To calculate the number of moles in a sample of gas, we can use the Ideal Gas Law equation: [tex]PV=nRT[/tex] where P is the pressure of the gas, V is its volume, n is the number of moles, R is the gas constant, and T is the temperature in Kelvin.

We can rearrange the Ideal Gas Law equation to solve for n:

[tex]n=\dfrac{PV}{RT}[/tex]

Given:

V = 27.5 L

T = 302 K

P = 1.40 atm

We can use the gas constant, R, which is 0.0821 L·atm/mol·K.

Plugging in the values:

[tex]n=\dfrac{1.40}{0.0821}[/tex]×[tex]\dfrac{27.5}{302}[/tex]

=1.55 moles

Therefore, the number of moles in the sample of gas is 1.55 moles. Hence, option C is correct.

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there are 25 elements found in living things. how many of these elements are found in some organisms but not at all?

Answers

Answer:

B.6

Explanation:

Out of the 25 elements found in living things, 19 of them can be found in some organisms but not all.

There are 25 elements that living things on Earth need to survive. Out of all these 25 however, only 6 are needed by all living organisms universally. They include:

Carbon HydrogenNitrogenOxygenPhosphorus, and,Sulfur

In conclusion, this means that 19 elements can be found in some living things but not all of them while 6 can be found in all of them.

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The amount of force applied per unit area is known as which of the following?

pressure
power
vector
volume

Answers

A:pressure because it's the force that presses us down to earth which is also gravity.

Pressure is the amount of force applied per unit area perpendicular to the surface, represented by the formula P = F/A, with P being pressure, F the force, and A the area; pressure is measured in pascals (Pa).

The concept in question refers to pressure, which is a fundamental idea in the field of physics. Pressure is defined as the force applied per unit area that is perpendicular to the force. The equation for calculating pressure is P = F/A, where P stands for pressure, F represents the force applied, and A denotes the area over which the force is distributed.

Note that while force is a vector quantity, meaning it has both magnitude and direction, pressure is a scalar quantity. This is because pressure is proportional to the magnitude of the force acting perpendicular to the surface and does not have a direction associated with it. The standard unit for measuring pressure is the pascal (Pa), which is named after the renowned French mathematician and physicist Blaise Pascal.

PLEASE HELP DIFFERENCE BETWEEN COMPOUND AND MIXTURE
The chemical properties of a compound are different from the chemical properties of a mixture because:
a. the substances in a compound are chemically joined in a fixed proportion b. the substances in a compound are always composed of at least three different types of atoms
c. mixtures are always homogeneous
d. the properties of a mixture are different from those of the substances from which it is made

Answers

A mixture is formed of two substances (molecules, elements, compounds, etc.) that are not chemically bonded. A compound is formed of two substances chemically joined together, so the answer is A.

Answer:

a. the substances in a compound are chemically joined in a fixed proportion.

Explanation:

A compound is defined as a pure substance that has more than one element. Compounds have a fixed composition. This means that a compound always has the same elements with equal percentages by mass. Meanwhile, a mixture is made up of two or more components that are mixed, but are not chemically combined.

Which of the following elements in the third period would you expect to have the most negative electron affinity value, and why? Aluminum (Al), because it is a metal with a large atomic radius Chlorine (Cl), because it is a halogen with a high effective nuclear charge Silicon (Si), because metalloids release the most energy when gaining electrons Sodium (Na), because alkali metals only have one electron in the outer energy level

Answers

Answer:- Chlorine(Cl)

Explanations:- Electron affinity is the amount of energy released when an electron is added to an element in it's gaseous state. Electron affinity increases in a period on going left to right as the size of the element decreases and it's effective nuclear charge increases and this facilitate an element to accept the electron.

The elements mentioned here in the question belongs to the same group and out of these, chlorine is on the right most side and so it is correct choice.

Hence, Chlorine(Cl), because it is a halogen with a high effective nuclear charge is the correct choice.

The answer is: B) Chlorine (Cl), because it is a halogen with a high effective nuclear charge

A scientist collects a core sample from 60 km deep in Earth.

Which characteristic will she most likely observe in this sample?

a. The sample has high iron content.
b. The sample is very hot and liquefied.
c.The sample mainly consists of granite.
d. The sample has a very high density.

Answers

Answer. C. The sample will mainly consist of granite.

Explanation:

Sample collected from was continental crust (a part crust) as the samples were from 60 km deep.  Continental crust ranges from 30 km to 70 km and this layer is mainly includes granite. This continental crusts is mainly responsible for formation of distinct land-forms like continents.

Statement A ,B and D informs us about the state and temperature of metals(iron) in core that is inner most  layer of the earth.


Question 3 Unsaved
Based on your observations in the virtual lab, complete the data table.



