Insulin is a protein that is used by the body to regulate both carbohydrate and fat metabolism. A bottle contains 125 mL of insulin at a concentration of 50.0 mg/mL . What is the total mass of insulin in the bottle?

Answers

Answer 1

Answer:

the total mass of insulin in the bottle would be 3.75 g

hope this helps :)

Explanation:

c= 50 mg/mL  

m = ?

v = 125 mL

c=m/v

[tex]\frac{50mg}{mL}[/tex]=[tex]\frac{m}{125mL}[/tex]

m=30×125

m=3750 mg or 3.75 g

Answer 2

Insulin has been the peptide hormone that is produced by the pancreatic cell of the body. The insulin solution of a concentration of 50 mg/ml has a mass of 6.25 grams.

What is insulin?

Insulin has been the protein that is crucial for cell activity and function. It is a hormone that regulates the blood glucose level in a diabetic patient. The beta cell of the islets of the Langerhans of the pancreas makes insulin.

The glucose formed from the breaking of carbohydrates is controlled in the blood by insulin production so that the metabolic process can take place in an orderly manner.

Given,

Concentration of insulin hormone = 50 mg/mL

The volume of insulin in bottle = 125 mL

The mass of insulin can be calculated from the molar concentration and volume as:

Concentration = mass ÷ volume

Substituting the values above as:

50 mg/mL = mass ÷ 125 mL

Mass = 50 mg /mL × 125 mL

Mass = 6250 mg

The unit of mass is converted from milligram into gram as:

1 gm = 1000 mg

x gm = 6250 mg

x = 6.250 gm

Therefore, 50 gm/mL of concentration has 6.25 gm of insulin in it.

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Related Questions

What volume in mL of 0.300 M NaF would be required to make a 0.0715 M solution of NaF when diluted to 250.0 mL with water

Answers

Answer: The volume of 0.300 M NaF required is 59.6 ml

Explanation:

According to the dilution law,

[tex]C_1V_1=C_2V_2[/tex]

where,

[tex]C_1[/tex] = concentration of concentrated NaF solution = 0.300 M

[tex]V_1[/tex] = volume of pure concentrated Na F solution = ?

[tex]C_2[/tex] = concentration of diluted NaF solution= 0.0715 M

[tex]V_2[/tex] = volume of diluted NaF solution= 250.0 ml

[tex]0.300\times x=0.0715\times 250.0[/tex]

[tex]x=59.6ml[/tex]

Thus the volume of 0.300 M NaF required is 59.6 ml

State yes no whether each of the following orbital diagrams conforms to the rules governing electron configuration if not explain what is wrong with the diagram

Answers

Answer:yes,no,no,yes

How do I know if something is an acid so I can avoid eating it?

Answers

Answer:

i feel like it will have an acid smell

Choose the reaction that represents the combustion of liquid C6H14?
a. C6H12O2(l) + 8 O2(g) → 6 C(s) + 6 H2O(g)
b. 6 C(s) + 7O2(g) + C6H14(l) → C6H14O2(aq) + 6CO2(g)
c. 6 C(s) + 6 H2(g) + 19 O2(g) → C6H14(l)
d. 2C6H14(l) + 19 O2(g) → 12 CO2(g) + 14 H2O(g)
HELP!!!!

Answers

Answer:

D. It's the only one with C6H14 on the reactant side.

Explanation:

1. In the tests with NaI/acetone and AgNO3/ethanol, as described in the experiment, it was found that benzyl chloride (PhCH2Cl) reacts in both tests. Why is this compound able to react under both conditions

Answers

Answer:

See explanation

Explanation:

Let us remember that the Iodide ion is a good nucleophile.  SN2 reaction is  promoted in a polar aprotic solvents like  acetone.

Aprotic solvents like acetone do not favor the formation of a carbocation hence the reaction of Sodium iodide in acetone with PhCH2Cl proceeds by SN2 mechanism. This is possible because the compound possesses a halogen atom(Cl) which is easily replaced by I^- from NaI. The corresponding NaCl formed is insoluble in acetone.

Similarly, when AgNO3/ethanol reacts with PhCH2Cl; ethanol which is a polar protic solvent and a poor nucleophile coordinates with the silver ion in the  PhCH2Cl and enhances carbocation formation (SN1 mechanism operates).

