Why do you think the transition metals are 10 columns wide?

Answers

Answer 1
The transition metals are 10 columns wide because they can hold no more than 10 electrons. This is why their width correlates with the number of electrons that are included in these metals. Transition metals include most commonly used metals, such as iron, copper, silver, and gold.
Answer 2
Final answer:

The transition metals are 10 columns wide on the periodic table because each d subshell can hold up to 10 electrons. This configuration leads to a variety of properties, as shown by the diverse reactivity and color of compounds among transition metals.

Explanation:

The transition metals are 10 columns wide on the periodic table due to the configuration of their electrons, specifically in their d orbitals. Each d subshell can accommodate up to 10 electrons, structured as 5 sets of paired electrons. This is connected to the arrangement of the transition metals in the periodic table, which are organized based on electron configuration.

The transition metals, as partially filled d orbitals, are located in the d-block of the periodic table. They vary widely in terms of reactivity, with some being very active metals like scandium and iron, while others being almost inert, such as the platinum metals.

The transition metals exhibit a variety of properties due to their complex valence shells. Because these elements have several different stable oxidation states, electron transitions in these elements can correspond with absorption of photons in the visible spectrum, causing a variety of colored compounds.

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Related Questions

I need help! how many moles are in 3.4*10^-7 grams of silicon dioxide, SiO2. I got 2.0^17 but I think it's wrong :(

Answers

Molar mass SiO2 = 28 + 32 = 60 

so moles sand = 3.4 x 10-7 / 60

the modern periodic table is arranged in order of increasing atomic

Answers

Increasing atomic number :-)
Final answer:

The modern periodic table arranges elements in order of increasing atomic number, which corresponds to the number of protons in an atom's nucleus. The increasing atomic number across the table helps predict properties and interactions of elements.

Explanation:

The modern periodic table is an essential tool in chemistry, used to catalog and organize the known elements. The table is arranged in order of increasing atomic number, which is equivalent to the number of protons in an atom's nucleus.

For instance, Hydrogen has an atomic number of 1 and is the first element on the table, while Helium has an atomic number of 2 and is the second element. As you move down and across the table, the atomic number continues to increase.

This help scientists to predict the properties of various elements, their reactivity, and how they might interact with other elements.

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What is the conversion of 160g to cg?

Answers

16000 centigrams....:)

What set of coefficients would balance the following chemical equation? H3PO4 + RbOH H2O + Rb3PO4

Answers

start by balancing the Rb because you only have it once at each side of the reaction
H3PO4 + 3RbOH -- > 3H2O + Rb3PO4

Hope this helps

Which of the following is an inexhaustible energy resource?
a.
coal
c.
water
b.
oil
d.
natural gas

Answers

C. Water is an inexhaustible energy resource among these options. Coal, oil, and natural gas we can run of, but for the foreseeable future, there will always be water.

a 1.00 degree increased on the celsius scale is equivalent to a 1.80 degree increased on the fahrenheit scale. if a temperance increased by 48.0 C, what is the corresponding temperature increased on the faherheit scale

Answers

48*1.8=86.4
you just have to multiply it

The metals in Groups 1A, 2A, and 3A ____.
A) all have ions with a 1+ charge c. all form ions with a negative charge
b. gain electrons when they form ions d. lose electrons when they form ions

Answers

All of these metals from cations, so they lost electrons when forming ions. The answer is D.

D.) Lose electrons when they form ions.

How many protons are in one atom of potassium (k)?\

Answers

Looking at a periodic table, the number of protons is the number in the upper left-hand corner. For potassium, it is 19.

Which of these elements is a transition metal? francium (Fr) beryllium (Be) chromium (Cr) gallium (Ga) bismuth (Bi)

Answers

Answer:

chromium (Cr)

Explanation:

Final answer:

Chromium (Cr) is the transition metal among the listed elements. It falls under the first transition series in the d-block of groups 3-12 on the periodic table.

Explanation:

Among the listed elements, chromium (Cr) is a transition metal. Transition metals fall within groups 3-12 on the periodic table and include the d-block elements, which are typically divided into four transition series. Chromium is part of the first transition series.

