Answer:
The answers of the questions are found below
Explanation:
1.) higher than
2.) solution and the liquid taste
3.) hard
4.) have varying solubilities
-Just took it on edge and got them all right
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The complete statement about ionic compounds is:
The melting point of an ionic compound is likely to be higher than a molecular compound.
What are ionic compounds?Ionic compounds are those compounds that are formed by holding ions with an electrostatic force, called ionic bonding. The compounds contain negatively charged ions called anions and positively charged ions called cations. The anions and cations connect together to form a neutral compound.
The compounds are bound with an electrostatic force, so their melting point will be higher than the molecular compounds.
Thus, the melting point of an ionic compound is likely to be higher than a molecular compound.
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At 25 degrees Celsius, 50g of sugar is soluble in 100ml of water. If I add 55g of sugar to
25-degree water, what will my solution look like and what will the ratio of dissolved to
undissolved solute be? If I heat up the solution, what will my solution look like and what will
the ratio of dissolved to undissolved solute be? If I then slowly cool the mixture to 25 degrees
again, what will my solution look like and what will the ratio be? Finally, if I add one seed
crystal to the mixture, what will my solution look like and what will my ratio be?
At 25 degrees Celsius, with 50g of sugar, the solution will appear clear and homogeneous, with all the sugar dissolved. The ratio of dissolved sugar to undissolved sugar will be 50:0, as all the sugar has dissolved.
If an additional 55g of sugar is added to the 25-degree water, the solution will become supersaturated. This means that the water cannot dissolve all the sugar, resulting in the excess sugar remaining undissolved as solid particles at the bottom of the container. The solution will appear cloudy, and the ratio of dissolved sugar to undissolved sugar will be 50:5, as only 50g of the added sugar can dissolve.
When the solution is heated, the solubility of sugar increases. As a result, more sugar will dissolve, and the solution will become clear again. The ratio of dissolved sugar to undissolved sugar will approach 105:0 as the temperature increases and more sugar dissolves.
If the heated solution is slowly cooled back to 25 degrees Celsius, the solubility of sugar decreases. This will cause the excess sugar to come out of the solution and form solid crystals, which will be visible as sugar particles. The solution will appear cloudy again, and the ratio of dissolved sugar to undissolved sugar will depend on the amount of sugar that remains dissolved after cooling.
Adding a seed crystal to the mixture provides a surface for sugar crystals to form, resulting in the rapid crystallization of the remaining dissolved sugar. The solution will become saturated with sugar crystals, and the ratio of dissolved sugar to undissolved sugar will be close to 0:55, as most of the sugar will have crystallized. The solution will appear cloudy with a significant amount of sugar crystals present.
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in every 100 g of the compound methane. 75 g is carbon and 25 g is hydrogen. how many grams of carbon is in a 350 g sample of methane
Answer:
pppppp
Explanation:
Bohr’s model of the atom compares electrons to ____________________ .
Answer:
The Bohr model shows that the electrons in atoms are in orbits of differing energy around the nucleus (think of planets orbiting around the sun). ... He said that the energy of an electron is quantized, meaning electrons can have one energy level or another but nothing in between.
Explanation:
A golfer putted a golf ball 4.7 ft across a green. How many inches does this represent?
HOW DO WE GET THERE?
How many inches does 4.7 ft represent?
in.
Answer:
56.4 inches
hope this helps
Explanation: ft to inches conversion
3. A 5.00 mole sample of oxygen gas has a pressure of 1.25 atm at 22℃. What is the volume of the gas?
The volume of a gas that has a pressure of 1.25 atm at 22℃ is 96.88L.
How to calculate volume?The volume of a gas can be calculated by using the following formula:
PV = nRT
Where;
P = pressure of the gas V = volume of the gasn = number of moles of the gasT = temperatureR = gas law constantAccording to this question, 5.00 mole sample of oxygen gas has a pressure of 1.25 atm at 22℃. The volume can be calculated as follows:
1.25 × V = 5 × 0.0821 × 295
1.25V = 121.0975
V = 96.88L
Therefore, 96.88L is the volume of the gas
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What are five constitutional isomers of hydroxymethylcyclohexane that contain the cyclohexane ring?
The five constitutional isomers of hydroxymethylcyclohexane that contain the cyclohexane ring are:
hydroxymethylcyclohexanemethyl cyclohexanol2-methyl cyclohexanol3-methyl cyclohexanol4-methyl cyclohexanolHydroxymethylcyclohexane is an alcohol that contains a cyclohexane ring, as shown in the attached picture.
