What are the reproductive structures of gymnosperms

Answers

Answer 1

Answer:

Reproduction in Gymnosperms: Gymnosperms are heterosporous and sexual reproduction is oogamous type. In living gymnosperms the reproductive structures are arranged in the form of strobili or cones (except the ovulate structures of Cycas).

Explanation:

Answer 2

Answer:

Cones are the reproductive structures of gymnosperms.

Explanation:


Related Questions

The structure of benzene can best be described as a

Answers

Answer:

Its chemical structure can be described as a hexagon ring with alternating double bonds

Explanation:

The salt that is formed during the reaction between potassium hydroxide and hydrochloric acid is

Answers

Answer:

Sodium chloride (NaCl)

Explanation:

According to Arrhenius, an acid is a substance that dissociates to give protons, whereas a base dissociates to give hydroxide ions in an aqueous solution.

Therefore, a chemical reaction in which an Arrhenius acid reacts with an Arrhenius base to give salt and water, is known as a Neutralization reaction.

For example: Neutralization reaction of hydrochloric acid (HCl) and sodium hydroxide (NaOH)

A strong acid, hydrochloric acid (HCl) reacts with a strong base, sodium hydroxide (NaOH) to give salt, sodium chloride (NaCl) and water (H₂O).

The chemical equation for this Neutralization reaction:

HCl (acid) + NaOH (Base) → NaCl (Salt) + H₂O (Water)

Therefore, sodium chloride (NaCl) is the salt formed during the chemical reaction of hydrochloric acid (HCl) and sodium hydroxide (NaOH).

A weather balloon is filled with helium that occupies a volume of 500 L at 0.995 atm and 32.0 ℃. After it is released, it rises to a location where the pressure is 0.720 atm and the temperature is -12 ℃. What is the volume of the balloon at the new location?

Answers

Answer : The volume of the balloon at the new location is, 591.3 L

Explanation :

Combined gas law is the combination of Boyle's law, Charles's law and Gay-Lussac's law.

The combined gas equation is,

[tex]\frac{P_1V_1}{T_1}=\frac{P_2V_2}{T_2}[/tex]

where,

[tex]P_1[/tex] = initial pressure of gas = 0.995 atm

[tex]P_2[/tex] = final pressure of gas = 0.720 atm

[tex]V_1[/tex] = initial volume of gas = 500 L

[tex]V_2[/tex] = final volume of gas = ?

[tex]T_1[/tex] = initial temperature of gas = [tex]32.0^oC=273+32=305K[/tex]

[tex]T_2[/tex] = final temperature of gas = [tex]-12^oC=273+(-12)=261K[/tex]

Now put all the given values in the above equation, we get:

[tex]\frac{0.995atm\times 500L}{305K}=\frac{0.720atm\times V_2}{261K}[/tex]

[tex]V_2=591.3L[/tex]

Therefore, the volume of the balloon at the new location is, 591.3 L

Please Help! Let P and V represent the pressure and volume of Xe(g). If a piston is used to reduce the volume of the gas to V/2 at a constant temperature, what is the new pressure in the container in terms of the original pressure, P?
What happens to the average speed of the Xe (g) atoms as the original volume is reduced to V/2 at a constant temperature? Explain.

Answers

1) 2P

2) Average speed does not change

Explanation:

1)

To solve the first part of the problem, we can use Boyle's Law, which states that:

"For a fixed mass of an ideal gas kept at constant temperature, the pressure of the gas is inversely proportional to its volume"

Mathematically:

[tex]pV=const.[/tex]

where

p is the pressure of the gas

V is its volume

For the Xe gas in this problem we can write

[tex]p_1 V_1 = p_2 V_2[/tex]

where:

[tex]p_1 = P[/tex] is the initial pressure

[tex]V_1=V[/tex] is the initial volume

[tex]V_2=\frac{V}{2}[/tex] is the final volume

Solving for p2, we find the final pressure:

[tex]p_2=\frac{P V_1}{V_2}=\frac{pV}{V/2}=2P[/tex]

So, the pressure has doubled.

2)

The average speed of the atoms/molecules in the gas is given by the formula

[tex]v_{rms}=\sqrt{\frac{3RT}{M}}[/tex]

where

R is the gas constant

T is the absolute temperature (in Kelvin) of the gas

M is the molar mass of the gas

[tex]v_{rms}[/tex] is known as rms speed of the particles in the gas

From the formula, we see that the speed of the atoms in the gas depends only on the temperature of the gas.