Other elements listed such as francium (Fr), beryllium (Be), gallium (Ga), and bismuth (Bi) are not considered transition metals. Francium is an alkali metal, beryllium is an alkaline earth metal, gallium is a post-transition metal, and bismuth is considered a metalloid or post-transition metal, but not a transition metal.

what is the oxidation number of Cl in chlorate ion ClO3- ...?

Answers

You need the oxidation number for Cl, so we will use only the ClO3 1-. 

Oxygen is not in a peroxide. It is in "chlorate" so the oxidation number of oxygen is 2-. There are 3 oxygens in the ion. 2- x 3 = 6- total. The chlorate ion has a 1- charge so there are 5- charges to be balanced out by positive charges. That means that the Cl (the only other atom there) has to balance out the 5- left over by having a 5 + oxidation number. 

(Cl 5-) + (O3 6-) = ClO3 1-

I hope my answer has come to your help. Thank you for posting your question here in Brainly. We hope to answer more of your questions and inquiries soon. Have a nice day ahead!

Final answer:

The oxidation number of Cl in the chlorate ion (ClO3-) is +5. This is determined by assigning oxygen an oxidation number of -2 and ensuring that the sum of oxidation numbers equals the ion's charge, which in this case is -1.

Explanation:

To determine the oxidation number of Cl in the chlorate ion (ClO3-), we apply the rules for assigning oxidation numbers. Here's how:

Oxygen is normally assigned an oxidation number of -2 (rule 3).In a polyatomic ion, the sum of the oxidation numbers of all the atoms must equal the charge on the ion (rule 4). With three O atoms, we have 3(-2) = -6 total for the oxygen atoms.Since the chlorate ion has a charge of -1, the Cl atom must have an oxidation number that will result in the total sum of -1 when combined with the total -6 from the O atoms.Therefore, the oxidation number for Cl is +5, as the equation Cl + 3(-2) = -1 simplifies to Cl = +5.

Which of the following would not be a reason to create a controlled-fusion reactor?        A. To start and control a fusion reaction   B. To eliminate radioactive waste materials   C. To confine a fission reaction   D. To utilize resources already available to us

Answers

I would say that the answer is C.

your answer is C. To confine a fission reaction

i just took the test

Which of the following is an oxidation-reduction reaction?
SO2(g) + H2O(l)  H2SO3(aq)
CaCO3(s) CaO(s) + CO2(g)
Ca(OH)2(s) + H2CO3(l) CaCO3(aq) + 2H2O(l)
C6H12O6(s) + 6O2(g) 6CO2(g) + 6H2O(l)

Answers

The Last One Should Be Correct.

Answer:

Explanation: Oxidation-reduction reaction or redox reaction is defined as the reaction in which oxidation and reduction reactions occur simultaneously.

Oxidation reaction is defined as the reaction in which a substance looses its electrons. Reduction reaction is defined as the reaction in which a substance gains electrons.

For the given options:

Option A: [tex]SO_2(g)+H_2O(l)\rightarrow H_2SO_3(aq)[/tex]

This is a combination reaction because two compounds are reacting to form a single compound.

Option B: [tex]CaCO_3(s)\rightarrow CaO+CO_2[/tex]

The above reaction is decomposition reaction because a single compound is breaking down into two compounds.

Option C: [tex]Ca(OH)_2(s)+H_2CO_3(l)\rightarrow CaCO_3(aq)+2H_2O(l)[/tex]

The above reaction is a neutralization reaction because an acid reacts with base to produce salt and water.

Option D: [tex]C_6H_{12}O_6(s)+6O_2(g)\rightarrow CO_2(g)+2H_2O(l)[/tex]

The oxidation state of oxygen changes from 0 to -2, it is gaining electrons. Thus, it is getting reduced and it undergoes reduction reaction. The carbon is getting oxidized and thus it undergoes oxidation reaction.

Thus, it is considered as redox reaction.

Hence, the correct answer is Option D.

What chemical elements does this reaction contain?

C + O2--> CO2

carbon and oxygen
carbon, oxygen, and carbon dioxide
calcium, oxygen, and calcium dioxide
calcium and oxygen

Answers

Answer:

A

Explanation:

This chemical reaction contains the elements carbon and oxygen.

The chemical symbol for the element carbon is C. The symbol for oxygen is O. Carbon dioxide (CO2) is a compound, not an element.