Constitutional or structural isomers are compounds with the same molecular formula but different structural formulas.
We can find the five constitutional isomers of hydroxymethylcyclohexane that contain the cyclohexane ring by attaching the hydroxyl group to the cyclohexane ring and varying the positions of the methyl group, as shown in the picture.
The five constitutional isomers of hydroxymethylcyclohexane that contain the cyclohexane ring are:
hydroxymethylcyclohexanemethyl cyclohexanol2-methyl cyclohexanol3-methyl cyclohexanol4-methyl cyclohexanolLearn more: https://brainly.com/question/14391080
Which one please help!!
AgCl⇒ the precipitate
Further explanationGiven
Reaction
2AgNO₃+CaCl₂⇒2AgCl+Ca(NO₃)₂
Required
The precipitate
Solution
Solubility rules :
soluble compound :
All compounds of NO₃⁻ and C₂H₃O₂⁻
Compounds of Cl−, Br−, I− except Ag⁺, Hg₂²⁺, Pb²⁺
So AgCl⇒ the precipitate
Ca(NO₃)₂⇒aqueous
What is internal pressure?
30 example of redox reaction
For the following reactions
•
Assign oxidation states for all atoms
Identify which atoms are oxidized and which are reduced
Write the oxidation and reduction half reactions
Determine the total number of electrons transferred
2 Mg + O₂ → 2MgO. 2VCL4+8HBr=2VBr3+8HCL+Br2. As2O3+2HNO3+2H2O=2H3AsO4+N2O3
Mg, Br and As are reduced species and O, V and N are oxidized species. The total number of electron tranferred in the given equation are +2, +1 and +2.
What is Oxidation state?Oxidation state refers as the hypothetical charge carried by an atom if all of the bonds with different atoms were completely ionic. The oxidation state may be negative, zero or positive.
Chemical reaction2Mg + O₂ → 2MgO
Oxidation state of Mg = +2.
It is oxidation reaction.
Mg is oxidized in this reaction.
The total number of electron tranferred is +2.
Chemical reaction2VCL4 + 8HBr → 2VBr3 + 8HCL + Br₂
Oxidation state of V in VCl4 = +4
Oxidation state of V in VBr3 = +3
Since, electron are gained. So, it is reduction reaction.
VCl4 is reduced.
The total number of electron tranferred is +1.
Chemical reactionAs₂O3 + 2HNO3 + 2H₂O → 2H3AsO4 + N₂O3
Oxidation state of As in As₂O3 = +3
Oxidation state of As in H3AsO4 = +5
Since, electrons are lose. So it is Oxidized.
And N is reduced.
The total number of electron tranferred is +2.
Thus, we concluded that Mg, Br and As are reduced species and O, V and N are oxidized species. The total number of electron tranferred in the given equation are +2, +1 and +2.
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Which statement is an example of competition?
"I'll win everyone at the camp games this year."
Explanation:
This above statement is an example of competition because it signifies a matter anticipating an upper hand towards some other matter.
How many moles of water were lost if the amount of water lost was 0.369 grams? Do not include units and assume three significant figures in all numbers. Be sure to include the zero before the decimal if the number is less than one.
0.0205 moles of water were lost if the amount of water lost was 0.369 grams. The given answer is in three significant figures with including zero before the decimal.
To find the number of moles of water lost, we need to know the molar mass of water (H2O).
Molar mass is the sum of the atomic masses of all the atoms present in a molecule.
Since the molecule of water contains two atoms of hydrogen and one atom of oxygen, the molar mass of water is given by the sum of the atomic masses of two hydrogen atoms and one oxygen atom, which is: 2(1.008 g/mol) + 1(15.999 g/mol) = 18.015 g/mol
Therefore, one mole of water has a mass of 18.015 g.
The number of moles of water lost can be calculated using the following formula: Number of moles = Mass of substance / Molar mass of substance
Substituting the given values, we get: Number of moles = 0.369 g / 18.015 g/mol = 0.0205 mol
Thus, 0.0205 moles of water were lost if the amount of water lost was 0.369 grams.
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What is the percent of calcium ion in Ca3(PO4)2
Answer:
Therefore, we can write that the mass percentage of all the elements in calcium phosphate is 38.71% calcium, 20% phosphorous and 41.29% oxygen.
