How much heat is required, in calories, to raise the temperature of 57.8g of silver from 17.0oC to 43.5oC, if the specific heat of silver = 0.057cal / goC?

Answers

Answer 1

Answer:

83.60oC per cal

Explanation:

Answer 2

The amount of heat required to raise the temperature of 57.8g of silver from 17.0°C to 43.5°C is 87.31 calories.

How to calculate energy?

The energy required to raise the temperature of a substance can be calculated using the following formula:

Q = m × c × ∆T

Where;

Q = quantity of heat absorbed or releasedm = mass of the substancec = specific heat capacity∆T = change in temperature

Q = 57.8 × 0.057 × (43.5 - 17)

Q = 87.31calories

Therefore, the amount of heat required to raise the temperature of 57.8g of silver from 17.0°C to 43.5°C is 87.31 calories.

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Related Questions

Which force help keep Earth in orbit

Answers

Answer:

the answer the gravity

Explanation:

If you burned 4.10 x 10^24 molecules of butane (C4H10), what mass of ethane did you burn?

Answers

Answer:

Explanation:

Molar mass of C4H10 = 12x 4 + 1 x 10= 48+ 10=58g.

Also note that molar mass of a substance is equivalent to Avogadro's number (6.02 X 10^-23)

Hence,

6.02 X 10^-23 molecules of ethane was burned in 58g of ethane

So, 4.10 X 10^24 molecules of ethane will burn in xg of ethane.

Cross multiply:

6.02 X 10^-23x = 58 X 4.10 X 10^24

6.02 X 10^-23x = 2.378 X 10 ^26

Dividing both sides by the coefficient of 'x'

x = 2.378 X 10^26/(6.02X 10^-23)

x = 3.95 X10^48g approximately

x = 4.0 X 10^48g

Or

Mole = number of elementary

particless / Avogadro's number

Where,

No of elementary particles= 4.10 X 10^24 molecules

Avogadro's number= 6.02 x 10^-23

Therefore,

Mole = 4.10 X 10^24/ (6.02 X 10^-23)

= 6.81 X 10^ 46 moles.

But mole = mass / molar mass

Mass = mole x molar mass

where

Molar mass of C4H10 = 12x 4 + 1 x 10= 48+ 10=58g/mol

Mass= 6.81 X 10^46 X 58

= 3.95 X 10^48g approximately

= 4.0 X 10^ 48g.

Thanks

If an atom has 10 protons, 10 neutrons, and 10 electrons, what is the atomic mass of the atom?

Answers

Answer:

20.179

Explanation:

The answer is 20.179 because the element you are talking about is the element  Neon, which has the atomic mass of 20.179.

A hangar is a _____.

A) storage area for planes
B) place of fame
C) place to hide jewels
D) a tool to hang clothes on

Answers

Answer:

a

Explanation:

a is the 100% correct answer

A (a storage area for planes) is the correct answer because if you look up hangar in chemistry, then you see lots of sites mentioning “Aircrafts” and “Spacecrafts” and others related to that.

2. An 18.0 liter container holds 1.20 moles of oxygen gas at 45.0 degrees Celsius. What is the
pressure in the container? *

Answers

Answer:

The pressure in the container is 1,7 atm.

Explanation:

We convert the unit of temperature in Celsius into Kelvin:

0°C= 273K --> 45°C= 45 + 273= 318 K

We use the formula:

PV=nRT ---> P =nRT/V

P= 1,20 mol x 0,082 l atm/K mol x 318 K/18,0 L

P= 1, 7384 atm

Which type of reaction occurs in the following equation?
2NO2(g) + 2OH"(aq) —— NO2(aq) + NO, (aq) +H2O(1)
a combination redox reaction
a displacement redox reaction
a synthetic redox reaction
a disproportionation redox reaction

Answers

Answer:

A disproportionation redox reaction  

Explanation:

