This experiment is to see if water flows faster out of a smaller can or a larger can.
You will need:
• two cans (one quite small like a soup can and the other large, like a juice, can.)
Follow these steps:
A. Remove the top of each can. Punch a hole in the side of each can, very close to the bottom, making sure the holes are equal in size. Cover each hole with a piece of tape, and place the cans next to the sink.
B. Put water in both cans, making sure the water is at the same level - different amounts, but at the same level. Turn the cans so the holes are facing into the sink, and remove the tape at the same time.
Answer these questions: Do the streams of water shoot out at the same distance?
Why or why not?

Answers

Answer 1

Answer:

The streams of both cans shoot out at the same distance.

Explanation:

The water is coming out of the holes with the same pressure of the air in the can wanting to come out.

Answer 2

Both cans' streams shoot out at the same distance. Because the water is leaking from the holes at the same pressure that the air in the container is trying to escape.

Why do liquids put equal pressure on the container's wall at the same depth?At the same depth, liquids exert identical pressure on the container's wall.This is due to the fact that the liquid density at the same depth will be the same.

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Related Questions


A scientist is investigating the effects of electromagnetic radiation on plant growth. She wants to test the plants with two different types of electromagnetic
waves: one with a very long wavelength and one with a very short wavelength. Ideally, the waves will have the greatest possible difference in wavelength.
Which two types of waves should she choose?

Answers

Radio waves because they have the longest wavelength and gamma waves because they have the shortest wavelength.

To maximize the difference in wavelength for the plant growth experiment, the scientist should use radio waves for the long wavelength and gamma rays for the short wavelength.

The question deals with the investigation of the effects of electromagnetic radiation on plant growth, focusing on the difference in wavelengths of the radiation used. To have the greatest possible difference in wavelength, the scientist should choose radio waves for the very long wavelength and gamma rays for the very short wavelength. Radio waves have the longest wavelengths in the electromagnetic spectrum and carry the least energy, somewhat analogous to making wide waves with a rope using little effort. On the other hand, gamma rays have the shortest wavelengths and carry the most energy, similar to creating short, tight waves in a rope which requires significantly more energy.

Compared with Earth, the Moon has a surface that is geologically less active. For example
A.
both the Moon and the Earth have continents that move around.
B.
the Moon has many active volcanoes, while the Earth has none.
C.
the Moon has no active volcanoes, while the Earth has many.
D.
the Moon has continents that move around, while the Earth does not.

Answers

Have you tried using quizlet but tbh I would say C
The answer is C. The earth does have volcanos, so it isn’t B. Earth has continents so it’s not D

Which statement describes a chemical property of iron?

Iron oxidizes.

Iron is a solid at STP.

Iron melts.

Iron is attracted to a magnet.

Answers

Answer:

iron oxidizes

Explanation:

Being a solid, melting, and attraction are all physical properties.

Iron oxidizes is a chemical property of iron. Hence, option A is correct.

What is a chemical property?

A chemical property is a characteristic of a particular substance that can be observed in a chemical reaction.

Iron is known to react with oxygen ([tex]O_2[/tex]) in water or air moisture to form various insoluble iron oxide compounds described commonly as rust; there are sixteen known iron oxides and oxyhydroxides.

The most common iron oxides are ferrihydrite ([tex]Fe_2O_30.5H_2O[/tex]), hematite ([tex]Fe_2O_3[/tex]) and magnetite ([tex]Fe_3O_4[/tex]).

Hence, option A is correct.

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Describe at least three ways our understanding of the atom has changed. See the hint in the reference image.

Answers

The first model of the atom was developed by JJ Thomson in 1904, who thought that atoms were composed purely of negatively charged electrons.

This theory was then disproved by Ernest Rutherford and the gold foil experiment in 1911, where Rutherford shot alpha particles at gold foil, and noticed that some went through and some bounced back, implying the existence of a positive nucleus.

In 1926, the Austrian physicist Erwin Schrödinger created a quantum mechanical model of the atom by combining the equations for the behavior of waves with the de Broglie equation to generate a mathematical model for the distribution of electrons in an atom.
Final answer:

Our understanding of the atom has changed through the discovery of subatomic particles, the development of quantum theory, and advancements in imaging technology.

