if 24500 J is applied to 125g of water at 35 C, what will the final temperature of the water be?

Answers

Answer 1
The  final  temperature  of  water  is calculated  using the below  equation

Q= MC delta  T
Q= heat  energy (24500  j)
m= mass( 125 g)
c= specific   heat capacity (  4.18  j/g/c)
delta T = change  in temperature ( final temperature -initial  temperature)=(T-35)

final  temperature  is therefore=24500 j =125 g x 4.18 g/j/c  x (T- 35)
24500 j=522.5 (T-35 c)
24500 j = 522.5T -18287.5

like  terms  together  24500 + 18287.5 =522.5 T
42787.5j =522.5 T
divide both  side  by  522.5 T

T=81.9 c



Related Questions

The direction of the magnetic field produced by an electric current will change when the direction of the ____ changes

Answers

The answer is Current.  The direction of the magnetic field produced by an electric current will change when the direction of the Current changes. The direction of the magnetic field around the wire reverses when  the       direction of the current in the wire reverses.

Question 4 if 0.587 g of nickel metal reacts with 1.065 g of chlorine gas, what is the empirical formula of the nickel chloride product? ni2cl3 ni3cl2 nicl3 nicl nicl2

Answers

The answer is NiCl3.
Solution:
We can convert the masses of the elements to the number of moles using their atomic masses:
     moles of Ni = 0.587g Ni * 1mol Ni/58.6934g Ni = 0.01000 mol
     moles of Cl = 1.065g Cl * 1mol Cl/35.453g Cl = 0.030040 mol

We divide the number of moles of each element by the lowest number of moles. In this case, we divide by 0.01000:
     0.01000 mol Ni / 0.01000 = 1
     0.030040 mol Cl / 0.01000 = 3.004 ≈ 3

We can now write the empirical formula of nickel chloride using these values as the subscript for each element: NiCl3

The empirical formula of nickel chloride, given the masses of nickel and chlorine, is c) NiCl₃

Determining the Empirical Formula of Nickel Chloride

To determine the empirical formula of nickel chloride from the given masses of nickel (0.587 g) and chlorine (1.065 g), follow these steps:

Convert the mass of each element to moles:

Nickel (Ni): 0.587 g ÷ 58.69 g/mol = 0.0100 mol

Chlorine (Cl): 1.065 g ÷ 35.45 g/mol = 0.0300 mol

Determine the simplest whole number ratio:

Nickel: 0.0100 mol ÷ 0.0100 mol = 1

Chlorine: 0.0300 mol ÷ 0.0100 mol = 3

Write the empirical formula: Hence, the simplest ratio of Nickel to Chlorine is 1:3, making the empirical formula NiCl₃

The solubilty of a gas is 1.6 g/l at 760 mmhg what is the solubility of the same gas at a pressure of 2.5 atm? assume temperature to be constant

Answers

we are going to use Henry's law:

when C1/P1 = C2/P2

at a constant temperature.

and when the C1 and C2 are the concentration of the gases ( the solubility)

and P1 and P2 is the Pressure 1 and pressure 2 

and when 760 mmHg = 1 atm

so, by substitution:

1.6 g/L / 1 atm = C2 /2.5 atm 

∴C2 = 1.6g/L *2.5atm /1 atm

     = 4 g/L

How many core electrons are in a ground state atom of selenium?

Answers

Electrons in an atom can be classified as core electrons and valence electrons. Valence electrons are those electrons which are present in valence shell and participates in bond formation. While, Core electrons are all remaining electrons which are not present in valence shell, hence not take part in bonding.

Atomic number of Selenium (Se) is 34 hence it has 34 electrons with following electronic configuration;

                          1s², 2s², 2p⁶, 3s², 3p⁶, 4s², 3d¹⁰, 4p⁴

From electronic configuration it is found that the valence shell is 4, and the number of electrons present in valence shell are 6. So, 

             Core Electrons  =  Total Electrons - Valence Electrons

             Core Electrons  =  34 - 6

             Core Electrons  =  28

Result:
          There are 28 core electrons in Selenium.
Final answer:

Selenium has a total of 28 core electrons. This is because the electrons that fill the inner atomic orbitals of an atom, which totals 28 in the case of Selenium, are referred to as the core electrons.