1. Assign an oxidation number to every atom in the equation

[tex]2\stackrel{\hbox{$\mathbf{+4}$}}{\hbox{N}}\stackrel{\hbox{-2}}{\hbox{O }}_{2} + 2\stackrel{\hbox{-2}}{\hbox{O}}\stackrel{\hbox{+1}}{\hbox{H}^{-}} \longrightarrow \, (\stackrel{\hbox{$\mathbf{+3}$}}{\hbox{N}}\stackrel{\hbox{-2}}{\hbox{O }}_{2})^{-} + (\stackrel{\hbox{$\mathbf{+5}$}}{\hbox{N}}\stackrel{\hbox{-2}}{\hbox{O}_{3}})^{-} +\stackrel{\hbox{+1}}{\hbox{H}}_{2}\stackrel{\hbox{-2}}{\hbox{O}}[/tex]

2. Identify the atoms that change their oxidation number

N in NO₂: +4 ⟶ +3 in NO₂⁻

N in NO₂: +4 ⟶ +5 in NO₃⁻

3. Identify the type of change

This is a disproportionation — a reaction in which one substance is simultaneously oxidized and reduced.

Answer:

D

Explanation:

A container has 21.5L of helium gas at a pressure of 245 kPa and a temperature
of 315K. How many moles of helium are in the container?

Answers

Answer:

There are 2, 01 moles of helium in the container

Explanation:

We use the formula PV=nRT. We convert of pressure the unit kPa into atm:

101,325 kPa---1 atm

245   kPa   ----x= (245  kPa x 1 atm)/101,325 kPa=2,42 atm

PV= nRT  --->  n=PV/RT

n= 2, 42 atm x 21, 5 L/ 0,082 l atm /K mol  x315K

n=2, 012620871 mol

How many grams of CaF2 are present in 1.25 L of a 0.15 M solution of CaF2? How do I find the grams I am confused on that part?

Answers

Answer:

Mass = 14.64 g

Explanation:

Given data:

Volume of solution = 1.25 L

Molarity of Solution = 0.15 M

Mass of CaF₂ = ?

Solution:

Molarity is used to describe the concentration of solution. It tells how many moles are dissolve in per litter of solution.

Formula:

Molarity = number of moles of solute / L of solution

We will calculate the number of moles of CaF₂ and then determine the mass by using number of moles.

0.15 M =  number of moles of solute / 1.25 L

number of moles of solute = 0.15 M ×  1.25 L

number of moles of solute = 0.1875 mol/L × L

number of moles of solute = 0.1875 mol

Mass in gram:

Mass = number of moles × molar mass

Mass = 0.1875 mol ×78.07 g/mol

Mass = 14.64 g

The Mass of CaF₂ is 14.64 g. Molarity is the ratio of number of moles over the volume of solution.

Given:

Volume of solution = 1.25 L

Molarity of Solution = 0.15 M

To find:

Mass of CaF₂ = ?

What is Molarity?

Molarity is used to describe the concentration of solution. It is given by number of moles divided by volume of solution in litres.

Molarity = number of moles of solute / L of solution

We will calculate the number of moles of CaF₂ and then determine the mass by using number of moles.

0.15 M =  Number of moles of solute / 1.25 L

Number of moles of solute = 0.15 M *  1.25 L

Number of moles of solute = 0.1875 mol/L * L

Number of moles of solute = 0.1875 mol

Calculation of mass:

Mass = number of moles / molar mass

Mass = 0.1875 mol *78.07 g/mol

Mass = 14.64 g

Thus, the mass of CaF₂ is 14.64 grams.

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Which best describes nuclear fission?
A. the burning of carbon
B. the decay of radioactive isotopes
C. the splitting apart of atomic nuclei
D. the release of a tiny packet of energy

Answers

Answer:

It's C.

Explanation:

Firstly, the burning of carbon produces C02, a greenhouse gas. As nuclear fission does not produce carbon dioxide, it is not A. The decay of radioactive isotopes is not fission, or spliting into 2 parts.

