Low pressure is usually located near the equator whereas high air pressure is usually located over the North and South Poles.
Areas in low latitudes close to the equator are alluded to as the tropics. Sunlight hits the Earth’s surface there at a high angle. It is about a 90° point all year round. As a result, the tropics receive more sunlight per unit of surface range than other places on Earth. This causes the arrival, the water, and then the air at the equator to always be warm. At scopes close to the North Pole and the South Pole, sunlight strikes Earth’s surface at a low angle. Sunlight is spread over a larger surface region than within the tropics. This implies that the poles receive exceptionally small energy per unit of the surface zone and so they are cooler. Since that warm air rises and cold air sinks. Warm air is much less denser than cold air. Rising warm air puts less pressure on Earth than cooler air. Air pressure is ordinarily low over the tropics because it is as a rule warm there. Air pressure is as a rule high over colder zones such as the North and South Posts.
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A sample of 11.7 moles of silver bromide is reacted
with 8.6 moles of sodium thiosulfate to produce
sodium silver thiosulfate and sodium bromide. Using
the balanced equation below, predict which is the
limiting reactant and the maximum amount in moles
of sodium bromide that can be produced.
AgBr + 2Na2S2O3 → Na3Ag (S₂03)2 + NaBr
A. sodium thiosulfate, 4.30 moles
B. sodium thiosulfate, 8.60 moles
C. sodium bromide, 5.85 moles
D. sodium bromide, 11.7 moles
Answer:
0.30 moles of sodium thiosulfate formula units are needed to make 0.10 moles of AgBr soluble.
Explanation:
3Na2S2O3 + Ag Br→ NaBr + Nas [Ag(S2O3)3 According to reaction, 1 mole of silver bromide dissolves in 3 moles of Sodium thiosulfate. Then 0.10 moles of AgBr will dissolve with:3/1 x 0.10mol = 0.30mol - 0.30 moles of sodium thiosulfate formula units are needed to make 0.10 moles of AgBr soluble. Hope it will be
Which two solutions would be the BEST choice for their experiment?
Solutions 1 and 3 because they are a strong acid and a strong base.
Solutions 1 and 4 because they are a strong acid and a weak acid.
Solutions 3 and 4 because they are a strong base and a weak acid.
Solutions 2 and 3 because they are a weak base and a strong base.
Solutions 1 and 3 because they are strong acids and a strong base. Option A.
Strong acids and strong bases are completely ionized in an aqueous solution. Weak acids and weak bases also ionize, but only partially and the reaction is reversible. So you know if an acid or base is strong or weak. A simple way to determine strength is to add the acid or base to water. A higher reactivity means a stronger acid or base.
One of the simplest tests to determine whether a solution is an acid or base is the litmus paper test. To do this, dip a special strip of paper so-called litmus paper into the solution and observe the color of the paper. Litmus paper turns red in acidic solutions and blue in basic solutions. Sodium hydroxide is the strongest base because it completely dissociates to form sodium and hydroxide ions. These hydroxide ions are further treated with hydrogen ions by an acid to completely ionize the hydrogen ions.
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under certain conditions, the substance bromine trifluoride can be broken down to form bromine and fluorine. if 23.1 grams of bromine trifluoride react to form 13.5 grams of bromine, how many grams of fluorine must simultaneously be formed
Bromine Trifluoride is a colourless to grayish-yellow fuming liquid with a strong odour. It has a strong reaction to water. It is a fluorinating agent as well as an electrolytic solvent.
Bromine trifluoride was first described in 1906 by Paul Lebeau, who obtained it by reacting bromine with fluorine at 20 °C: Br 2 + 3 F 2 2 BrF. Bromine trifluoride is formed by disproportioning bromine monofluoride: 3 BrF BrF 3 + Br
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Bromine Trifluoride is a colourless to grayish-yellow fuming liquid with a strong odour. It has a strong reaction to water. It is a fluorinating agent as well as an electrolytic solvent.