Final answer:

The given reaction C + O2 → CO2 contains the chemical elements carbon and oxygen. The reactant C represents carbon, while O2 represents oxygen as a diatomic molecule. The product CO2 represents carbon dioxide, which is composed of one carbon atom and two oxygen atoms.

Explanation:

In the given reaction C + O2 → CO2, the chemical elements involved are carbon and oxygen. The reactant C represents carbon, while O2 represents oxygen as a diatomic molecule. The product CO2 represents carbon dioxide, which is composed of one carbon atom and two oxygen atoms.

how many atoms are in a cracker

Answers

Depends how big the cracker is...

It could possibly be 3 atoms

There are many compounds in any Cracker and it varies according to it's nature & use, most of the compounds are:
Copper Carbonate CuCO₃.Cu(OH)₂
Copper Chlorate Cu(ClO₃)₂.6H₂O.
Copper Chloride CuCl₂.
Copper Nitrate Cu(NO₃)₂.3H₂O.
Copper Oxide CuO.
Copper Sulfate CuSO₄.5H₂O.
Copper Sulfide CuS.
Decaborane B₁₀H₁₄

As it varies from Craker to craker, we can't tell the number of atoms for that. But, you should understand that number of atoms in it would be much more than a simple compounds 'cause it contains many heavy compounds.

Hope this helps!

Describe a situation where scientific knowledge was gained through doing an experiment

Answers

Answer:

When determining the types of chemical reactions.

Explanation:

Hello,

In this case, in order to establish the different types of chemical reactions, several experiments are carried out the determine whether a chemical reaction is synthesis, decomposition, double displacement, double displacement or combustion. Such experiments consist on the combination of different of reactants under varied conditions in order the appreciate the reaction behavior over the time, changes in color, temperature changes and formed products that suggest the type of reaction.

Once the observations are set throughout the experiments, one provides the scientific knowledge that in this case will help to differentiate such types of chemical reactions.

Best regards.

Which of the following would be the best reason to use titration for monitoring the effects of acid rain on drinking water?

Answers

Answer:

1 65mL

Explanation:

The best reason to use titration for monitoring the effects of acid rain on drinking water is: to determine the concentration of acid in drinking water. Option A is correct.

Titrations are a well-established quantitative analysis technique that allows scientists to accurately measure the concentration of acids or bases in a solution. This can be particularly useful in environmental chemistry, where it is important to understand the acidity of drinking water due to potential contamination from acid rain.

By applying titration methods, one can detect the exact concentration of acidic species and thus assess their impact on drinking water quality. These methodologies are reliant upon accurately determining the equivalence point, which is often indicated by a change in color for a selected pH indicator, during the titration process.

Hence, A. is the correct option.

The complete question is:

Which of the following would be the best reason to use titration for monitoring the effects of acid rain on drinking water?

A. to determine the concentration of acid in drinking water

B. to find out if the drinking water contains helpful nutrients for the body

C. to find out if there are other poisonous chemicals in the drinking water

D. to determine the molar ratio of acid to base in the drinking water

A white powder is poured into a glass of water and shaken. If the powder remains visible and can be filtered out, the mixture is _______.

Answers

in an electrolyte solution

Making the simplistic assumption that the dissolved NaCl(s) does not affect the volume of the solvent water, determine the constants m and b in the equation Molarity = mdensity + b that relates the NaCl molarity to the NaCl(aq) density. Take the density of water to be 1.00 g/mL and the molar mass of NaCl to be 58.5 g/mol.

I am having a very difficult time answering this question. There just doesn't seem to be enough information to determine the constants.