As fission means to split, it is C.

balancing this equation
2 C2H2 + O2 CO2 + H2O

Answers

Final answer:

Balancing the provided chemical equation for the combustion of ethane results in a balanced equation with integer-only coefficients: 2 C2H6 + 7 O2 → 4 CO2 + 6 H2O, showcasing the adherence to the law of conservation of mass.

Explanation:

The question involves balancing a chemical equation which is a fundamental skill in chemistry. The correct and balanced equation for the combustion of ethane (C2H6) in oxygen is as follows:

2 C2H6 + 7 O2 → 4 CO2 + 6 H2O

This equation demonstrates that when ethane (C2H6) combusts with oxygen (O2), it produces carbon dioxide (CO2) and water (H2O). Balancing a chemical equation ensures that there are an equal number of atoms for each element on both sides of the equation, adhering to the law of conservation of mass. This equation is balanced by ensuring there are equal numbers of carbon, hydrogen, and oxygen atoms on both reactant and product sides. After initial attempts that might lead to fractional coefficients, multiplying all coefficients by an appropriate factor to achieve integer-only coefficients is a commonly used strategy as illustrated by the multiplication of each coefficient by 2 in this case.

The movement of water between the ground, the atmosphere, and bodies of water is called the

Answers

Final answer:

The hydrologic or water cycle is the term for the movement of water between the ground, atmosphere, and bodies of water. It occurs through processes like evaporation, transpiration, condensation, precipitation, surface runoff, and groundwater flow, primarily driven by solar energy and gravity.

Explanation:

The movement of water between the ground, the atmosphere, and bodies of water is called the hydrologic cycle or water cycle. This cycle describes the continuous movement of water as it is evaporated from surfaces like rivers, lakes, and oceans into the atmosphere, forms clouds, precipitates as rain or snow, and returns to the surface. The cycle is driven by solar energy and gravity, moving water through various states: liquid, solid (ice), and vapor.

Water reaches the atmosphere through evaporation, transpiration (from plants), and sublimation (ice to water vapor). It returns as precipitation and may flow over the land as surface runoff or infiltrate into the ground to become groundwater, which slowly moves and can discharge into other bodies of water or return to the ocean.

The Milky Way Galaxy is one of
in the known universe.
OA) hundreds
OB thousands
C) millions
D) billions

Answers

Answer:

there are billions, and more that we haven't yet explored, it is just let the sea only a lot more floaty!

hope this helps

a movable chamber has a volume of 18.5 L (at temperature of 18.5 C) assuming no gas escapes and the pressure remains constant what is the temperature when the chamber has a volume of 19.8 L

Answers

Answer:

[tex]39 ^\circ C[/tex]

Explanation:

Given,

V₁ = 18.5 L

T₁ = 18.5° C = 273 + 18.5 = 291.5 K

V₂ = 19.8 L

T₂ = ?

Pressure is constant

Using ideal gas equation

[tex]\dfrac{V_1}{T_1}=\dfrac{V_2}{T_2}[/tex]

[tex]\dfrac{18.5}{291.5}=\dfrac{19.8}{T_2}[/tex]

[tex]T_2 = 312 K[/tex]

[tex]T_2 = 312 -273 =39 ^\circ C[/tex]

The temperature when the chamber has a volume of 19.8 L should be considered as the 39 degrees.

Calculation of the temperature:

Since

V₁ = 18.5 L

T₁ = 18.5° C = 273 + 18.5 = 291.5 K

V₂ = 19.8 L

So here the final temperature should be

V1/T1 = V2/T2

18.5 L/291.5 = 19.8 / T2

So T2 = 312 k

= 312 - 273

= 39 degrees

hence, The temperature when the chamber has a volume of 19.8 L should be considered as the 39 degrees.

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Describe the steps used to create Lewis dot structures to represent covalent bonds.

