Dillon is conducting a survey about whether or not people like a traffic law that is being passed.Can he publish his findings as a scientific study because he collected information?

Answers

Answer 1
Using the scientific method, a researcher conducts a study in five phases: asking a question, researching existing sources, formulating a hypothesis, conducting a study, and drawing conclusions. Since Dillon only took a survey, I would say that while he did some research it is limited and is not classified as scientific.
I'm not certain, I am in Chemistry myself right now so I would get a second opinion...
Hope this helps nonetheless!:)
Answer 2

The answer is: No, because his information is subjective.

Survey about whether or not people like something is not objective (fact) and cannot be published.

The laws of science are statements that describe or predict a range of phenomena as they appear in nature.

Laws explain facts determined by experiment.

Laws do not have absolute certainty and be changed by future experiments and observations.


Related Questions

A liquid with a high surface tension exhibits __________.

strong cohesive forces

weak cohesive forces

strong adhesive forces

weak adhesive forces

Answers

strong cohosive forces (A)

Answer: strong cohesive forces

Explanation:

Surface tension is the net downward force acting on the surface of liquids due to the cohesive nature of liquids.

The force of attraction between similar molecules are called as cohesive forces and forces among different molecules are called as adhesive forces.

For example: Water molecules are bonded by strong hydrogen bonding between the hydrogen atom and the electronegative oxygen atom. Thus water molecules present on the surface are strongly attracted by the molecules present below the surface and thus act as a stretched membrane.  

The surface acquires a minimum surface are and thus acquire a spherical shape.

Thus the liquids with a high surface tension exhibits strong cohesive forces.

What are five characteristics of a group on the periodic table?

Answers

1. Group 1 (Alkali Metals)Group 2 (Alkaline Earth Metals)Group 13 (Boron Group)Group 14 (Carbon Group)Group 15 (Nitrogen Group)Group 16 (Chalcogens)Group 17 (Halogens)Group 18 (Noble Gases)
2.The elements in each group have the same number of electrons in the outer orbital
3.Group 2 elements share common characteristics. Each metal is naturally occurring and quite reactive.
4.There are 18 numbered groups in the periodic table
5.many characteristics are common throughout the group

AgO --> Ag2O; balance this equation/charges,

Answers

The balanced equation for AgO --> Ag2O is:

Ag + 1 O --> 1 Ag2O
 
To check if it is already balanced, you can verify it through this:
2 atoms for reactant side-Ag- 2 atoms for product side
1 atom for reactant side -O-  1 atom for product side

what is the name of alcohol that would produce 3-pentanone

Answers

Final answer:

The alcohol that would produce 3-pentanone upon oxidation is 3-pentanol, a secondary alcohol that transforms into the ketone when oxidized.

Explanation:

The alcohol that would produce 3-pentanone when oxidized is 3-pentanol. This type of reaction is an oxidation process where the alcohol, specifically a secondary alcohol, is oxidized to a ketone. The oxidation of alcohols depends on the class of the alcohol. In this case, 3-pentanol is a secondary alcohol, which means it has two alkyl groups attached to the carbon bearing the hydroxyl (-OH) group. When this alcohol is oxidized using appropriate oxidizing agents like chromic acid or pyridinium chlorochromate (PCC), it forms the corresponding ketone, which is 3-pentanone.

compare and contrast neap tides and spring tides discuss when they occur as well as the alignment of the earth moon sun system

Answers

Spring tides is when the daily tidal range is greatest and neap tides are when the daily tidal range is the smallest. As for alignment, spring tides occur when the earth, moon, and sun are directly in alignment with each other. Neap tides occur when the earth is in alignment with the sun, but the moon is at a 90 degree angle from that

Answer:

The spring tides occur seven days after the spring tide and the spring tides occur twice in the lunar year.

Explanation:

A spring tide is a tide in which there is a greatest difference between a high and low tide is the greatest. A spring tide occurs when the earth, the moon, and the sun are in the straight line. A neap tide, on the other hand, occurs when the sun, moon, and earth make a three triangle kind of a triangle. It occurs when there is a least between the highest and lowest tide.

Neap tides occur twice a month when the sun and moon are at right angles to the earth.  Spring tide, on the other hand, occur at new moon or full moon

I really don't get this question, could someone help
In a 1.0× 10–2 M solution of NH4ClO4(aq), identify the relative molar amounts of these species.