Answers

Answer:

m = 1,000/58.5 b = - 1,000 / 58.5

1) Variables

molarity: Mdensity of the solution: dmoles of NaCl: n₁mass of NaCl: m₁molar mass of NaCl: MM₁total volume in liters: VtVolume of water in mililiters: V₂mass of water: m₂

2) Density of the solution: mass in grams / volume in mililiters

d = [m₁ + m₂] / (1000Vt)

3) Mass of NaCl: m₁

    Number of moles = mass in grams / molar mass

    ⇒ mass in grams = number of moles × molar mass

        m₁ = n₁ × MM₁


4) Number of moles of NaCl: n₁

   Molarity = number of moles / Volume of solution in liters

   M = n₁ / Vt

   ⇒ n₁ = M × Vt


5) Substitue in the equation of m₁:

   m₁ = M × Vt × MM₁


6) Substitute in the equation of density:

    d = [M × Vt × MM₁ + m₂] / (1000Vt)


7) Simplify and solve for M

d = M × Vt × MM₁ / (1000Vt) + m₂/ (1000Vt)d = M × MM₁ / (1000) + m₂/ (1000Vt)

Making the simplistic assumption that the dissolved NaCl(s) does not affect the volume of the solvent water means 1000Vt = V₂  

d = M × MM₁ / (1000) + m₂/ V₂

        m₂/ V₂ is the density of water: 1.00 g/mL

d = M × MM₁ / (1000) + 1.00 g/mLM × MM₁ / (1000) = d - 1.00 g/mLM = [1,000/MM₁] d - 1,000/ MM₁

8) Substituting MM₁ = 58.5 g/mol

M = [1,000/58.5] d - [1,000/ 58.5]

Comparing with the equation Molarity = m×density + b, you obtain:

m = 1,000/58.5 b = - 1,000/58.5

The value of m is [tex]\boxed{{\text{1/molar mass}}\left({0.0170\;{\text{mol}}\cdot{{\text{g}}^{-1}}}\right)}[/tex] and the value of b is [tex]\boxed{{\text{mol/volume}}}[/tex].

Further Explanation:

The property is a unique feature of the substance that differentiates it from the other substances. It is classified into two types:

1. Intensive properties:

These are the properties that depend on the nature of the substance. These don't depend on the size of the system. Their values remain unaltered even if the system is further divided into a number of subsystems. Temperature, refractive index, molarity, concentration, pressure, and density are some of the examples of intensive properties.

2. Extensive properties:

These are the properties that depend on the amount of the substance. These are additive in nature when a single system is divided into many subsystems. Mass, enthalpy, volume, energy, size, weight, and length are some of the examples of extensive properties.

Density is defined as the ratio between mass and volume. Both mass and volume are the physical properties that are extensive in nature and their ratio comes out to be an intensive quantity that depends only on the nature of the substance, not on the amount of the substance. The formula to calculate the density of a substance is,

[tex]{\text{Density of substance}}\left({{\rho }}\right){\text{=}}\frac{{{\text{Mass of substance}}\left({\text{M}}\right)}}{{{\text{Volume of substance}}\left({\text{V}}\right)}}[/tex]

Molarity is a concentration term that is defined as the number of moles of solute dissolved in one litre of the solution. It is denoted by M and its unit is mol/L.

The formula to calculate the molarity of the solution is as follows:

[tex]{\text{Molarity of solution}}=\frac{{{\text{amount}}\;\left({{\text{mol}}}\right)\;{\text{of}}\;{\text{solute}}}}{{\;{\text{volume}}\left({\text{L}}\right)\;{\text{of}}\;{\text{solution}}}}[/tex]

The given expression is,

[tex]{\text{Molarity}}={\text{m}}\left({{\text{density}}}\right)+{\text{b}}[/tex]           …… (1)

Substitute the formula of given quantities in equation (1).

[tex]\frac{{{\text{mol}}}}{{{\text{Volume}}}}={\text{m}}\left({\frac{{{\text{mass}}}}{{{\text{Volume}}}}}\right)+{\text{b}}[/tex]                          …… (2)

Quantities with same units are added, subtracted, multiplied or divided. So two quantities on the right-hand side of equation (2) must have the same units and equation (2) becomes,

[tex]\frac{{{\text{mol}}}}{{{\text{Volume}}}}={\text{m}}\left({\frac{{{\text{mass}}}}{{{\text{Volume}}}}}\right)+{\text{m}}\left({\frac{{{\text{mass}}}}{{{\text{Volume}}}}}\right)[/tex]                                 …… (3)

Solve for units of m,

[tex]{\text{m}}=\frac{{{\text{mol}}}}{{{\text{mass}}}}[/tex]

Or it can be written as,

[tex]{\text{m}}=\frac{{\text{1}}}{{{\text{Molar mass}}}}[/tex]                               …… (4)

Substitute 58.5 g/mol for the molar mass of NaCl in equation (4).