Answers

1)Identify the atoms that are participating in a covalent bond.
2)Draw each atom by using its element symbol. The number of valence electrons is shown by placing up to two dots on each side of the element symbol, with each dot representing a single valence electron.
3)Predict the number of covalent bonds each atom will make using the octet rule.
4)Draw the bonding atoms next to each other, showing a single covalent bond as either a pair of dots or a line representing a shared valence electron pair. If the molecule forms a double or triple bond, use two or three lines to represent the shared electron pairs, respectively.

How many atoms of hydrogen in the product side of the balanced equation?
Fe + H20 ---> FeO + H2

A. 2

B. 3

C. 6

Answers

Answer:

A

Explanation

The product side is on the right, FeO + H2. H represents hydrogen, the number after it is the sbscript, which indicates that there are two hydrogen atoms.

There are two atoms of hydrogen  in the product side of the balanced chemical equation.

What is chemical equation?

Chemical equation is a symbolic representation of a chemical reaction which is written in the form of symbols and chemical formulas.The reactants are present on the left hand side while the products are present on the right hand side.

A plus sign is present between reactants and products if they are more than one in any case and an arrow is present pointing towards the product side which indicates the direction of the reaction .There are coefficients present next to the chemical symbols and formulas .

The first chemical equation was put forth by Jean Beguin in 1615.By making use of chemical equations the direction of reaction ,state of reactants and products can be stated. In the chemical equations even the temperature to be maintained and catalyst can be mentioned.

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What is the molarity of a solution made by dissolving 50.0 g of HBr in enough water to
make 600. mL of solution?​

Answers

Answer:

1.06M

Explanation:

Given parameters:

Mass of HBr  = 50g

Volume of water  = 600mL

unknown:

Molarity of the solution = ?

Solution:

The molarity of a substance is the number of moles of solute in a volume of solution.

   Mathematically;

             Molarity  = [tex]\frac{number of moles }{volume}[/tex]

Since the number of moles is unknown, let us solve for it;

         Number of moles  = [tex]\frac{mass}{molar mass}[/tex]

               Molar mass of HBr  = 1 + 80  = 81g/mol

    Number of moles  = [tex]\frac{50}{81}[/tex]    = 0.64mole

Convert the volume to liters or dm³;  600mL  =  0.6L or 0.6 dm³

Input the parameters and solve;

            Molarity  = [tex]\frac{0.64}{0.6}[/tex]   = 1.06M

Consider the reaction below. 2 upper N subscript 2 upper O subscript 5 (g) double-headed arrow 4 upper N upper O subscript 2 (g) plus upper o subscript 2 (g).

Answers

Answer:

The concentrations of the products and reactants do not change.

Explanation:

The following information is missing:

If the reaction is at dynamic equilibrium at 500 K, which statement applies to the given chemical system?

The forward and reverse reactions no longer occur. The rates of the forward and reverse reactions are unequal. The concentrations of the products and reactants do not change. The forward reaction stops at 500 K.

Dynamic equilibrium means that the rate of the forward and reverse reactions are equal and different from zero. Then, the concentrations of the products and reactants do not change.

Answer:

c

Explanation:

An blank is a group of organisms that can mate and produce offspring that can mate

Answers

Answer: specie

Explanation:

A specie is the smallest group of organisms with similar characteristics and are capable of living with each other and breeding together freely. They give rise to young ones (offspring) that resembles the parents and can also breed with organisms of same species.

Examples of species include

- a group of lizards

- a group of human beings etc

Final answer:

A species is defined as a group of organisms that can mate

Explanation:

A species is a fundamental unit of biological classification. It comprises individuals that can interbreed and produce fertile offspring, sharing common characteristics. Species diversity is vital to biodiversity and plays a central role in ecology and evolutionary biology studies.

Thus, a species is a group of individual organisms that interbreed and produce fertile, viable offspring. According to this definition, one species is distinguished from another when, in nature, it is not possible for matings between individuals from each species to produce fertile offspring. This reproductive isolation is an important factor in defining species.

