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shtirl [24]
3 years ago
9

What is a hydroxide relaxer that does not require the application of a protective base? answer

Chemistry
1 answer:
emmasim [6.3K]3 years ago
5 0

The hydroxide relaxer that does not require the application of a protective base is a no-base relaxer. No-base creams have a lower concentration of lye and may be applied directly to the hair roots without requiring the protective layer like use of petroleum jelly onto the scalp. In addition, even when using no- base relaxers, stylists still put an additional protectant around the ears and hairline to prevent irritation to the skin. Nevertheless, they still contain chemicals in the first place.

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The neuron functions to
patriot [66]

Answer:

B) neuron or nerve cell work is to carry messages

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3 years ago
2. Which of these items would allow one scientist to reproduce the experiment of another scientist.
Over [174]

Answer:

answer us A I hope it helps u

8 0
3 years ago
HELPPPPPPPP
tangare [24]

Answer:

Hint As we know that the concept of mole is mainly to calculate the entities at the microscopic level that is ions, particles, molecules, electrons or atoms etc. It is found that mole is having the symbol mol.

Complete Step by step solution:

- As we are being provided with the information that there is 15 grams of lithium. As we know that the molar mass of lithium is 6.94 g/mol.

- As we know that mole is the amount of substance that has entities as there are atoms exactly in 12 g of carbon isotope. We should note that the number of entities in one mole is important because it is called the Avogadro constant. The numeric value of this constant is 6.022×1023.

- Firstly we will write the given mass as:

156.022×1023

- Now, we can find the number of moles by the formula of moles that is given mass of the substance divided by the molar mass of the substance.

moles=given massmolar mass⟹156.022×10236.94⟹15×6.946.022×1023⟹17.28×10−23moles

- Hence, we can conclude that there are 17.28×1023 moles in 15 grams of lithium.

Note:

- If we want to calculate the number of moles of an individual entity, like say A, that is dissolved in a solution of an entity say B (A+B), then we can do so by using the concept of mole fraction. The formula of mole fraction is given as moles of a substance divided by the total number of moles.

- We should not forget to write the unit after solving the solution. Explanation:

8 0
2 years ago
Name a common greenhouse gas with only hydrogen and oxygen
AVprozaik [17]
I'm guessing water vapour. i can't think of any other gas limited to only hydrogen and oxygen

hope it helps :)
3 0
3 years ago
A vessel with a volume of 32. 5 l contains 2. 80 g of n2 gas, 0. 403 g of h2 gas, and 79. 9 g of ar gas. at 25°c, what is the to
d1i1m1o1n [39]

The total pressure of the gases in the vessel is found out by using the partial pressures of individual gases and adding them up. The total pressure of the gases in the vessel is 1.72 atm.

The Partial pressure of the gases is the individual pressure of the gases present in a vessel containing a mixture of gases. The total pressure can be found out by adding partial pressure of all gases.

Given:

Volume of vessel, V= 32.5L

Mass of Nitrogen gas = 2.8g

Mass of Hydrogen gas = 0.403g

Mass of Argon gas = 79.9g

We know that:

             Molar Mass of Nitrogen gas = 28g

             Molar Mass of Hydrogen gas = 2g

             Molar Mass of Argon gas = 40g

∴ Moles of gas = Given mass / Molar mass

∴ Using the Ideal Gas Equation:

PV = nRT

where, P is the Pressure of gas

V is the volume of gas

n is the moles of gas

R is the Universal Gas constant

T is the temperature

Applying the above equation of all three gases indivudually,

∴ For Nitrogen,

P₁V = n₁RT                    

⇒ P₁ × 32.5 = 2.8/28 × 0.082 × 298

⇒ P₁ = 0.07atm

∴ For Hydrogen,

P₂V = n₂RT                    

⇒ P₂ × 32.5 = 0.4/2 × 0.082 × 298

⇒ P₂ = 0.15 atm

∴ For Argon,

P₃V = n₃RT                    

⇒ P₃ × 32.5 = 79.9/40 × 0.082 × 298

⇒ P₃ = 1.5 atm

∴ Total pressure of vessel, P = P₁ + P₂ + P₃

                                         P = 1.72 atm

The total pressure of the gases in the vessel is 1.72 atm.

Learn more about Partial pressure here, brainly.com/question/23841760

#SPJ4

6 0
1 year ago
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