Would anyone help me solve all of this?

Would Anyone Help Me Solve All Of This?

Answers

Answer 1

Answer:

Explanation:de


Related Questions

Density is
Group of answer choices

How much mass something has for its size

The force of gravity on an object

How much matter something has

How much space something takes up

Answers

Answer:

How much matter something has

Density is how much matter something has.

What is Density ?

The amount per unit of length, area, or volume: as. a: a substance's mass per unit volume. the distribution of a quantity per unit, typically of space, such as mass, power, or energy.

A substance's density is defined as its mass per unit of volume. Density is most frequently represented by the symbol, however Latin letter D may also be used. Mass divided by volume is the formula for density in mathematics: display style rho = frac mV. where m is the mass, V is the volume, and is the density.

The ratio of an object's mass to its volume is its density.

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In a combustion reaction 35.3 g of hydrocarbon reacts with 96.0 g of oxygen to produce water and carbon dioxide if 60.4 g of water is produced how much carbon dioxide is produced

Answers

The amount of CO2 is produced is 60.28 g

In this combustion reaction , O2 act as a limiting reagent

96.0 g O2 = 3.0 mol O2 is present for the combustion reaction.

In the combustion reaction 60.4 g of water is formed

60.4 g of Water = 60.4 g * 1 mol / 18 g = 3.35 mol

3.35 mol of H20 has 6.32 mol of H atoms.

If hydrocarbon acts like limiting reactant , then 35.5 - 6.32 g of carbon = 29.18 g that is equal to 2.12 mol.

2.12 mol of C requires 2.12 mol * 2 = 4.24 mol of atoms to burn completely O atoms.

3.35 mol of H2O atom + 4.24 of O atoms = 7.59 mol. So, O2 is a limiting reactant.

3.35 mol of O2 atoms are in H2O , 6 - 3.35 = 2.65 mol of O2 atoms are there in CO2. Hence 1.37 mol of CO2 is going to produced.

Mass of CO2 produced = 1.37 * 44 = 60.28 g

By the law of conservation mass we found that 19.13 g of hydrocarbons remains unburnt.

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When the following equation is balanced, what is the coefficient in front of Rb3PO4?
Ca3(PO4)2 + Rb₂0 ➜ CaO + 3 Rb3(PO4)
A) 1
B) 2
C)3
D) 4

Answers

Answer:

C

Explanation:

5.0 ml of 0.10 m solution of naoh is added to 30. ml of buffer solution of acetic acid (0.093m) and sodium acetate (0.12 m). what is the ph of new solution? ka

Answers

5.0 ml of 0.10 m solution of Naoh is added to 30. ml of buffer solution of acetic acid (0.093m) and sodium acetate (0.12 m), then the pH of the solution is 4.72

The pH of the solution

CH3COOH +H2O → H3O+ + CH3COO-

ka = [H3O+] {CH3COO-] / [CH3COOH] [H2O]

⇒ [H3O+] = ka X [CH3COOH] / [CH3COO-] → 1

Let us consider the concenration of H3O+ at equilibrium = x

Thus, putting the values in equation 1

[H3O+] = ka X [CH3COOH] / [CH3COO-]

x = (1.8X 10^-5 X 0.00329) / (0.0031)

⇒ x = 1.91 X 10^-5

since x is the equilibrium concentration of H3O+, SO

equilibrium concentration of H3O+ = 1.91X 10^-5

Then pH = -log10 {H3O+}

= -log10{1.91 X 10^-5}

=4.72

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What do you notice about the names of the cations and anions on the cards. How do they compare with the name of the neutral atom or element? Do the non-metals have anything in common about their name?

Answers

Group 7 ions mostly end with -ide

why do you need sodium sulfate in this experiment? (check one) group of answer choices it is a drying agent used to dry the aqueous phase it helps to visualize the organic phase in order to get a better separation removes traces of water from the methylene chloride phase removes traces of methylene chloride from the water phase

Answers

Anhydrous sodium sulphate is a common inert drying agent used in laboratories to get rid of any remaining water vapor in organic solutions. Therefore, it is needed in this experiment.

It is more effective yet takes longer to work than the same substance, magnesium sulphate. Sodium sulphate is a drying agent.

The fact that it is a fine powder with a lot of surface area makes it a fast-drying agent. Sodium sulphate (n=10, e=25 mg/L) is primarily used for very wet solutions and has a very high capacity.

It absorbs other polar substances like alcohols, etc., but it is particularly effective in ethereal solutions.

What purpose does sodium sulphate serve?