Answers

In this problem we need to identify the relative molar amounts of:
NH₄⁺ , ClO₄⁻ , NH₃ , HClO₄ , H₃O⁺ , H₂O, OH⁻
- The salt is completely ionized through this equation:
NH₄ClO₄ → NH₄⁺ + ClO₄⁻
0.01 M       0.01 M     0.01 M
So: 
[ClO₄⁻] = 0.01 M (conjugate base of strong acid)
[HClO₄] = 0 M
Note that: NH₄⁺ is weak acid ionized as follow:
NH₄⁺ ⇄ NH₃ + H⁺
Ka = [tex] \frac{[ H^{+}][ NH_{3}]}{ [NH_{4} ^{+}] } [/tex] = 5.6 x 10⁻¹⁰
[H⁺] = [NH₃] = x  and [NH₄⁺] = 0.01 - x (because Ka is very small so x will be neglected compared to 0.01)
Ka = 5.6 x 10⁻¹⁰ = [tex] \frac{ x^{2} }{0.01} [/tex]
[H⁺] = [NH₃] = x = 2.37 x 10⁻⁶ M
[NH₄⁺] = 0.01 M
[OH⁻] = [tex] \frac{1 X 10^{-14} }{[H^{+} ]} [/tex] = 4.22 X 10⁻⁹ M
because water is the solvent & this is very dilute solution:
[H₂O] = [tex] \frac{1000g/L}{18 g/mol} [/tex] = 55.6 M H₂O

Final answer:

In a 1.0× 10–2 M solution of NH4ClO4(aq), the relative molar amounts of NH4+, ClO4-, and NH4ClO4 are 1:1:1.

Explanation:

In a 1.0× 10–2 M solution of NH4ClO4(aq), the relative molar amounts of the species can be determined by looking at the balanced chemical equation for NH4ClO4 dissolving in water.

The balanced equation is NH4ClO4(aq) → NH4+(aq) + ClO4-(aq).

From the equation, we can see that for every 1 mole of NH4ClO4, 1 mole of NH4+ and 1 mole of ClO4- are produced.

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how many liters of nitrogen gas are needed to react with 90.0 g of potassium at STP in order to produce potassium nitride according to the following reactions?

Answers

Answer:8.59L

Explanation:

The other answer has all the right steps but the atomic mass of potassium is actually 39.098 not 19.

Final answer:

Approximately 8.58 liters of nitrogen gas are needed to react with 90.0 g of potassium to produce potassium nitride at STP, after calculating moles of potassium and its stoichiometric conversion to moles and then volume of nitrogen gas.

Explanation:

To determine how many liters of nitrogen gas are needed to react with 90.0 g of potassium to produce potassium nitride, we first need to understand the correct chemical reaction for forming potassium nitride from potassium and nitrogen gas. The reaction is as follows:

6 K(s) + N₂(g) → 2 K₃N(s)

Firstly, calculate the moles of potassium. The molar mass of potassium (K) is approximately 39.10 g/mol. Therefore, the moles of potassium in 90.0 g are calculated as:

90.0 g K × (1 mol K / 39.10 g K) = 2.30 mol K

From the balanced equation, it is clear that 6 moles of potassium react with 1 mole of nitrogen gas. Hence, the moles of nitrogen gas needed can be calculated as:

2.30 mol K × (1 mol N₂ / 6 mol K) = 0.383 mol N₂

At Standard Temperature and Pressure (STP), 1 mole of any gas occupies 22.4 liters. Therefore, the volume of nitrogen gas required at STP can be found as:

0.383 mol N₂ × 22.4 L/mol = 8.58 L N₂

Therefore, approximately 8.58 liters of nitrogen gas are needed to react with 90.0 g of potassium to produce potassium nitride at STP.

#1: Nitrogen (N) is made up of 99.632% 14N and 0.368% 15N. The atomic mass of 14N is 14.003 amu. The atomic mass of 15N is 15.000 amu. What is the average atomic mass of nitrogen?

A. 14.0 amu

B. 14.006 amu

C. 15.00 amu

D. 15.50 amu
**my answer: B.
but idk 100% :/,

Answers

The answer B is indeed correct. In order to calculate the average atomic mass of nitrogen we have to change the percentages to mole fractions. The total is : (14.003 amu * 0.99632)+(15.000 amu * 0.00368) = 14.0067 amu which is the answer B.

