Are physical changes and chemical changes qualitative or quantitative data?

Answers

Answer 1
Qualitative, because qualitative goes based off physical features, hence “quality” in the prefix.

Related Questions

is CH3NH2O ionic or covalent

Answers

Answer:

i think ionic?

Explanation:

hope this helps

Do you think precipitation has a greater impact on the rate of chemical weathering or mechanical weathering? Explain

Answers

Greater rainfall has an greater increase on the rate of chemical weathering. Rain is a form of precipitation.

Jane was drinking a glass of water. She asked her father where the water
came from. Her father said it was groundwater that was pumped up by their
well. Jane wondered what the water looked like underground. This is what
her family said:
Mom: I think it looks like a huge ocean underground.
Dad: I think it looks like a small lake underground.
Jack: I think it seeps into little holes or spaces between the soil and the
rocks.
Annie: I think it looks like a long, underground tube filled with water.
Philip: I think it looks like an underground volcano with water spurting out
of the top.
Which person do you agree with the most

Answers

Janes brother Jack is actually correct, underground water seeps into little holes or spaces between the soil and the rocks.

Underground Water

Simply put, underground water is found in between soils and crack, another name for this is called aquifers were water is found.

It should be noted that underground water are found at varying levels depending the terrain.

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Small bodies from which the planets formed are called _____.

Answers

Answer:

The small bodies from which the planets formed are called planetesimals.

i need this done by tonight!!! GIVING BRAINLIEST TO CORRECT ANSWER


Match the terms to their definition.


Water circulation created by prevailing wind systems. The Gulf Stream is an example.



The length of open sea over which wind can blow steadily to create waves.



The amount of dissolved salt in a liquid.



The distance from the crest of one wave to the crest of another.



Water circulation created by differences in density.



This is what moves forward and through a wave.



The cyclical process of the changing state and movement of water around the Earth through evaporation, condensation, and precipitation.



As the amount of salt in water increases, the density of the water _________.



The type of energy possessed by moving water.



The rising of ocean water bringing nutrients up from the deep.



1.

The water cycle


2.

vapor transport


3.

salinity


4.

increases


5.

decreases


6.

surface currents


7.

Coriolis Effect


8.

deepwater currents


9.

trough


10.

wave period


11.

wavelength


12.

water molecules


13.

energy


14.

crest


15.

fetch


16.

electrical


17.

kinetic


18.

downwelling


19.

upwelling

Answers

Answer:

Gulf Stream. The Gulf Stream is a warm surface ocean current which originates in the Gulf of Mexico and flows northeast across the Atlantic, driven by the prevailing southwest winds. It influences the climate of the UK and Northwest Europe by bringing with it humid mild air.

Correct formula for barium hydroxide

Answers

Ba(OH)2

HOPE IT HELPS...!!!

pls help me with thiss

Answers

Answer:

D. Large body of lava

Explanation:

hope this helps please mark me brainless

What is the distinguishing characteristic of invertebrates?
Group of answer choices

Specialized tissues and organ systems

The lack of a centralized brain

The lack of a spinal column

Being an insect

Answers

The lack of a spinal column is the  distinguishing characteristic of invertebrates.

What is an Invertebrate?

These are organisms which lack a backbone(vertebral column) while vertebrates on the other hand have it.

This is why option C was chosen as the most appropriate choice in this scenario.

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2. Which is not true of an electric current?
A. An electric circuit provides a path for electric current to follow.
B. Electric current exists in all materials.
C. Electric current requires a specific path to follow.
D. If an electric circuit is broken, electric current will not flow.

Answers

B. Electric current requires a specific path to follow.

measuring masses of the reactants (Reaction 2) Step 7

Answers

Reaction rate is calculated using the formula rate = Δ[C]/Δt, where Δ[C] is the change in product concentration during time period Δt.
The rate of reaction can be observed by watching the disappearance of a reactant or the appearance of a product over time.
If a reaction produces a gas such as oxygen or carbon dioxide, there are two ways to measure the reaction rate: using a gas syringe to measure the gas produced, or calculating the reduction in the mass of the reaction solution.
If the reaction produces a precipitate, the amount formed can be used to determine reaction rate by measuring how long it takes for the forming precipitate to obscure the visibility of a cross through a conical flask.


