A gas sample is held at constant pressure. The gas occupies 3.62 L of volume when the temperature is 21.6°C. Determine the temperature at which the volume of the gas is 3.42 L.225 K278 K325 K125 K

Answers

Answer 1

The temperature T₂ when the volume of the gas changes from 3.62L to 3.42L is 311.98 K if the pressure is kept constant.

It is given that the initial volume of the gas (V₁) is 3.62L and temperature(T₁) is 21.6°C (294.75k) and the final volume is 3.42L. To find the final temperature of the gas T₂, we need to use the following formula:

V₁/V₂ = T₂/T₁

where V1 and V2 are the volumes of the gas at temperatures T₁ and T₂, respectively. Substituting the known values and solving for T₂ yields:

T₂ = (V₁/V₂)(T₁)

= (3.62 L/3.42 L)(294.75K)

T₂ = 1066.995/3.42

T₂ = 311.98 K

Therefore the final temperature is 311.98K at which the volume of gas is 3.42L.

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Related Questions

Helen knit a total of 175 centimeters of scarf over 35 nights. How many nights will Helen have to spend knitting in order to knit a total of 180 centimeters of scarf? Solve using unit rates.

Answers

Helen takes 35 nights to knit a total of 175 centimeters of scarf. Hence, she will take 36 nights to knit 180 centimeters of scarf.

What are length units?

Length is a basic measurement in for an object which is basically taken in meters or centimeters. The basic unit of length in American standard is meters (m) and in CGS system it is centimeters.

It is given that, Helen knit a total of 175 centimeters of a scarf over 35 nights. Then, the length she knit in one nigh is calculated as:

175/35 = 5 cm.

Therefore, the number of nights required to complete 180 cm is :

180 /5 = 36

Thus, she will take 36 nights to knit a total of 180 cm of scarf.

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write the structural formula for 2-bromo-3-chloro-4,4-dimethylpentanal​

Answers

Answer:

Br-CH2-CH(CH3)2-C(Cl)H-CH(CH3)2-CHO

Explanation:

The molecule has a total of 14 carbon atoms, 13 hydrogen atoms, and 1 bromine atom. The carbon atoms are arranged in a chain with a methyl group attached to the second carbon atom, a chlorine atom attached to the third carbon atom, and two methyl groups attached to the fourth carbon atom. The fifth carbon atom has a carbonyl group attached to it.

The molecule is an aldehyde, which means that it has a carbonyl group (C=O) at the end of the chain. The carbonyl group is polar, and the oxygen atom has a partial negative charge. The hydrogen atom has a partial positive charge. This polarity makes the aldehyde group susceptible to nucleophilic attack.

The bromine and chlorine atoms are both electrophilic, which means that they have a partial positive charge. This makes them susceptible to nucleophilic attack.

The methyl groups are non-polar and do not have any significant reactivity.

The molecule is a chiral molecule, which means that it has a mirror image that is not superimposable on itself. This is because the carbon atom with the carbonyl group is attached to four different groups.

The molecule is a liquid at room temperature and has a strong odor. It is used in a variety of products, including perfumes, flavorings, and plastics.

Which of the following reactions will proceed as drawn below? (Yes or No)

Which of the following reactions will proceed as drawn below? (Yes or No)

Answers

Answer:

i wish i could help but t know either so i wish you luck for an answer once again truly sorry don'

Explanation:

i am sorry but i do not know :(

Explain
Question
1. An atom makes
up a compound
True/False

Answers

True

Atoms are the building blocks of all matter. That make up pretty much anything. This includes elements and compounds

Answer:

True

Explanation:

Atoms combines chemically to form compounds.

hence atoms makes up compounds

a gas has an initial volume of 3,480 mL and an initial temperature of - 70.0 C. what must be the temperature of the gas in kelvin if its volume is reduced to 2,450 mL

Answers

The temperature of the gas in Kelvin, after its volume is reduced to 2,450 mL, is approximately 143.27 K.

To determine the temperature of the gas in Kelvin after its volume is reduced, we can use the combined gas law, which relates the initial and final conditions of pressure, volume, and temperature for a given amount of gas.

The combined gas law equation is:

(P₁ * V₁) / T₁ = (P₂ * V₂) / T₂

Where P₁ and P₂ are the initial and final pressures, V₁ and V₂ are the initial and final volumes, T₁ is the initial temperature in Kelvin, and T₂ is the final temperature in Kelvin.