Although it has numerous additional uses, sodium sulphate is primarily employed in the production of detergents and in the Kraft process of paper pulping.

The decahydrate’s natural mineral form, mirabilite, accounts for about half of the world’s output, with the other half coming from chemical byproducts.

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Based on the solubility observations, which of the following pairs of cations could be differentiated by the addition of sodium chloride to the solutions?

Answers

The pairs of cations could be differentiated by the addition of sodium chloride to the solutions are barium and lead.

Which solution can be distinguished?

We know that an ionic solution is composed of ions. The ions in a solution are capable of interacting with reagents and this is the basis for the qualitative identification of ions in a solutions.

Now let us look at the options, we are going to look out for the option in which the addition of the chloride ion would lead to the emergence of a precipitate in the solution.

If we consider the solutions properly, we would see that the pairs of cations could be differentiated by the addition of sodium chloride to the solutions are barium and lead.

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Missing parts;

Based on the solubility observations, which of the following pairs of cations could be distinguished by the addition of sodium chloride to the solutions?

Choose..

barium and lead

barium and aluminum

lead and silver

iron and calcium.

The wavelength of blue light is 0.00000045 m. express this wavelength in scientific notation.

Answers

The wavelength of the light is express is the scientific notation

The wavelength of blue light is 0.00000045 m. This wavelength in scientific notation is 4.5 × 10⁻⁷m.

What is wavelength ?

A waveform signal that is carried in space or down a wire has a wavelength, which is the separation between two identical places adjacent crests in the consecutive cycles.

A spectrum is the term used to describe the range of wavelengths or frequencies for wave phenomena. The term was originally used to describe the electromagnetic spectrum, but it is now used to describe the sound spectrum and vibration spectrum.

The wavelength, which will also apply to troughs, is the separation between two wave crests. The frequency is measured in cycles per second and represents the number of vibrations that pass over a certain area in one second (Hz).

Thus,  This wavelength in scientific notation is 4.5 × 10⁻⁷m.

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You need to get to class, 300 meters away, and you can only walk in the hallways at about 1.5m/s.(if you run any faster, you’ll get caught running). How much time will it take to get to your class

Answers

200 sec or 3 min 20 msec

we need to get to class, 300 meters away,

so the distance becomes = 300 m

we can only walk in the hallways at about 1.5m/s

so the time become = 1.5m/s

time will it take to get to our class

time = distance/speed

time = 300/1.5

time = 200 sec or 3 min 20 msec

Distance is the parameter to use either length or breadthS.I unit of distance is meter, although we use other unit too, like kilometer or milimeter or decameterDistance is actual the total distance a person travelled or covered

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Iodine and tellurium were swapped by Mendeleev in the Periodic Table so that they were not in order of atomic weight. State the type of atom that gives an explanation as to why order based on atomic mass is not always correct.

Answers

The example of Iodine and tellurium where iodine which had lesser atomic mass was placed before tellurium proved that order of the Periodic table based on atomic mass was not always correct.

Why did Mendeleev swap Iodine and tellurium in his Periodic Table so that they were not in order of atomic weight?

The periodic table as designed by Mendeleev was arranged such that the elements were arranged in order of increasing atomic mass.

However, in this case of tellurium and iodine, Mendeleev placed tellurium before iodine even though it had a greater atomic mass than iodine. This was because Mendeleev observed that elements with similar chemical properties were occurring in a regular pattern in the periodic table and iodine has similar chemical properties to bromine and chlorine before it.

Therefore, the case of Iodine and tellurium proved that arranging elements in the periodic table in order of increasing atomic mass was not always correct.

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Answer:

literally all you have to write to get the mark is the word isotopes

PLEASE HELP ITS DUE TOMORROW IM GIVIN 40 POINTSSS AND WHOEVER ANSWERS FIRST CORRECTLY GETS BRAINLIEST!!!
Of the plates thats are facing the Sun (plates A through G) which ones will receive the most solar energy???

Answers

Can I have the photo of the plates?

A copper penny has a mass of 3.1 grams and a density of 8.86 g/mL. What would be the volume of this penny?

Answers

Answer:

0.350cm³

Explanation:

to obtain volume, divide density by

3.1÷8.86

0.350ml

1ml=1cm³

0.350ml=0.350cm³

Write a 600-word report discussing nuclear reactors. The report should include a description of the way a reactor works and the theory behind nuclear reactions. Be sure to answer these questions: What are breeder reactors? How are they different from regular nuclear reactors? What are their advantages and disadvantages?
Write your report in the essay box below.
PLEASESSSSS THE DUE DATE IS TOMORROW

Answers

Nuclear reactors are the main components of the nuclear power plants which are used for the production of heat through the process called fission.