How much heat must be removed from 75.0 g of water at 90.0°C to cool it to 23.0°C?

Answers

Answer:

See below

Explanation:

75 g * ( 90 - 23) C   *  1 cal / g-C

= 5025 cal     =    21 034 .7 J

What is the mole fraction of Ca3(PO4)2 by dissolving 126.32 g of calcium phosphate, Ca3(PO4)2, in 850 grams of H2O?

Answers

Based on the total moles of substance in the solution, the mole fraction of Ca3(PO4)2 is 0.0086

What is mole fraction?

Mole fraction is the fractions of the moles of a substance present in a given total moles of a mixture.

The mole fraction = moles of substance/total moles of mixture

Moles of Ca3(PO4)2 is calculated first:

Moles of Ca3(PO4)2 = mass/molar mass

molar mass of Ca3(PO4)2 = 310 g

Moles of Ca3(PO4)2 = 126.32/310 = 0.41

Moles of water = 850/18 = 47.22

Total moles = 47.63

Mole fraction of Ca3(PO4)2 = 0.41/47.22 = 0.0086

Therefore, the mole fraction of Ca3(PO4)2 is 0.0086

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How many moles are in 7.8 g of acetamide, CH3CONH2?

Answers

Answer:

.13 moles

Explanation:

To begin this problem:

First you need to find the molar mass of acetamide, to do so:

C=12g, H=1.008g, O=16g, and N=14g2(12)+5(1.008)+1(16)+1(14)=59.04

To find moles when given grams, we divide grams by the molar mass.

7.8g/59.04g/mol=.13 moles

Using 2 sig figs from what we are given, this is our final answer.

A Student Mixes 40. ML Of 0.10 M HBr(Aq) With 60. ML Of 0.10 M KOH(Aq) At 25°C. What Is The [OH-] Of The Resulting Solution?

Answers

After the complete neutralization reaction occurs, excess hydroxide ion is left unreacted and concentration of the hydroxide ion, [OH-] is 0.02 M.

What is the concentration of the hydroxide ion, [OH-]?

The hydroxide ion concentration is the amount in moles of hydroxide ion in a solution.

The hydroxide ion concentration is written as [OH-].

The equation of the reaction is given below:

[tex]HBr(aq) + KOH(aq) \rightarrow KBr(aq) + H_2O(l) \\ [/tex]

1 mole of HBr reacts with 1 mole of KOH

Moles of HBr = 40 mL × 0.1 M = 4 mmmoles

Moles of KOH = 60 mL × 0.1 M = 6 mmoles

Moles of [OH-] = 6 - 4 = 2 mmoles

Volume of solution = 100 mL

[OH-] = 2mmoles/100 mL = 0.02 M

Therefore, the concentration of the hydroxide ion, [OH-] is 0.02 M.

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a) Is ethanoic acid a weak electrolyte or a strong electrolyte, give a reason for your answer. Show the dissociation of ethanoic acid in water.

Answers

Answer:

Acetic acid is a weak electrolyte because its dissociation constant is small meaning there will be few ions in solution to conduct electricity.

Weak electrolyte are very less or partially ionized and strong electrolytes are completely ionized or 100% ionized. Ethanoic acid is weak electrolyte.

How to determine whether a acid is weak or strong electrolyte ?

To determine whether the acid is strong electrolyte or weak electrolyte check whether it is completely ionize or partially ionized. The molecular formula of ethanoic is [tex]CH_3COOH[/tex] and ethanoic acid is also called acetic acid. Ethanoic acid is weak electrolyte because it does not dissociate very much.

The dissociation of ethanoic acid in water:

[tex]CH_{3}COOH_{(aq)} + H_{2} O_{(l)}[/tex] ⇄ [tex]CH_{3}COO^{-}_{(aq)} + H_{3}O^{+}_{(aq)}[/tex]

Thus, from above conclusion we can say that Ethanoic acid is weak electrolyte and the dissociation of ethanoic acid in water is:  [tex]CH_{3}COOH_{(aq)} + H_{2} O[/tex] ⇄ [tex]CH_{3}COO^{-}_{(aq)} + H_{3}O^{+}_{(aq)}[/tex]

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What is another word for a substance that is a base?