Explanation:

Our understanding of the atom has changed significantly over time. Here are three ways our understanding has evolved:

The discovery of subatomic particles: In the early 20th century, scientists such as J.J. Thomson, Robert Millikan, and Ernest Rutherford conducted experiments that led to the discovery of electrons, protons, and neutrons. This helped establish the idea that atoms are composed of smaller particles.The development of quantum theory: In the early 20th century, quantum theory revolutionized our understanding of atoms by explaining the behavior of electrons. It introduced the concept of electron energy levels and the wave-particle duality of electrons.Advancements in imaging technology: With the development of scanning tunneling microscopes and other imaging techniques, scientists have been able to directly observe individual atoms and molecules. This has provided insights into their structures and arrangements.

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Which statements accurately describe the roles of decomposers in the carbon cycle? Select three options. Decomposers release carbon dioxide into the air as waste. Decomposers remove carbon dioxide from the air during photosynthesis. Decomposers break down the remains of dead plants and animals. Decomposers return carbon compounds to the soil. Decomposers use carbon to make food molecules.

Answers

Answer:

1,3,4

Explanation:

just took the test

The three statements that accurately describe the roles of decomposers in the carbon cycle are:

Decomposers release carbon dioxide into the air as waste.Decomposers break down the remains of dead plants and animals. Decomposers return carbon compounds to the soil.

DECOMPOSERS:

Decomposers are organisms capable of breaking down dead organic matter. Decomposers include bacteria, fungi etc.

Decomposers play a vital role in recycling of nutrients and carbon in the atmosphere. They break down dead organic matter and release the components into the atmosphere.

Decomposers perform the following functions as it relates to the carbon cycle:

Decomposers release carbon dioxide into the air as waste.Decomposers break down the remains of dead plants and animals. Decomposers return carbon compounds to the soil.

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Which of the following is best described by the term macroscopic?
A. H₂O
B. Water is composed of two hydrogen atoms and one oxygen atom.
C. Water in the liquid phase boils to become a gas.
D. Water molecules in the solid phase are tightly held together.​

Answers

Answer:

D

Explanation:

because macroscopic is visible to the naked eye.

What is true of a compound?

It does not always retain the properties of the substances that make it up
It requires electrical energy to make
It requires heat energy to make
It must have water as one of its components

Answers

Answer:

It does not always retain the properties of the substances that make it up

Explanation:

Answer:

A/1

Explanation:

Compounds do NOT always retain the properties of the substances that make it up.

What type of solution would you have if you dissolved 60g of Na HASO4 in 100g of 60°C water?
Solubility vs. Temperature for a variety of salts
Solubility (g salt/100 g H20)
Naci
- NazHASO4
+ Ba(NO3)2
Naz804
. Ce2(SO4)3•9H20
10 20
Temperature (°C)
30
40
50
60
70
80
90
100
OOOO
saturated
Cannot be determined
unsaturated
supersaturated

Answers

The type of solution you have if you dissolved 60g of NaHSO[tex]_4[/tex] in 100g of 60°C water is unsaturated.

What are saturated and unsaturated solution?

A solute is dissolved in a solvent to form a solution. We refer to the final mixture as a solution. There is an absolute maximum of solute that can be dissolved in a given solvent at any given pressure and temperature for the solute to stay dissolved inside the solution phase.

Unsaturated solutions have the ability to dissolve more solutes than saturated ones. Since these solutions have not yet reached saturation, a precipitate just at bottom would never be present. From a distance, a solution that is nearly saturated and one that is not would resemble one another. The type of solution you have if you dissolved 60g of NaHSO[tex]_4[/tex] in 100g of 60°C water is unsaturated.

Therefore, the type of solution you have if you dissolved 60g of NaHSO[tex]_4[/tex] in 100g of 60°C water is unsaturated.

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this is the last week of school for me and i need help pleaseee !!
Answer the following prompt in a CER format:
Cold Packs are often used to treat injuries. Cold Packs are designed in such a way that
when the pack gets snapped, it breaks the vessel allowing all of the reactants to mix.
Upon mixing the pack gets very cold. Is the reaction in the cold pack an endothermic or exothermic reaction. Write a CER to defend your answer.