Explanation:

The ground state atom of Selenium (Se) has an atomic number of 34. This means it has 34 electrons in total. Electrons in atoms are distributed in energy levels or shells, with each able to accommodate a certain number of electrons. The electrons in the outermost shell, known as valence electrons, are responsible for chemical reactivity, whereas those filling the inner shells are called core electrons. Selenium's electron configuration is 1s² 2s² 2p⁶ 3s² 3p⁶ 4s² 3d¹⁰ 4p⁴. The first 28 electrons (1s² 2s² 2p⁶ 3s² 3p⁶ 4s² 3d¹⁰) fill the core atomic orbitals, so Selenium has 28 core electrons in its ground state.

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how many liters of nitrogen gas are needed to make 25 mol of nitrogen trifluoride

Answers

The reaction between N₂ and F₂ gives Nitrogen trifluoride as the product. The balanced equation is;

N₂ + 3F₂ → 2NF₃

The stoichiometric ratio between N₂ and NF₃ is 1 : 2
Hence, 
  moles of N₂ / moles of F₂ = 1 / 2
  moles of N₂ / 25 mol        =  0.5
           moles of N₂            =  0.5 x 25 mol = 12.5 mol
 
Hence N₂ moles needed  = 12.5 mol

At STP (273 K and 1 atm) 1 mol of gas = 22.4 L

Hence needed N₂ volume = 22.4 L mol⁻¹ x 12.5 mol
                                          = 280 L 

Use the periodic table to answer the questions: Which is the correct electron configuration for sodium (Na)?

1s22s22p62d1

1s22s22p63s1

1s22p63d3

Answers

I am pretty sure the answer is 1s22s22p63s1

Answer: The correct answer is [tex]1s^22s^22p^63s^1[/tex]

Explanation:

Electronic configuration is defined as the configuration in which total number of electrons are represented which are present in an element.

Number of electrons are determined by the atomic number of that element.

Atomic number of Sodium = 11

Electronic configuration of sodium element (Na) : [tex]1s^22s^22p^63s^1[/tex]

Hence, the correct answer is [tex]1s^22s^22p^63s^1[/tex]

What explains the change in ionization energy that occurs between removing the first and second electrons from an atom

Answers

Options are as follow,

A. The ionization energy decreases because the ratio of the protons to electrons increases.
B. The ionization energy increases because the ratio of the protons to electrons increases.
C. The ionization energy decreases because the ratio of the protons to electrons decreases.
D. The ionization energy increases because the ratio of the protons to electrons decreases.

Answer:
            Option-B (The ionization energy increases because the ratio of the protons to electrons increases).

Explanation:
                  Ionization energy is the amount of energy required to remove one electron from the valence shell of an atom.
                  Also, first IE is energy required for removing electron from neutral atom, 2nd IE is energy required for is for removing electron from a mono positive atom and so on.
                  Example:
                                  1st IE of Na is 495.8 kJ/mol

                                   2nd IE of Na is 4562.4 kJ/mol

Second ionization energy is greater because after the removal of first electron the ratio of protons to electrons increases, resulting in more nuclear effect. Also, the second IE is greater because the Na⁺ having noble gas configuration is a stable state, hence more energy is required to knock out electron from it.

Answer:

B. The ionization energy increases because the ratio of the protons to electrons increases.

Explanation:

edg 2021

How many moles of ions are produced by the dissociation of 1 mol of al2(co3)3?

Answers

Aluminium Carbonate on Dissociation produces Aluminium Ions and carbonate Ions as follow,

                            Al₂(CO₃)₃      →     2 Al⁺³  +  3 CO₃⁻²

Result:
          On dissociation Al₂(CO₃)₃ produces FIVE Ions in total. The Ions produced and there number are as follow;

                                              Al⁺²  =  2

                                            CO₃⁻²  =  3

The moles of ions produced are 5.

What are moles?