What is the main difference between an isotope and an ion?
a. an ion has extra protons.
b. an isotope has extra neutrons.
c. isotopes are radioactive while ions are not.
d. an ion always has a positive or a negative charge?

Answers

I believe the answer is D. An ion always has a positive or a negative charge. An Ion is an atom with net electric charge due to the loss or gain of one or more electrons. An isotope is each of two or more forms of the same element that contain equal numbers of protons but different numbers of neutrons in their neutron, thus they differ in relative atomic mass but not in chemical properties. 

What is solubility? solubility is the minimum amount of a solvent that can be used to make a solution. solubility is the pressure necessary to create a solution. solubility is the temperature that can be used to mix a solution. solubility is the ability of one substance to dissolve in another?

Answers

Answer:

Option 4.

Explanation:

Solubility may be defined as the ability of a solute to dissolve in a solvent. The maximum ability of solute to dissolve in a solvent can be measured by its solubility.

For example: alcohol ( solute) can dissolve in a solvent( water). Alcohol has high solubility for water and can easily dissolve in water.

Hence, the correct answer is option 4.

When a substance has high solubility, it readily dissolves in a solvent, resulting in a concentrated solution. The correct statement is Solubility is the ability of one substance to dissolve in another.

Solubility refers to the maximum amount of a solute that can dissolve in a given amount of solvent at a specific temperature and pressure. It is a measure of how well a substance can dissolve in another substance to form a homogeneous mixture called a solution.

Solubility is typically expressed in terms of the amount of solute that can dissolve in a given amount of solvent, often measured in grams per liter (g/L) or moles per liter (mol/L). It is influenced by factors such as temperature, pressure, the nature of the solute and solvent, and the presence of other substances.

Therefore, the correct statement is: Solubility is the ability of one substance to dissolve in another.

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The diprotic acid h2co3 can produce two buffers depending on the ph of the solution. identify the conjugate acid/base pair from carbonic acid that would form the most basic buffer.

Answers

These are the choices for this question:
a) CO₃²⁻ and OH⁻
b) CO₃ and CO₃²⁻
c) H₂CO₃ and CO₂⁻³
d) H⁺ and H₂CO₃
e) HCO₃ and HCO₃⁻
This is the best answer for the choices given is e) but the HCO₃⁻ and CO₃²⁻ pair would be more basic than the carbonic / bicarbonate pair.
Considering the answers;
a) CO₃²⁻ and OH⁻
b) CO₃ and CO₃²⁻
c) H₂CO₃ and CO₂⁻³
d) H⁺ and H₂CO₃
e) H₂CO₃ and HCO₃⁻
The correct answer is e) H₂CO₃ and HCO₃⁻; however, the HCO₃⁻ and CO₃²⁻ pair would be more basic than the carbonic / bicarbonate pair. A buffer is a mixture of a conjugate acid-base pair that can resist changes in pH upon addition of an acid or a base. Carbonic acid is formed when carbon dioxide is dissolved in water; Bicarbonate buffer system consists of carbonic acid, a weak acid, and the bicarbonate anion, its conjugate base.

According to Ptolemy's model of the movement of celestial bodies, A. the sun is the center of the universe. B. the earth rotates around the sun. C. planets orbit in circular paths around the earth. D. the earth rotates around the moon.

Answers

C. planets orbit in circular paths around the earth.

If carbon monoxide reaches a temperature of over 1,100 degrees Fahrenheit, it will ignite in a combustion reaction with oxygen. What would the product(s) of the reaction be?

Answers

Answer is: product of chemical reaction would be carbon dioxide.
Balanced chemical reaction: 2CO(g) + O₂(g) → 2CO2(g).
There are same number of atoms of on both side of balanced chemical reaction: four oxygen atoms and two carbon atoms.
Carbon change oxidation number from +2 to +4 and oxygen from 0 to -2.

Answer:

2CO2 or A

Explanation: i just got its right!

A slice of pizza contains 29 g of carbohydrate, 13 g of protein and an unknown amount of fat. if the pizza contains 280 kcal, how many grams of fat are present? report the answer to 2 significant figures.

Answers

When different macronutrients (e.g., carbohydrates) are metabolized, they yield different amounts of energy, commonly measured in kilocalories.