A.
indicator

B.
amphoteric

C.
buffer

D.
alkaline

Answers

Answer:

D) alkaline

Explanation:

For a certain reaction with an average percentage yield of 80 %; if the theoretical yield was 5.0 g then the actual yield will be ?​

Answers

The actual yield of the reaction is 4.0 g, given that the percent yield of the reaction us 80% and the theoretical yield is 5.0 g.

What is percent yield of a reaction?

The percent yield of a reaction is the amount of actual product obtained from a reaction taken as a ratio of the expected amount of product expressed in percentage.

Percent yield = actual yield/theoretical yield × 100%

Given that the percent yield of the reaction us 80% and the theoretical yield is 5.0 g.

Actual yield = 80% × 5.0 = 4.0 g

Therefore, the actual yield of the reaction is 4.0 g.

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Carbon Dioxide's Effects on Temperature (Edmentum)

Task 2:

Carbon Dioxide's Effects on Temperature


In this activity, you will use sodium bicarbonate tablets to see the effects of carbon dioxide on temperature. Sodium bicarbonate tablets are effervescent tablets that release carbon dioxide when dissolved in water.


Estimated time to complete: 1 hour

You will need these materials:


2 empty two-liter plastic bottles (or two similar-sized plastic containers with tight-sealing lids), rinsed

2 thermometers (not mercury)

1 liter of water, room temperature

a ball of clay, about 2 inches in diameter (needed only if you’re using two-liter plastic bottles)

2 sodium bicarbonate tablets (such as Alka-Seltzer)

a lamp with a 150-watt incandescent bulb (if direct sunlight is not available)

Follow these steps to set up the experiment. Then answer the question in part A.


Fill both bottles with water until they are half full.

In one bottle, place two sodium bicarbonate tablets.

Plug the opening of the two bottles tightly with clay. The clay will act as the cap.

Place one thermometer in each bottle by carefully piercing it through the clay, so that the thermometer dangles in the air inside the bottle. Stay safe: do not use mercury thermometers in the event that they might break. The bottles must remain tightly sealed. The thermometer must not touch the water.

Put both bottles in front of the lamp or in direct sunlight. Turn on the lamp and let the bottles stand for one hour. Stay safe: To avoid electrocution, keep all water away from electrical sources.

Hypothesis and Data Collection


Part A

Write down your predictions. After an hour, do you think there will be a temperature difference between the two bottles? Explain.
















Part B

After one hour, record the temperatures. Write down your results.
















Analyze and Extend

Part A

Was your prediction about the temperatures in the two bottles correct? Explain.
















Part B

In your experiment, what is the dependent variable and what is the independent variable?
















Part C

The tablets were a source of carbon dioxide. What can you conclude about the effect carbon dioxide has in the atmosphere?
















Part D

The burning of fossil fuels, such as gasoline, coal, and oil, increases the amount of carbon dioxide in the atmosphere. Based on your experiment, what effects could this burning have on Earth’s temperature?
















Part E

Mary is concerned about greenhouse gases in the atmosphere. She wants to buy an electric car that doesn’t use gasoline at all. What questions should Mary ask about electric cars to ensure that she is making a good choice for the environment?
















Dispose of your waste properly:


Pour the water down the drain.

Rinse and recycle the plastic bottles.

Reuse the clay or place it in the trash.

Answers

Answer:

“You Asked” is a series where Earth Institute experts tackle reader questions on science and sustainability. Over the past few years, we’ve received a lot of questions about carbon dioxide — how it traps heat, how it can have such a big effect if it only makes up a tiny percentage of the atmosphere, and more. With the help of Jason Smerdon, a climate scientist at Columbia University’s Lamont-Doherty Earth Observatory, we answer several of those questions here.

(2 Question 6 Without modifying the apparatus, how could the reliability of the results be increased?​

Answers

Explanation:

Reliability can be improved by completing each temperature more than once and calculating an average.