Given that the initial volume V₁ is 3,480 mL, the initial temperature T₁ is -70.0 °C (which needs to be converted to Kelvin), and the final volume V₂ is 2,450 mL, we can substitute these values into the equation.

To convert -70.0 °C to Kelvin, we add 273.15 to it, resulting in T₁ = 203.15 K.

Now we can solve for T₂:

(T₂ * V₁) / T₁ = V₂

T₂ = (V₂ * T₁) / V₁ = (2,450 mL * 203.15 K) / 3,480 mL

Simplifying the equation, we find:

T₂ ≈ 143.27 K

Therefore, the temperature of the gas in Kelvin, after its volume is reduced to 2,450 mL, is approximately 143.27 K.

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Which of the following is the least important property of a mineral?
A streak
B hardness
C luster
D color

Answers

Explanation:

Türküm lben .Türk varmi kardaşlar!!!

Answer:

D color

Explanation:

One physical test for minerals is to check their color. Certain kinds of minerals always have a similar color, but most minerals have a range of colors. This is the least informative property of a mineral. Some words to describe color are: pale, bright, streaked, splotchy, banded, and speckled.

This is from my school assignment good luck everyone!! :D

Balance the equations by putting the necessary coefficients in the blanks. Normally we do not write 1s when balancing, but for this particular question you need to include them for full credit. __Na3N___ Na +__ N2 ___H3PO4 + __ KOH __K3PO4 + __ H2O __ N2 +__ H2 __ NH3 __H2O2 __ O2 + __ H2O __ Zn + __ HCl __ ZnCl2 + __H2 __ C2H6 + __ O2 __ CO2 + __H2O __ CuCl2 + __H2S __ CuS + __HCl

Balance the equations by putting the necessary coefficients in the blanks. Normally we do not write 1s

Answers

Balancing a chemical equation is the process of ensuring that the number of atoms of each element in the reactants is equal to the number of atoms of that same element in the products.

Balance the chemical eqations given in the problem?

Na3N → 3 Na + ½ N2H3PO4 + 3 KOH → K3PO4 + 3 H2ON2 + 3 H2 → 2 NH3H2O2 → O2 + 2 H2OZn + 2 HCl → ZnCl2 + H2C2H6 + 7/2 O2 → 2 CO2 + 3 H2OCuCl2 + H2S → CuS + 2 HCl

Chemical equations are used to describe the reactants and products in a chemical reaction. These equations are written using chemical formulas and symbols, indicating the types and numbers of atoms or molecules involved in the reaction. However, these equations must be balanced to obey the law of conservation of mass, which states that the total mass of the reactants must equal the total mass.

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What is the first quantum number of a 1 s² electron in phosphorus,
1s²2s²2p 3s²3p³?

A. n = 1
B. n = 2
C. n = 3
D. n = 0

Answers

The first quantum number, that is, the principal quantum number of a 1s² electrons is n= 1. Hence, option A is correct.

What is quantum number?

Quantum numbers of an electrons represents the allocation of electrons in each orbitals within an atom. There are four different quantum numbers namely, principal quantum number, azimuthal quantum number, magnetic quantum number and spin quantum number.

No two electrons in an orbital will have same set of these four quantum numbers. The principal quantum number corresponds to the main energy levels represented by the letter n.

n for 1s orbital is always 1. Similarly for a 3s orbital n is 3. Therefore, the principal quantum number of one electron in 1s is n=1.

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How many grams are in 10.0 mol of Chromium?

Answers

Answer:

51.9961 grams

Explanation:

You can view more details on each measurement unit: molecular weight of Chromium or grams The molecular formula for Chromium is Cr. The SI base unit for amount of substance is the mole. 1 mole is equal to 1 moles Chromium, or 51.9961 grams.

calculate the volume of hydrogen in the reaction of 73 grams of zinc and 73 grams of hydrochloric acid (under normal conditions) please help

Answers

The volume of hydrogen gas produced in the reaction of 73 grams of zinc and 73 grams of hydrochloric acid (under normal conditions) is approximately 22.4 liters.

To calculate the volume of hydrogen gas produced in the reaction of zinc and hydrochloric acid, we need to use the principles of stoichiometry and the ideal gas law.

First, let's write the balanced chemical equation for the reaction between zinc (Zn) and hydrochloric acid (HCl):

Zn + 2HCl →\(ZnCl_2\)+ H2

From the equation, we can see that one mole of zinc reacts with two moles of hydrochloric acid to produce one mole of hydrogen gas. To determine the number of moles of zinc and hydrochloric acid, we need to convert the given masses into moles.