They are given by the following conversion factors:

carbohydrates = 4 kcal/g
protein = 4 kcal/g
fat = 9 kcal/g

If the slice of pizza contains 29 g carbohydrates, that means there are 4 kcal/g × 29 g = 116 kcal from carbohydrates. It contains 13 g protein, so there are 4 kcal/g × 13 g = 52 kcal from protein.

The total number of kilocalories is 280, of which we have accounted for 168 (116+52). 280–168=112 kcal.

So, there are 112 kcal from fat. Using our conversion factor, 112 kcal × 1 g/9 kcal = 12 g fat.

The grams of fat present is 12 grams.

Based on the given information,

• A slice of pizza contains 13 grams of protein, 29 grams of carbs.  

• The total calories present in the pizza is 280 kcal.  

Now there is a need to find the grams of fat present in the pizza,

Total calories = 280 kcal

Total calories of carbohydrates = 29 × 4 kcal (1 g of carb contain 4kcal of energy) = 116 kcal.

Total calories of protein = 13 × 4 kcal (1 g of protein contains 4kcal of energy) = 52 kcal.

Calories due to fat = (280 kcal) - (116 kcal + 52 kcal)

= 112 kcal

1 gram of fat contains 9kcal of energy. The amount of fat can be determined as,

Amount of fat = (112/9) g = 12.44 grams or 12 grams of fat.

Thus, the grams of fat present is 12 grams.

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When ions form they have the electron configuration of: A) Alkali Metals
B) Alkaline Earth Metal C) Halogens D) Noble Gas

Answers

The answerrrrrr isssss B I think

Alkali metals have a general outermost electronic configuration of [tex] ns^{1} [/tex]

Alkali earth metals have a general outermost electronic configuration of [tex] ns^{2} [/tex]

The +1 ion of the alkali metals has a stable octet configuration of the nearest noble gas as the outermost ns electron is lost.

The +2 ion of the alkaline earth metals has a stable configuration of the nearest noble gas as the two electrons in the outermost ns shell are lost.


A liquid that evaporates at a slow rate exhibits __________.

strong intermolecular forces

weak intermolecular forces

no intermolecular forces

a low volatility

Answers

Weak intermolecular forces.
Less energy is therefore needed to overcome the weak intermolecular forces between the molecules, to separate out.

Hope it helped!

Answer:

The correct answer is "strong intermolecular forces".

Explanation:

During the evaporation phase, external energy is applied to a substance that results in the separation of their molecules. The evaporation rate is closely related to the intermolecular forces within the substance. A liquid that evaporates at a slow rate exhibits strong intermolecular forces. This happens because the energy applied to the liquid would need more time to separate the molecules of a substance that are strongly attached.

How many moles of CO2 are in 1.0L at 25 degrees C and 95 kPa?

Answers

The problem with this is which R do you use in PV = nRT. Everything else is straightforward. You can google the multitude of Rs that come about because the only difference is in the units used. Most of the time it is 8.314. When you google, call it the gas constant in PV = nRT. Keep it bookmarked when you are doing problems in this section.

R = 8.314 L kPa/(mol oK)
T = 25oC = 25 + 273 = 298oK
P = 95000 Pa
V = 1.0 L

Now you are all set to find n
Rearrange the formula
n = PV/(RT)
n = 95000 * 1/ (8.314 * 298)
n = 38.343 Seems like an awful lot. But that's what you are getting

Which three temperature readings all mean the same thing? Question options: 273 Kelvin, 0 degrees Celsius, 32 degrees Fahrenheit 373 Kelvin, 100 degrees Celsius, 273 degrees Fahrenheit 100 Kelvin, 0 degrees Celsius, 32 degrees Fahrenheit 273 Kelvin, 100 degrees Celsius, 212 degrees Fahrenheit

Answers

273 Kelvin, 0 degrees Celsius, 32 degrees Fahrenheit
Answer;

273 Kelvin, 0 degrees Celsius, 32 degrees Fahrenheit

Explanation;

Kelvin, degrees Celsius and degrees Fahrenheit, all are units that may be used to measure temperature.

Each unit may be converted to another using the following formulas.