What are breeder reactors?

The nuclear reactors are divided into many types which include:

Pressurized water reactor,

Boiling water reactor,

Pressurized heavy water reactor,

Light water graphite reactor and

Breeder reactors.

The Breeder reactors are the type of reactors that has the ability to yield more energy than it can consume which makes it economical.

The Breeder reactors are different from the regular nuclear reactors because it utilizes either uranium-238 or thorium, while regular nuclear reactors makes use of isotope uranium-235.

An advantage of Breeder reactors is that they produce more fuel that it consumes while it's disadvantage is that it's more dangerous than a regular reactor.

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Stste with reason the meathod of collection of hcl gas in laboratory

Answers

Answer:

HCl gas is collected by upward displacement of air because it is 1.28 times heavier than air. It is not collected in water because it is highly soluble in water.

Hope this helps you ;)

Explanation:

Explain how NaOH forms a basic solution when it dissolves in water.

Answers

When the base sodium hydroxide dissolves in water, sodium and chloride ions are formed.

What is base?

Any material that is slippery to the touch, tastes unpleasant, alters the colour of indicators (such as turning red litmus paper blue), combines with acids to generate salts, and facilitates certain chemical processes is considered a base in chemistry (base catalysis).

When the base sodium hydroxide dissolves in water, sodium and chloride ions are formed.

Since sodium hydroxide is an inert solid in itself, its ions do not impart any colour to the solution when it dissolves in water. So, a colourless solution is produced when sodium hydroxide is added to water.

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Choose the best match for each description. You can use each term once. ASAP

Answers

Answer: I hope this helps.

Explanation:

Answer quick cause its time
How do gamma rays differ from alpha particles and beta particles?

a)How do gamma rays differ from alpha particles and beta particles?
b)Gamma rays and alpha particles result in the formation of new atoms, but beta particles do not.
c)Alpha particle and beta particle emissions result in the formation of new atoms, whereas gamma ray emissions do not.
d)Gamma rays have mass, whereas alpha and beta particles do not.

Answers

Answer:

While alpha and beta rays have energy and mass, gamma rays are pure energy.

At the end of the experiment you will be assessing the purity of your aspirin by measuring its absorbance at 525 nm. If the absorbance measurement is found to be 0. 040 then what is the % salicylic acid impurity in your aspirin?.

Answers

At the end of the experiment you will be assessing the purity of your aspirin by measuring its absorbance at 525 nm. If the absorbance measurement is found to be 0. 040 then the % salicylic acid impurity in your aspirin will be 7.8 percent.

The sample solution's absorbance (A), as specified in the question, is 1.07. Beer's law is applied to determine the aspirin concentration, which is A = ebc.

Here, e is the extinction coefficient, which, according to the standard value for salicylic acid, is equal to 139.322 M-1cm-1, and b is the path length, which is equal to 1 cm. Now that we have our values,

A = ebc

c = A / (eb)

c = 1.07 / (139.322 × 1)

c = 0.00768 M

It is now necessary to compare the value of concentration determined with the concentration of aspirin previously given in order to calculate the percent salicylic acid in the sample.

Aspirin's initial concentration, which is specified in the query, is 0.02 grammes. Aspirin has a molar mass of 240 g/mol.

Consequently, the aspirin molecules will be,

0.02 / 240 = 8.33 × 10^-5 moles  

The final volume of the diluted solution given is 10 ml or 0.01 liters.  

The molarity of aspirin in the diluted solution will be,  

c1 = 8.33 × 10^-5 / 0.01 = 8.33 × 10^-3 M or 0.00833 M

Now, the percent of salicylic acid in the product will be,  

c1 - c / c1 × 100

(0.00833 - 0.00768) / 0.00833 × 100 = 7.8 %

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iron‑59 is used to study iron metabolism in the spleen. its half‑life is 44 days. how many days would it take a 28.0 g sample of iron‑59 to decay to 1.75 g?

Answers

A 28.0 g sample of iron‑59 to decay to 1.75 g would take 176 days if its half-life is 44 days.

How to find the number of days it would take to decay?

From the first order kinetics, We know that

t= 2.303 × log A₀[tex]A_{t}[/tex]     ....  (1)

Here, t is the number of days it would take for the sample to decay.

K refers to the first-order rate constant,

A₀ refers to the concentration at time = 0

[tex]A_{t}[/tex] is the concentration at time t.