The molar mass of zinc (Zn) is approximately 65.38 g/mol, so 73 grams of zinc is equal to:

73 g Zn * (1 mol Zn / 65.38 g Zn) ≈ 1.116 mol Zn

Similarly, the molar mass of hydrochloric acid (HCl) is approximately 36.46 g/mol, so 73 grams of HCl is equal to:

73 g HCl * (1 mol HCl / 36.46 g HCl) ≈ 2.002 mol HCl

According to the balanced equation, the reaction produces one mole of hydrogen gas for every two moles of hydrochloric acid. Therefore, since we have 2.002 moles of HCl, we expect to produce half that amount, or approximately 1.001 moles of hydrogen gas.

To calculate the volume of hydrogen gas, we can use the ideal gas law, which states:

PV = nRT

Where P is the pressure, V is the volume, n is the number of moles, R is the ideal gas constant, and T is the temperature. In this case, we assume the reaction is conducted under normal conditions, which means a pressure of 1 atmosphere and a temperature of 273.15 Kelvin.

Rearranging the equation to solve for V, we have:

V = nRT / P

Substituting the values, we get:

V = (1.001 mol) * (0.0821 L·atm/(mol·K)) * (273.15 K) / (1 atm) ≈ 22.4 L

Therefore, the volume of hydrogen gas produced in the reaction is approximately 22.4 liters.

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2. 4.6gof X is burnt completelyto produce 6.2g of X oxide (X,O). M (0) = 16 gmol ¹. Calculate the amount of oxygen that reacted in this experiment. [2 MARKS]
[ii] calculate the mass of 1 mole of x.[2mark]
[iii] predict and give a reason explaining the reaction of x2o in water.[1mark]​

Answers

As per the given data, 1.6 grams of oxygen reacted in this experiment.

To calculate the amount of oxygen that reacted in the experiment, we need to determine the difference in the mass of X oxide (X,O) formed and the mass of X initially used.

Given:

Mass of X = 4.6 g

Mass of X oxide (X,O) = 6.2 g

To find the amount of oxygen that reacted:

Mass of oxygen = Mass of X oxide - Mass of X

= 6.2 g - 4.6 g

= 1.6 g

Therefore, 1.6 grams of oxygen reacted in this experiment.

Calculate the mass of 1 mole of X:

Given that the mass of X is 4.6 g, we can calculate the molar mass of X by dividing the mass by the number of moles:

Molar mass of X = Mass of X / Number of moles of X

Molar mass of X = 4.6 g / 0.1 mol

Molar mass of X = 46 g/mol

Therefore, the mass of 1 mole of X is 46 grams.

Thus, the answer is 46 grams.

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Why is it not necessary to test the reactivity of the elemental metals with solutions of the same metal ion?

Answers

It is not necessary to test the reactivity of the elemental metals with solutions of the same metal ion because it won't react with itself.

What is Reactivity?

This is referred to as the relative capacity or how readily a substance undergoes a chemical reaction.

Reactivity of elements are dependent on various types of parameters such as the number of valence electrons, shells etc and can be tested with other substances. However, it can't be tested with the solutions of the same metal ion because no reaction will occur thereby making it the most correct reason in this scenario.

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Describe a process that may have produced the moon

Answers

The Giant-Impact theory. People basically believed that the moon was created from the collision between earth and another small planet:)

What is the molarity of a solution containing 150 g of zinc sulfate (ZnSO4) per liter?

Answers

Answer:

0.93 M

Step-by-step Explanation:

First, we have to calculate the molar mass (MM) of ZnSO₄ by using the molar mass of each chemical element:

MM(ZnSO₄) = 65.4 g/mol Zn + 32 g/mol S + (16 g/mol x 4) = 161.4 g/mol

Then, we divide the mass of ZnSO₄ into its molar mass to obtain the number of moles:

moles ZnSO₄ = mass/MM = 150 g/(161.4 g/mol)= 0.93 mol

Since the molarity of a solution expresses the number of moles of solute per liter of solution, we calculate the molarity (M) as follows:

M = moles ZnSO₄/1 L =  0.93 mol/1 L = 0.93 M

prop-1-yne + 2HBr/H2O2 = A;
A + 2H2O = B;
B + K2CO3(aq) = C;
C + heat = D;
D + HBr = E.
find the compounds A, B, C, D and E

Answers

Based on the given reactions, the compounds are as follows:

A: The specific product formed from the reaction between prop-1-yne and either 2HBr or H2O2.