Answers

Answer:

The reaction in the cold pack is an endothermic reaction

Explanation:

An endothermic reaction is a reaction that absorbs energy (heat) from the surrounding to supply the required energy of activation that allows the occurrence of the reaction

Therefore, when a reaction is endothermic, it boundary or the system where the reaction is occurring feels cold to touch

Hence, the reaction in the cold pack is an endothermic reaction.

Final answer:

The reaction in a cold pack is exothermic, as it releases heat energy to create the cooling effect.

Explanation:

Cold packs are designed to treat injuries by providing a cooling effect. When the pack is snapped, a chemical reaction occurs inside the pack, resulting in the release of cold temperatures. This reaction is exothermic because it releases heat energy to the surroundings.

Inside the cold pack, there are reactants separated by a barrier. When the pack is snapped, the barrier breaks, allowing the reactants to mix. One common reactant in cold packs is ammonium nitrate, and when it is mixed with water, it undergoes an exothermic reaction. This reaction releases energy in the form of heat, making the pack feel cold.

In conclusion, the reaction in a cold pack is exothermic because it releases heat energy, resulting in the pack feeling cold when activated.

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How is calcium essential to your life?

Answers

Answer  The body also needs calcium for muscles to move and for nerves to carry messages between the brain and every body part. In addition, calcium is used to help blood vessels move blood throughout the body and to help release hormones and enzymes that affect almost every function in the human body

Explanation:

Answer:

Calcium is a mineral for humans which is really important.It helps you be healthy and be in shape(mostly your teeth and your bones).Calcium also keeps your blood and muscles moving and helps your nerves send messages from your brain to the rest of your body.Calcium helps you a lot and is essential to your life.

Hope that was helpful.Thank you!!!

3
Which is visible when an area of the sun's gases are cooler than the surrounding gases?
O sunspots
solar flares
O prominences
O solar winds​

Answers

Answer:

its sunspots :)

Explanation:

can i pleasee have the brainiest tyty

for my rank

True or False: Newton's first law of motion states that an object at rest will stay at rest, and an object in motion will stay in motion, unless acted on by an unbalanced force?

Answers

true, because that’s the right answer lol

Answer:

True

Explanation:

On a cold winter day, the heat from inside leaks out of the house, primarily
through the windows.

A. True
B. False

Answers

Final answer:

The statement is true. Inside heat tends to escape from a house on a cold winter day, primarily through the poorly insulated parts like windows and doors. The principle of heat transfer, specifically conduction, explains this phenomenon.

Explanation:

The statement is True. On a cold winter day, the heat from inside a house tends to move to the colder outside environment, and this flow of heat usually occurs predominantly through the windows and doors if they are not properly insulated. This phenomenon is explained by the principle of heat transfer, specifically the mechanism called conduction, where thermal energy is transferred from a hotter object to a colder one.

Windows, particularly those that are single-pane, are usually not very good insulators, so they can allow a significant amount of heat to escape. This is why in cold climates, it's common to use double-pane or even triple-pane windows, which have air or another insulating material between the panes to reduce heat loss.

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think about the statement "there is no new water on earth" write at least 5 sentences describing how there can be no new water on earth, but the earth doesn't run out of water.

Answers

Earth contains huge quantities of water in its oceans, lakes, rivers, the atmosphere, and believe it or not, in the rocks of the inner Earth. Over millions of years, much of this water is recycled between the inner Earth, the oceans and rivers, and the atmosphere. This cycling process means that freshwater is constantly made available to Earth's surface where we all live. Our planet is also very efficient at keeping this water. Water, as a vapor in our atmosphere, could potentially escape into space from Earth. But the water doesn't escape because certain regions of the atmosphere are extremely cold. (At an altitude of 15 kilometers, for example, the temperature of the atmosphere is as low as -60° Celsius!) At this frigid temperature, water forms solid crystals that fall back to Earth's surface.
Many people live faraway from freshwater sources. They need to carry their water home.
While our planet as a whole may never run out of water, it's important to remember that clean freshwater is not always available where and when humans need it. In fact, half of the world's freshwater can be found in only six countries. More than a billion people live without enough safe, clean water.
Also, every drop of water that we use continues through the water cycle. Stuff we put down the drain ends up in someone or something else's water. We can help protect the quality of our planet's freshwater by using it more wisely.