The mole is a SI unit of measurement that is used to calculate the quantity of any substance.

Aluminum Carbonate on Dissociates into Aluminum Ions and carbonate Ions

[tex]Al_2(CO_3)_3 = 2 Al6+^3 + 3 CO_3^-^2[/tex]

On dissociation [tex]Al_2(CO_3)_3[/tex] produces five Ions in total.

Al⁺²  =  2

CO₃⁻²  =  3

Thus, The moles of ions produced are 5.

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Which law tells us the number of atoms of each element must be the same on both sides of a chemical equation?

Answers

I think the law in question here is the law of conservation of mass. All chemical equations have to adhere to the law of conservation of mass, that states that matter cannot be created or destroyed; thus, there must be the same number of atoms of each element on each side (right and the left side)of the chemical equation.

Which of the space missions involved the deployment of lunar rover
A. Voyager 1
B. Gemini
C. Mercury
D. Apollo
Please help asap on clock

Answers

Answer:

The answer is D.Apollo

Explanation:

The statement that describes the space missions involved the deployment of lunar rover is "Apollo."

What is a space mission?

A space mission is defined as the act of sending a space item to its designated location and then performing scientific or technological operations there. An examination of the reaches of the universe beyond Earth's atmosphere using crewed and uncrewed spacecraft, with the goal of increasing understanding of the cosmos and benefiting humanity.

The majority of the deployment occurred automatically as the rover was released from the bay.

The lunar rovers of Apollo 15, 16, and 17 anchored American automotive culture on the moon's surface while broadening the scientific scope of the missions' astronaut explorers.

Hence the correct option is Apollo.

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How many moles of oxygen atoms do 1.5 moles of co2 contain?

Answers

1 molecule CO2 has 2 atoms O.
1 mole CO2 has 2 moles O,
1.5 mole CO2 has 2*1.5 mole O=3.0 mole O

Final answer:

1.5 moles of carbon dioxide (CO2) contain 3 moles of oxygen atoms because each CO2 molecule is composed of two oxygen atoms.

Explanation:

The question 'How many moles of oxygen atoms do 1.5 moles of CO2 contain?' involves understanding the composition of a carbon dioxide (CO2) molecule.

Each molecule of CO2 consists of one carbon atom and two oxygen atoms. Therefore, for every mole of CO2, there are two moles of oxygen atoms. To find the number of moles of oxygen atoms in 1.5 moles of CO2, we simply need to multiply 1.5 moles by 2 (the number of oxygen atoms per mole of CO2).

1.5 moles CO2 x 2 moles O per mole CO2 = 3 moles O

Thus, 1.5 moles of CO2 contain 3 moles of oxygen atoms.

Fluid in the semicircular canals stimulates impulses to the brain to maintain balance t or f

Answers

The answer is True.  Fluid in the semicircular canals stimulates impulses to the brain to maintain balance.  If the semicircular canals are damaged, the balance sense will be affected.  

Name three factors that influence the rate at which a solute dissolves in a solvent.

Answers

-amount of solute
-amount of solvent
-correct amount of both the above

Define what electronegativity is and explain the pattern on the table as you move to the right across it.

Answers

Electronegativity is defined as the tendency of element to attract the bond pair electrons towards itself in a covalent bond. On aPauling scale Fluorine has been given a highest electronegativity of 4.

Trends in Periodic Table:

                Along the Period:
                                           Moving from left to right along the period in periodic table that electronegativity increases. This is because the number of protons along the period increases while the number of shell remains constant. Hence, more protons attracts electrons more towards themselves.

                Along the Group:
                                           Moving from top to bottom electronegativity decreases due to increase in number of shells. This is because the shielding effect increases and nucleus has less effect on electrons, therefore less attracted.

Indentify two advantages in daylight saving time

Answers

More sleep and longer days or nights
Hello Melindayosiff ! 

Two advantages in daylight saving time are...

- It saves electricity use (it decreases use of electricity)
- It provides and extra hour of daylight at night

I hope I was able to help you out ! :D 

15 POINTS
When calcium forms an ion, what is its charge?
2+
3+
2-
3-

Answers

It's, 2+
Good Luck xP

The answer is:

A) 2+


Hope it helps!