B: The product formed when compound A reacts with 2H2O.

C: The product formed when compound B reacts with K2CO3(aq).

D: The product formed from the heat-induced reaction of compound C.

E: The product formed when compound D reacts with HBr.

Based on the given reactions, let's analyze the compounds involved:

Reaction 1: prop-1-yne + 2HBr/H2O2 = A

The reactant prop-1-yne reacts with either 2HBr or H2O2 to form compound A. The specific product formed will depend on the reaction conditions.

Reaction 2: A + 2H2O = B

Compound A reacts with 2H2O (water) to form compound B.

Reaction 3: B + K2CO3(aq) = C

Compound B reacts with K2CO3(aq) (potassium carbonate dissolved in water) to form compound C.

Reaction 4: C + heat = D

Compound C undergoes a heat-induced reaction to form compound D.

Reaction 5: D + HBr = E

Compound D reacts with HBr (hydrobromic acid) to form compound E.

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what is the difference between average and total kinetic energy?

Answers

Answer:

Explain the difference between total and average molecular kinetic energy of a gas contained in a box. As an average K.E. of the particles increases, the object's temperature increases. Total Kinetic Energy is the sum of energy. Explain how a liquid thermometer measure temperature.

The total kinetic energy of a body or a system is equal to the sum of the kinetic energies resulting from each type of motion.

The difference between voltaic and electrolytic cells is that:

Answers

Answer:

Voltaic cells convert chemical energy to electrical energy by means of an oxidation-reduction reaction. Electrolytic cells convert electrical energy to chemical energy, so they are the opposite of voltaic cells. They require an input of electrical energy to cause an oxidation-reduction reaction.

Explanation:

that good enough for ya my asian friend?

Answer:

This is the answer hopefully you understand this also can you mark me brainliest pls

The difference between voltaic and electrolytic cells is that:

Sodium and Lithium have similar chemical properties. What characteristic of these elements explains why they are chemically similar?

F. Their atoms both have 1 valence electron

G. Their atoms both have more neutrons than protons

H. Their atoms have the same number of energy levels

J. Their atoms contain equal numbers of protons and electrons


I am not in college...

Answers

These elements' shared possession of a single valence electron in their atoms explains why they are chemically related. As a result, F is the right response.

An atom's valence shell electrons control how it interacts with its neighbours and, consequently, its chemical characteristics. Lithium and sodium both contain one valence electron, hence they have comparable chemical characteristics. Elements from this family include lithium, sodium, potassium, rubidium, cesium, and francium (Li, Na, K, Rb, Cs, and Fr, respectively). The components of Group 1 have similar traits. Each of them is a delicate silver metal. These metals have low melting temperatures and are extremely reactive because of their low ionisation energy.

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Two samples of carbon come into contact. A heat transfer will occur between sample A and sample B. What must be true
for heat to transfer from sample A to sample B?
The average kinetic energy of A is greater than that of B.
The average kinetic energy of B is greater than that of A.
The average kinetic energy of both samples is equal.
The average kinetic energy does not determine the direction of heat transfer.
Mark this and return
Save and Exit
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Submit

Answers

The average kinetic energy of A must be greater than that of B for heat to transfer from sample A to sample B.

Which of these types of changes is a physical change?
A. Changing one substance into another
B. Dissolving one substance in another
C. Breaking apart one substance into two substances
D. Making a new substance

Answers

Answer:

answer is c

Explanation: cause there breaking it

Which of the following is an exothermic reaction?

a solid to a liquid

a gas change to a liquid

a liquid to a gas

a solid to a gas

Answers

i’m pretty sure it’s b !

Answer:

liquid to gas

Explanation:

when boiling water when evaporating heat is given out

Answer fast please!!

A calorimeter contains 600 g of water at 25°C. You place a hand warmer containing 300 g of liquid
sodium acetate inside the calorimeter. When the sodium acetate finishes crystallizing, the temperature of
the water inside the calorimeter is 36.4°C. The specific heat of water is 4.18 J/g-°C. What is the enthalpy
of fusion (AH) of the sodium acetate? (Show your work.) Where necessary, use q = mH₁.

Answers

The enthalpy of fusion of sodium acetate is approximately -93.64 J/g.

To calculate the enthalpy of fusion (ΔH) of sodium acetate, we can use the principle of energy conservation. The heat lost by the hand warmer during the crystallization process is equal to the heat gained by the water in the calorimeter.

First, let's calculate the heat gained by the water in the calorimeter using the formula q = m × c × ΔT, where q is the heat gained or lost, m is the mass of the water, c is the specific heat capacity of water, and ΔT is the change in temperature.

q_water = m_water × c_water × ΔT_water

Given:

m_water = 600 g

c_water = 4.18 J/g-°C

ΔT_water = 36.4°C - 25°C = 11.4°C

q_water = 600 g × 4.18 J/g-°C × 11.4°C

q_water = 28092 J

Since the heat lost by the hand warmer during crystallization is equal to the heat gained by the water, we can write:

q_water = q_handwarmer

Now, let's calculate the heat lost by the hand warmer using the same formula:

q_handwarmer = m_handwarmer × c_handwarmer × ΔT_handwarmer

Given:

m_handwarmer = 300 g

c_handwarmer = unknown (specific heat capacity of sodium acetate)

ΔT_handwarmer = 36.4°C - initial temperature of sodium acetate

Since the sodium acetate undergoes crystallization, its temperature remains constant during this phase change. The temperature at which crystallization occurs is known as the freezing point of sodium acetate, which is approximately 58°C. Therefore:

ΔT_handwarmer = 36.4°C - 58°C = -21.6°C

Now, we can substitute the known values into the equation:

q_water = q_handwarmer

28092 J = 300 g × c_handwarmer × -21.6°C

To solve for c_handwarmer, we rearrange the equation:

c_handwarmer = -28092 J / (300 g × -21.6°C)

c_handwarmer ≈ 5.47 J/g-°C

The specific heat capacity of sodium acetate (c_handwarmer) is approximately 5.47 J/g-°C.

The enthalpy of fusion (ΔH) can be calculated using the equation ΔH = q_handwarmer / m_handwarmer:

ΔH = -28092 J / 300 g

ΔH ≈ -93.64 J/g

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2K + MgCh2 -> 2KCI + Mg
Which of the following statements best describes the reaction?

O This reaction is a double replacement reaction because K replaced Mg and a redox reaction because the ion charges of the elements changed from a 0 charge on K to +1 charge, and a +2 charge on Mg to a 0 charge.

• This reaction is a double replacement reaction because K replaced Mg and not a redox reaction because the ion charges of the elements remained the same.

This reaction is a single replacement reaction because K replaced Mg and a redox reaction because the ion charges of the elements changed from a 0 charge on K to +1 charge, and a +2 charge on Mg to a 0 charge.

O This reaction is a single replacement reaction because K replaced Mg and not a redox reaction
because the ion charges of the elements remained the same.

Answers

Answer:

The third option

Explanation:

This reaction is a single replacement reaction because K replaced Mg and a redox reaction because the ion charges of the elements changed from a 0 charge on K to +1 charge, and a +2 charge on Mg to a 0 charge.

At a certain temperature it is found that 1.83 moles of H2, 2.33 moles of 02 and 3.95 moles of H2O are in equilibrium in a 8.1 L container according to the reaction below. What is the equilibrium constant?
2 H2 (g) + 02 (g) = 2 H20 (g)
Keep extra significant figures during the calculation and round your answer to 1 decimal place.

Answers

0.6 is the equilibrium constant for the given reaction.

To calculate the equilibrium constant (K) for the given reaction, we need to use the molar concentrations of the reactants and products at equilibrium. The equilibrium constant expression is given by:

\(K= [H_{2}O]^{2} / ([H_{2}^{2} * [O_{2}])\)

Given the moles of H2, O2, and H2O in the 8.1 L container, we can convert them to molar concentrations by dividing the number of moles by the volume:

[H2] = 1.83 moles / 8.1 L

[O2] = 2.33 moles / 8.1 L

[H2O] = 3.95 moles / 8.1 L

Substituting these values into the equilibrium constant expression, we have:

K = \((3.95 / 8.1)^{2}\) / (\((1.83 / 8.1)^{2}\) * (2.33 / 8.1))

Evaluating this expression and rounding to one decimal place, we find the equilibrium constant to be:

K ≈ 0.6

Therefore, the equilibrium constant for the given reaction is approximately 0.6.

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I need assistance for number 5 and all parts of problem number five thank you !

I need assistance for number 5 and all parts of problem number five thank you !