[tex]\begin{aligned}{\text{m}}&=\frac{{{\text{1 mol}}}}{{{\text{58}}{\text{.5 g}}}}\\&=0.0170\;{\text{mol}}\cdot{{\text{g}}^{-1}}\\\end{aligned}[/tex]

The unit of b is equal to that of m(density). So its unit can be calculated as follows:

[tex]\begin{aligned}{\text{b}}&=\left({\frac{{{\text{mol}}}}{{{\text{mass}}}}}\right)\left({\frac{{{\text{mass}}}}{{{\text{Volume}}}}}\right)\\&=\frac{{{\text{mol}}}}{{{\text{Volume}}}}\\\end{aligned}[/tex]

Learn more:

1. Rate of chemical reaction: https://brainly.com/question/1569924

2. The main purpose of conducting experiments: https://brainly.com/question/5096428

Answer details:

Grade: Senior School

Subject: Chemistry

Chapter: Keys to studying chemistry

Keywords: Property, intensive, extensive, physical properties, chemical properties, density, substance, amount, quantity, nature, molarity, units, m, b, mol/L, mol/volume, molar mass.

Consider the equation SO2 → S + O2. The product(s) in this equation would be:
A. S
B. SO2
C. S + O2
D. OSO2 ...?

Answers

The products lie on the right hand side of the equation. So, in this case, they are:
S and O₂
The answer is C.

Answer: Option (C) is the correct answer.

Explanation:

In a chemical reaction equation, the number of species or molecules written on the left hand side denote reactants whereas the species or molecules written on the right hand side denote products.

For example, in the given equation, [tex]SO_{2} \rightarrow S + O_{2}[/tex]. Left hand side molecule is [tex]SO_{2}[/tex] and it is the reactant. Whereas the molecules or species on right hand side are S and [tex]O_{2}[/tex] and these are the products.

Thus, we can conclude that the product(s) in this equation would be S + O2.

Why does the potassium atom tend to lose only one electron?

Answers

Potassium, if you look on the periodic table, has only one valence electron. To be in it's most stablest form, it would have to lose that one electron.

Study the electron dot diagrams for lithium, carbon, fluorine, and neon in Figure 6-1. Choose the statement that correctly identifies the most stable of the elements.
A. Lithium is the most stable element because it has to lose only one electron to achieve a stable configuration.
B. Carbon is the most stable element because it can form four bonds.
C. Fluorine is the most stable element because it has to gain only one electron to achieve a stable configuration.
D. Neon is the most stable element because its highest occupied energy level is filled.

Answers

D.
The completely filled valence shell of Neon makes it most stable.

Answer is: D. Neon is the most stable element because its highest occupied energy level is filled.

Neon (symbol: Ne) is an element (noble gas) with atomic number 10, which means it has 10 protons and 10 electrons.

Electron configuration of neon atom: ₁₀Ne 1s²2s²2p⁶.

Noble gases are in group 18: helium (He), neon (Ne), argon (Ar), krypton (Kr), xenon (Xe) and radon (Rn). They have very low chemical reactivity.

Which of the following elements has the most properties in common with iron (Fe)?

cobalt (Co)

osmium (Os)

manganese (Mn)

chromium (Cr)

Answers

If my memory serves me well, the following element which has the most properties in common with iron (Fe) is definitely Osmium (Os) because they are stand for the same group! 
I'm sure it helps!

Answer:

Osmium

Explanation:

Got it right on the test.

How many moles of dipyrithione (C10H8N2O2S2) contain 8.2 x 10^24 atoms of N2?

Answers

Answer : The number of moles of dipyrithione are [tex]1.4\times 10^1[/tex] moles.

Explanation :

The given molecule is, [tex]C_{10}H_8N_2O_2S_2[/tex]

In this molecule, there are 10 atoms of carbon, 8 atoms of hydrogen, 2 atoms of nitrogen, 2 atoms of oxygen and 2 atoms of sulfur.

As we know that, 1 mole of substance contains [tex]6.022\times 10^{23}[/tex] number of atoms.