Explanation:
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Stephan’s mother cuts a twig from a rose bush and plants it in the soil. After a few days, Stephan observes a new plant growing. Which characteristic does the growth of the new plant depict?
The growth of the new plant depicts the asexual reproduction characteristic. The characteristic that describes the growth of the new plant in Stephan's mother cutting a twig from a rose bush and planting it in the soil is asexual reproduction.
Asexual reproduction is the mode of reproduction by which organisms generate offspring that are identical to the parent's without the fusion of gametes. Asexual reproduction is a type of reproduction in which the offspring is produced from a single parent.
The offspring created are clones of the parent plant, meaning they are identical to the parent.The new plant in Stephan’s mother cutting a twig from a rose bush and planting it in the soil depicts the process of asexual reproduction, which is the ability of a plant to reproduce without seeds. In asexual reproduction, plants can reproduce vegetatively by cloning themselves using their roots, bulbs, or stems.
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How many moles of carbon tetrabromide are present in 5. 27x10`22 molecules of the compound
Answer: 0.094 mole
Explanation: same answer for any molecule, actually.
6.02214076*10^23 per mole
5.7*10^22 = 0.094 mole
C6H12O6 + 602 → 6CO2 + 6H₂O
The most efficient ratio is
1 C6H12O6 6 02.
Which set of reactants will be the most
efficient (least wasteful of materials) for
the reaction?
A. 1.0 mol C6H12O6 and 3.0 mol O₂
B. 1.5 mol C6H₁2O6 and 3.0 mol O₂
C. 3.0 mol C6H₁2O6 and 6.0 mol O₂
D. 0.5 mol C6H₁2O6 and 3.0 mol O₂
Answer:
D
Explanation:
The ratio of C6H12O6 (which will be referred to as "the carb") to oxygen is 1 to 6, so if we find an answer which has the same ratio, it should be chosen. A is 1:3
B is even worse with a ratio of the carb to oxygen of 1:2
C is the same as B, 1:2
D has a ratio of the carb to oxygen of 1:6, which is what we are looking for.
How many moles of O2 are needed to react with 7.00 moles of Al ?
As per the balanced reaction of Al and oxygen gas, 4 moles of Al needs 3 moles of oxygen gas. Hence, 7 moles of Al needs 5.2 moles of O₂.
What is aluminum oxide ?Aluminum metal is more reactive towards oxygen and it forms oxides on its surface. The balanced chemical equation of the reaction between Al and oxygen is written as follows:
\(\rm 4 Al + 3O_{2}\rightarrow2 Al_{2}O_{3}\)
As per this reaction, 4 moles of aluminum needs 3 moles of oxygen molecule. Then, the number of moles oxygen molecule required to react with 7 moles of Al is :
no.of moles of O₂ = (7×3)/4 = 5.2
Therefore, 5.2 moles of oxygen gas is required to completely react with 7 moles of aluminum metal.
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For the given reaction, if we have 4 moles of C3H8 and 10 moles of O2, which is the limiting reactant?C3H8 + 5 O2 → 4 H2O + 3 CO2Select one:a.H2Ob.O2c. C3H8d.CO2Can you show steps to figure this out
To find the limiting reactant we have to divide each amount of moles by the stoichiometric coefficient of the corresponding substance.
It means that we have to divide the number of moles of C3H8 by 1 and the number of moles of O2 by 5.
\(\begin{gathered} \frac{4molC_3H_8}{1molC_3H_8}=4 \\ \frac{10molO_2}{5molO_2}=2 \end{gathered}\)The least quotient will indicate that that substance is the limiting reactant.
It means that the limiting reactant is O2.
The liquid hydrogen/oxygen rocket will burn for about 8 minutes at a rate of 90,000 gallons of liquid hydrogen per minute. The density of liquid hydrogen is 70.85 g/L. How many moles of water vapor will be generated during the 8 minute burn of this rocket?
The number of moles of the water that was evaporated is 12083467.5 moles of water.
What moles of water is evaporated?We know that the number of moles that we have can be gotten as the ratio of the mass to the number of moles of the object. Now we know that from the question, we have the volume of the hydrogen to be 90,000 gallons. We have to convert this volume to liters.