Bromine trifluoride was first described in 1906 by Paul Lebeau, who obtained it by reacting bromine with fluorine at 20 °C: Br 2 + 3 F 2 2 BrF. Bromine trifluoride is formed by disproportioning bromine monofluoride: 3 BrF BrF 3 + Br
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heat capacity is a measure of the heat required to . group of answer choices raise the temperature of one gram of a substance by one degree celsius raise the temperature of one ounce of a substance by one degree fahrenheit bring a liquid to change phase raise the amount of heat a liquid will absorb before evaporating
Answer:
raise the temperature of one gram of a substance by one degree Celsius
Explanation:
Heat capacity is a physical property of matter, which is defined as the amount of heat to be supplied to something to produce a unit change in its temperature. Heat capacity is also called thermal capacity.
you are transferring a sample of gas from a hot area to a cooler area assuming that there is no change in pressure and that no gas is lost in the process, what do you expect to happen? g
The Volume of the gas will decrease when a sample of gas from a hot area to a cooler area assuming that there is no change in pressure and that no gas is lost in the process.
The equation of an ideal gas is mentioned below;
PV = nRT
Let us assume that there is no change in pressure and that no gas is lost in the process of gas transfer. So, we can write
Pressure = P = Constant
Number of moles = n = Constant
R = Gas Constant
So, we can write the relation between the temperature and volume of gas as
T ∝ V
We are transferring a sample of gas from a hot area to a cooler area i.e., Temperature is decreasing. So, the Volume of the gas will also decrease.
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Which of the following statements correctly explains why physical properties of a substance can be used to separate mixtures?
( HELP NEEDED ASAP!!!! )
When substances are mixed together, they retain their physical properties.
Mixtures contain different substances with different properties and chemists can separate one item from the mixture by forcing it to undergo a chemical change.
When substances are mixed together, the mixture assumes the physical properties of each individual substance.
When substances are mixed together, you can see each individual component.
The statements that correctly explains the use of physical properties of a substance to separate mixtures are
Statement 1: When substances are mixed together, they retain their physical properties.
Statement 3: When substances are mixed together, the mixture assumes the physical properties of each individual substance.
Mixtures are compounds that are made up of two or more chemical compounds which are not linked to each other chemically. They can be easily separated as there are no chemical reaction between each other.
Mixtures are compounds that retain their respective physical properties even though they were mixed together as there are no reaction between the two. Thus, these physical properties can be used to separate mixtures. Example: Oil in water. They have different densities. Thus, oil will float on water. We can exploit this physical property and separate them using separating funnel.
Mixtures contain different substances with different properties and chemists cannot separate one item from the mixture by forcing it to undergo a chemical change as there is no chemical reaction.
When substances are mixed together, you can see each individual component. But without knowing their property, we cannot separate them
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The electron configuration of an element is 1s22s22p6. Describe what most likely happens when an atom of this element comes near an atom having seven valence electrons.
Answer: Nothing will happen
Explanation:
Elements want to fill their valence shell with electrons (8).
Referring to both of the table below we will know that the element with that electron configuration is Neon (Ne). It is on the far right side of the periodic table so it contains all 8 electrons in its valence shell. The elements on the right side of the periodic table are called noble gases and are not reactive because they have the maximum number of electrons.
A single electron from the outermost shell of this element will move into the outermost shell of the atom with seven electrons.Nothing will happen in these state.
What is an electronic configuration ?Electron configurations define the arrangement of electrons around an atom's nucleus. Lithium, for instance, contains two electrons in the 1s subshell and one electron in the 2s subshell, according to its electron configuration, 1s22s1.
We may determine that Neon is the element with that electron configuration by looking at both of the tables below (Ne). It has all 8 electrons in its valence shell since it is on the extreme right side of the periodic table.
Noble gases are the elements on the right side of the periodic table that contain the most electrons and are thus non-reactive.
Thus, Electronic configuration an element is 1s22s22p6, it is stable.
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pls help me with chemistry
just some questions
pls
Answer:
incomplete question need more information
at what times should a ph electrode be submerged in a solution? select one or more: when being transferred from storage to a flask when monitoring a reaction in a beaker when being stored in a storage cabinet when not being used between measurements
If we are not using the pH electrode for measurement then it should be submerged in a solution.
What is a pH electrode?
Firstly, we know that the pH of a solution is the negative logarithm of the hydrogen ion concentration of the solution. We know that the more the hydrogen ion concentration of the solution, the owner the pH of the solution.
Having said this, It should be recalled that the measurement of the pH is carried out by the use of the pH electrode. When not being used between measurements, the ph electrode be submerged in a solution.
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Which compound contains covalent bonds?