Classify these molecules as polar or nonpolar bcl3

Answers

Final answer:

Boron trichloride ([tex]BCl_3[/tex]) is a nonpolar molecule due to its symmetrical structure and equal electron-sharing among the boron and chlorine atoms.

Explanation:

The molecule [tex]BCl_3[/tex], known as boron trichloride, is classified as nonpolar. This classification is due to its symmetrical, trigonal planar molecular structure and that there are no lone pairs of electrons on boron. The electron density regions in[tex]BCl_3[/tex] are evenly distributed which gives rise to equal sharing of electrons among the boron and chlorine atoms. With the 120° angles between the B-Cl bonds, any partial charges formed along these polar bonds are cancelled out, making the molecule nonpolar in nature.

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BCl₃ is a nonpolar molecule due to its trigonal planar shape, which causes the dipole moments of the polar B-Cl bonds to cancel out.

To determine if the molecule BCl₃ is polar or nonpolar, we need to examine the molecular geometry and the distribution of charges. BCl₃, or boron trichloride, has a trigonal planar shape according to VSEPR theory. This shape means the three chlorine atoms are symmetrically arranged around the central boron atom at 120° angles.

Although each B-Cl bond is polar due to the difference in electronegativity between boron and chlorine, the symmetric arrangement leads to the dipole moments canceling each other out. As a result, BCl₃ is a nonpolar molecule because it has no net dipole moment.

In summary:

The geometry of BCl₃ is trigonal planar.Each B-Cl bond is polar.The symmetry causes the dipole moments to cancel out.

Therefore, BCl₃ is classified as a nonpolar molecule.

Complete combustion of glucose (c6h12o6). oxygen gas is the other reactant in this combustion reaction. the products are co2 and h2o

Answers

C6H12O6 +6O2 -----> 6CO2 + 6 H2O

Ch3cooh (acetic acid) can form hydrogen bonds between its molecules. based on the lewis structure shown below, how many hydrogen bond donor and acceptor atoms does this molecule have?

Answers

Final answer:

Acetic acid has one hydrogen bond donor atom and two hydrogen bond acceptor atoms, found in its -COOH group.

Explanation:

Acetic acid CH3COOH, is capable of forming hydrogen bonds due to the presence of a hydrogen atom bonded to an oxygen atom in its -COOH group. This group has one hydrogen atom that can act as a hydrogen bond donor (attached to oxygen by a polar bond). Furthermore, it has two lone pairs of electrons on the oxygen which can each accept a hydrogen bond, thus making it a hydrogen bond acceptor. Therefore, acetic acid has one hydrogen bond donor atom and two hydrogen bond acceptor atoms.

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Isomers have identical _________formulas; however, they have different ___________formulas.

Empirical
Molecular
Structural

Answers

Molecular, structural.

Answer:

Isomers have identical Molecular formulas; however, they have different Structural formulas.

Explanation:

Hello,

In this case, it is widely known that isomers have identical molecular formulas and different structural formulas as shown for the compound having the following molecular formula:

[tex]C_2H_6O[/tex]

In such a way, two feasible compounds could have the aforesaid molecular formula, which are dimethyl ether and ethanol respectively as shown below:

[tex]CH_3-O-CH_3\\CH_3-CH_2-OH[/tex]

Best regards.

How many grams of magnesium chloride are needed to make 700ml of a 1.4 m solution?

Answers

Molarity is defined as the number of moles of solute in 1 L solution
molarity of MgCl₂ solution to be prepared - 1.4 M
volume of the solution to be prepared - 700 mL
the number of moles of MgCl₂ in 1 L - 1.4 M
therefore 700 mL should contain - 1.4 mol/L x 0.700 L = 0.98 mol 
molar mass of MgCl₂ - 95.2 g/mol 
mass of MgCl₂ required - 0.98 mol x 95.2 g/mol = 93.3 g
mass of MgCl₂ required is 93.3 g

To find the number of protons, neutrons, and electrons in a particular atom, you must know the mass number and the atomic number of the atom

Answers

Atomic number shows the number of protons and electrons in an atom.
Number of neutrons = mass number - atomic number.