Given that;
1 gallon = 3.79 L
90,000 gallons = 90,000 gallons * 3.79 L/1 gallon
= 341100 L
Then we have the density of the hydrogen to be 70.85 g/L
Mass of the hydrogen = 70.85 g/L * 341100 L
= 24166935 g
Number of moles of the hydrogen reacted = 24166935 g/2 g/mol
= 12083467.5 moles
If 2 mole of hydrogen gives 2 moles of water
12083467.5 moles of hydrogen gives 12083467.5 moles of water
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What is the mass in grams of 5.2 x 1028 atoms of manganese (Mn)?
The mass, in grams, of 5.2 x 10^28 atoms of manganese would be 0.0006833 grams
Mass calculationAccording to Avogadro, 1 mole of any substance contains 6.022 x \(10^{23}\) atoms.
Thus, how many moles would be in 5.2 x \(10^{28}\)atoms of Mn:
= 6.022 x \(10^{23}\) /1 x 5.2 x \(10^{28}\)
= 0.00001158 moles
Mass of 0.00001158 moles Mn = 0.00001158 x 54.9
= 0.0006833 grams
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vanadium hydroxide ionic or covalent?
Answer:
Vanadium in given compound is metal and oxygen is non-metal so, the given compound is a binary ionic compound.
Which molecule is used up in photosynthesis?
O A. Oxygen
O B. Nitrogen
O C. Sugar
O D. Water
Answer:
d
Explanation:
water and carbon dioxide
the square below has anarea of 49ft2 what is the perimeter of the square
Answer:
28ft
Explanation:
if it's a square then each side is equal
the square root of 49 is 7
each side is 7 ft
7 ft times 4 sides is 28ft
A hot metal plate at 150°C has been placed in air at room temperature. Which event would most likely take place
over the next few minutes?
Molecules in both the metal and the surrounding air will start moving at lower speeds.
Molecules in both the metal and the surrounding air will start moving at higher speeds.
The air molecules that are surrounding the metal will slow down, and the molecules in the metal will speed up.
The air molecules that are surrounding the metal will speed up, and the molecules in the metal will slow down.
Answer:
molecules will speed up
Explanation:
every early childhood education program should develop a
A. plan for children and adults to eat separately
B. method to overcome food intolerance
C. procedure that allows families to bring in homemade food
D. written nutrition , feeding, and food service plan
Answer:
I guess D ...,...,.....
Can somebody please help me understand this? I don't understand what I need to do to solve any of the parts.
This technique has been used to identify the presence of gases such as oxygen, methane, and carbon dioxide in the atmospheres of exoplanets.
i) To estimate the frequency of the violet (leftmost) emission, we can use the equation v = c/λ, where v is frequency, c is the speed of light (3.00 x 10^8 m/s), and λ is the wavelength of the emission in meters. The wavelength of the violet emission is 400 nm or 400 x 10^-9 m, so the frequency can be calculated as v = (3.00 x 10^8 m/s) / (400 x 10^-9 m) = 7.50 x 10^14 Hz.
ii) To estimate the energy of the violet emission, we can use the equation E = hv, where E is energy, h is Planck's constant (6.63 x 10^-34 Js), and v is frequency in Hz. Substituting the frequency calculated in part (i), we get E = (6.63 x 10^-34 Js) x (7.50 x 10^14 Hz) = 4.97 x 10^-19 J.
b. The spectral lines are produced by the electrons within the atoms of this element, which can absorb or emit specific amounts of energy to move between different energy levels. These energy transitions result in the emission or absorption of photons with specific wavelengths and frequencies, giving rise to the observed emission spectrum.
c. The violet emission line represents the photon with the most energy since it has the shortest wavelength (400 nm) and highest frequency (7.50 x 10^14 Hz) among the lines shown. This highest energy does not necessarily represent the energy of the valence electrons, but rather corresponds to the specific energy transitions occurring within the atoms of the element.
d. Emission spectra can be used to determine the gases present in the atmosphere of a far-away planet by analyzing the specific wavelengths of the emitted or absorbed light from the planet. Each gas has a unique emission or absorption spectrum, allowing scientists to identify the gases present in the planet's atmosphere.