The SN2 mechanism is not followed here because there is no good nucleophile present compared to the situation in the reaction of PhCH2Cl with NaI/acetone.

What happens to gas molecules if you take away heat?

Answers

Answer:

Taking energy away from a gas cooling it down may cause it to turn into a liquid or condense

Answer:

sold,liquidator gas

Explanation:

pressure| practicelmodel of matter| siyavula

How many atoms are in 0.000045 grams of carbon?

Answers

Answer:

2.25E18

Explanation:

0.000045 g of Carbon x (1 mol C/ 12.01 g C) x (6.02 x 10E23 atoms / 1 mol C)

Start with the mass, then multiply it by the molar mass but put moles on the top and grams on the bottom to cancel out the grams. Then multiply it by Avogadros Constant to get atoms

Hydrazine reacts with 2,4-pentanedione to yield 3,5-dimethylpyrazole. Including protonations and deprotonations, the reaction takes 12 steps. Write out the mechanism on a sheet of paper and then draw the structure of the product of step 9.

Answers

Answer:

Explanation:

From the given information:

We explained the reaction mechanism of 2,4-pentanedione with hydrazine to yield 3,5-dimethylpyrazole as shown below;

At the initial stage, the carbonyl oxygen gains a proton, increasing the carbonyl carbon's electrophilicity. After that, the carbonyl carbon is being attacked by hydrazine. Then, the process proceeds with the species formed where removal of a proton takes place. Similarly, hydroxyl oxygen gains a proton. After that, the water molecule is being removed, and further rearrangement of an electron occurs at the site of nitrogen in hydrazine.

From species formed, the removal of a proton takes place. Finally, all step is being repeated to yield the final product known as 3,5 - dimethylpyrazole.

Alkali metals tend to be more reactive than alkaline earth metals because ________. Alkali metals tend to be more reactive than alkaline earth metals because ________. alkali metals have lower melting points alkali metals have lower densities alkali metals have greater electron affinities alkali metals have lower ionization energies Alkali metals are not more reactive than alkaline earth metals.

Answers

Answer:alkali metals have lower ionization energies

Explanation:

----Alkali metals tend to be more reactive than alkaline earth metals because alkali metals have lower ionization energies

Alkali metals are metals found in group 1 and examples are Lithium, Sodium and potassium having 1 electron in their outermost shell, Alkali earth metals on the other hand are found in group 2 of the periodic table  and examp-les of which are  Beryllium, magnesium, Calcium  having 2 electrons in their outermost shells

Alkali metals are more reactive  than the alkali earth metal due to the former having a lower ionization energy  as we know , Ionization energy is the lowest energy it takes to remove a mole of electron from a mole of atom in gaseous sate, We can now see that it will take a very small amount to remove  1 valence electron than two valence electrons  and the ability to easily loose electron makes an element more reactive.

Answer:

Alkali metals tend to be more reactive than alkaline earth metals because-

Explanation:

The more easily an electron is lost, the more reactive it is. Alkalines have 2 valence electron (electrons on the outer shell) whereas, Alkalis have 1 valence electron. So Alkaline's bond is stronger. An increase in density also increases the attraction force between nucleus and electron. Therefore Alkali are more reactive.

A student filled a graduated cylinder with water to the 15.0 mL mark she placed a metal object with a mass of 33.65g into the cylinder when the object was completely submerged in the water the water level rose to 18.3mL what is the density of the object

Answers

Answer:

The answer is 10.2 g/mL

Explanation:

The density of a substance can be found by using the formula

[tex]density = \frac{mass}{volume} \\ [/tex]

From the question

volume = final volume of water - initial volume of water

volume = 18.3 -15 = 3.3 mL

We have

[tex]density = \frac{33.65}{3.3} \\ = 10.19696969...[/tex]

We have the final answer as

10.2 g/mL

Hope this helps you

The concentration of H3O+ in human sweat can be as low as 2.5 × 10-6. The concentration of OH- in the sweat is ________, and this solution is ________ (acidic, basic, neutral).

Answers

Answer:

[OH⁻] = 4.0 × 10⁻⁹ M

Acidic

Explanation:

Step 1: Given data

Concentration of H₃O⁺: 2.5 × 10⁻⁶ M

Step 2: Calculate the concentration of OH⁻

We will use the following expression.