Given that,

Half-life of the iron-59, [tex]t_{\frac{1}{2}}[/tex] = 44 days

A₀ = 28 g

[tex]A_{t}[/tex] = 1.75 g

t =?

K =?

In order to find the rate constant use the formula

[tex]t_{\frac{1}{2}}[/tex] = 0.693/K

K = 0.693 / [tex]t_{\frac{1}{2}}[/tex]

= 0.693/44

= 0.01575 per day

Substitute all the values in (1), to get,

t = (2.303/0.01575)×log(28/1.75)

= 176.06 days

Therefore, for a 28.0 g sample of iron‑59 to decay to 1.75 g, would take 176 days.

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How do you know what's in a mixture?

Answers

Answer:

combining two or more substances, such that each maintains its chemical identity. In other

which is an aspect of the kinetic-molecular theory and can be used to explain the behavior of plasmas? particle spacing can allow a very high density. particle kinetic energy is independent of temperature.

Answers

An aspect of the kinetic-molecular theory and can be used to explain the behavior of plasmas is particle exchange energy through elastic collision.

What is elastic collision?

In physics, an elastic collision is an encounter (collision) between the two bodies in which the total kinetic energy of the two bodies remains the same. In an ideal, perfectly elastic collision, there is no net conversion of the kinetic energy into other forms such as heat, noise, or potential energy.

During collision of small objects, kinetic energy is first converted to potential energy associated with a repulsive or attractive force between the particles (when the particles move against this force, i.e. angle between the force and the relative velocity is obtuse), then this potential energy is converted back to kinetic energy (when the particles move with this force, i.e. angle between force and the relative velocity is acute).

Collisions of the atoms are elastic, for example Rutherford backscattering.

A useful special case of the elastic collision is when the two bodies have equal mass, in which case they will simply exchange their momenta.

The molecules—as distinct from atoms—of gas or liquid rarely experience perfectly elastic collisions because kinetic energy is exchanged between the molecules’ translational motion and their internal degrees of freedom with each collision. At any instant, half collisions are, to a varying extent, inelastic collisions (the pair possesses less kinetic energy in their translational motions after the collision than before), and half could be described as “super-elastic” (possessing the more kinetic energy after the collision than before). Averaged across the entire sample, the molecular collisions can be regarded as essentially elastic as long as Planck's law forbids energy from being carried away by black-body photons.

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250cm3 of a solution of sodium chloride contain 11.70g NaCl. Find the concentration in 〖 〗^(−3) of this solution.

Answers

The concentration of 250cm³ of a sodium chloride solution that has a mass of 11.70g is 0.8M.

How to calculate concentration?

The concentration or molarity of a solution can be calculated by dividing the number of moles by its volume as follows:

Concentration = no of moles ÷ volume

According to this question, 250cm³ of a sodium chloride solution has a mass of 11.70g. The concentration of the solution can be calculated as follows:

Molar mass of NaCl = 58.5g/mol

moles of NaCl = 11.70g ÷ 58.5g/mol = 0.2mol

Concentration = 0.2mol ÷ 0.250dm³

Concentration = 0.8M

Therefore, the concentration of 250cm³ of a sodium chloride solution that has a mass of 11.70g is 0.8M.

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Suppose naoh standardization of khp determined that a volume of 25. 00 ml naoh has a concentration of 0. 049 m. Suppose 22. 20 ml of khp was used to get to the endpoint in this standardization. What is the mass of khp dissolved in 50. 00 ml of the standardization khp titrant?.

Answers

The mass of KHP that was dissolved in 50.00 mL of the standardization titrant is 0.5634 g.

1 mol of KHP reacts with 1 mol of NaOH, which would mean that the amount of NaOH used is equal to the amount of KHP in the sample. We can use this to calculate the number of moles:

c = n/V, so n = c * V = 0.049 M * 0.025 L = 0.001225 mol of NaOH and KHP

Using this amount, we can then calculate the KHP moles in the sample of the standardization titrant:

22.20 mL : 0.001225 mol = 50.00 mL : X

X = 0.001225 mol * 50.00 mL / 22.20 mL = 0.002759 mol

Then, by using the M value of KHP (204.22 g/mol), we obtain the mass of KHP of the sample:

n = m/M, so m = n * M = 0.002759 mol * 204.22 g/mol = 0.5634 g

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Which of the following are objects in motion?

rose bush
puddle of water
both rose bush and puddle of water
neither rose bush or puddle of water

Answers

Technically bolth are in motion. This is due to the fact on a cellular level there is motion in the rose bush. And waters bonds are always changing so the water is also in motion.