If 72.0 grams of aluminum are reacted with 252 grams of hydrochloric acid, how many grams of aluminum chloride are produced by this reaction? 2al(s) + 6hcl(aq) → 2alcl3(aq) + 3h2(g)

Answers

Final answer:

To determine the grams of aluminum chloride produced in the reaction, use the given balanced chemical equation and the molar masses of aluminum and aluminum chloride. Convert the given masses of aluminum and hydrochloric acid to moles and use the stoichiometric ratios to determine the moles of aluminum chloride produced. Finally, convert the moles of aluminum chloride to grams.

Explanation:

To determine the grams of aluminum chloride produced in the reaction, we need to use the given balanced chemical equation and the molar masses of aluminum (Al) and aluminum chloride (AlCl3). The molar mass of Al is approximately 26.98 g/mol, while the molar mass of AlCl3 is approximately 133.34 g/mol.

First, we convert the given masses of aluminum (72.0 g) and hydrochloric acid (252 g) to moles using their respective molar masses. Using the ratios from the balanced chemical equation, we can then determine the moles of aluminum chloride produced.

Starting with 72.0 g of Al:

72.0 g Al * (1 mol Al / 26.98 g Al) * (2 mol AlCl3 / 2 mol Al) * (133.34 g AlCl3 / 1 mol AlCl3) = 398.908 g AlCl3

Therefore, approximately 398.908 grams of aluminum chloride are produced.

What determines the strength of an arrhenius base? give one example each of an aqueous solution of a strong base and an aqueous solution of a weak base?

Answers

The strength of an Arrhenius base determines percentage of ionization of base and the number of OH⁻ ions formed. 
Strong base completely ionize in water and gives a lot of hydroxide ions (OH⁻), for example sodium hydroxide: NaOH(aq) → Na⁺(aq) + OH⁻(aq).
Weak  base partially ionize in water and gives a few hydroxide ions (OH⁻), for example ammonia: NH₃ + H₂O(l) ⇄ NH₄⁺(aq) + OH⁻(aq).
Final answer:

The strength of an Arrhenius base is determined by its ability to form hydroxide ions in solution, with strong bases fully dissociating and weak bases partially dissociating. Sodium hydroxide (NaOH) is a strong base that dissociates completely, while ammonia (NH3) is a weak base that only partially dissociates.

Explanation:

The strength of an Arrhenius base is determined by its tendency to form hydroxide ions (OH-) in an aqueous solution. This process is described by the reaction B(aq) + H2O(l) ⇒ HB+(aq) + OH-(aq), where B stands for the base and HB+ is its conjugate acid after accepting a proton from water. Strong bases completely dissociate in water, releasing a large amount of hydroxide ions, whereas weak bases only partially dissociate, resulting in a smaller amount of hydroxide ions.

An example of a strong base in aqueous solution is sodium hydroxide (NaOH), which fully dissociates to form Na+ and OH-. An example of a weak base is ammonia (NH3), which only partially dissociates in water, forming ammonium (NH4+) and hydroxide ions.

The relative strength of a base can also be quantified by its base-ionization constant (Kb). A larger Kb value indicates a stronger base, which means a higher concentration of hydroxide ions is produced in solution.

A hiker has packed a bag of chips as a snack. At the start of the hike the pressure was 1.5 atm and the temperature was 35*C. At the end of the hike the temperature has dropped to a 0.5*C. What is the pressure at the end of the hike? What would you expect to happen to the bag of chips?

Answers

According to Gay-Lussac's Law the temperature and Pressure are directly proportional to each other if the amount and volume of given gas are kept constant.
Mathematically for initial and final states it is expressed as,

                                          P₁ / T₁  =  P₂ / T₂     ----- (1)
Data Given;
                  P₁  =  1.5 atm

                  T₁  =  35 °C + 273  =  308 K

                  P₂  =  ?