Answers

Answer

The type of structural formula for each of the hydrocarbons given are shown below:

(a) Propyne (expanded):

(b) 2,2-dimethybutane (skeletal):

(c) Benzene (line-and-angle)

:

(d) Heptane (condensed)

CHCH₂CH₂CH₂CH₂CH₂CH

I need assistance for number 5 and all parts of problem number five thank you !
I need assistance for number 5 and all parts of problem number five thank you !
I need assistance for number 5 and all parts of problem number five thank you !

A 200 N force is applied to an object, which then accelerates at 2 m/s². What is the mass of the object?

Answers

The mass of the object that is acted on by a force of 200 N is 100 kg

What is mass?

Mass can be defined as the quantity of matter a body contains.

To calculate the mass of the object, we use the formula below.

Formula:

m = F/a................ Equation 1

Where:

m = Mass of the objectF = Force of the objecta = Acceleration due to gravity

From the question,

F = 200 Na = 2 m/s²

Substitute these values into equation 1

m = 200/2m = 100 kg

Hence, the mass of the object is 100 kg.

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A covalent compound is broken down into its individual elements. The amount of energy required to break the bonds is 1254 kJ, and the energy produced as a result of breaking the bonds is 1001 kJ. What type of reaction has most likely occurred?
a. combustible reaction
b. spontaneous reaction
c. endothermic reaction
d. exothermic reaction

Answers

Answer: c. endothermic reaction.

Explanation: In an endothermic reaction, energy is absorbed or required to break the bonds in the reactants. This means that more energy is required to break the bonds than is released by the formation of new bonds in the products, resulting in a net absorption of energy. In this case, the amount of energy required to break the bonds (1254 kJ) is higher than the energy produced by breaking the bonds (1001 kJ), indicating that the reaction requires an input of energy and is therefore endothermic.

Answer:

c. endothermic reaction

Explanation:

The given information states that the amount of energy required to break the bonds of the covalent compound is 1254 kJ, and the energy produced as a result of breaking the bonds is 1001 kJ.

In an endothermic reaction, the energy required to break the bonds is greater than the energy released or produced. This means that more energy is absorbed from the surroundings than is released during the reaction. In this case, since the energy required to break the bonds (1254 kJ) is greater than the energy produced (1001 kJ), it indicates that the reaction requires an input of energy from the surroundings, making it an endothermic reaction.

Option c, "endothermic reaction," is the correct answer based on the given information.

Please help me with this chem question

Please help me with this chem question

Answers

Answer:

D

Explanation:

A and C are physical changes, while B is a solution, only D is a chemical reaction.

A student removes a chemical sample from a reagent bottle to be used in an experiment. What should he do with any excess chemical remaining from this sample after the experiment is complete?
Select one:
Check and see if anyone else can use the chemical. If not, discard in the proper waste container.
Conduct a second trial of the experiment with the excess chemical.
Discard the chemical down the sink under running water.
Clean a spatula thoroughly, then use it to add the chemical back into the reagent bottle.

Answers

The correct statement from the given option is as follows : Check and see if anyone else can use the chemical. If not, discard in the proper waste container.

A student removes the chemical sample from the reagent bottle to used in an experiment. He should do with any excess chemical that is remaining from that sample after the experiment is complete is he should Check and see if anyone else can use the chemical. If not, discard in the proper waste container.

The remaining chemical can not return to the bottle because , if the student return the this leftover sample, than it can contaminate the entire sample store in the container.

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A hypothetical AX type of ceramic material is known to have a density of 3.15 g/cm3 and a unit cell of cubic symmetry with a cell edge length of 0.41 nm. The atomic weights of the A and X elements are 90.5 and 37.3 g/mol, respectively. On the basis of this information, which one of the following crystal structures is possible for this material?

a. Sodium chloride
b. Cesium chloride
c. Zinc blende

Answers

Answer:

b.

Explanation:

From the given information:

\(p = \dfrac{zM}{N_oa^3}\)

where;

a = 0.41 nm = \(4.1 \times 10^{-8} \ cm\)

M = 90.5 + 37.3 = 127.8 g/mol

\(N_o = 6.023 \times 10 ^{23}\)

p = 3.15 g/cm³

\(3.15 = \dfrac{z \times 127.8}{(6.02 \times 10^{23}) \times (4.1 \times 10^{-8} )^3}\)

Z = 1

Thus, the ceramic material has a simple cubic crystal system and the crystal structure is possible to be Cesium chloride.

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