[H₃O⁺].[OH⁻] = Kw = 1.0 × 10⁻¹⁴

[OH⁻] = 1.0 × 10⁻¹⁴/[H₃O⁺] = 1.0 × 10⁻¹⁴/2.5 × 10⁻⁶ = 4.0 × 10⁻⁹ M

Step 3: Calculate the pH

We will use the following expression.

pH = -log [H₃O⁺] = -log 2.5 × 10⁻⁶ = 5.6

Since the pH < 7, the solution is acidic.

how do you find an unknown element

Answers

what is the question you're asking??

Answer:

There are two properties that can be used to identify an element: the atomic number or the number of protons in an atom. The number of neutrons and number of electrons are frequently equal to the number of protons, but can vary depending on the atom in question.

Why does the 4s sublevel fill up before the 3d sublevel? What principle is that based on?

Answers

According to the Aufbau principle, the 4s orbital is filled first instead of the 3d orbital

Further explanation

Each electron shell and its orbitals have a specific energy level.

The farther the shell is from the atomic nucleus, the higher the energy level.

This energy level is expressed in the form of electron configurations.

Writing electron configurations starts from the lowest to the highest sub-shell energy level. There are 4 sub shell in the shell of an atom, namely s, p, d and f.

Charging electrons in the subshell uses the following sequence:

1s², 2s², 2p⁶, 3s², 3p⁶, 4s², 3d¹⁰, 4p⁶, 5s², 4d¹⁰, 5p⁶, 6s², etc.

According to Aufbau, electrons occupy orbitals of the lowest energy level  

So the 4s orbital has a lower energy level than the 3d orbital, so the electrons fill the 4s orbital first

Identify the possible issues if a sample in a spectrophotometer gives no reading. Select one or more: The wrong wavelength may be set. There may be an issue with the spectrophotometer. The sample may be placed impro

Answers

The question is incomplete; the complete question is;

Identify the possible issues if a sample in a spectrophotometer gives no reading. Select one or more:

The wrong wavelength may be set.

The sample may be placed improperly in the cuvette holder.

There may be an issue with the composition of the sample.

There may be an issue with the spectrophotometer

Answer:

The wrong wavelength may be set.

There may be an issue with the spectrophotometer

Explanation:

Substances do not absorb radiation at all wavelengths. The proper wavelength at which a substance absorbs must be used for a reading to be obtained from the spectrophotometer. If this is not done, no reading is obtained from the spectrophotometer.

Generally, if the spectrophotometer has an issue, it may display no reading until the machine is fixed.

The possible issues if a sample in a spectrophotometer gives no reading are:

The sample may be placed improperly in the cuvette holder. The wrong wavelength may be set.

According to the given question, we are asked to identify the possible reasons why a spectrophotometer would give no reading when a sample is used on it.

As a result of this, it is important to note that it is possible that the sample may not have been placed correctly on the cuvette holder or the wrong wavelength may be set which would cause the no reading error to show.

Read more here:

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help pls this is timed

Answers

Answer:

Explanation:

abything that is both mass and volume

Answer:

anything that has both mass and volume

Silicon has three naturally occurring isotopes. Based on the AVERAGE atomic mass, which is 28.085, what is the likely mass of the most common isotope? *

Answers

Answer: This means that the isotope of silicon with a mass number of 28 is by far the most common of these three isotopes.

Explanation:

The abundance of Si-28 is 92.23%. Si-29 is 4.68% and Si-30 is 3.09%.

a half-eaten apple turns brown which of these is evidence a chemical change took place

A.th3e apple is softer

b.the apple changed color

C.half the apple was eaten

D.the apple is warmer \

Answers

Answer:

the apple changed color

Explanation:

cause when it changes to brown it means the apple is no longer edible

many fruits with just having contact with the air it may change color like apple

B. The apple changed color

Bruh have you not eaten an apple before

When fertilizers enter surface water, they cause problems in the watershed by -




A. clogging narrow streams and preventing water from flowing properly.


B. increasing the amount of nutrients available to fish in lakes and streams.


C. causing rapid algal growth that decrease oxygen levels and choke aquatic life.


D. raising the water level in nearby rivers to levels leading to flooding.

Answers

C: Causing rapid algal growth that decreases oxygen levels and chokes aquatic life.