Question 3 options:

separated using a filter; density


separated using a filter; not soluble in water


separated using a filter; mass


separated using a magnet; magnetism

Answers

Hi Khal75,

Experiment: How to seperate sand.

Answer - separated using a filter; not soluble in water

Sand is not soluble in water. If you heat it all the water will dissolve but the sand will not.

Two scientists work together on an experiment, but they have different hypotheses. When the scientists look at the experimental results, they interpret the data in different ways and come to different conclusions. Which of the following does this situation best illustrate?
A. scientific consensus
B. peer review
C. selection bias
D. confirmation bias

Answers

The correct answer is option D, confirmation bias.

Confirmation bias is the tendency to interpret data in a way that confirms the already designed hypotheses.  

As the two scientists interpret the data (or experimental result) in different ways to adhere to the different hypotheses, this is indicative of cognitive bias. This is also called inductive reasoning where the premise is viewed as evidence for the validity of the conclusion.  

This is an example of confirmation bias.

The term confirmation bias in experiment refer to a situation in which the experimental leans more towards evidences that confirm his/her hypothesis rather than evidences that disprove it.

This type of bias creates a sort of self fulfilling prophecy. The conclusions of the research merely echoes his/her believes and contrary evidences are not given proper consideration.

If two scientists carry out the same experiment having different hypothesis and arrive at different conclusions from the same experimental results; then each of them merely confirmed his/her beliefs without considering the experimental results fairly.

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A sample of gas at 1.10 atm has a volume of 326 mL. What is the new volume if the pressure is changed to 1.90 atm?

Answers

Answer

For this we use ideal gas equation which is:

P1V1 = P2V2

P1 = 1.10 atm

V1 = 326 ml

P2 = 1.90

V2 = ?

By rearranging the ideal gas equation:

V2 =  P1V1 ÷ P2

V2 = 1.10 × 326 ÷1.90

V2 = 358.6 ÷ 1.90

V2 = 188.7 ml

how interactions cause substance to boil at different tempurtures

Answers

The surface area is a big help

About 300 B.C., Aristarchus suggested that the sun was at the center of the universe. Why?

The brightness of the planets would change.
The planets appeared to move among the constellations.
The planets always moved opposite to the stars.
The planets disappeared periodically.

Answers

The correct answer is option A and B

About 300 B.C., Aristarchus suggested that the sun was at the center of the universe because a) the brightness of the planets would change and b) the planets appeared to move among the constellations.

18 centuries before  Copernicus, Aristarchus predicted that  all planets orbit the sun. In other words, he suggested the Solar System is heliocentric.


Answer:

the answer is A And B

Explanation:

just took the test

Identify the independent and dependent variables. Peter is conducting an experiment to see how much salt will dissolve in water as the temperature of the water is increased.

Answers

Final answer:

In Peter's experiment, the independent variable is the temperature of the water, and the dependent variable is the amount of salt that dissolves. The independent variable is what the experimenter changes, and the dependent variable is what is measured in response.

Explanation:

Understanding Variables in an Experiment

In Peter's experiment to determine how much salt will dissolve in water as the temperature is increased, the independent variable is the temperature of the water, which Peter is controlling or changing. The dependent variable is the amount of salt that dissolves in the water, which will change in response to the temperature alterations. It's important not to confuse the independent and dependent variables as one is the cause (independent) and the other is the effect (dependent).

Example from Another Experiment

In the provided example where a scientist is observing bacteria growth on different gels, the independent variable would be the type of gel (A or B) since this is what the scientist has changed. The dependent variable would be the amount of bacteria growth observed after 24 hours, as this is the outcome that depends on the type of gel used.

How does a scientist answer a scientific question? a. by guessing the right answer b. by asking others for their opinions c. by observing and measuring d. by finding the answer in a book

Answers

Answer:

The correct option is;

c. by observing and measuring

Explanation:

Scientists are like detectives. They investigate or look for answers using organized steps;

Some investigation involves Observing Describing things or events While many other involves; Collecting samples Practical experiments  Building models

     They carried out investigations under controlled conditions to ensure the   accuracy of their experiment.


what elements make up sand?

Answers

Si, silicon. The oxide is SiO2, silicon dioxide. ...

Na, sodium. The oxide is Na2O. It is introduced as a white powder called soda ash.

Ca, calcium. The oxide is CaO. ...

Pb, lead. The oxide is PbO. ...

K, potassium.

2. Write the formula for the following covalent compound. pentaphosphorus tetraoxide. Explain how you determined the formula. No credit without and explanation. (5 points)

Answers

The formula of pentaphosphorus tetraoxide is P₅O₄

As per the convention of naming chemical compounds - the Prefix names are used for naming covalent compounds.

The prefix 'penta' means '5', so we use 5 as subscript for P.

The prefix 'tetra' means '4', so we use 4 as subscript for O.

Therefore the formula of pentaphosphorus tetraoxide is P₅O₄

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