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Students are investigating the relationship between pressure and temperature in gases. They have blown up a balloon with carbon dioxide from an air tank and
connected the balloon to a pressure gauge. The balloon is then submerged in ice or water baths at various temperatures in order to observe the pressure level
after several minutes. What is the flaw in the student's investigation, and how can the students improve their investigation to correctly determine the
relationship?
A The volume and density of the air in the balloon can change, therefore they need to use several different balloons at different volumes to account for
how density and volume affects pressure.
B. The volume of the balloon can change, therefore they need to use a rigid container such as plastic or metal to hold the air
C. The volume of the balloon can change, therefore they need to use several different balloons at different volumes to account for how volume atteots
pressure.
D. The volume and density of the air in the balloon can change, therefore they need to use a rigid container such as plastic or metal to hold the air

Answers

Answer:

b

Explanation:

B: the volume of the balloon can change. Therefore they need to use several different balloons at different volumes to account for how volume atteots

Describe the 3 categories that the periodic table can be divided into. Be prepared to provide this information for an element on the periodic table.

Answers

Answer:

Metal, non-metal , and metaliod

Explanation:

Answer:

metal, nonmetal and metalloid

Explanation:

How many mL of 3.0M HCl are needed to make 300.0 mL of a 0.10M HCl?

a
0.001 mL
b
none of the above
c
10 mL
d
0.10 mL

Answers

Answer:

V₁  = 10 mL

Explanation:

Given data:

Initial volume of HCl = ?

Initial molarity = 3.0 M

Final molarity = 0.10 M

Final volume = 300.0 mL

Solution:

Formula:

M₁V₁  =  M₂V₂

M₁ = Initial molarity

V₁  =  Initial volume of HCl

M₂ =Final molarity

V₂ = Final volume

Now we will put the values.

3.0 M ×V₁  =  0.10 M×300.0 mL

3.0 M ×V₁  = 30 M.mL

V₁  = 30 M.mL /3.0 M

V₁  = 10 mL

Help ASAP! WILL MARK BRAINLIEST!

What must happen for light to change a material?

Answers

Answer:

There should be the refraction for light to change a material.

Answer: change in speed

Explanation: the change in speed causes light Ray's to change direction. This directional change is called refraction.

A frisbee is moving at 11 m/s and has 3.6j of energy. how much does it weigh?

Answers

Answer:

0.06 kg

Explanation:

Given data:

Mass of frisbee = ?

Velocity of frisbee  = 11 m/s

Energy of frisbee = 3.6 j

Solution:

K.E = 1/2 mv²

Now we will put  the values in this formula.

3.6 J = 1/2 m(11m/s)²

3.6 j = 0.5 ×121m²/s² × m

3.6 j = 60.5 m²/s² × m

m = 3.6 j/60.5 m²/s²

m= 0.06 j.m⁻².s²

j = Kg.m².s⁻²

m= 0.06 Kg.m².s⁻² .m⁻².s²

m = 0.06 kg


Name four metals and non-metals, and state
one major use of each​

Answers

Answer:

Metals

1) Sodium : It is used in the formation of table salt i. e. sodium chloride.

2) Copper : It is used in the wires of electricity due to better conduction.

3) Silver : It is used in wires and for making jewelry.

4) Aurum: It is used for making jewelry.

Non metals

1) Chlorine : It is used in the production of sodium chloride salt which is used in foods.

2) Flourine : It is used in making toothpaste.

3) Hydrogen : It is used in the formation of acids.

4) Oxygen : It is widely used in the production of steel and plastic.

Calculate the molarity of a solution prepared by dissolving 6.80 grams of AgNO3 in 2.50 liters of solution.
SHOW WORK:)

Answers

Answer:

0.016M

Explanation:

First we find the mole of AgNO3 by using the formula mass/molar mass..

Then we find molarity by the formula mole/volume...