In the Xe(g) gas in this problem, the temperature is kept constant; therefore, since nothing changes in the formula, this means that the average speed also does not change.

The pressure of the gas is doubled and the average speed of the gas molecules does not change.

According to Boyle's law, the volume of a given mass of gas is inversely proportional to the pressure at constant temperature. Now;

Initial pressure of the gas (P1) = P

Initial volume of the gas(V1) = V

Final volume of the gas (V2) = V/2

Final pressure of the gas (P2) = ?

Using the relation of Boyle's law;

P1V1 = P2V2

P2 =  P1V1/V2

P2 = P × V/V/2

P2 = 2P

The pressure is doubled

Regarding the average speed of gas molecules, the average speed of a gas molecules depends on the temperature from the relation;

[tex]vrms = \sqrt{\frac{3RT}{M} }[/tex]

If the temperature is held constant, the average speed of gas molecules is does not change.

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You had to heat the NaHCO3 strongly in order for it to decompose. This is an
example of an endothermic reaction. What does this tell you about the energy stored
in the reactants compared to the energy stored in the product? Write the balanced
equation for the decomposition of NaHCO3, this time with the term “+ energy” on
the appropriate side of the equation.

Answers

This tells us that there is more energy stored in the products as the reaction absorbed energy from its surroundings (endothermic)

NaHCO3 -> Na2O + 2CO2 + H2O + energy

There is more energy stored in the products as the reaction absorbs energy from its surroundings, hence we call it endothermic reaction.

What is endothermic reaction?

An endothermic reaction is a type of reaction that absorbs heat from the surrounding.

When you heat the NaHCO3 strongly in order for it to decompose,;

NaHCO3 -> Na2O + 2CO2 + H2O + energy

This reaction shows that there is more energy stored in the products as the reaction absorbs energy from its surroundings, hence we call it endothermic reaction.

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What are the “parts” of a chemical formula? (ex. -->, +, reactants, products, coefficient, subscript)
(12 points)

Answers

Answer:

the reactants and products

Explanation:

There are two parts to a chemical equation. The reactants are the elements or compounds on the left side of the arrow (-->). The elements and compounds to the right of the arrow are the products

please like and Mark as brainliest

Answer:

the reactants and products

i got 6 points not 12

15 grams of HCl should theoretically produce 0.42 grams of H2. The reaction actually produced 0.15 grams of H2. What is the percentage yield of H2?
Steps to solution please

Answers

Answer:

35.7%

Explanation:

The percent yield is calculated by the formula:

[(actual yield) / (theoretical yield)] * 100

In this case, the actual yield is 0.15 grams, and the theoretical yield is 0.42 grams. So, putting these values into the equation, we have:

[tex]\frac{0.15}{0.42} *100=0.357*100=35.7[/tex]

Thus, the percent yield of [tex]H_2[/tex] is 35.7%.

Hope this helps!

Final answer:

The percentage yield of a reaction is calculated using the equation: (Actual Yield / Theoretical Yield) * 100. In this case, the percentage yield of the reaction that produced H2 is approximately 35.7%.

Explanation:

The subject of this question is the percentage yield of a chemical reaction. In chemistry, the percentage yield is a measure of the efficiency of a reaction. It's calculated by dividing the actual yield (the amount of product actually produced) by the theoretical yield (the maximum amount of product that could be produced) and then multiplied by 100 to convert it to a percentage.

Given in the question, the theoretical yield of H2 is 0.42 grams and the actual yield is 0.15 grams. So, to calculate the percentage yield, we would use the formula: (Actual Yield / Theoretical Yield) * 100

Substituting the given amounts, the calculation would look like this: (0.15 / 0.42) * 100 = 35.7%.

So, the percentage yield of H2 in this reaction is approximately 35.7%.

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which produces a higher than normal tide?


a Spring Tide or Neal Tide?

and why

Answers

Answer:

spring tide

Explanation:

when both the sun and moon aligned th affect of each is added together producing higher than normal tides called SPRING TIDES

Answer:

Spring Tide

Explanation:

In both cases, the gravitational pull of the sun is 'added' to the gravitational pull of the moon on Earth, causing the oceans to bulge a bit more than usual. This means that high tides are higher and low tides are lower than average. These are called 'spring tides.

When the equation below is correctly balanced, the coefficient for K2SO4 is?

Answers

Answer:

The answer to your question is 3

Explanation:

Chemical reaction

               AlBr₃  +  K₂SO₄  ⇒   KBr  +  Al₂(SO₄)₃

             Reactants       Elements         Products

                   1               Aluminum               2

                   3               Bromine                  1

                   1                Sulfur                      3

                  2                Potassium              1

                  4                 Oxygen                 12    

Balanced chemical reaction

             2AlBr₃  +  3K₂SO₄  ⇒   6KBr  +  Al₂(SO₄)₃

             Reactants       Elements         Products

                   2               Aluminum               2

                   6               Bromine                  6

                   3                Sulfur                      3

                  6                Potassium               6

                 12                 Oxygen                 12    

The coefficient for K₂SO₄ will be 3

1. The solubility of lead(II) chloride at some high temperature is 3.1 x 10-2 M. Find the Ksp of PbCl2 at this temperature.
2. The Ksp of Al(OH)3 is 1.0 x 10-33. What is the solubility of Al(OH)3 in 0.000010 M Al(NO3)3?
3. A precipitate of lead(II) chloride forms when 3.5 mg of NaCl is dissolved in 0.250 L of 0.12 M lead(II)nitrate.
A. True
B. False

Answers

Answer:

1) The solubility product of the lead(II) chloride is [tex]1.2\times 10^{-4}[/tex].

2) The solubility of the aluminium hydroxide is [tex]1.6\times 10^{-10} M[/tex].

3)The given statement is false.

Explanation:

1)

Solubility of lead chloride = [tex]S=3.1\times 10^-2M[/tex]

[tex]PbCl_2(aq)\rightleftharpoons Pb^{2+}(aq)+2Cl^-(aq)[/tex]

                            S     2S

The solubility product of the lead(II) chloride = [tex]K_{sp}[/tex]

[tex]K_{sp}=[Pb^{2+}][Cl^-]^2[/tex]

[tex]K_{sp}=S\times (2S)^2=4S^3=4\times (3.1\times 10^{-2})^3=1.2\times 10^{-4}[/tex]

The solubility product of the lead(II) chloride is [tex]1.2\times 10^{-4}[/tex].

2)

Concentration of aluminium nitrate = 0.000010 M

Concentration of aluminum ion =[tex]1\timed 0.000010 M=0.000010 M[/tex]

Solubility of aluminium hydroxide in aluminum nitrate solution = [tex]S[/tex]

[tex]Al(OH)_3(aq)\rightleftharpoons Al^{3+}(aq)+3OH^-(aq)[/tex]

                            S     3S

The solubility product of the aluminium nitrate = [tex]K_{sp}=1.0\times 10^{-33}[/tex]

[tex]K_{sp}=[Al^{3+}][OH^-]^3[/tex]

[tex]1.0\times 10^{-33}=(0.000010+S)\times (3S)^3[/tex]

[tex]S=1.6\times 10^{-10} M[/tex]

The solubility of the aluminium hydroxide is [tex]1.6\times 10^{-10} M[/tex].

3.

[tex]Molarity=\frac{Moles}{Volume (L)}[/tex]

Mass of NaCl= 3.5 mg = 0.0035 g

1 mg = 0.001 g

Moles of NaCl = [tex]\frac{0.0035 g}{58.5 g/mol}=6.0\times 10^{-5} mol[/tex]

Volume of the solution = 0.250 L

[tex][NaCl]=\frac{6.0\times 10^{-5} mol}{0.250 L}=0.00024 M[/tex]

1 mole of NaCl gives 1 mole of sodium ion and 1 mole of chloride ions.

[tex][Cl^-]=[NaCl]=0.00024 M[/tex]

Moles of lead (II) nitrate = n

Volume of the solution = 0.250 L

Molarity lead(II) nitrate = 0.12 M

[tex]n=0.12 M]\times 0.250 L=0.030 mol[/tex]

1 mole of lead nitrate gives 1 mole of lead (II) ion and 2 moles of nitrate ions.

[tex][Pb^{2+}]=[Pb(NO_2)_3]=0.030 M[/tex]

[tex]PbCl_2(aq)\rightleftharpoons Pb^{2+}(aq)+2Cl^-(aq)[/tex]

Solubility of lead(II) chloride = [tex]K_{sp}=1.2\times 10^{-4}[/tex]

Ionic product of the lead chloride in solution :

[tex]Q_i=[Pb^{2+}][Cl^-]^2=0.030 M\times (0.00024 M)^2=1.7\times 10^{-9}[/tex]

[tex]Q_i<K_{sp}[/tex] ( no precipitation)

The given statement is false.

Final answer:

The Ksp of PbCl2 at a given temperature is calculated using the solubility of the compound. For Al(OH)3 in a solution containing Al(NO3)3, the solubility would be influenced by the common ion effect. The potential formation of a PbCl2 precipitate depends on the concentrations of lead(II) and chloride ions.

Explanation:

Calculation of Ksp and Solubility

The solubility product (Ksp) represents the equilibrium between a solid and its corresponding ions in a solution. It is a unique value for each soluble compound at a given temperature.

1. Ksp of PbCl2

The dissolution of PbCl2 can be written as:

PbCl2(s) ⇌ Pb2+(aq) + 2Cl-(aq)

Given the solubility of PbCl2 is 3.1 x 10-2 M, we can deduce the concentration of Pb2+ is 3.1 x 10-2 M and Cl- is 2 x 3.1 x 10-2 M. Thus, the Ksp can be calculated using the formula:

Ksp = [Pb2+][Cl-]2 = (3.1 x 10-2) x (2 x 3.1 x 10-2)2 =  5.88 x 10-5

2. Solubility of Al(OH)3 in Al(NO3)3 Solution

Given the Ksp of Al(OH)3 is 1.0 x 10-33, and the initial concentration of Al3+ from Al(NO3)3 is known, we need to account for the common ion effect which will reduce the solubility of Al(OH)3. This complex calculation would require additional steps to accurately account for the common ion.

3. Formation of PbCl2 Precipitate

NaCl dissociates to give Cl- ions and the Pb2+ from Pb(NO3)2 can form PbCl2, depending on the product of their concentrations relative to the Ksp of PbCl2. This assessment involves comparing the ionic product to the Ksp to determine if a precipitate will form.

At constant temperature a bicycle tire pump contains 252mL of air at 995kPa pressure. The plunger of the pump is pushed down until the volume is 95.0mL. What is the new pressure of the air inside the pump?

Answers

Answer:

The new pressure of the pump is 26.05 atm or 2639.4 kPa

Explanation:

Step 1: Data given

Volume of the bicycle tire pump = 252 mL = 0.252 L

Pressure of air = 995 kPa = 9.81989 atm

The volume of the pump is reduced to 95.0 mL = 0.095 L

Step 2: Calculate the new pressure

V1*P1 = V2*P2

⇒with V1 = the initial volume of the bicycle tire pump = 0.252 L

⇒with P1 = the initial pressure of the pump = 9.81989 atm = 995 kPa

⇒with V2 = the reduced volume of the pump = 0.095 L

⇒with P2 = the new pressure = TO BE DETERMINED

0.252 L * 9.81989 atm = 0.095 L * P2

P2 = 26.05 atm

The new pressure is 26.05 atm

OR

0.252 L * 995 = 0.095 L * P2

P2 = 2639.4 kPa

The new pressure of the pump is 26.05 atm or 2639.4 kPa

Answer:

[tex]p_2=2639.4kPa[/tex]

Explanation:

Hello,

In this case, we notice a relationship between the volume and pressure of a gas, accounting for the Boyle's law which has the following form:

[tex]p_1V_1=p_2V_2[/tex]

In this case, we asked to find the pressure after the pump is pushed down, it means [tex]p_2[/tex] as shown below:

[tex]p_2=\frac{p_1V_1}{V_2} =\frac{252mL*995kPa}{95.0mL}\\ \\p_2=2639.4kPa[/tex]

Such pressure increase accounts for a compression process at which the volume is decreased at the same time.

Best regards.

Help me please I am stuck

Answers

BOBERT don’t u dare write a whole paragraph cause no one has time to read all that rn xoxo

Answer:

Castings

Explanation:

Worm castings contain concentrated nitrates, calcium, etc.

When are endothermic reactions beneficial for humans?

Answers

Answer:

An endothermic reaction is one that absorbs energy in the form of heat or light. ... This is why we burn fuels (such as paraffin, coal, propane and butane) for energy, because the chemical changes that take place during the reaction release huge amounts of energy, which we then use for things like power and electricity.

Explanation:

Many endothermic reactions helps us i our daily life.

Combustion reactions

The burning of fuel is an example of a combustion reaction, and we as humans rely heavily on this process for our energy requirements. The following equations describe the combustion of a hydrocarbon such as petrol :

fuel + oxygen heat + water + carbon dioxide

This is why we burn fuels (such as paraffin, coal, propane and butane) for energy, because the chemical changes that take place during the reaction release huge amounts of energy, which we then use for things like power and electricity. You should also note that carbon dioxide is produced during this reaction. The chemical reaction that takes place when fuels burn has both positive and negative consequences. Although we benefit from heat, power and electricity the carbon dioxide that is produced has a negative impact on the environment.

Lightsticks or glowsticks are used by divers, campers, and for decoration and fun. A lightstick is a plastic tube with a glass vial inside it. To activate a lightstick, you bend the plastic stick, which breaks the glass vial. This allows the chemicals that are inside the glass to mix with the chemicals in the plastic tube. These two chemicals react and release energy. Another part of a lightstick is a fluorescent dye which changes this energy into light, causing the lightstick to glow! This is known as phosphorescence or chemiluminescence.

How many valence electrons does a neutral atom of aluminum have?

Answers

Answer:

Aluminum has 13 electrons in a neutral atom. The 1S2, 2S2 and 2P6 shells are full, and so is the 3S2. The 3P1 shell has one electron in it (in Al's neutral atom) and that gives aluminum one lone valence electron and two "semi-valence" electrons which can be loaned out.

Explanation:

The number of valence electrons that a neutral atom of aluminum has is 3 valence electrons.

What are valence electrons?

Valence electrons are those electrons in the outermost parts of elements that can be combined or loned to other elements during chemical reactions. Aluminum has three electrons in the valence shell.

The total number of electrons that aluminum has is 13 and the 3P1 shell has three electrons. So, this is the number of valence electrons.

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Most nonmetals form covalent or ionic bonds, depending on the element with which they react. Carbon predominantly forms covalent bonds since it has 4 valence electrons and can form single, double or triple bonds with other elements. What element will form an ionic bond with carbon

Answers

Answer: Calcium element will form an ionic bond with carbon.

Explanation:

An ionic bond is defined as the bond formed due to transfer of electrons from one atom to another.

Elements which are able to donate their valence electrons are the ones which tend to form an ionic bond. Metals are the species which form ionic bonds when they chemically combine with non-metals.

For example, [tex]CaC_{2}[/tex] is calcium carbide and in this compound calcium forms an ionic bond with carbon atom by donating its valence electrons.

A covalent bond is defined as the bond formed due to sharing of electrons between the two elements.

Thus, we can conclude that calcium element will form an ionic bond with carbon.

Which of the following reactions is balanced?
A.CaCl2 + 2H2CO3 = CaCO3 + HCI
B.2C2Cl2 + H2CO3 +CaCO3 + HCl
C.CaCl2 + H2CO3 + 2CaCO3 + HCI
D.CaCl2 + H2CO3 + CaCO3 + 2HCI

Answers

Answer: D

Explanation:

Because in the reactant side there's/re 1 Ca atom as well as in the product side

                                                                 2 Cl atoms as well as in the product side

                                                                 2 H atoms as well as in in the product side

                                                                 1 C atom as well as in the product side

                                                                 3 O atoms as well as in the product side

Hope this help^^

The chemical equation occurs whenever the number of atoms included in the side of the reaction equals the atomic mass involved inside the product's side. Following are calculations to the balanced reaction:

Sides of the reactant:

[tex]\bold{1 \ mole\ Ca, 2\ moles \ Cl^{-}, 2\ moles\ H, and\ 1\ mole \ CO_{3}^{2-} }[/tex]are present on the reactant's side.

Calculating the product side:

[tex]\bold{1 \ mole\ Ca, 2\ moles \ Cl^{-}, 2\ moles\ H, and\ 1\ mole \ CO_{3}^{2-} }[/tex] are present on the reactant's side.Since the number of moles of element atoms/ions on both the reactants and the sides of the product of the given interaction is the same.

Therefore, the answer is "option D".

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Helium has 2 electrons and 2 protons. If the atom gains energy, to what energy level will an electron move?
A)the first energy level
B)the second energy level
C)the third energy level
D)it will remain at the same energy level

Answers

It will go to the second level and thank you for the points

Final answer:

When a helium atom gains energy, its electrons can be excited from the 1s subshell to a higher energy level. The most likely energy level for the first electron jump when energy is absorbed, according to many electron transitions, is the second energy level. So the correct option is B.

Explanation:

When a helium atom gains energy, its electrons can move from the first energy level to a higher one. Initially, both electrons in helium fill the 1s subshell, meaning it is in its lowest energy state or ground state. According to the energy levels in an atom, when an electron gains energy it can move to a higher energy level. Therefore, when a helium atom gains enough energy, one of the electrons can be excited to the second energy level (n=2). It cannot remain in the first energy level (option A) and will not stay in the same energy level either (option D). Without additional energy amounts specific to helium, options for the third energy level (option C) or higher are less probable for the first energy jump for helium's electron. Therefore, the most likely answer is B, the second energy level.

Scientists have created an exact scale replica of a rover currently found on Mars and a miniature 3D landscape identical to that where the rover is currently located. Before sending the rover over the treacherous Martian landscape, they wish to try their model rover first. Which features make this a good model for the scientists to use?
A. It is simplified to leave out details, which makes it easier to understand.
B. It is based on sound scientific principles.
C. It can be used to make predictions.
D. It can be analyzed and shown to be reliable or un-reliable.

Answers

Final answer:

The scale model of the Mars rover and landscape is a good model as it is based on scientific principles, can make predictions, and be analyzed for reliability.

Explanation:

This rover model created by the scientists has several factors that make it a good model for the Martian landscape. B. It is based on sound scientific principles: This model is created using scientific facts and principles about the Mars terrain and the rover itself, ensuring it is a legitimate representation of the actual conditions on Mars. C. It can be used to make predictions: The scientists can use this model to test different circumstances and see how the rover would behave, allowing them to predict any problems that might be encountered on the actual planet. D. It can be analyzed and shown to be reliable or un-reliable: After running tests, the model's representation of reality can be assessed. If it accurately predicts the rover's action in the real Martian environment, it can be considered reliable. If not, it is seen as unreliable.

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In terms of atomic structure, explain why the first-ionization energy K is less than that of Ca.

Answers

Answer:

Potassium has less ionization energy because it does not take much energy to remove its single outer electron. Most elements want to have a complete outer shell, so since it has a lone electron in its outer shell, it will easily give up the electron to become more stable.

The atomic structure indicates the number of protons, neutrons, and electrons in an atom.

In the atomic structure, the protons and the neutrons are positioned at the center of the nucleus while the electrons are located at the outer region of the atom.

The ionization energy is the amount of needed to eliminate a single electron from the outermost shell of an atom or a molecule.

Factors affecting the ionization energy includes:

The size of the +ve nuclear chargeSize of the atomShielding effect of the inner electrons

On the periodic table, Potassium (K) is the 19th element and Calcium is the 20th element.

Postassium is located on Group 1 and period 4 while Calcium is located on the Group 2 and period 4 on the periodic table.

Now, as we move from left - right on the periodic table across the period, the ionization energy increases from left to right as a result of the size of the atom.

Here, the size of the atom of Calcium(Ca) is larger by a single electron compared to the size of Potassium(K).

Also, the positive nuclear charge on Calcium(Ca) is greater than that of Potassium(K) because from left - right on the periodic table, the nuclear charge increases,thereby increasing attraction of the outermost electron, thus more energy is needed to remove an electron.

Thus, since Calcium(Ca) tends to have a larger size of atom and a greater +ve nuclear charge than Potassium(K), then:

The first ionization energy of K will be lesser than that of Ca.

Therefore, from the above explanation, we can conclude that we've understood why the first-ionization energy K is less than that of Ca.

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How many grams of water can be produced from 4.6 grams of Hydrogen and 7.3 grams of Oxygen?

H2 + O2 —> H2O

Answers

Answer:

The answer to your question is 8.21 g of H₂O

Explanation:

Data

mas of water = ?

mass of hydrogen = 4.6 g

mass of oxygen = 7.3 g

Balanced chemical reaction

                   2H₂  +  O₂  ⇒   2H₂O

Process

1.- Calculate the atomic mass of the reactants

Hydrogen = 4 x 1 = 4 g

Oxygen = 16 x 2 = 32 g

2.- Calculate the limiting reactant

Theoretical yield = H₂/O₂ = 4 / 32 = 0.125

Experimental yield = H₂/ O₂ = 4.6/7.3 = 0.630

From the results, we conclude that the limiting reactant is Oxygen because the experimental yield was higher than the theoretical yield.

3.- Calculate the mass of water

                   32 g of O₂ ---------------- 36 g of water

                   7.3 g of O₂ ---------------   x

                          x = (7.3 x 36) / 32

                          x = 262.8 / 32

                          x = 8.21 g of H₂O

What is the volume, in liters, occupied by 1.73 moles of N2 gas at 0.992 atm pressure and a temperature of 75º C?  (R value- 0.08206)​

Answers

48.70 is the volume, in liters, occupied by 1.73 moles of Nitrogen gas at 0.992 atm pressure and a temperature of 75º C.

Explanation:

Data given:

number of moles of nitrogen gas = 1.73 moles

pressure of the gas = 0.992 atm

temperature of the gas = 75 degrees or 273.25 + 75 = 348.15 K

R (gas constant) = 0.08206 L atm/molesK

volume of the nitrogen gas under these conditions =?

The formula used is of ideal Gas Law:

PV = nRT

Rearranging the equation to get,

V = [tex]\frac{nRT}{P}[/tex]

putting the values in the equation:

V = [tex]\frac{1.73 X 0.08026 X 348.15}{0.992}[/tex]

  = 48.70 Litres

the volume of the gas is 48.70 litres from the standard values used in the equation.

The volume, in liters, occupied by 1.73 moles of N₂ gas at 0.992 atm pressure and a temperature of 75º C is: [tex]45.81 \text{ L}.[/tex]

The volume occupied by the N₂ gas can be calculated using the ideal gas law, which is given by the equation:

[tex]\[ PV = nRT \][/tex]

where:

- [tex]\( P \)[/tex] is the pressure of the gas,

- [tex]\( V \)[/tex] is the volume of the gas,

- [tex]\( n \)[/tex] is the number of moles of the gas,

- [tex]\( R \)[/tex] is the ideal gas constant, and

- [tex]\( T \)[/tex] is the temperature of the gas in Kelvin.

Given:

- [tex]\( n = 1.73 \)[/tex] moles,

- [tex]\( P = 0.992 \)[/tex] atm,

- [tex]\( T = 75^\circ C \)[/tex], which needs to be converted to Kelvin by adding 273.15 to the Celsius temperature,

- [tex]\( R = 0.08206 \) L\atm/(mol\K).[/tex]

First, convert the temperature from Celsius to Kelvin:

[tex]\[ T(K) = T(^\circ C) + 273.15 = 75 + 273.15 = 348.15 \text{ K} \][/tex]

Now, rearrange the ideal gas law to solve for the volume [tex]\( V \)[/tex]:

[tex]\[ V = \frac{nRT}{P} \][/tex]

Substitute the given values into the equation:

[tex]\[ V = \frac{(1.73 \text{ mol})(0.08206 \text{ L\·atm/(mol\·K)})(348.15 \text{ K})}{0.992 \text{ atm}} \][/tex]

[tex]\[ V = \frac{(1.73)(0.08206)(348.15)}{0.992} \][/tex]

[tex]\[ V = \frac{45.460298}{0.992} \][/tex]

[tex]\[ V \approx 45.81 \text{ L} \][/tex]

Therefore, the volume occupied by 1.73 moles of N2 gas at 0.992 atm pressure and a temperature of 75º C is approximately 45.81 liters.

Why is the sky orange and red at sunrise and sunset?

Answers

Answer:

gas molecules scatter short wavelengths of light (blue and violet) more than long (red and orange) so the sky looks blue. at sunrise and sunset, the light passes through thicker atmosphere and blue light is scattered more, so mostly red and orange light is visible.

Explanation:

hope it helps

Answer:

C-The thick atmosphere scatters all but longer wavelengths.

Explanation:

Light travels through more atmosphere, leaving long wavelengths at sunrise/sunset

The molecular weight of hemoglobin is 64,500 daltons (= g mol-1).


a. how much oxygen can be bound per g of hemoglobin? express the values as ml per g of hemoglobin, where ml is the volume of o2. r =0.082 l atm mol-1 ok-1, ok =273 + oc. the molar volume of o2 is given as v = nrt/p where p = 1 atm and n= 1 mol; (hint: 1.0 mol x 0.082 l atm mol-1 ok-1 x 273.2 ok / 1 atm = 22.4 l mol-1)

Answers

Answer:

Thus, one gram of Hemoglobin carries 1.389 mL of oxygen.

Explanation:

Each hemoglobin molecules carries 4 oxygen molecules.

Given that the molar mass of  hemoglobin = 64,5000 g/mol

1 gram of  hemoglobin = [tex]\frac{1}{64500}moles[/tex]

Now, no of moles of oxygen carried in 1 mole of  hemoglobin = [tex]\frac{1}{64500}* 4 \ \ moles[/tex]

= [tex]6.2016*10^{-5}[/tex] moles

assuming the oxygen is to be an ideal gas; then:

PV = nRT

[tex]V =\frac{nRT}{P}[/tex]

Given that :

[tex]\frac{RT}{P}= 22.4 \ L/mol[/tex]

Then V = [tex]6.2016*10^{-5}[/tex] [tex]*22.4 *1000 \ mol[/tex]

V = 1.389 mL

Thus, one gram of Hemoglobin carries 1.389 mL of oxygen.

According to the ideal gas law for a fixed amount of gas, if the _____ is constant, then when the ________ increases the volume should ________.

a) temperature, pressure, increase
b) pressure, temperature, decrease
c) pressure, volume, decrease
d) none of the above

Answers

Answer:

D. none of the above

Explanation:

A. is wrong because pressure and volume have an inverse relationship. When one increases the other decreases, this is not an option.

B. is wrong because temperature and volume have a proportional relationship. One one goes up, the other goes up or vice versa.

C. is wrong because volume cannot increase the then decrease at the same time.

What type of potential energy does a stretched rubber band have?
-Mechanical Kinetic energy
-Chemical Potential energy
-Elastic Potential energy
-Electromagnetic energy

Answers

Answer

Elastic potential energy

23.495 g sample of aqueous waste leaving a fertilizer manufacturer contains ammonia. The sample is diluted with 72.311 g of water. A 12.949 g aliquot of this solution is then titrated with 0.1080 M HCl . It required 32.27 mL of the HCl solution to reach the methyl red endpoint. Calculate the weight percent NH3 in the aqueous waste.

Answers

Answer:

1.86% NH₃

Explanation:

The reaction that takes place is:

HCl(aq) + NH₃(aq) → NH₄Cl(aq)

We calculate the moles of HCl that reacted, using the volume used and the concentration:

32.27 mL ⇒ 32.27/1000 = 0.03227 L0.1080 M * 0.03227 L = 3.4852x10⁻³ mol HCl

The moles of HCl are equal to the moles of NH₃, so now we calculate the mass of NH₃ that was titrated, using its molecular weight:

3.4852x10⁻³ mol NH₃ * 17 g/mol = 0.0592 g NH₃

The weight percent NH₃ in the aliquot (and thus in the diluted sample) is:

0.0592 / 12.949 * 100% = 0.4575%

Now we calculate the total mass of NH₃ in the diluted sample:

Diluted sample total mass = Aqueous waste Mass + Water mass = 23.495 + 72.311 = 95.806 g

0.4575% * 95.806 g = 0.4383 g NH₃

Finally we calculate the weight percent NH₃ in the original sample of aqueous waste:

0.4383 g NH₃ / 23.495 g * 100% = 1.86% NH₃

Which statement best describes reproduction among bacteria under ideal conditions?

Answers

Answer:

Reproduction is asexual and occurs at a rapid rate.

Answer: Reproduction is asexual and occurs at a rapid rate.

Explanation:i did the quiz

what happens in the distillation flask and condenser during distillation.​

Answers

Answer: The distillation flask being heated in a heating mantle. The vapors condense and drip from the condenser into the flask. As the distillate begins to drop from the condenser, the temperature observed on the thermometer should be changing steadily.

Explanation:

answer above

When the equation below is correctly balanced, the coefficient for CO2 is

Answers

Answer:

The answer to your question is 4

Explanation:

Chemical reaction

                C₂H₆  +  O₂  ⇒  CO₂  +  H₂O

           Reactants    Elements    Products

                  2            Carbon              1

                  6            Hydrogen         2

                  2            Oxygen             3

Balanced chemical reaction

                2C₂H₆  +  7O₂  ⇒  4CO₂  +  6H₂O

           Reactants    Elements    Products

                  4            Carbon             4

                 12            Hydrogen       12

                 14            Oxygen           14

When the reaction is balanced the coefficient for CO₂ is 4.

The activation energy for this reaction is 75 kJ⋅mol−1. The enzyme catalase, found in blood, lowers the activation energy to 8.0 kJ⋅mol−1. At what temperature would the non‑catalyzed reaction need to be run to have a rate equal to that of the enzyme‑catalyzed reaction at 25 ∘C?

Answers

lanation:

It has to be 30 degrees

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