1answer.
Ask question
Login Signup
Ask question
All categories
  • English
  • Mathematics
  • Social Studies
  • Business
  • History
  • Health
  • Geography
  • Biology
  • Physics
  • Chemistry
  • Computers and Technology
  • Arts
  • World Languages
  • Spanish
  • French
  • German
  • Advanced Placement (AP)
  • SAT
  • Medicine
  • Law
  • Engineering
Soloha48 [4]
3 years ago
8

The procedure we used to make soap was developed in the early 1800s. Back then, most soap was very harsh on the skin, why do you

think this was? What technology has significantly improved since then in order to minimize this harshness?
Chemistry
1 answer:
Roman55 [17]3 years ago
7 0

Answer:

The soaps were made with sodium or potassium hydroxide salts its pH is greater than the neutral, i.e basic and quite caustic.

Today, the technique called the saponification has been developed

Explanation:

In the early stages, for many years soap was made from animal fat and lye.

The soaps were made with sodium or potassium hydroxide salts its pH is greater than the neutral, i.e basic and quite caustic.

Surfactants especially anionic surfactants are commonly used due to their ability to solubilise fats. But extensive use of anionic surfactants like sulfonates can damage our skin by disrupting lipid membranes which protects our skin.

Also, during those days the concept of stoichiometry of a reaction was not that much involved in the making of soaps.

Therefore, too much lye was used, which make the soap too alkaline , which causes irrtiation in skin.

Today, the technique called the saponification has been developed.

Thus, exact amount of lye and fat required for the complete saponification reaction from the saponification value of a soap can be determined. Which reduced the harshness.

You might be interested in
1) The densities of air at −85°C, 0°C, and 100°C are 1.877 g dm−3, 1.294 g dm−3, and 0.946 g dm−3, respectively. From these data
earnstyle [38]

Answer:

1) The absolute zero temperature is -272.74 °C

2) The absolute zero temperature is -269.91°C

Explanation:

1) The specific volume of air at the given temperatures are;

At -85°C, v =  1/(1.877) = 0.533 dm³/g, the pressure =

At 0°C, v = 1/1.294 ≈ 0.773 dm³/g

At 100°C, v = 1/0.946 ≈ 1.057 dm³/g

We therefore have;

v₁ = 0.533 T₁ = 188.15  K

v₂ = 0.773 T₂ = 273.15  K

v₃ = 1.057 T₃ = 373.15  K

The slope of the graph formed by the above data is therefore given as follows;

m = (1.057 - 0.533)/(373.15 - 188.5) = 0.00284 dm³/K

The equation is therefor;

v - 0.533 = 0.00284×(T - 188.15)

v = 0.00284×T - 0.534 + 0.533  = 0.00284×T - 0.001167

v =  0.00284×T - 0.001167

Therefore, when the temperature, at absolute 0, we have;

v = 0

Which gives;

0 =  0.00284×T - 0.001167

0.00284×T = 0.001167

T = 0.001167/0.00284 ≈ 0.411 K

Which is 0.411  -273.15 ≈ -272.74 °C

The absolute zero temperature is -272.74 °C

2) The given volume of the gas = 20.00 dm³ at 0°C and 1.000 atm

The slope of the volume temperature graph at constant pressure = 0.0741 dm³/(°C)

The temperature is converted to Kelvin temperature, in order to apply Charles law as follows;

0°C = 0 + 273.15 K = 273.15 K

Therefore, the equation of the graph can be presented as follows;

v - 20.00 = 0.0741 × (T - 273.15)

Which gives;

v = 0.0741·T - 0.0741 ×(273.15) + 20

v = 0.0741·T - 20.2404125 + 20

v = 0.0741·T - 0.240415

Therefore at absolute 0, v = 0, we have;

0 = 0.0741·T - 0.240415

0.0741·T = 0.240415

T = 0.240415/0.0741 = 3.2445 K

The temperature in degrees is therefore;

3.2445 K - 273.15 ≈ -269.91°C

The absolute zero temperature is therefore, -269.91°C

3 0
4 years ago
17 points Pls helpppppopppp
pentagon [3]

Answer:

Lipids

Explanation:

Lipids perform many different functions in a cell. Cells store energy for long-term use in the form of lipids called fats. Lipids also provide insulated from the environment for plants and animals

8 0
3 years ago
The reaction 2KBr(s) →+ Br2(l) + 2K(s) is a <br>Decomposition reaction
klasskru [66]
Bsjsgsusgsjdgsbsbsjshsgshshs
5 0
3 years ago
An<br> a transition metal with 91 protons and electrons?
ser-zykov [4K]
Protactinium

Hshsbsbwhwhhsnsnanananananababsbsbsbsbsbsbababjaajajajnsnsnsnana
6 0
3 years ago
Read 2 more answers
A system gains 652 kJ of heat, resulting in a change in internal energy of the system equal to +241 kJ. How much work is done?
levacccp [35]

Answer:

-411 kj

Explanation:

We solve by using this formula

∆U = ∆Q + ∆W

This formula is the first law of thermodynamics

Change in internal energy U = +241

Heat gained by system Q = 652

Putting the value into the equation

+241 = 652 + W

Workdone = 241 - 652

Workdone = -411 kj

Since work done is negative it means that work was done by the system

3 0
3 years ago
Other questions:
  • what is the volume occupied by 0.118 mol of helium gas at a pressure of 1.05 atm and a temperature of 322 K?
    12·1 answer
  • How many protons and electrons are present in a barium atom?
    14·1 answer
  • Formulate a sample scientific hypothesis
    6·2 answers
  • Creatine phosphate
    6·1 answer
  • Describe what can happen to the reaction rate of a system that is heated then cooled
    14·1 answer
  • In the lab you react 2.0 g of Na2CO3 with enough CaCl2. According to the reaction Na2CO3 + CaCl2 -&gt; CaCO3 + 2NaCl How much Ca
    6·1 answer
  • *multiple choice*
    5·1 answer
  • a solid mass of 25 g is mixed with 60 g of a solution. a chemical reaction takes place and a gas is produced. the final mass of
    7·2 answers
  • Why is the finance charge important to consider when shopping for credit?
    6·1 answer
  • In complete sentences, provide a short explanation (2-3 sentences) as to why the elements are organized as they are within the p
    15·1 answer
Add answer
Login
Not registered? Fast signup
Signup
Login Signup
Ask question!