                  T₂  =  0 °C + 273  =  273 K

Solving Eq. 1 for P₂,

                                   P₂  =  P₁ T₂ / T₁

Putting values,
                                   P₂  =  (1.5 atm × 273 K) ÷ 308 K

                                   P₂  =  1.32 atm
Result:
           As the temperature is decreased so the pressure also decreases from 1.5 atm to 1.32 atm. Therefore the bag will contract.

3L of nitrogen gas is heated from 20°C to 80°C. What is the new volume of the gas, if pressure remains constant?

Answers

Answer:
             The volume increases to 3.61 L.

Solution:
               According to Charle's Law, " At constant pressure and mass the volume of gas is directly proportional to the applied temperature".

For initial and final states of a gas the equation is,

                                           V₁ / T₁  =  V₂ / T₂
Solving for V₂,
                                           V₂  =  V₁ T₂ / T₁    ----- (1)

Data Given;
                   V₁  =  3 L

                   T₁  =  20 °C + 273  =  293 K

                   T₂  =  80 °C + 273  =  353 K

Putting values in eq. 1,

                                           V₂  =  (3 L × 353 K) ÷ 293 K

                                           V₂  =  3.61 L

How many mililiters of .75% sugar solution must be added to 100 ml of 1.5% sugar solution to form a 1.25% sugar solution?

Answers

you have to add 50 mL of 0.75% to 100 mL of 1.5% to get 150 mL of 1.25% of sugar solution.

Which of the following tools could have become cross-contaminated during the experiment if you had not cleaned them carefully between successive tests?

A. Spoon

B. Beaker

C. Stirring Rod

D. Graduated Cylinder

E. Distilled water in a spray bottle

Answers

Explanation:

When we are using spoon, beaker, stirring rod and graduated cylinder then they directly come in contact with the chemical we are using. Hence, if they are not washed thoroughly then chemicals remain deposited over them.

As a result, when successive test are performed using the same contaminated apparatuses then we do not get the desired results.

Whereas distilled water in a spray bottle if poured without touching or coming in contact with any kind of chemicals.

Hence, we can conclude that spoon, beaker, stirring rod and graduated cylinder are the tools that could have become cross-contaminated during the experiment if you had not cleaned them carefully between successive tests.

Answer:

A. Spoon, B. Beaker, C. Stirring Rod, D. Graduated Cylinder

Explanation:

Silver nitrate (AgNO3) reacts with hydrochloric acid (HCl) to produce nitric acid (HNO3) and silver chloride (AgCl). AgNO3 + HCl HNO3 + AgCl Which of the following actions would increase the reaction rate? A. increasing the concentration of HCl B. decreasing the concentration of AgCl C. decreasing the concentration of AgNO3 D. increasing the concentration of HNO3

Answers

Silver nitrate (AgNO₃) reacts with hydrochloric acid (HCl) to produce nitric acid (HNO₃) and silver chloride (AgCl). Increasing the concentration of HCl would increase the rate of reaction and the correct option is option A.

The rate of reaction or reaction rate is the speed at which reactants are converted into products. It is the measure of the change in concentration of the reactants or the change in concentration of the products per unit time. If a reaction has a low rate, that means the molecules combine at a slower speed than a reaction with a high rate.

Factors influencing the rate of reaction are:

1. surface area of a solid reactant

2. concentration and pressure of a reactant

3. temperature

4. nature of reactants

5. presence/absence of a catalyst

Thus, the ideal selection is option A.

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20)
Marie is constructing a circuit board and observes that her current increases as she adds resistors. What statement explains why the current increases?
A) She is constructing a series circuit board so adding resistors draws more current.
B) She is constructing a parallel circuit and adding resistors increases the voltage.
C) She is constructing a series circuit so increasing the resistance also increases voltage and current.
D) She is constructing a parallel circuit board and the added resistors create more paths for the current, decreasing total resistance.

Answers

B because its really the only one that makes sense.

It's actually D.

She is constructing a parallel circuit board and the added resistors create more paths for the current, decreasing total resistance.As more resistors are added to a parallel circuit the number of paths for the current increases, allowing electrons to flow more freely and increasing the current.

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