If this is incorrect, please, don't refrain to tell me. Thank you.

When fertilizers enter the water surface they cause brisk algal growth, which reduces the levels of oxygen and choke aquatic life.

What is eutrophication?

It is the phenomenon by which the entire water body, or some part of it becomes enriched with nutrients and minerals, mainly the phosphorus and nitrogen. This generally takes place when the fertilizers used in fields get washed in the water body.

A common effect of eutrophication is algal blooms. The emergence of algal blooms results in the depletion of oxygen of the water body resulting in  the choking of aquatic life.

Thus, the correct answer is option C.

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Phosphorus-32 has a half life of 14 days. If we begin with 40 mg how much is left after 42 days?

Answers

Answer:

0 mg

Explanation:

after 24 days all of it would be gone.

Phosphorus only has a 24 day life span.

______ play an important role in transport, they make movements possible and they help repair and build your body's tissues.
1. Lipids
2. Carbohydrates
3. Nucleic Acids
4. Proteins​

Answers

The answer is Proteins

What is the equilibrium expression for the following reaction: N2 (g) 3 H2 (g) rightwards harpoon over leftwards harpoon with blank on top 2 NH3 (g)

Answers

Answer:

[tex]Kp = \frac{P_{NH_{3}} ^{2} }{P_{N_{2}} ^{}P_{H_{2}} ^{3} }[/tex]

Explanation:

For the reaction at equilibrium:

N₂ (g) + 3 H₂(g) ⇄ 2 NH₃ (g)

Since this is an equilibrium in the gas phase, the equilibrium expression is obtained from the partial pressures (P) of the products (NH₃) and reactants (N₂ and H₂) raisen to their stoichiometric coefficients:

[tex]Kp = \frac{P_{NH_{3}} ^{2} }{P_{N_{2}} ^{}P_{H_{2}} ^{3} }[/tex]

2AgNO3The following chemical reaction takes place in aqueous solution: (aq)(aq)(s)(aq) Write the net ionic equation for this reaction.

Answers

Answer:

[tex]2Ag^+(aq)+CO_3^{2-}(aq)\rightarrow Ag_2CO_3(s)[/tex]

Explanation:

Hello.

In this case, since the reaction is not given but a typical precipitation of silver from silver nitrate could be represented by its reaction with a soluble metallic sulfide or carbonate since silver carbonate and silver sulfide are insoluble, we can use for instance sodium carbonate to obtain:

[tex]2AgNO_3(aq)+Na_2CO_3(aq)\rightarrow Ag_2CO_3(s)+2NaNO_3(aq)[/tex]

Thus, since, silver nitrate, sodium carbonate and sodium nitrate are fully ionized by silver carbonate remains solid, the complete ionic equation is:

[tex]2Ag^+(aq)+2NO_3^-(aq)+2Na^+(aq)+CO_3^{2-}(aq)\rightarrow Ag_2CO_3(s)+2Na^+(aq)+2NO_3^-(aq)[/tex]

Then, since nitrate and sodium ions are the spectator ions since they are at both reactants and products, the net ionic equation turns out:

[tex]2Ag^+(aq)+CO_3^{2-}(aq)\rightarrow Ag_2CO_3(s)[/tex]

Best regards!

Calculate the concentration of 45.0 mL of a phosphoric acid solution that neutralized 20.8 mL of 0.532 M sodium hydroxide. Assume complete ionization of the acid.

Answers

Answer:

0.0820M H₃PO₄

Explanation:

THe phosphoric acid, H₃PO₄ reacts with sodium hydroxide, NaOH, thus:

H₃PO₄ + 3NaOH → Na₃PO₄ + 3H₂O

The moles of NaOH used to neutralize the acid are:

Moles NaOH:

20.8mL = 0.0208L * (0.532mol / L) = 0.0111 moles NaOH.

That means moles of phosphoric acid in the solutionare:

0.0111 moles NaOH * (1mole H₃PO₄ / 3 moles NaOH) =

0.00369 moles H₃PO₄

These moles are in 45.0mL = 0.045L. The molar concentration of the solution are:

0.00369 moles H₃PO₄ / 0.045L =

0.0820M H₃PO₄

Why should you used distilled or deionized water instead of tap water when using AgNO3 as a test for anions?