°C = (°F - 32) × 5 / 9 °F = (°C ×1.8) + 32 K = °C + 273.0°C = K - 273.0

Which means 0 °C is equivalent to 273 Kelvin, (K = °C + 273.0) and also equivalent to 32 degrees Fahrenheit (°F = (°C ×1.8) + 32 ).

which functional group is found in an ester?

Answers

The functional group found in an ester is a carbonyl group with an attached second oxygen atom that is bonded to a carbonyl carbon substituent by a single bond, usually a pair of alkyl or aromatic groups. In addition, it can be shown in text as RCOOR or occasionally as ROCOR, which made them responsible in the distinctive and attractive odors and flavors of many flowers, perfumes, and ripe fruits.  

 

 

An ester is a chemical compound derived from an acid (organic or inorganic) in which at least one-OH (hydroxyl) group is replaced by an -O- akyl (alkoxy) group. Often esters are derived from a carboxylic acid and an alcohol.
Therefore, -COO- is the ester functional group while that of carboxylic is -CO-OH, which makes carboxylic acids behave like carboxylic acids.

This is is the common name for the aqueous cation h3o+, formed when a water molecule combines with the proton from a hydrogen atom.

Answers

Answer is: hydronium ion.
Chemical reaction: H⁺(aq) + H₂O(l) → H₃O⁺(aq).
Hydronium ion is positive ion present when an Arrhenius acid, for example hydrochloric acid (HCl(aq)) is dissolved in water, hydrochloric acid in solution give up a proton (a positive hydrogen ion, H⁺) to the surrounding water molecules (H₂O): HCl(aq) + H⁺(aq) → Cl⁻(aq) + H₃O⁺(aq).

Rounded to the nearest whole number, how many neutrons, on average, are in an atom of osmium? 76 114 190 266

Answers

osmium has 114 neutrons on average

Answer: The number of neutrons in osmium is 114.

Explanation:

Atomic number is defined as the number of protons that are present in an atom. It is represented as 'Z'

Atomic number = Number of protons

Mass number is defined as the sum of number of protons and number of neutrons that are present in an atom. It is represented as 'A'

Mass number = Number of neutrons + Number of protons

We know that:

Atomic number of osmium = 76

Mass number of osmium = 190

Number of neutrons = 190 - 76 = 114

Hence, the number of neutrons in osmium is 114.

If you set up an experiment with two different independent variables, then the results would be_____.

A. inconclusive; you would not know which of the two variables caused the change
B. definitive; the results would be more accurate if you change two variables at a time
C. conclusive; showing a strong correlation between dependent and independent variables
D. somewhat conclusive; you know the change resulted from one of the variables

Answers

D. somewhat conclusive

Answer:

d

Explanation:

How many moles of fe(oh)2 [ksp = 1.8 ´ 10-15] will dissolve in 1.0 liter of water buffered at ph = 10.37?

Answers

Answer : The moles of [tex]Fe(OH)_2[/tex] is, [tex]3.259\times 10^{-8}mole[/tex]

Explanation :

First we have to calculate the [tex]H^+[/tex] concentration.

[tex]pH=-\log [H^+][/tex]

[tex]10.37=-\log [H^+][/tex]

[tex][H^+]=4.26\times 10^{-11}M[/tex]

Now we have to calculate the [tex]OH^-[/tex] concentration.

[tex][H^+][OH^-]=K_w[/tex]

[tex]4.26\times 10^{-11}\times [OH^-]=1.0\times 10^{-14}[/tex]

[tex][OH^-]=2.35\times 10^{-4}M[/tex]

Now we have to calculate the [tex]Fe^{2+}[/tex] ion concentration.

The balanced equilibrium reaction will be:

[tex]Fe(OH)_2\rightleftharpoons Fe^{2+}+2OH^-[/tex]

The expression for solubility constant for this reaction will be,

[tex]K_{sp}=[Fe^{2+}][OH^-]^2[/tex]

Now put all the given values in this expression, we get:

[tex]1.8\times 10^{-15}=[Fe^{2+}]\times (2.35\times 10^{-4})^2[/tex]

[tex][Fe^{2+}]=3.259\times 10^{-8}M[/tex]

Now we have to calculate the moles of [tex]Fe(OH)_2[/tex].