1. AlN
2. Ca3N2
3. NaCl
4. HCl
HCl compund contains covalent bond.
When 2 atoms exchange one or a lot of pairs of electrons, a covalent bond is formed.
A chemical bond is formed once the distinction between the leptonegativities of 2 atoms is just too tiny for associate electron transfer to occur and manufacture ions.
Let's determine which choice contains covalent bonding.
1. Al-N bonds exhibit some ionic properties in addition to being partially covalent. structure, 1.633, which is most likely influenced by the ionic properties of Al-N bonds [3].
2. Ca and N have electronegativities of 1.0 and 3.0, respectively. Therefore, the difference in electronegativity between Ca and N is (3.0-1.0) or 2.0. Thus, an ionic link exists between Ca and N. Ca3N2 C a 3 N 2 is hence an ionic compound.
3. Since covalent compounds are created by the exchange of electrons, NaCl is not a covalent compound; rather, it is an ionic compound.
4. Because the difference in electronegativity between hydrogen and chloride is less than 2.0, HCl is a covalent compound.
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3. In the metric unit nanometer, "nano" is the base unit.
a. TRUE
b. FALSE
Answer:
False
Explanation:
The base unit is "meter."
Nanometer is equal to one billionth of a meter.
How can you explain the fact that there are different "isotopes" of pennium?
Answer:
A mixture of pre- and post-1982 pennies will represent the naturally occurring mixture of two isotopes of an imaginary element
Explanation:
Since 1982, U.S. pennies have been produced with 97.6% zinc with a thin plating of copper. Since each metal has a different density, pre- and post-1982 pennies have different masses.Different isotopes of an element generally have the same physical and chemical properties because they have the same numbers of protons and electrons.
A given sample contains 2.0 g of hydrogen, 33.1 g of sulfur, and 75.01 g of oxygen. What is the total mass of the sample?
Answer: 110.11g
Explanation:
If this is the question then it is as simple as adding up the masses of the different elements.
PLEASE HELP, AWARDING BRAINLIEST!
The wavelength in the nanometer is 9.70 E-22.
Wavelength is the distance among equal points (adjacent crests) inside the adjacent cycles of a waveform sign propagated in space or alongside a wire.
The wavelength is the distance between two wave crests, and it is going to be the same for troughs. The frequency is the number of vibrations that pass over a given spot in a single 2d, and it's far measured in cycles according to 2d Hz.
The wavelength of light determines its shade, and the wavelength of sound determines the pitch. The wavelengths of seen light amplify from approximately seven-hundred nm (purple) to 400 nm (violet). The wavelength of audible sound range from approximately 17 mm to 17 m.
E = hc/λ
wavelength (λ) = hc/E
= 6.626 × 10⁻³⁴ × 3 × 10⁸ / 2.05 × 10³ × 1000
= 9.696 × 10⁻³² meter
= 9.696 × 10⁻³² × 10⁹ nm
= 9.696 × 10⁻²² nm
= 9.70 E-22
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divide the molar mass of the compound by the empirical formula mass. the result should be a whole number or very close to a whole number. multiply all the subscripts in the empirical formula by the whole number found in step 2. the result is the molecular formula.
The given statement is true. If we divide the molar mass of the compound by the empirical formula mass, the result should be a whole number or very close to a whole number. multiply all the subscripts in the empirical formula by the whole number found in step 2. the result is the molecular formula.
If we write the above statement in the equation or formula then we will get
[tex]\frac{Empirical formula mass}{ Molecular mass}[/tex] = n
Where 'n' is always a whole number
Now, let's understand the above statement with the help of an example.
If we take glucose, a monosaccharide sugar, having molecular formula C₆H₁₂O₆.
The molar mass of glucose is 300 g/mole. Its empirical formula mass is 180 g/mol.
Now by diving them, we will get a whole number
180 / 30 = 6 ( A whole number)
The empirical formula of glucose is CH₂O. If we multiply all the subscripts in the empirical formula (CH₂O) by 6, the result is the molecular formula i.e C₆H₁₂O₆.
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Explain why the following statement is trueThe initial number of moles of the unknown acid (HA) is equal to the final amount of the number of moles of the known base (NaOH),
Due to their complete oxidation of one another, the beginning moles of the unknown acid (HA) and the final moles of the known base (NaOH) are equal.