I hope you get this..

What seems to be the general relationship between an atom's atomic number and it’s placement on the Periodic Table?

Answers

Answer:number of protons in the nucleus and number of electrons in the different shell                                                                                                    

explained : determine the position in the periodic table. ... Their position is decided by their Atomic Number which is the number of protons in the nucleus of the atom.

What is the frequency of a wave traveling at 5,000 m/s with a wavelength of .002 m/cycle?

Answers

Answer:

[tex]2.5\cdot 10^6 Hz[/tex]

Explanation:

The relationship between the speed of a wave, its frequency and its wavelength is given by the wave equation:

[tex]v=f\lambda[/tex]

where

v is the wave speed

f is the frequency of the wave, which is the number of cycles completed by the wave in one oscillation

[tex]\lambda[/tex] is the wavelength, which is the distance between two consecutive crests of the wave

For the wave in this problem we have:

v = 5000 m/s is the speed

[tex]\lambda=0.002 m[/tex] is the wavelength of the wave

Solving for f, we find the frequency:

[tex]f=\frac{v}{\lambda}=\frac{5000}{0.002}=2.5\cdot 10^6 Hz[/tex]

Using the information in the table to the right
calculate the enthalpy of combustion of each of
the following substances:
acetylene:
KJ/mol
Compound
methane (CHA)
acetylene (C2H2)
ethanol (C2H5O)
carbon dioxide (CO2)
water (H20)
AH, (kJ/mol)
-748
228.77
-235.1
-3935
-241.82
ethanol:
KJ/mol
DONE

Answers

Answer: Acetylene : -1,256 kJ/mol

Ethanol : -1,277 kJ/mol

Explanation:

The enthalpy of combustion of acetylene is -1299 kJ/mol and the enthalpy of combustion of ethanol is -1367 kJ/mol.

How to calculate the enthalpy of combustion?

To calculate the enthalpy of combustion of each substance, we need to use the equation:

ΔHcombustion = ΣΔHf(products) - ΣΔHf(reactants)

Where ΔHcombustion is the enthalpy of combustion, ΣΔHf(products) is the sum of the enthalpies of formation of the products, and ΣΔHf(reactants) is the sum of the enthalpies of formation of the reactants.

Using the enthalpies of formation (AH) given in the table, we can calculate the enthalpy of combustion of each substance:

Acetylene:

C₂H₂ + (5/2)O₂ → 2CO₂ + H₂O

ΔHcombustion = [2(-393.5) + (-241.8)] - [228.8] = -1299 kJ/mol

Ethanol:

C₂H₅OH + 3O₂ → 2CO₂ + 3H₂O

ΔHcombustion = [2(-393.5) + 3(-241.8)] - [-235.1] = -1367 kJ/mol

Therefore, the enthalpy of combustion of acetylene is -1299 kJ/mol and the enthalpy of combustion of ethanol is -1367 kJ/mol.

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In the following reaction, how many moles of H2O are created when 7 moles of oxygen are consumed?
A.3 mol of CO2
B.5 mol of O2
C.72.08 grams of H2O
D.6 moles of H2O
F.1 mol of C3H8

Answers

Answer:

C

Explanation:

You can see in the chemical equation that 7 [tex]O_{2}[/tex] are used up to produce 6[tex]H_{2}O[/tex]

Please I really need help!!!!!!!

Which example is an exothermic reaction?


A. dissolving sugar in water


B. dissolving ammonium nitrate in water to cool the water


C. oxidation of iron


D. melting ice

Answers

An example of an exothermic reaction is : C. oxidation of iron. The Exothermic process involves the liberation of heat.

What is an exothermic reaction?

An exothermic reaction is a chemical or physical reaction that gives heat. It takes out energy to its surroundings. The energy needed for the reaction to occur is less than the total energy released.

In the oxidation of iron, the heat is released while all the other processes are endothermic in which is heat is absorbed.

Thus, the correct option is C.

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