Ideal Gas Law 1
Calculate the volume of 3.00 g of carbon dioxide gas at 288K and 123.3 kPa.
Give your answer in litres to three significant figures. Do not include units.

Answers

Answer:

1•323

Explanation:

mass of carbon=12

mass of oxygen=2*16=32

no of moles = 3/44

PV=nRT

V=(0.06818*8.31*288)/123.3*10^3

On a long bus trip, a traveler does
not drink
any water for several hours. How
will the volume of urine she produces that day
compare to the volume on a day when she
drinks several glasses of water? Explain.

Answers

Answer:

The volume will be less.

Explanation:

The volume of urine someone produces varies based on their liquid intake. The more liquid you intake, the more you must urinate (not a direct correlation, but basically).

Please help!!

How many O2 molecules occupy a 1.0 L flask at 65°C and
103.7 kPa?
Select one:
O a. 28 molecules
O b. 2.2 x 1022 molecules
O c.
1.1 x 1023 molecules
O d.
1.6 x 1025 molecules
e. 1.7 x 1025 molecules

Answers

Answer:

B, 2.22×10^22 molecules

Explanation:

Given PV=nRT, n=PV/RT

n=103.7×1.0/8.314×(65+273.15)

= 0.0368858... moles

Given n= number of particles/avogadros number

number of particles=n×avogadros number

number of particles = 0.03688...×6.02x10^23

= 2.22×10^22 molecules

A particle has a velocity that is 70 % of the speed of light and weighs 206.8 times the mass of an electron. Find the wavelength of this particle?

Answers

Speed of light = 3x10^8 m/s
Mass of electron = 9.11x10^-31 kg

70% of 3x10^8 = 2.1x10^8 m/s
206.8*9.11x10^-31 = 1.88x10^-28 kg

Equation for wavelength is: wavelength= plancks constant / (mass*velocity)

Plancks constant = 6.62x10^-34 m^2 kg/s

Plug all of these in and you get: 6.62x10^-34 / (1.88x10^-28/2.1x10^8) = 739.47

Your answer is 739.47 m

Both mass and weight provide a measure of the amount of matter in an object. Mass is the preferred measure because:

a. mass is independent of location.

b. mass is dependent on location.

c. mass is easier to measure.

d. mass is measured using the metric system.

Answers

Answer:

I think it's because mass is independent of location

Answer:

A

Explanation:

mass doesn't change from changes in gravity unlike weight

How many times more soluble is scandium fluoride in pure water than it is in a solution that is 0.00837 M in potassium fluoride? ScF3 (s) <---> Sc3+ (aq) + 3 F- (aq), Ksp = 5.81 x 10-24.

Answers

Scandium fluoride is 1.56 * 10¹¹ times more soluble in pure water than it is in a solution that is 0.00837 M in potassium fluoride.

What is the molar solubilty of scandium fluoride in pure water and in 0.00837 M potassium fluoride?

The molar solubilty of scandium fluoride in pure water and in 0.00837 M potassium fluoride is calculated from the Ksp value of Scandium fluoride.

Equation for the dissolution of scandium fluoride in water is given below:

[tex]ScF_3 \rightleftharpoons Sc^{3+} + 3F^{-}[/tex]

Molar solubilty in pure water is calculated thus:

[tex][Sc^{3+}] = x; [F^{-}] = x[/tex]

[tex]K_{sp} = [Sc^{3+}] * [F^{-}]^{3}[/tex]

[tex]5.81 *10^{-24} = x * x^{3} = x^{4}[/tex]

x = 1.55 * 10⁻⁶ M

Molar solubilty in 0.00837 M potassium fluoride is calculated thus:

[tex][Sc^{3+}] = x; [F^{-}] = (0.00837 + x)[/tex]

[tex]K_{sp} = [Sc^{3+}] * [F^{-}]^{3}[/tex]

[tex]5.81 *10^{-24} = x * (0.00837 + x)^{3}[/tex]

Since the Ksp value is very small, we assume that x <<< 0.008367, therefore;

[tex]5.81 *10^{-24} = x * (0.00837)^{3}[/tex]

x = 9.91 * 10⁻¹⁸ M

Comapring the molar solubilties in water and in 0.00837 M in potassium fluoride:

1.55 * 10⁻⁶ M/9.91 * 10⁻¹⁸ M = 1.56 * 10¹¹

Therefore, scandium fluoride is 1.56 * 10¹¹ times more soluble in pure water than it is in a solution that is 0.00837 M in potassium fluoride.