Answers

Answer:

Why you use deonized water rather than tap water in this experiment? Because deonized water is pure and without contaminants that can affect the result of the experiment.

Explanation:

When using AgNO3 as the test anion, we used distilled or deionized water instead of tap water because deionized water is purer and free of contaminants that could affect the result of the experiment.

What is Distillation?

Distillation is the process which involves the conversion of a liquid into  water vapour and it condensed back to liquid form. It is the process in which separation of components of a mixture is based on different boiling points.

It is used to separate liquids from nonvolatile solids and also involve in the separation of alcoholic liquors from fermented materials or in the separation of two or more liquids having different boiling points, as in the separation of gasoline, kerosene, and lubricating oil from crude oil.

A plant that performs distillation is called a distillery while the apparatus used to perform distillation is called a still.

Thus, when using AgNO3 as the test anion, we used distilled or deionized water instead of tap water because deionized water is purer and free of contaminants that could affect the result of the experiment.

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Can someone answer #1 for me please I’ll gift extra points! ☺️

Answers

GREETINGS!

The system here is chloroplast, so the boundary of the system would be cell cell membrane. Input will be nutrients, output waste and process photosynthesis

HOPE IT HELPS!

guys please help me with this periodic table homework is really IMPORTANT FOR ME

Answers

Answer:

A, Chlorine, Cl

Explanation:

A 1.90-g sample of an oxide of bromine is converted to 3.188 g of AgBr. Calculate the empirical formula of the oxide. (molar mass for AgBr =187.78 g/mol)

a. BrO
b. Br2O
c. BrO
d. BrO3
e. None of these

Answers

Answer:

e. None of these

Explanation:

The oxide of Bromine (BrₐOₓ) produce "a" moles of Br that are equal to "a" moles of AgBr. The moles of AgBr are:

Moles AgBr:

3.188g AgBr * (1mol / 187.78g) = 0.01698 moles of AgBr = Moles of Br

These moles of Br weighs (Molar mass: 79.9g/mol):

0.01698 moles of Br * (79.9g / mol) = 1.36g of Br

Mass of Oxygen must be:

1.90g - 1.36g Br = 0.54g oxygen. In moles:

0.54g O * (1mol / 16g) = 0.03375 moles of O

Empirical formula is the simplest ratio of atoms in the molecule. Dividing in the moles of Br:

Br:  0.01698 moles of Br / 0.01698 moles = 1

O: 0.03375 moles of O / 0.01698 moles = 1.99 ≅ 2

That means empirical formula is:

BrO₂

And right option is:

e. None of these

The empirical formula of the oxide would be [tex]BrO_2[/tex]

1.90 g of the oxide of bromine produces 3.188 g of AgBr

moles of 3.188 g AgBr = 3.188/187.78

                                        = 0.017 moles

AgBr ---> Ag+ + Br-

Thus, mole of Br in AgBr = 0.017 moles

Mass of 0.017 Br = mole x molar mass

                           = 0.017 x 79.904

                              = 1.357 g

Mass of oxygen in the oxide of bromine = 1.90 - 1.357

                                                                    = 0.543 g

mole of 0.543 oxygen = 0.543/16

                                       = 0.0339 moles

mole of 1.357 g Br = 0.017

Dividing by the smallest:

Br = 0.017/0.017 = 1

O = 0.0339/0.017 = 1.99

Empirical formula = BrO2

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2. Foliated rocks are characterized by​

Answers

Layers and bands .......................................

4) How many moles are in each elemental sample?
a. 9.01 g Be
b. 42.03 g P
c. 71.90 g CI

Answers

Answer:

1 mole

The first step is to calculate the molar mass (gram formula weight) of MgCl2. Molar mass = (24.31 + 2 × 35.45) = 95.21 g mol–1 i.e. 95.21 g of MgCl2 is exactly 1 mole

which 2 letters have the most kinetic energy

Answers

Answer:

X and Z

Explanation:

See attachment for complete question...

Your question illustrates kinetic energy as it relates to height (according to the attachment)

Kinetic energy increases with a decrease in height.

So, from the attachment...

W and Y are at higher heights.

While X and Z are at lowest heights

By the analysis above, kinetic energy would be at highest at X and then Z.

Hence, the answer to the question is X and Z.

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