What is oxidation, and give a case?
Summary. An element combining with oxygen is referred to as an oxidation in scientific terminology. For instance, the chemical reaction between oxygen and magnesium metal produces magnesium oxide during the oxidation of magnesium.
What does "oxidation" mean exactly?In order to describe a substance's reaction with oxygen, Antoine Lavoisier coined the term "oxidation." Later, when it was understood that the substance loses electrons when it is oxidized, the definition was expanded to encompass all processes in which electrons are destroyed, regardless of whether oxygen is present.
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Which of the following sets of quantum numbers are allowed and which are not allowed? For each incorrect set, select why it is incorrect.
(a) n = 3, ℓ = 3, mℓ = 0, ms = -½
For n = 3, ℓ = 3 is not possible
ms can never be a negative value
mℓ cannot equal -1
All of these quantum numbers are allowed
(b) n = 4, ℓ = 3, mℓ = 2, ms = -½
When n = 4, ℓ = 3 is not possible
ms can never be a negative value
mℓ cannot equal 2 when ℓ = 3
All of these quantum numbers are allowed
(c) n = 4, ℓ = 1, mℓ = 1, ms = +½
When ℓ = 1, mℓ = 1 is not possible
ms can not be positive
mℓ cannot equal 1 when n = 4
All of these quantum numbers are allowed
(d) n = 2, ℓ = 1, mℓ = -1, ms = -1
When n = 2, ℓ = 1 is not possible
ms can never be a negative value
ms cannot equal -1
All of these quantum numbers are allowed
(e) n = 5, ℓ = -4, mℓ = 2, ms = +½
mℓ cannot equal 2
ℓ cannot be a negative number
n has a maximum of four
All of these quantum numbers are allowed
(f) n = 3, ℓ = 1, mℓ = 2, ms = -½
When ℓ = 1, mℓ = 2 is not possible
ms can never be a negative value
ℓ cannot be 1 when n = 3
All of these quantum numbers are allowed
Provided all set of given quantum numbers are allowed.
(a) n = 3, ℓ = 3, mℓ = 0, ms = -½
For n = 3, ℓ = 3 is not possible
ms can never be a negative value
mℓ cannot equal -1
All of these quantum numbers are allowed
(b) n = 4, ℓ = 3, mℓ = 2, ms = -½
When n = 4, ℓ = 3 is not possible
ms can never be a negative value
mℓ cannot equal 2 when ℓ = 3
All of these quantum numbers are allowed
(c) n = 4, ℓ = 1, mℓ = 1, ms = +½
When ℓ = 1, mℓ = 1 is not possible
ms can not be positive
mℓ cannot equal 1 when n = 4
All of these quantum numbers are allowed
(d) n = 2, ℓ = 1, mℓ = -1, ms = -1
When n = 2, ℓ = 1 is not possible
ms can never be a negative value
ms cannot equal -1
All of these quantum numbers are allowed
(e) n = 5, ℓ = -4, mℓ = 2, ms = +½
mℓ cannot equal 2
ℓ cannot be a negative number
n has a maximum of four
All of these quantum numbers are allowed
(f) n = 3, ℓ = 1, mℓ = 2, ms = -½
When ℓ = 1, mℓ = 2 is not possible
ms can never be a negative value
ℓ cannot be 1 when n = 3
All of these quantum numbers are allowed
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The question is in the photo.Which of the following atoms will bond with O in a 1:1 ratio of O and that element:a) Lithiumb) Boronc) Berylliumd) Nitrogen
Which of the following atoms will bond with O in a 1:1 ratio of O and that element:
a) Lithium
b) Boron
c) Beryllium
d) Nitrogen
To solve the problem we have to look for the oxidation states of these elements.
Li: +1 B: +3 Be: +2 N: +5
These compounds will form an oxide with oxygen. The usual oxidation state of oxygen is -2. To form an oxide, we have to combine our element with oxygen and produce a compound with neutral charge.
For example, Li is +1, O is -2, so we have to combine 2 atoms of Li with one atom of O. The formula for the lithium oxide is Li₂O. Similarly we can form the other oxides. We will obtain:
Li₂O B₂O₃ BeO N₂O₅
If we look at the formulas of these oxides, the only one that will bond with O in a 1:1 ratio is Beryllium since its formula is BeO (it has one atom of O and one atom of Be).
Answer: c) Beryllium.
5. Modern houses have systems to control internal air temperatures in times of very cold or hot weather. In these homes, hot or cool air is pumped into the interior of the house to help keep the temperature comfortable. Based on what you know about how cool and warm air circulate in the atmosphere, what might an engineer need to consider when designing a heating/cooling system for a home in a cooler climate?
How might the design differ for a house found in a warmer climate?
An engineer need to introduce heat pump systems when designing a heating/cooling system for a home in a cooler or warmer climate.
For all climates, heat pumps provide a more energy-efficient furnace and air conditioner replacement. Heat pumps, like your refrigerator, use power to move heat from a cold space to a warm space, warming the warm space and making the cool space cooler. Therefore, an engineer may introduce heat pump systems while designing a house in any kind of climate.
In the winter, heat pumps transfer heat from the chilly outside to your comfortable home. In the summer, heat pumps transfer heat from your home to the outside.
Heat pumps can effectively supply your home with acceptable temperatures since they transfer heat rather than producing it.
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Mrs. Roberts' class won a day at the bowling alley for their good behavior all year. When they
arrived, jason picked the green ball that weighed 6 lbs, and amanda picked the yellow ball that
weighed 12 lbs. Amanda was having a hard time getting her ball to roll down the lane. Jason was
doing great! he was pushing his ball hard, and it was going straight down the center. He even got
a strike twicel
Amanda’s ball is heavier so it’s harder throw. This was illustrated in the bowling.
How to illustrate the information?Amanda was having such a difficult time because she chose a heavier ball.
Evidence: Jason had no trouble with his 6lb ball, while Amanda struggled with double the weight of Jason's ball, which was 12lb and had more mass.
Reasoning: Jason chose a ball with less mass weighting at 6 pounds, but his ball was more simpler to roll as a result. This was owing to Newton's second law, as having a lighter ball made it easier for him to pass through. Amanda, on the other hand, had a ball that was so heavy that it was difficult to throw.
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A student conducts an experiment to determine whether adding salt causes water to boil more quickly. The student plans to heat two pots of water and measure how long they take to boil. One pot has salt in it and the other does not. The pot of water with salt added is the experimental group. The pot of water without salt is the control group. For the boiling salt water experiment described, list three things that would make the control group ineffective.
Three things that would make the control group ineffective include the following below:
Salt being added.The water not being heated.Different amounts of water being put in the pots.What is a Control group?This is referred to as the group which is doesn't experience any experimental treatment by scientists and are used to compare another in this scenario.
The control group in other to be effective must have salt not being added which is compared to the others with salts to determine if it has any effect on the boiling point. The same volume of water should also be added to get an accurate result.
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Answer: Number 1, since the control group doesn't have salt, to make it ineffective is to add salt, another one is if you don't boil the control group. And lastly, if you don't add water to the pot. It's pretty simple if you think about it, and to verify it, I did it on apex and it worked.
So
1. Add Salt
2. Don't Boil
3. Don't Add Water
I hope this helps.
1. True or False: Measuring a chemical property is a nondestructive
process. It will not disturb the composition of your sample.
The answer to the statement " Measuring a chemical property is nondestructive " is true.
Why are chemical properties of substances nondestructive?The chemical properties of substances such as boiling point, melting point, pH, reactivity, combustion, density, flammability, toxicity, solubility or even oxidation states are different characteristics which one can test for in a substance and does not affect the substances themselves in the process.
That being said, when you test for measure a chemical such as from the any of the ones above, it means you want to see or identify or observe the chemical composition of the substance. This won't affect the substance.
For example, when measuring the pH of a substance, that is; measuring the degree of acidity or alkalinity of a substance, it does not affect the substance in the test but reveals to us more about the chemical level or composition of the substance in details.
So therefore, we can now confirm that testing or measuring the chemical features of a substance is harmless to the substance itself.
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3. Write a hypothesis based on observations and scientific principles.
Answer:
An example of a hypothesis based on observation and scientific principles is:
Deaf children whose parents are deaf will acquire language faster than deaf children whose parents are not deaf.
A hypothesis is an informed prediction or a tentative statement about what you think that would occur in a scientific experiment as a result of experience from observations accepted by scientific rules and law.
A hypothesis is a testable statement obtained from the research question but questions cannot be tested directly, it is the proposed relationship between the variables that are tested.
An example of a hypothesis is:
Deaf children whose parents are deaf will acquire language faster than deaf children whose parents are not deaf.
This specifies the direction of the hypothesis because one group is faster than the other.
Mary thought that the number of frogs in the neighborhood pond had decreased over the last few years. So, she decided to count the number of frogs she saw around the pond twice each day for ten days. Mary's data is displayed in the table below. Day 1 2 3 4 5 6 7 8 9 10 # Frogs at 12 PM 3 2 1 0 1 0 3 2 0 2 # Frogs at 7 PM 15 21 22 13 19 15 20 17 23 18 Based on her observations, which of the following can Mary infer? A. The number of frogs at the pond has steadily increased over the last 2 years. B. Frogs are consumed by predators in the morning and are reborn in the evening. C. The number of frogs at the pond has steadily declined over the last 2 years. D. Frogs rest during the afternoon and become more active in the evening.
Based on her observations, marry infer that Frogs rest during the afternoon and become more active in the evening. option D.
Observations can occur in a lab placing or the herbal world. for example, watching an apple fall from a tree can be a commentary. Noticing that fish only come to a particular part of the river in the early morning is likewise a remark. Smelling garbage decomposing is some other instance of a remark.
The remark is the movement or technique of cautiously looking at a person or something. Careful statement of the motion of the planets. Synonyms looking, have a look at, survey, evaluation more Synonyms of statement.
Observations of a particular setting or state of affairs--this is, take field notes. next, you interpret the notes consistent with the applicable criteria. in the end, you write a nicely prepared paper that presents your observations and interpretations, typically with the goal of answering a research question.
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find moles of fe from 392.2 g of fe(nh4)2(so4)2
Answer:
1.381 moles Fe
Explanation:
To find moles of Fe, you need to (1) convert grams Fe(NH₄)₂(SO₄)₂ to moles (using the molar mass) and then (2) convert moles Fe(NH₄)₂(SO₄)₂ to moles Fe (using the mole-to-mole ratio within the molecule). It is important to arrange the conversions in a way that allows for the cancellation of units. The final answer should have 4 sig figs like the given value (392.2 = 4 sig figs).
Atomic Mass (Fe): 55.845 g/mol
Atomic Mass (N): 14.007 g/mol
Atomic Mass (H): 1.008 g/mol
Atomic Mass (S): 32.065 g/mol
Atomic Mass (O): 15.999 g/mol
Molar Mass (Fe(NH₄)₂(SO₄)₂):
55.845 g/mol + 2(14.007 g/mol) + 8(1.008 g/mol) + 2(32.065 g/mol) + 8(15.999 g/mol) = 284.045 g/mol
1 mole Fe(NH₄)₂(SO₄)₂ = 1 mole Fe, 2 moles N, 8 moles H, 2 moles S, 8 moles O
392.2 g Fe(NH₄)₂(SO₄)₂ 1 mole 1 mole Fe
----------------------------------- x ------------------- x ---------------------------------- =
284.045 g 1 mole Fe(NH₄)₂(SO₄)₂
= 1.381 moles Fe
How does adding deionized water into a solution containing ions affect the electrical conductivity of the solution?.
Adding deionized water into a solution containing ions will affect the electrical conductivity of the solution because the ions in the solution will be attracted to the water molecules.
Deionized water is water that has had its ions removed. This means that it will not conduct electricity.It will cause the ions to be more spread out in the solution, which will decrease the electrical conductivity of the solution. When deionized water is added to a solution containing ions, the electrical conductivity of the solution will be reduced. The reason for this is that the ions in the solution will be attracted to the water molecules, and this will reduce the number of ions that are available to conduct electricity.
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Given this equation: N2 + 3 H2 → 2 NH3, how many moles of NH3 can be produced from 3.1 moles of H2?
First, we write down our reaction:
N2 + 3H2 → 2NH3
Don't forget to balance it.
We only use moles as units.
Procedure:
3 x 1 mole H2 ------------ 2 x 1 mole NH3
3.1 moles H2 ------------- x
x = 2.1 moles NH3 are produced
Answer: 2.1 moles NH3
on can be described using words, diagrams, numerical information, equations, and graphs. Using
words to describe the motion of objects involves an understanding of such concepts as position,
displacement, distance, rate, speed, velocity, and acceleration.
Vectors vs. Scalars
1. Most of the quantities used to describe motion can be categorized as either vectors or scalars. A
vector is a quantity that is fully described by both magnitude and direction. A scalar is a quantity that is
fully described by magnitude alone. Categorize the following quantities by placing them under one of
the two column headings.
displacement, distance, speed, velocity, acceleration
Scalars
2. A quantity that is ignorant of direction is referred to as a
a. scalar quantity b. vector quantity
3. A quantity that is conscious of direction is referred to as a
a. scalar quantity b. vector quantity
Vectors
Distance vs. Displacement
As an object moves, its location undergoes change. There are two quantities that are used to describe
the changing location. One quantity - distance - accumulates the amount of total change of location
over the course of a motion. Distance is the amount of ground that is covered. The second quantity -
displacement - only concerns itself with the initial and final position of the object. Displacement is
the overall change in position of the object from start to finish and does not concern itself with the
accumulation of distance traveled during the path from start to finish.
1
Distance and speed are scalars while displacement and velocity are vector quantities, scalars are not concerned with direction while vector are conscious with direction.
1. Distance and speed are scalars while displacement and acceleration are vector quantities.
2. The quantity that is ignorant of the direction is referred to as a scalars quantity.
3. A quantity that is conscious with direction is Vector quantity.
Distance vs Displacement,
The displacement is the shortest distance between the final and the initial position of the body while the distance is the actual distance covered by the body.
The displacement has direction from initial to final position, while distance has no direction.
The distance can never be zero while the displacement can be zero, negative or positive.
Negative displacement state that the direction of displacement of the body is in negative direction.
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the diffusion coefficients for carbon in nickel are given at two temperatures: t (˚c) d (m2/s) 600 5.5 × 10-14 700 3.9 × 10-13 (a) determine the value of d0. enter your answer for part (a) in accordance to the question statement m2/s (use scientific notation.) (b) determine the value of qd. enter your answer for part (b) in accordance to the question statement kj/mol (c) what is the magnitude of d? at 830˚c. enter your answer for part (c) in accordance to the question statement m2/s (use scientific notation.)
Diffusion Coefficient at 600°C
D₁= 5.5*10⁻¹⁴ m²/s
Diffusion Coefficient at 700°C
D₂= 3.9*10⁻¹³ m²/s
D₁= D₀. exp(- Qd/ R.T₁)
D₂= D₀. exp (-Qd/ R.T₂)
We can solve first equation for D₀
D₀= D₁/ exp ( -Qd/ R.T₁)
Put D₀ in equation 2
D₂= D₁. Exp ( Qd/R. (1/T₁ - 1/T₂)
On rearranging the equation we can solve it for Qd:
Qd = R. ㏑( D₂/D₁) (T₁.T₂/ T₂-T₁)
= 8.314. ㏑( 3.9*10⁻¹³/ 5.5*10⁻¹⁴).( 873*973/100)
Qd = 138.3 KJ/mol
Now D₀= D₁/ exp ( -Qd/RT₁)
= 5.5*10⁻¹⁴/ exp (138300/8.314*873)
D₀= 1.04* 10⁻¹⁵ m²/s
For T= 830°C
D= 1.04* 10⁻⁵. exp ( 138300/8.314*1103)
D = 1.04* 10⁻⁵. exp ( 138300/9170.34) m²/s
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What happens to Rutherfordium when it decomposes and loses two
neutrons?
Rutherfordium when decomposes and loses two neutrons, both these rutherfordium isotopes produce neutrons as they undergo their nuclear decay into nobelium.
Rutherfordium's reactivity with the halogens is unclear because so little of it has ever been produced. One would anticipate that it will behave similarly to zirconium and hafnium, which are just above rutherfordium in the periodic table (two places above). After the rutherfordium decays, the distinctive nobelium decay energy and half-life were also seen. Atoms have been created rather infrequently. It is solely employed at this time for research.
The biological function of rutherfordium is unknown. When Rutherfordium, the 104th element on the periodic table, was first artificially created in the 1960s, it sparked a decades-long international debate. The main point of contention was who should get to name the new element. Traditionally, the person who discovers an element is given the privilege of naming it, but this becomes complex when two parties have conflicting claims of discovery.
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