[tex]\text{Moles of }Fe(OH)_2=\text{Molarity of }Fe(OH)_2\times \text{Volume of solution}[/tex]

[tex]\text{Moles of }Fe(OH)_2=3.259\times 10^{-8}mole/L\times 1L=3.259\times 10^{-8}mole[/tex]

Therefore, the moles of [tex]Fe(OH)_2[/tex] is, [tex]3.259\times 10^{-8}mole[/tex]

The number of moles of Fe(OH)₂ dissolved in 1.0 liter of water buffered at pH = 10.37 is 3.29x10⁻⁸.

The reaction of Fe(OH)₂ solubility in water is:

Fe(OH)₂(s) ⇄ Fe²⁺(aq) + 2OH⁻(aq) (1)

The product of solubility constant for the above reaction is:

[tex] Ksp = [Fe^{2+}][OH^{-}]^{2} = 1.8\cdot 10^{-15} [/tex]    (2)

To find the number of moles of Fe(OH)₂ dissolved in the water, we need to find the concentrations of Fe²⁺ and OH⁻.

The OH⁻ concentration can be calculated from the pH:

[tex] pH + pOH = 14 [/tex]

[tex] pOH = 14 - pH = 14 - 10.37 = 3.63 [/tex]

[tex] pOH = -log([OH^{-}]) [/tex]

[tex] [OH^{-}] = 10^{-pOH} = 10^{-3.63} = 2.34 \cdot 10^{-4} M [/tex]

Now, we can find the Fe²⁺ concentration (eq 2)

[tex] [Fe^{2+}] = \frac{Ksp}{[OH^{-}]^{2}} = \frac{1.8\cdot 10^{-15}}{(2.34 \cdot 10^{-4} M)^{2}} = 3.29 \cdot 10^{-8} M [/tex]

The number of moles of Fe²⁺ is:

[tex] n_{Fe^{2+}} = [Fe^{2+}]*V = 3.29 \cdot 10^{-8} mol/L*1.0 L = 3.29 \cdot 10^{-8} \:moles [/tex]

From reaction (1), we have that 1 mol of Fe(OH)₂ produces 1 mol of Fe²⁺, so the number of moles of Fe(OH)₂ is:

[tex] n_{Fe(OH)_{2}} = n_{Fe^{2+}} = 3.29 \cdot 10^{-8} \:moles [/tex]

Therefore, 3.29x10⁻⁸ moles of Fe(OH)₂ will dissolve in 1 liter of water.

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The conversion of 1 mole of water at 0°c to 1 mole of ice at 0°c releases 6.01 kj. what must be true about the heat absorbed during the melting of 1 mole of ice at 0°c to 1 mole of water at 0°c? it must be less than 6.01 kj. it must be greater than 6.01 kj. it must be 6.01 kj.

Answers

Answer: it must be 6.01 kJ.

Explanation:

Latent heat of freezing is the amount of heat released to convert 1 mole of liquid to 1 mole of solid at atmospheric pressure.

[tex]H_2O(l)\rightarrow H_2O(s)[/tex]

Given: latent heat of freezing is 6.01 kJ.

Latent heat of fusion is the amount of heat required to convert 1 mole of solid to 1 mole of liquid at atmospheric pressure. If latent heat of freezing is 6.01 kJ, latent heat of fusion will be same but the heat will be absorbed.

[tex]H_2O(s)\rightarrow H_2O(l)[/tex]

A 50.0 mL sample of 1.54×10−2 M NaSO4 is added to 50.0 mL of 1.28×10−2 Ca(NO3)2. What percentage of the Ca2+ remains unprecipitated?,

Answers

The reaction would be as shown below;
Na2SO4 + Ca(NO3)2 = CaSO4 + 2 NaNO3
The moles of NaSO4 will be;
   = 0.05 × 0.0154 = 0.00077 moles
While the number of moles of Ca(NO3)2
   = 0.05 × 0.0128 = 0.00064 moles
The mole ratio of sodium sulfate and calcium nitrate is 1:1
Ca(NO3)2 is the limiting reactant, so ignoring the Ksp of CaSO4, zero percent of the Ca^2+ ions remain unprecipitated.

Help me please 11 and 12

Answers

11. The cause of increasing CO2 may be from industrial use. For example, factories have boilers that emit CO2 into the atmosphere. This also correlates with the fact that industrialization has been increasing over the past several decades. Possible other sources include vehicle fuel emissions.

12. Because trees and other plants take in CO2 for photosynthesis, and release oxygen (O2) instead, planting a large number of these would slowly increase the rate of consumption of the CO2. As long as the rate of CO2 absorption from the plants is faster than the rate of production from other factories, the CO2 concentration will gradually decrease.

What is the mass of 1.50 mol C5H12

Answers

Final answer:

The mass of 1.50 mol of C₅H₁₂ is calculated to be 108.09 g using the molar mass of the compound.

Explanation:

The molar mass of a compound is the total mass of all the atoms in the molecule. The compound C₅H₁₂ consists of 5 carbon atoms and 12 hydrogen atoms. Given that the atomic mass of carbon (C) is 12.01 g/mol and the atomic mass of hydrogen (H) is 1.01 g/mol, the molar mass of C₅H₁₂can be calculated as: (5 x 12.01 g/mol) + (12 x 1.01 g/mol) = 72.06 g/mol. Therefore, the mass of 1.50 mol C₅H₁₂ would be (1.50 mol x 72.06 g/mol) = 108.09 g.

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Final answer:

The mass of 1.50 mol of C5H12 (pentane) is 108.2247 grams. First, the molar mass of C5H12 is calculated by summing the atomic masses of carbon and hydrogen, then this molar mass is multiplied by the number of moles given (1.50 mol) to find the mass.

Explanation:

To calculate the mass of 1.50 mol of C5H12, we need to first determine its molar mass. The molar mass of a compound is the sum of the masses of all the atoms in one mole of that compound. For C5H12, which is pentane, the molar mass can be calculated as follows:

(5 atoms × 12.011 g/mol for Carbon) + (12 atoms × 1.0079 g/mol for Hydrogen)(5 × 12.011) + (12 × 1.0079) = 60.055 + 12.0948 = 72.1498 g/mol

Now that we have the molar mass, we can find the mass for 1.50 mol:

1.50 mol × 72.1498 g/mol = 108.2247 grams

This calculation assumes that the molar mass has been rounded to four significant figures to match the precision of 1.50 mol, thus the mass of 1.50 mol C5H12 is 108.2247 grams with four significant figures.

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Consider two solutions, solution a and solution

b. [h+] in solution a is 370 times greater than that in solution

b. part a what is the difference in the ph values of the two solutions?

Answers

Final answer:

The difference in the pH values of two solutions, where one solution has an H+ concentration 370 times greater than the other, is approximately 2.568 pH units, calculated using a logarithmic scale.

Explanation:

The question asks to calculate the difference in the pH values of two solutions where the concentration of hydrogen ions [H+] in solution A is 370 times greater than that in solution B. The pH scale is logarithmic, which means a tenfold increase in hydrogen ion concentration results in a decrease of 1 unit in pH. Therefore, for each 10-fold difference in concentration, there is a 1 unit difference in pH.

Since the concentration in solution A is 370 times greater, we first need to find how many times 10 fits into 370 to determine the pH difference. We can do this by taking the logarithm (base 10) of 370:

pH difference = log(370) = 2.568

Therefore, the difference in pH between solution A and solution B is approximately 2.568 pH units.

When a wave encounters a large gapless barrier which of the following describes what will happen

Answers

I believe when the wave encounters a large gapless barrier, the barrier will absorb some of the wave's energy. 
A wave is a periodic disturbance that propagates itself through a medium or space. When a wave encounters a barrier that is the boundary of the medium in which the wave is travelling, the wave is reflected, and the barrier may absorb some energy of the wave.

Fill in the blank: You can find the number of __________ in any atom by subtracting the atomic number from the mass number.

A.
electrons

B.
neutrons

C.
protons

Answers

B is true if we subtract atomic number(the number of protons )from the mass number
we can find neutrons.
hope this helps

The atomic number of an atom is the number of its electrons which is equal to the number of its protons. Mass number is the sum of number of protons and neutrons. Hence, substracting atomic number from mass number give us the number of neutrons.

What is mass number ?

An atom is made of subatomic particles, electrons, protons and neutrons. The protons and neutrons are located inside the nucleus and the electrons revolving around the nucleus through fixed energy levels.

In a neutral atom, the number of electrons is equal to the number of protons. This number is called the atomic number of the atom. The sum of number of neutrons and number of protons is called mass number of the atoms.

Substracting atomic number from mass number is the subtraction of number of protons from the mass number. Hence, it gives the number of neutrons. Thus, option B is correct.

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