D
Question 3
1.25 pts
An increase in temperature in a system causes and
Increase in both entropy and enthalpy.
decrease in both entropy and enthabu
increase in entropy and a decrease in
decrease in entropy and an increase
enthal

Answers

Answer:

d

Explanation:

Why are prefixes not used in naming ionic compounds?

Answers

Answer:

Since we can't utilize charges to make sense of what number of every particle we have (as we did with ionic mixes), we need to determine with prefixes mono-, di-, tri-, tetra, penta-, hexa-,, etc.

Question 14
The average person in one minute exhales 2.5 g of CO2. How many molecules of CO2 are exhaled?

Answers

Answer:

.15625

Explanation:

for each gram there is .0625 molecules

Will P and O2 share or transfer electrons?
P + O2 →P4,O10

Answers

Answer:

They will share electrons .

Explanation:

When P and O2 reacts, they will share electrons as both of the elements are non-metals.

Only metal elements such as K , Na , Ca , etc. can transfer electrons to the other non-metal elements.

THIS IS A SCIENCE QUESTION NOT A CHEMISTRY QUESTION! Why does the same side of the moon always face Earth?


the rotational period of Earth is the same as that of the moon


the rotational period of Earth is equal to one revolution around Earth


the rotational period of the moon is equal to one revolution around Earth


the rotational period of the moon is different than one revolution around Earth

Answers

Answer:

I belive it is C. but im not 100% sure.

Explanation:

The rotational period of Earth is the same as that of the moon

Select all the correct location on the image.
The image shows a model of a nuclear reaction. Which objects could hit other atoms, producing a chain reaction?

Answers

All the foursingle neutron /proton in the image coming out of the chain reactions and bombarding are responsible of producing a chain reaction.

What is a nuclear reaction ?

It is the change in the identity or characteristics of an atomic nucleus, induced by bombarding it with an energetic particle.

The bombarding particle may be an alpha particle, a gamma-ray photon, a neutron, a proton, or a heavy ion.

In the given image of a nuclear reaction the objects which could hit other atoms, producing a chain reaction are all the four single neutron /proton coming out of the chain reactions and bombarding.

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Answer:

Picture of model of a nuclear reaction attached.

Explanation:

which of the following electromagnetic waves has the highest energy?
a. ultraviolet waves
b. infrared waves
c. microwaves
d. radio waves

Answers

Letter A would sound about right.

The term "electromagnetic" refers to the electrical and magnetic forces and effects that an electric current produces. Ultraviolet waves electromagnetic waves has the highest energy.

What is electromagnetic waves ?

The interactions between an electric field as well as a magnetic field produce waves known as electromagnetic waves, or EM waves. In other words, magnetic and electric fields oscillation to produce electromagnetic (EM) waves.

Radio and television waves, microwaves, infrared rays, visible light, ultraviolet light, X-rays, and gamma rays are all examples of electromagnetic waves that propagate across space independently of matter.

An changing magnetic field will cause an altering electric field, and vice versa. Electromagnetic waves are created from these shifting fields. In contrast to mechanical waves, electromagnetic waves may travel without a medium.

Thus, option A is correct.

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To measure the mass of a vitamin tablet, use: liters (L)
kilograms (kg)
milligrams (mg)
millimeters (mm)

Answers

Answer:

mg

Explanation:

I think it’s Millimeters

A gas is confined to a steel tank with a fixed volume . At 293 K, the gas exerts a pressure of 8.53 atm. After heating the tank , the pressure of the gas increases to 10.4 atm. What is the temperature of the heated gas?

Answers

Answer: The temperature of the heated gas is 357 K

Explanation:

To calculate the final temperature of the system, we use the equation given by Gay-Lussac Law. This law states that pressure of the gas is directly proportional to the temperature of the gas at constant pressure.