As, [tex]6.022\times 10^{23}[/tex] atoms of [tex]N_2[/tex] present in 1 mole of [tex]C_{10}H_8N_2O_2S_2[/tex]

So, [tex]8.2\times 10^{24}[/tex] atoms of [tex]N_2[/tex] present in [tex]\frac{8.2\times 10^{24}}{6.022\times 10^{23}}=13.6\approx 1.4\times 10^1[/tex] mole of [tex]C_{10}H_8N_2O_2S_2[/tex]

Therefore, the number of moles of dipyrithione are [tex]1.4\times 10^1[/tex] moles.

There are 6.8 moles of dipyrithione that contain 8.2 x 10²⁴ atoms of N₂, calculated using Avogadro's number and the composition of the molecule.

Avogadro's number (NA) is 6.022 x 10²³ mol⁻¹, which is the number of particles in one mole of a substance. Since each molecule of N₂ contains two nitrogen atoms,  divide the total number of nitrogen atoms by two to find the number of N₂ molecules, and then divide by Avogadro's number to find the moles of N₂.

First, calculate the number of moles of N₂ by using the formula

[tex]n = \frac{N}{N_A}[/tex]

It relates the number of particles N to the number of moles n. In this case, N is the total number of nitrogen atoms given (8.2 x 10²⁴ atoms), which we divide by 2 to account for N₂, and then divide this number by Avogadro's number (6.022 x 10²³ mol-1) to find the moles of N₂:

nN2 = (8.2 x 10²⁴ atoms) / (2 x 6.022 x 10²³ mol⁻¹) = 6.8 moles of N₂

Since dipyrithione has one N₂ unit per molecule, the number of moles of dipyrithione is the same as the number of moles of N₂:

6.8 moles of dipyrithione will contain 8.2 x 10²⁴ atoms of N₂.

Waves we cannot actually see (unlike ripples) and those not needing a medium to travel within belong to this category of waves?

Answers

Final answer:

Electromagnetic waves can travel through a vacuum and do not require a medium. They include light, radio waves, and X-rays, among others.

Explanation:

The category of waves that cannot be seen and do not require a medium to travel through is known as electromagnetic waves. Unlike mechanical waves such as sound waves and water waves which need a medium (solid, liquid, or gas) to propagate, electromagnetic waves can travel through a vacuum. These consist of oscillations in electric and magnetic fields and include gamma rays, X-rays, ultraviolet waves, visible light, infrared waves, microwaves, and radio waves. A quintessential example of electromagnetic wave travel is visible light from distant stars reaching Earth through the vacuum of space.

Final answer:

Electromagnetic waves, including varieties like gamma rays and radio waves, do not require a medium to travel and can propagate through a vacuum at the speed of light.

Explanation:

The waves that cannot be seen and do not require a medium to travel through are known as electromagnetic waves. Unlike mechanical waves like sound and water waves, which require a medium such as air, water, or solids to travel through, electromagnetic waves can propagate through the vacuum of space. Some examples of electromagnetic waves include gamma rays, X-rays, ultraviolet waves, visible light, infrared waves, microwaves, and radio waves.

Electromagnetic waves are generated by the oscillations of electric and magnetic fields and they can move through a vacuum as they do not depend on a medium for their propagation. This characteristic allows electromagnetic waves to travel at a constant speed, known as the speed of light, which is approximately 2.99792458 × 108 m/s. Therefore, these waves are fundamentally different from mechanical waves, and this understanding is important for the study of physics and various applications in technology.

One success of Johann Döbereiner's law of triads was that it organized most of the known elements into three-element groups based on similarities in their properties. (Points : 2)
True
False

Answers

that statement is true

it was easy to organize 'all' the elements in a group of threes because back then they only knew about 15 - 20 elements

hope this helps

Answer:

True.

Explanation:

In 1824, the German chemist Johann Dobereiner, when analyzing the chemical elements calcium (Ca), strontium (Sr) and barium (Ba), noticed a simple relationship between their atomic masses: the mass of the strontium atom was very close to mass average of the other two elements. This observation was named the Triads of Chemical Elements and thus was born the law of the triads of Johann Döbereiner.

This law argued that elements with similar properties, ie, which reacted similarly with other elements, were organized in groups of three.