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Which statement best describes a scatterplot?
A. it shows data as a percentage of a whole
B. it shows data points connected by a single line
C. it shows quantitative data that relate two variables
D. it shows qualitative data grouped by similarities

Answers

D. it shows qualitative data grouped by similarities

Does a size separation technique make sense for separation of one soluble and one insoluble salt?.

Answers

NO, a size separation technique does not make sense for separation of one soluble and one insoluble salt.

To separate one soluble and insoluble salt, techniques of solvent extraction and evaporation, crystallization are used.  Among these, evaporation is the best technique to separate the salts.

Size separation techniques sieving, sifting, and screening. These are used on the basis of differences in size, shape, and density between particles.

The technique of evaporation is used. The mixture of the two soluble and insoluble salts are added to water. The soluble salt is allowed to dissolve and the insoluble salt is filtered out. The soluble salt can be obtained by evaporating with water.

This method involves four stages :

TitrationEvaporationCrystallizationRecrystallization        

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what is the investigation if the independent variable is altitude of water and the dependent variable is boiling temperature

Answers

If the independent variable is altitude of water and the dependent variable is boiling temperature. The experiment could be on how high does the water bubble and jump when boiling.

Consider strategies to adjust each variable individually once you believe you have identified those that may be at play. If you alter more than one at once, you won't be able to identify the variable that is responsible for your observation. There are instances when factors are connected and act in concert to generate an event. Try to pick variables at beginning that you believe behave independently of one another.

The altitude of water is the independent variable, sometimes referred to as the manipulated variable.

The boiling point of water is the dependent variable (sometimes referred to as the responsive variable).

Therefore, if the independent variable is altitude of water and the dependent variable is boiling temperature. The experiment could be on how high does the water bubble and jump when boiling.

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What forces must limestone be exposed to in order to change into marble?
O erosion
O compaction and cementation
O heat and pressure
O melting and cooling

Answers

The forces to which limestone must be exposed to in order to change into marble is (c) heat and pressure.

Limestone has calcium carbonate in it. So, the chemical formula for this is CaCO₃. When it is burnt it gives lime. It is a sedimentary rock.

Sedimentary rocks are those rocks which are formed from deposition of already existing rocks of fossils on the surface of the earth.

Marble also has calcium carbonate in it. So, the chemical formula for this is also CaCO₃. It is a metamorphic rock.

Metamorphic rocks are formed when they have to face harsh conditions like heat and pressure etc.

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the density of benzene at 15 °c is 0.8787 g/ml. calculate the mass of 0.1500 l of benzene at this temperature. enter your answer in terms of grams, but do not include units in the blank.

Answers

At 15 °C, benzene has a density of 0.8787 g/ml. 131.8g make up 0.15 L of benzene's mass.

What is density?

Density, mass of a unit volume of the material substance. The formula for density is d = M/V, where d is the density, M is mass, and V is volume. Density is commonly expressed in the units of grams per cubic centimeter. For example, the density of water is 1 gram per cubic centimeter, and the Earth’s density is 5.51 grams per cubic centimeter.

Density can also be expressed as the kilograms per cubic meter (in meter-kilogram-second or SI units). For example, the density of the air is 1.2 kilograms per cubic meter. The densities of common solids, liquids, and gases are listed in the textbooks and handbooks.

Density offers a convenient means of obtaining mass of a body from its volume or vice versa; the mass is equal to the volume multiplied by the density (M = V*d), while the volume is equal to the mass divided by the density (V = M/d). The weight of a body, which is usually of more practical interest than its mass, can be obtained by multiplying mass by the acceleration due to gravity.

There is a relationship between a substance's mass (m), volume (V), and density (d) that reads as follows:

d = m / V.

d = 0.8787 g/ml.

V = 0.15 x 1000 = 150 ml.

∴ the mass of 0.15 L of the benzene = d x V = (0.8787 g/ml) (150 ml) = 131.8 g.

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What additional information, if any, would enable you to calculate the molality of a 7. 35 molar solution of a nonelectrolyte solid dissolved in water?.

Answers

The additional information needed to calculate the molality of a 7.35 molar solution of a non-electrolyte solid dissolved in water is the density of that solid.

To calculate the molality(m) from the molarity(M) of a solution, the following formula is used

m = 1000M/M x MM- 1000d

Here MM is the molar mass of solute

And d is the density of the solute

As the other information like molarity and molar mass of the solute is already given to us, the additional information needed is density.

Thus, the additional information needed to calculate the molality of a 7.35 molar solution of a non-electrolyte solid dissolved in water is the density of that solid.

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