Mathematically,

[tex]\frac{P_1}{T_1}=\frac{P_2}{T_2}[/tex]

where,

[tex]P_1\text{ and }T_1[/tex] are the initial pressure and temperature of the gas.

[tex]P_2\text{ and }T_2[/tex] are the final pressure and temperature of the gas.

We are given:

[tex]P_1=8.53atm\\T_1=293K\\P_2=10.4atm\\T_2=?[/tex]

Putting values in above equation, we get:

[tex]\frac{8.53}{293K}=\frac{10.4}{T_2}\\\\T_2=357K[/tex]

Hence, the temperature of the heated gas is 357 K

Which statement is true about this reaction?
14N+ H-50
It is a practical source of energy on Earth.
It occurs only outside the solar system.
Its product is heavier than each of its reactants.
It shows the critical mass of an element.

Answers

I believe the answer is C

which of the following would form a heterogeneous mixture?
A. A mixture of a solute and a solvent
B. A mixture of polar and non polar liquids
C. A mixture of an electrolyte and water
D. A mixture of two soluble liquids

Answers

Answer:

A. A mixture of a solute and a solvent

Explanation:

The composition of the solute dissolved in the solvent to form the solution that is not uniform and same throughout the solution of the mixture is a heterogeneous mixture.

Answer:

B

Explanation:

Like dissolves like. A mixture of polar and no polar liquids wouldn't mix because they are dissimilar. So it would be like water and oil.

Also cuz I just did the quiz and it was right.

How many moles of NaCl are present in 530 ml of a 1.52m NaCl solution

Answers

Answer:

805.6 moles

Explanation:

Molarity = 1.52mL

Volume = 530mL

1.52 moles is present in 1mL,

1mL = 0.001L

1.52 moles = 0.001L

X moles = 0.53L

X = (1.52 × 0.53) / 0.001

X = 805.6moles

805.6moles is present in 530mL or 0.52L

Two scientists made the same observation during an investigation. Since their explanations differed about the observation, they
made additional observations. Why would more observations be helpful for this investigation?
A)
More observations will show both scientists' explanations are not correct.
B)
More observations are needed to show both scientists' explanations are
correct
More observations will prove the scientists' investigation was done
incorrectly.
2)
More observations could help resolve differences in the scientists
explanations.​

Answers

Answer:

more observations could help resolve differences in the scientists explanations

Explanation:

Final answer:

Making additional observations is crucial when scientists have differing explanations for an observation. More observations provide more data points, increasing the validity of their findings, and can help resolve differences by giving a more comprehensive understanding of the situation.

Explanation:

When two scientists make differing explanations about an observation, making more observations is necessary to better understand the event or phenomenon under investigation. Additional observations provide more data points, which add validity to their findings and may lead to a consensus if they consistently show a particular trend. Through additional observations, they can eliminate potential biases or errors that may have occurred in their initial observation. Consequently, more observations might help in resolving differences in the scientists' explanations due to a better, more comprehensive understanding of the observation with varied perspectives.

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If the pressure of a gas is 1.0 atm, the volume is 2.0 L and the temperature is 300 k, how many mols (n) of gas are in the container

Answers

Answer: The moles of gas are in the container are 0.08

Explanation:

According to ideal gas equation:

[tex]PV=nRT[/tex]

P = pressure of gas = 1.0 atm

V = Volume of gas = 2.0 L

n = number of moles = ?

R = gas constant =[tex]0.0821Latm/Kmol[/tex]

T =temperature =[tex]300K[/tex]

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

[tex]n=\frac{1.0atm\times 2.0L}{0.0821L atm/K mol\times 300K}=0.08moles[/tex]

Thus the moles of gas are in the container are 0.08

How can the solubility of a gas in a liquid be increased?

Answers

Answer: lower the temperature
Explanation: when you lower the temperature of the solution, it lowers the kinetic energy of the gas particles so they can escape the liquid phase less often

What are you doing when you're making sound?
Causing air pressure to drop.
Causing electromagnetic waves to radiate.
Causing photons to travel.
Causing air molecules to vibrate.

Answers

air molecules to vibrate
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