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1.4 1.4.1 Define exothermic reaction. (2) 1.4.2 Referring to the energies absorbed and released, describe why this reaction is considered to be exothermic. Marks will not be awarded for restating the definition. (2) BEST 1.5 ACADEMY 1.5.1 Other than correct orientation of reacting particles, state ONE condition for an effective collision. (1) 1.5.2 Using the collision theory, explain the effect of using a LESS-concentrated sodium hydroxide solution on the rate of its reaction with aluminium. (4) 1.6 How would an increase in pressure (at constant temperature) affect the rate of this reaction? State only INCREASE, DECREASE, or REMAIN THE SAME. (2)
1.4.1 An exothermic reaction releases energy in the form of heat or light.
1.4.2 An exothermic reaction releases more energy than it absorbs due to the higher potential energy of the reactants compared to the products.
1.5.1 Effective collision requires sufficient energy or activation energy.
1.5.2 Increasing the concentration of sodium hydroxide solution increases the rate of reaction with aluminum due to more frequent effective collisions.
1.6 Increasing the pressure would not affect the rate of the reaction between sodium hydroxide and aluminum.
1.4.1 Exothermic reaction: An exothermic reaction is a chemical reaction that releases energy in the form of heat or light, resulting in an overall decrease in the internal energy of the system.
1.4.2 In an exothermic reaction, the energy released as a result of the reaction is greater than the energy absorbed. This is because the reactants have a higher potential energy compared to the products. The excess energy is released to the surroundings, leading to an overall decrease in the system's internal energy.
1.5.1 One condition for an effective collision is the presence of sufficient energy, often referred to as activation energy. The reacting particles must possess enough energy to overcome the activation energy barrier for successful collision and reaction to occur.
1.5.2 According to collision theory, increasing the concentration of a reactant, such as sodium hydroxide (NaOH) in its reaction with aluminum (Al), would increase the rate of reaction. A higher concentration provides more particles per unit volume, resulting in more frequent collisions and an increased chance of effective collisions.
1.6 An increase in pressure (at constant temperature) would not significantly affect the rate of the reaction between sodium hydroxide and aluminum. The reaction rate is primarily dependent on the concentration of the reactants and the frequency of effective collisions, rather than the pressure. Therefore the rate would remain the same.
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Complete and balance the following half-reaction in acidic solution. Be sure to include the proper phases for all species within the reaction.
S2O3 2- (aq) --> S4O6 2- (aq)
We must take into consideration the balance of atoms and charges in order to balance the half-reaction for the conversion of S2O3 2- to S4O6 2- in acidic solution.
Write the imbalanced half-reaction as the first step.
S2O3 S4O6 2- (aq)
Step 2: Align the atoms, with the exception of hydrogen and oxygen.
2S4O6 2-(aq) = S2O3 2-(aq)
Step 3: Add water (H2O) to balance the oxygen atoms.
2S4O6 2- (aq) + H2O = S2O3 2- (aq)
Step 4: Add hydrogen ions (H+) to balance the hydrogen atoms.
2S4O6 2- (aq) + H2O = S2O3 2- (aq) + 4H+ (aq)
Step 5: Add more electrons (e-) to balance the charge.
2S4O6 2- (aq) + H2O = S2O3 2- (aq) + 4H+ (aq) + 2e-
The balanced half-reaction in acidic solution is:
S2O3 2- (aq) + 4H+ (aq) + 2e- → 2S4O6 2- (aq) + H2O
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Write a net ionic equation for the following:
hydrogen ions and [Al(OH)4], yielding aluminum hydroxide;
Explanation:
Al(OH)4-(aq) plus 4H plus (aq) and Al3 plus (aq) plus 4H20(I)
The net ionic equation is applied mainly in neutralization reactions, displacing reactions and redox reactions. The net ionic equation can be written as
\(Al(OH)_{4} +4H^{+} \rightarrow Al^{+3}+4H_{2}O\)
What is net ionic equation?The net ionic equation represents a chemical equation of a reaction that give an idea of species that are really participating in the reaction. Net ionic equations can be written for those electrolyte which are strong in water.
The balanced net ionic equation is
\(Al(OH)_{4} +4H^{+} \rightarrow Al^{+3}+4H_{2}O\)
Here aluminum hydroxide is reacting with acid. That is why neutralization reaction is happening over here as water is releasing in this reaction. In net ionic equation, ions get cancelled that appear on both sides of the reaction arrow because they essentially don't participate in the reaction of interest
Thus the net ionic equation is
\(Al(OH)_{4} +4H^{+} \rightarrow Al^{+3}+4H_{2}O\)
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an engineering team is conducting a trial launch of a few rocket . which part is the engineering process is the team in ?
Answer:
Evaluate the result (Apex)
Explanation: