Please help me I really need help

Please Help Me I Really Need Help

Answers

Answer 1

Answer:20 million years ago

Explanation:


Related Questions

What type of simple machine is found on a water bottle cap

Answers

screw is the simple machine

Answer:

A Lever

Explanation:

M+e → M?
Has M lost or gained an electron?

Answers

Answer:

m lost an electron coz it transffered it

How many moles are in 1.0 x 109 atoms of Zn?

Answers

Answer:

1.66×10^-15

Explanation:

the explanation is in the picture

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How many moles of CCl4 are there in 34.99 g?

Answers

5382.256273000041 Is the awnser for CCI4

In the polypeptide Phe-Tyr-Glu-Asp-Ser-Ile-Leu-Ser what is the N-terminal amino acid?
and
What is the C-terminal amino acid?

Answers

Answer:

N-terminal Phe, C-terminal Ser

Explanation:

Amino acids connect like

NH2 -CH(R1) -CO -NH-CH(R2)-CO-.....-NH-CH(Rn)COOH

So, 1st amino acid is N -terminal , and it is Phe.

Last amino acid is C- terminal, and it is Ser.

What substance is removed from the air by living things for respiration?

Answers

Answer:

If i'm correct it is carbon dioxide. If i'm not correct sorry!

Explanation:

To solve this we must be knowing each and every concept behind respiration. Therefore, oxygen is the substance which is removed from the air by living things for respiration.

What is respiration?

Respiration is a mechanism that happens within cells to produce energy by breaking down glucose molecules. The process may be neatly separated into two groups based on the usage of oxygen: anaerobic and aerobic respiration.

Many people believe that humans as well as other multicellular creatures solely employ aerobic respiration. This is countered by the fact that human muscles perform anaerobic respiration during strenuous activity, creating lactic as a waste byproduct instead of carbon dioxide. Oxygen is the substance which is removed from the air by living things for respiration.

Therefore, oxygen is the substance which is removed from the air by living things for respiration.

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Complete each nuclear reaction equation.


Nitrogen transmutes to form an isotope of oxygen. The superscript for oxygen is
.

The subscript for hydrogen is


Cobalt-59 accepts a neutron to form a new isotope. The subscript for cobalt is

Answers

The transmutation of Cobalt-59 by accepting a neutron is shown by;

[tex]59/27 Co + 1/0 n ------ > 60/27Co[/tex]

What is a nuclear reaction equation?

A nuclear reaction equation has to do with the change of one isotope of an element to an isotope of another element most times, owing to the bombardment of a small particle.

The transmutation of nitrogen to oxygen is shown by; [tex]14/7N + 4/2He ---- > 17/8O + 1/1p[/tex]

The transmutation of Cobalt-59 by accepting a neutron is shown by;

[tex]59/27 Co + 1/0 n ------ > 60/27Co[/tex]

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Answer:

1- 17

2- 1

3- 27

Explanation:

Consider the following step of a reaction mechanism.
A+B___>D+E (slow)
Which statement identifies a reaction intermediate?
A, if it is used in a later step
B, if it is produced in an earlier step
D, if it is used in an earlier step
E, if it is produced in a later step

Answers

Answer:

i think it's D I'm not sure...

Answer:

b, if it produced in an earlier step

Explanation:

i got it right :) hope this helps!!

Help please (chemistry homework)

Answers

Jehegsvebjwjsgdgdvdbdbdhd

Answer:

1. LiCl - Lithium chloride

2. Li2O - Lithium oxide

3. CaFl2 - Calcium fluoride

4. MgCl2 - Magnesium chloride

5. KNO3 Potassium nitrate

6. Be3P2 Beryllium phosphide

Explanation:

- You just need to know the rules of naming compounds and doing formulas. If you would like more help with this or further explanation please let me know. Hope this helps!

What will happen if an electric current is flowing through a cord and a magnet is brought near the cord?


The choices are


The resistance of the wire will decrease


It will exert a force on the voltage


It will exert a force on the electric current


The electric current will stop flowing



Answers

Answer:

The magnet will exert a force on the electric current

Explanation:

The electric current flowing through the cord will experience magnetic force due to presence of magnetic field created by the magnet brought near it.

The magnitude of the magnetic force experienced by this flowing current is given as;

F = qvB

where;

q is charge of electron (measured in coulomb's, C)

v is the speed of the flowing current (m/s)

B is the magnetic field strength (T)

Therefore, the magnet will exert a force on the electric current

Which of these is a product of photosynthesis and a requirement
for cellular respiration?
Select one:
sunlight
carbon dioxide
glucose
water

Answers

Answer:

glucose

Explanation:

Glucose is the product of photosynthesis that is required for cellular respiration, serving as an energy source converted into ATP. Option C is correct.

The product of photosynthesis that is also a requirement for cellular respiration is glucose. Photosynthesis uses sunlight, carbon dioxide (CO₂), and water (H₂O) to produce glucose (C₆H₁₂O₆) and oxygen (O₂). While glucose is utilized as a source of energy during cellular respiration, oxygen is also involved in this process but is not considered a product of photosynthesis that is used in cellular respiration.

Glucose is the crucial link between these two processes, serving as the energy source that cellular respiration converts into ATP (adenosine triphosphate), the energy currency of the cell.

Hence, C. is the correct option.

The complete question is:

Which of these is a product of photosynthesis and a requirement

for cellular respiration?

Select one:

A) sunlight

B) carbon dioxide

C) glucose

D) water

Which of the scientists responsible for cell theory would be the most likely to write a book titled Cells Come from Cells?

Hooke
Schleiden
Virchow
Schwann

Answers

Answer:

I am not sure but DO NOT PICK SCHWANN.

Explanation:

That other person is wrong. Maybe it is Virchow. Sorry if I am wrong.

Final answer:

The scientist most likely to write a book titled 'Cells Come from Cells' is Rudolf Virchow, as he popularized the idea that all cells arise from pre-existing cells.

Explanation:

The scientist most likely to write a book titled Cells Come from Cells is Rudolf Virchow. Virchow is known for popularizing the concept that all cells arise from pre-existing cells, an idea that greatly contributed to the development of the modern cell theory. This statement became known as `Virchow's Law' or 'Omnis cellule e cellula', which means 'every cell comes from a cell'.

Other scientists such as Hooke, Schwann, and Schleiden made key contributions to the cell theory as well, but their work focused on different aspects. Hooke, for example, first identified and named cells, but did not propose their mode of formation. Similarly, Schwann and Schleiden identified that both plants and animals are made up of cells.

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what is the pressure of 62.76 g of carbon dioxide (CO2) gas if it occupies a volume of

35,000 mL at standard temperature?

Answers

Answer:

P = 995.6 atm

Explanation:

assuming ideal gas:

PV = RTn

∴ Tst = 25°C ≅ 298 K

∴ V = 35.00 mL = 0.035 L

∴ molar mass CO2 = 44.01 g/mol

∴ mass CO2(g) = 62.76 g

⇒ mol CO2(g) = (62.76 g)*(mol/44.01 g) = 1.426 mol

∴ R = 0.082 atm.L/K.mol

⇒ P = RTn/V

⇒ P = ((0.082 atm.L/K.mol)*(298 K)*(1.426 mol)) / (0.035 L)

⇒ P = 995.6 atm

Answer:

The pressure of the carbon dioxide (CO2) gas is 0.913 atm

Explanation:

Step 1: Data given

Mass of carbon dioxide (CO2) = 62.76 grams

Molar mass of carbon dioxide (CO2) = 44.01 g/mol

Volume = 35000 mL = 35 L

Standard temperature = 273 K

Step 2: Calculate moles CO2

Moles CO2 = mass CO2 / molar mass

Moles CO2 = 62.76 grams / 44.01 g/mol

Moles CO2 = 1.426 moles

Step 3: Calculate the pressure

p*V = n*R*T

⇒with p = the pressure of the gas

⇒with V = the volume of the gas = 35 L

⇒with n = the moles of the gas = 1.426 moles

⇒with R = the gas constant = 0.08206 L*atm/mol *K

⇒with T = the temperature = 273 K

p = (n*R*T) / V

p = (1.426 * 0.08206 * 273) / 35

p = 0.913 atm

The pressure of the carbon dioxide (CO2) gas is 0.913 atm

protein in foods are broken down into amino acids through what process? Explain your answer.

a. adsorption
b. elimination
c. chemical digestion
d. mechanical digestion

Answers

The answer is c. Because it’s breaking things down

Final answer:

Proteins in food are broken down into amino acids through chemical digestion, a process that takes place mainly in the small intestine with the help of enzymes. This is different from mechanical digestion, which physically breaks down food without changing its chemical composition. The resulting amino acids are then absorbed in the small intestine.

Explanation:

Proteins in foods are broken down into amino acids through the process of chemical digestion. This process involves the reduction of complex proteins into their chemical building blocks, amino acids, which can then be absorbed into the bloodstream to nourish the cells of the body. Most of chemical digestion occurs in the small intestine, particularly in the duodenum, where enzymes break down proteins. It is important to differentiate this process from mechanical digestion, which refers to the physical breakdown of food into smaller pieces through actions such as chewing, without altering the chemical composition of the food.

The absorption of nutrients, primarily in the small intestines, follows digestion. The amino acids, once liberated from the proteins by chemical digestion, are absorbed through the walls of the small intestine and enter the bloodstream for distribution to the body's cells. This process is fundamental because proteins in the diet are not directly absorbed but must first be broken down into their constituent amino acids.

What energy transformations occur when using a curling iron?

Answers

Answer:

chemical energy to thermal energy

Explanation:

Then the person must click the on button once this occurs the electrical energy is transformed into thermal energy. There are other types of flat irons such as using water to create steam to straighten the hair or using a chemical called butane this is chemical energy which is later transformed into thermal energy.

Explanation:

Electrical energy is transformed to heat energy when the curling iron stays on. Heat energy is transferred to the hair that is being curled.

A solution of I3¯(aq) can be standardized by using it to titrate As4O6(aq). The titration of 0.1021 g of As4O6(s) (MW = 395.68) dissolved in of water requires 36.55 mL of I3¯(aq). Calculate the molarity of the I3¯(aq) (Reaction ratio is 4 mol I3¯ / 1 mol As4O6)

Answers

Answer:

[tex]\large \boxed{\text{0.028 24 mol/L}}[/tex]

Explanation:

1. Balanced chemical equation.

The unbalanced equation is  

As₄O₆ + I₃⁻ ⟶ H₃AsO₄ + I⁻

The balanced equation is

1As₄O₆ + 4I₃⁻ + 10H₂O ⟶ 4H₃AsO₄ + 12I⁻ + 8H⁺

2. Moles of As₄O₆

[tex]\text{Moles of As$_{4}$O}_{6} =\text{ 0.1021 g As$_{4}$O}_{6} \times \dfrac{\text{1 mol As$_{4}$O}_{6}}{\text{395.68 g As$_{4}$O}_{6}} = 2.580 \times 10^{-4} \text{ mol As$_{4}$O}_{6}\\\\=\text{0.2580 mmol As$_{4}$O}_{6}[/tex]

3. Moles of I₃⁻

[tex]\text{Moles of I}_{3}^{-} = \text{0.2580 mmol As$_{4}$O}_{6} \times \dfrac{\text{4 mmol I}_{3}^{-}}{\text{1 mmol As$_{4}$O}_{6}} =\text{1.032 mmol I}_{3}^{-}[/tex]

4. [I₃⁻]

[tex]c = \dfrac{\text{1.032 mmol }}{\text{36.55 mL }} = \textbf{0.028 24 mol/L}\\\text{The concentration of I$_{3}^{-}$ is $\large \boxed{\textbf{0.028 24 mol/L}}$}[/tex]

The molarity of the iodide ion in the given solution has been 0.028 M.

The balanced chemical reaction can be given as:

[tex]\rm As_4O_6\;+\;4\;I^3^-\;+\;10\;H_2O\;\rightarrow\;4\;H_3AsO_4\;+\;12\;I^-\;+\;8\;H^+[/tex]

Moles of [tex]\rm \bold{As_4O_6}[/tex] = [tex]\rm \dfrac{0.1021}{395.68}[/tex]

Moles of [tex]\rm \bold{As_4O_6}[/tex] = 0.2580mmol

Moles of [tex]\rm \bold{I^3^-}[/tex] = [tex]\rm moles\;of\;As_4O_6\;\times\;ratio\;of\;\dfrac{I^3^-}{As_4O_6}[/tex]

Moles of [tex]\rm \bold{I^3^-}[/tex] = 0.2580 [tex]\rm \times\;\dfrac{4}{1}[/tex]

Moles of [tex]\rm \bold{I^3^-}[/tex] = 1.032 mmol

Molarity = [tex]\rm \dfrac{moles}{volume\;(L)}[/tex]

Molarity = [tex]\rm \dfrac{1.032\;\times\;10^-^3}{36.55\;\times\;10^-^3}[/tex]

Molarity = 0.028 M

The molarity of the iodide ion in the given solution has been 0.028 M.

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A gas sealed in a drum container occupies 7.70 L at a sizzling 325C degrees. What will the volume be if the drum is quickly chilled at 9C degrees.

Answers

The volume of the drum after chilled quickly is 3.6 L.

Explanation:

As per the Charles Law, for any gas at constant pressure, volume of the gas is in direct proportion with the temperature measured in Kelvin. As the temperature increases, the gas expands and vice versa.

[tex]$\frac{V1}{T1} = \frac{V2}{T2} \\[/tex]

After chilling the drum, the volume will get reduced and it can be found as,

V2 = [tex]$\frac{V1T2}{T1}[/tex]

     = [tex]$\frac{7.7 L \times 282 K}{598 K}[/tex]

      = 3.6 L

Here the drum is chilled quickly, that is temperature is reduced and so the volume also decreases.

Read the temperatures shown to the nearest 0.5°C.
40
Е
с
DONE
DONE

Answers

Answer: 37.0 °C , 42.5 °C

Explanation:

Answer:

1st one - 37.0

2nd one - 42.5

Explanation:

Which of the following compounds will behave MOST like an ideal gas at higher pressures? a) He b) SO2 c) H2 d) N2 e) F2

Answers

Answer:

Option A

He

Explanation:

Ideal gas: refers to a type of gas having a perfectly elastic collisions between atoms or molecules with no intermolecular attractive forces. Helium is the most ideal gas amongst the given options because it exists as a single atom, with a low boiling point with a very low or even zero intermolecular interaction.

SO2 is less volatile having more intermolecular interaction (van da waal interaction, this is the reason for it's deviation from ideality).

H2 almost behaves like an idea gas because it has a low intermolecular interaction not zero.

N2 is not an ideal gas

F2  is not the most ideal gas.

Final answer:

Helium (He)- (a) is most likely to behave like an ideal gas at higher pressures due to its minimal intermolecular forces and very small atomic radius, which make its behavior under such conditions closer to the assumptions of the ideal gas law.

Explanation:

The compound that will behave most like an ideal gas at higher pressures is helium (He). Ideal gas behavior assumes that there are no intermolecular forces between the gas particles and that the volume of the gas particles themselves is negligible compared to the container. Helium, being a noble gas with a single atomic structure, has minimal intermolecular forces and a very small atomic radius, making it less likely to deviate from ideal behavior even at higher pressures. Furthermore, helium's atoms are significantly smaller than molecules like SO₂, H₂, N₂ or F₂, which means that the volume the particles take up is less significant. Real gases such as SO₂ and F₂ have stronger intermolecular forces due to their larger size and molecular structure, which will cause these gases to deviate from ideal gas behavior more than helium under the same conditions. Therefore, amongst the options provided, helium will behave most similarly to an ideal gas at higher pressures.

ZnCl2 is used in soldering flux, an alloy used to join two metals together. Determine the moles of Cl- ions in 2.50 mol ZnCl2.

5.00 mol Cl-

0.500 mol Cl-

1.75 mol Cl-

15.0 mol Cl-

Answers

Answer : The number of moles of [tex]Cl^-[/tex] ions are, 5.00 mole.

Explanation :

When 1 mole of [tex]ZnCl_2[/tex] dissociates then it gives 1 mole of [tex]Zn^{2+}[/tex] ion and 2 moles of [tex]Cl^-[/tex] ions.

As we are given that there are 2.50 mole of [tex]ZnCl_2[/tex].

Now we have to determine the number of moles of [tex]Cl^-[/tex] ions.

As, 1 mole of [tex]ZnCl_2[/tex] dissociate to give 2 moles of [tex]Cl^-[/tex] ions.

So, 2.50 mole of [tex]ZnCl_2[/tex] dissociate to give [tex]2\times 2.50=5.00[/tex] moles of [tex]Cl^-[/tex] ions.

Therefore, the number of moles of [tex]Cl^-[/tex] ions are, 5.00 mole.

There are 5.00 moles of Cl- in 2.50 moles of ZnCl2.

We have that the amount of moles of ZnCl2 is equal to 2.50 moles, so, according to the equation that forms this compound we can say that:

                                      [tex]Zn + 2Cl[/tex] ⇒[tex]ZnCl_{2}[/tex]

So, 1 mole ZnCl2 of  decomposes as 1 Zn ion and 2 Cl ions, that is, the number of moles of chlotide is twice the number of moles of ZnCl2:

                                     [tex]2 \times 2.50 = 5.00 moles[/tex]

So, there are 5.00 moles of Cl- in 2.50 moles of ZnCl2.

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Simulation ionic and covalent bonding

Answers

ionic bonds- atoms must ionize to bond and are metal/nonmetal
covalent- atoms do not need to ionize but can be polar or nonpolar to stay together since it doesn’t ionize and are nonmetal/nonmetal

You have a 20 gram piece of aluminum and a 40 gram piece of aluminum sitting in the sun. Which piece of aluminum will increase by ten degrees first? What is your evidence and reasoning?

Answers

Since the 2 pieces are made of the same material (aluminum), they have the same specific heat.  Then the piece of lower mass will warm up faster.

ΔT = Q/(mc)

They both receive the same heat transfer Q from the sun,  they both have the same specific heat c, so the one of lower mass m attains the higher temperature rise ΔT over the same time interval.

Final answer:

The 20-gram piece of aluminum will heat up by ten degrees faster than the 40-gram piece because it has less mass. This is based on the properties of heat capacity, represented by the formula for heat transfer Q = mcΔT.

Explanation:

This question is about heat capacity, a concept in physics related to the thermal properties of materials including aluminum. The heat capacity of an object determines how much it will heat up for a given amount of heat applied. It is determined by an object's mass and the specific heat of its material.

As both objects in question are made of aluminum, the specific heat of the material is the same, and thus the only factor that makes a difference is the mass. The heat capacity of an object is proportional to its mass, so a larger object will take longer to heat up. Consequently, the 20-gram piece of aluminum will heat up faster than the 40-gram piece.

This is because less energy is needed to cause a given temperature increase in a smaller mass than in a larger mass, due to the direct proportionality of heat, mass, and temperature change. This is represented by the formula for heat transfer Q = mcΔT, where Q is the heat transferred, m is the mass, c is the specific heat, and ΔT is the change in temperature.

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The element silver has both physical and chemical properties, some of which do not change when the size of the sample changes. Which of these choices is a physical property that does not change when the size of the sample changes? flammability volume density reactivity with oxygen

Answers

I believe that the answer is density.

Reason being is because the density of an object does not change when an object changes size.

The physical properties are the physical modifications like color, conductivity, shape, etc. Density does not vary with changes in size.

What are physical properties?

Physical properties are the reversible properties related to the appearances, melting and the boiling point, conductivity, density, shininess, etc.

The density of the silver element does not vary with changes in the size of the sample as it is a physical property and is constant. The volume is the physical property that varies with size and flammability and reactivity with oxygen are chemical properties.

Therefore, option C. density is the physical property that will not vary with size.

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Are gases more or less dense than liquids or solids at room temperature?

Answers

Answer:

less denser

Explanation:

soild

solid (steel) is the most dense,

gas

the gas (air) is the least dense

liquid

the density of the liquid (water) is in between

An atom has +14 Protons, 15 Neutrons, and -14 Electrons, what is the charge of it’s nucleus?

Answers

Answer:

Neutral

Explanation:

The protons and Electrons are equal, so the cancel out each other's charge This leaves the  Neutral charge of Neutrons, so, the Atom of Silicon is Neutral.

Final answer:

The charge of an atom's nucleus is determined by its number of protons. In this case, the nucleus has a +14 charge.

Explanation:

The nucleus of an atom contains its protons and neutrons. The charge of the nucleus is determined by the number of protons because neutrons do not carry a charge. Therefore, an atom with +14 protons would have a +14 charge in its nucleus, because the protons each have a +1 charge, irrespective of the number of neutrons or electrons.

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Does the coronavirus have DNA or RNA?

Answers

Answer:

The coronavirus has RNA?

Explanation:

Coronaviruses are important human and animal pathogens and contain an extraordinarily long (27-31 kb) RNA genome. Its RNA synthesis involves complex mechanisms of regulation, similar to those of DNA viruses. In this treatise, mouse hepatitis virus (MHV) is used as a model for the discussion of the mechanism of viral RNA synthesis. We show that MHV RNA synthesis requires interactions of multiple RNA components, which are likely mediated by protein-RNA and protein-protein, as well as RNA-RNA, interactions. This virus also provides a unique example of a discontinuous transcription mechanism, which involves a trans-acting RNA component. Finally, study of the cis-acting signals for the various steps of RNA synthesis revealed an insight into the regulation of viral RNA synthesis. This discussion suggests that the regulation of RNA synthesis in coronavirus is more complex than previously thought possible for RNA viruses. Coronavirus RNA transcription and replication may serve as a paradigm of RNA synthesis for RNA viruses in general.

- If I initially have a gas at a pressure of 379 mmHg, a volume of 467 mL, and a temperature of
31°C, and then I raise the pressure to 621 mmHg and increase the temperature to 49°C, what
is the new volume of the gas?

Answers

Answer:

301.89 mL

Explanation:

- Use combined gas law formula

- Rearrange that formula to fit values then plug them in.

- Be sure to change C to K

Hope that helped! Let me know if you need further explanation.

If I have 0.75 moles of gas at a temperature of 105 K and a pressure of 3.75 atmospheres, what is the volume of the gas

Answers

Answer:

the volume is 20 just subtract

Explanation:

_______is a form of asexual reproduction that occurs when an offspring grows from a piece of its parent

Answers

Answer:

vegetative reproduction

Explanation:

Answer:

Animal Regeneration

Julissa combined baking soda and calcium chloride solution in a beaker. she observed bubbling and a white solid formed. Julissa completed the reaction again after warming the solutions. What changes will julissa most likely see in the warmer reaction.?
A) The bubbling and white solid formation would occur faster
B)The bubbles and white solid formation would happen slower
C) The bubbling or white solid formation would not be created at all
D) Only the bubbling would occur, but no white solid particles would from.
(50 points pls help)

Answers

Answer:

A

Explanation:

With chemical reactions, there are various factors that affect the rate of the reaction. One of these is temperature.

When you raise the temperature, the reaction will move faster. Why? Temperature is directly correlated with the kinetic energy (basically, the energy that makes the particles move). Higher temperatures mean higher kinetic energies. Particles with higher kinetic energies move faster, which makes them more likely to collide. When collisions occur more frequently, the reaction follows through more quickly.

Thus, when Julissa warms the solutions, she will see that bubbling and white solid formation (the products of the reaction) occus faster. So, the answer is A.

Hope this helps!

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