Henry plans to monitor the change in concentration of an acid during a chemical reaction. He wants to collect data every 0.1 seconds and then to graph his data and insert it into a text document. Which pair of tools would be best for Henry to use?

a computer and pH paper
pH paper and a graphing calculator
a computer and a concentration probe
a graphing calculator and a concentration probe

Answers

A computer and a concentration probe.
This is because the time interval between readings and the amount of tasks to be performed per time interval is beyond fits the capacity of these instruments.

A computer and a concentration probe

Worth 80 points!!! I forget energy shells

Answers

Hey there! The answer you're looking for is Helium


Here shows the list of per shell

Hydrogen

Lithium

Beryllium

Theansweris Helium

This is unnecessary


One canned juice drink is 15% orange juice; another is 5% orange juice. How many liters of each should be mixed together in order to get 10L that is 11% orange juice? ...?

Answers

Final answer:

To obtain 10L of 11% orange juice mix, we need 6L of 15% orange juice and 4L of 5% orange juice. We determine this by setting up and solving a system of linear equations based on the total volume and desired concentration.

Explanation:

To solve the problem of mixing two concentrations of orange juice to obtain 10 liters of a 11% orange juice solution, we will set up a system of equations. Let's define x as the amount of 15% orange juice and y as the amount of 5% orange juice. The total amount of the mixture should be 10 liters, so we have:

x + y = 10 ... (1)

Next, we set up the second equation based on the concentration of orange juice. Since we want the final concentration to be 11%, we can write the following equation:

0.15x + 0.05y = 0.11(10) ... (2)

Now we solve the system of equations. Multiplying equation (2) by 100 to make the numbers easier to work with, we get:

15x + 5y = 110

From equation (1), we can express y as:

y = 10 - x

Substituting y in equation (2), we have:

15x + 5(10 - x) = 110

15x + 50 - 5x = 110

10x = 60

x = 6

Now we find y using equation (1):

y = 10 - x

y = 10 - 6

y = 4

So, we need 6L of the 15% orange juice and 4L of the 5% orange juice to get 10L of 11% orange juice.

What mass of steam at 100 C must be mixed with 150 gram of ice at its melting point, in a thermally insulated container, to produce liquid water at 50 C?

Heat of fusion of water at its normal freezing or melting temperature = 333 kJ/kg
Heat of vaporization (or steam) = 2256 kJ/kg
Specific heat of water = 4180 J/kg K ...?

Answers

1. Since the system is thermally insulated, then the 

Heat given up by steam = Heat absorbed by ice 

Qs = Qi 

Qs = Ms(Hv) + Ms(Cp)(100 - 65) 

Qs = Ms(Hv) + Ms(Cp)(35) 

where 

Ms = mass of steam 
Hv = heat of vaporization of steam 
Cp = specific heat of water 

Qi = 0.350(Hf) + 0.350(Cp)(65 - 0) 

Qi = 0.350(Hf) + 22.75(Cp) 

where 

Hf = heat of fusion of ice 
Cp = specific heat of water (as previously defined) 

and since Qs = Qi, then 

Ms(Hv) + Ms(Cp)(35) = 0.350(Hf) + 22.75(Cp) 

I will stop my actual solution at this point. From hereon in, I trust that you can proceed with the rest of the solution. 

Simply, determine the following values -- Hv, Cp and Hf -- and substitute in the above equation. After substituting the appropriate values, then you can already solve for Ms -- the mass of steam. 






2.  m (2256 + 51 x 4.186) = 485 (333 + 49 x 4.186) 
m = 105.684 g

The ice will require two forms of heat: latent to melt and sensible to be heated to 50 °C.
Q(ice) = ml + mCpΔT
= 150 x 333 + 150 x 4.18 x 50
= 85950 Joules
The mass of steam must release this much energy in two forms: latent to fuse into water and then sensible to cool to 50 °C.
85950 = m(2256) + 4.18 x 50 x m
m = 34.9 grams of steam.

What can happen when a fission chain reaction gets out of control?

Answers

When a fission chain reaction gets out of control this can cause an explosion. Typically, fission chain reactions are regulated by control rods in a nuclear reactor.

In other words, the answer should be  

This can cause an explosion.  

posting this for future users to see!

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