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Why does the moon and the sun have the same mass.

Answers

Why does the moon and the sun have the same mass?

Answer: The difference is that, on the moon, you are much lighter than on the Earth, but you still have the same mass

If 100g of nuclear waste Pu-239 is generated in a nuclear reactor, how long will it take to reduce down to 6.75g of Pu-239?

Answers

Answer:

See below...

Explanation:

6.79 = 100 ( 1/2)^n    solve for n = number of half lives

3.88 half lives

3.88 * 24000 = 93 130.7 years

Nitrogen and hydrogen react to form ammonia. 12dm of hydrogen reacted with excess nitrogen to form 2dm of ammonia. What is the percentage yield of ammonia at room temperature and pressure.

Answers

The percent yield shows the extent to which reactants are converted to products.  The percent yield of ammonia is 24.7%

Percent yield

The percent yield is obtained from the theoretical  yield and the actual yield. The reaction between hydrogen and Nitrogen is;

3H2 + N2 ---->2NH3

If 1 mole of H2 occupies 22.4 dm^3

x moles occupies 12dm^3

x = 0.54 moles

If 1 mole of NH3 occupies 22.4 dm^3

x moles of ammonia occupies 2 dm^3

x = 0.089 moles

Now;

From the reaction equation;

3 moles of hydrogen yields 2 moles of NH3

0.54 moles of hydrogen will yiled 0.54 moles * 2 moles/3 moles

= 0.36 moles of ammonia

Percent yield =  0.089 moles/0.36 moles * 100 = 24.7%

The percent yield of ammonia is 24.7%

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How much energy is gained when a 10.0g sample of liquid water increases in temperature from 13°C to 18°C?

Answers

Answer:

Your answer is 209 J.

Explanation:

First find △T by subtraction of two temperatures.

△T = 18°C - 13 °C

= 5°C.

Q=mc△t

where,

m= mass.

c = Specific Heat .

t = temperature.

As, Specific Heat capacity of water is 4.18 J/g°C

= 10 × 4.18× 5

= 209 Joules.

When a 10g sample of liquid water increases in temperature from 13°C to 18°C, then the amount of gained energy is 209 joules.

How do we calculate gained energy?

The amount of energy which is gained by any sample will be calculated as:

Q = mcΔT, where

Q = gained energy

m = mass of sample = 10g

c = specific heat of water = 4.18 J/g°C

ΔT = change in temperature = 18 - 13 = 5°C

On putting values we get

Q = (10)(4.18)(5)

Q = 209 Joules

Hence required amount of energy is 209 joules.

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Consider the entropy change in the following chemical or physical processes:
1.2 Na(s) + Cl₂(g) → 2 NaCl(s)
2. N₂(g) + 3 H₂(g) → 2 NH3(g)
3. H₂O(s)→ H₂O(l)
4. C10H22(1)→ C10H22(S)
5.2 Mg(s) + O₂(g) → 2 MgO(s)
In which of these processes is entropy increased?

Answers

Answer:

D

Explanation:

Recall that entropy measures the number of microstates in a substance, which is highest in gases, followed by liquids and solids. Hence, entropy increases if the products have more gaseous molecules than the reactants.

In reaction one, chlorine gas is converted into solid NaCl, so entropy decreaes. In reaction two, four moles of gas are converted into two moles of gas, so entropy decreases. In reaction three, ice is melted to form water, which has higher entropy. Thus, entropy increases. In reaction four, a liquid is freezed into its solid phase, leading to a decrease in entropy. In reaction five, oxygen gas is converted into solid MgO, so entropy decreases.

In conclusion, the answer is D.  

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