Answer:
3,8×10⁻⁵ mol/L of potassium permanganate solution
Explanation:
To calculate concentration in mol/L you must convert the 3,8 umol to moles and 100 mL to liters, knowing 1 umol are 1×10⁻⁶mol and 1L are 1000 mL.
3,8 umol × (1×10⁻⁶mol / 1 umol ) = 3,8×10⁻⁶mol of potassium permanganate.
100 mL × ( 1L / 1000 mL) = 0,100 L
Thus, concentration in mol/L is:
3,8×10⁻⁶mol / 0,100 L = 3,8×10⁻⁵ mol/L of potassium permanganate solution
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Answer:
Explanation:
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In this case, when ribose (C₅H₁₀O₅) yields carbon dioxide (CO₂) we write:
Which needs to be balanced by adding water and hydrogen ions:
You can also see that there are 20 transferred electrons, since the carbon atoms in the ribose have 0 as their oxidation state and the carbon atoms in the carbon dioxide have +4 as the oxidation state, thus, each carbon transfers 4 electrons, a five carbon atoms transfer 20 electrons overall.
In such a way, since the carbon is increasing its oxidation state, such half reaction is an oxidation half reaction.
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One mole of carbon would contain 6.02 x 1023 carbon atoms, but one mole of chlorine would contain 6.02 x 1023 diatomic chlorine molecules.
For ionic compounds, the representative particle is the formula unit of the compound (eg. NaCl).
One mole of water (H2O) contains 6.02 x 1023 atoms.
Avogadro's number is the number of discrete, representative units found in one mole of a substance.
Answer:
Option C
Explanation:
Avogadro number represent discrete unit of a substance which can be atom, molecule, ion etc.
In one mole of H2O there will be 6.02 x 1023 molecules and not atoms.
Molecule of H2O is the discrete unit of water mole and not atom.
Hence, option C is correct choice of answer
Nerve cells communicate with the brain by sending out electrical signals
Electrical signals keep nerve cells alive.
Electrical signals are used to get rid of waste produced in the nervous system.
Answer:
Each nerve cell is connected to the brain by electrical signals
Explanation:
Answer:
they said it above me
Explanation:
Answer:
A chemical reaction is the process in which atoms present in the starting substances rearrange to give new chemical combinations present in the substances formed by the reaction. These starting substances of a chemical reaction are called the reactants, and the new substances that result are called the products.
B He estimated the number of electrons in atoms of each element.
C He arranged the elements by different properties to find a pattern.
D He organized the elements by their atomic number.
Mendeleeve's periodic table was based on the atomic mass of each element.
The correct answer is option A: He determined the mass of atoms of each element.
The periodic table can be described as a regular arrangement of elements based on some periodic properties. The periodic table has evolved through the ages. Its patter has been changed several times before it arrived at its present form.
The Mendeleev periodic table was based on the mass of atoms of the elements. This table was published in Russia in 1869. His table even predicted elements that were yet to be discovered.
Learn more: brainly.com/question/7373020
Answer:
1. He arrange the elements by different properties to find a pattern!
Here are the rest!
2.. atoms are indivisible
3. He determined the amount of charge on an electron
4. Like charges repel and opposite charges attract
5.Alpha particle deflection
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The equilibrium pressure of H2 is 0.96 atm and the impossible solution of the quadratic equation is -1.379.
The equilibrium pressure of H2 is calculated by creating ICE table as follows;
2 N H3 ( g ) ⟷ N2( g ) + 3H2
I: 1 1 1
C: -2x x 3x
E: 1 - 2x 1 + x 1 + 3x
0.83(1 - 2x)² = (1 + x)(1 + 3x)³
0.83(1 - 4x + 4x²) = (1 + x)((1 + 3x)³)
0.83 - 3.32x + 3.32x² = (1 + x)((1 + 3x)³)
0.83 - 3.32x + 3.32x² = 1 + 10x + 36x² + 54x³ + 27x⁴
27x⁴ + 54x³ + 32.68x² + 13.32x + 0.17 = 0
x = -1.379 or - 0.013
H2 = 1 + 3(-1.379)
H2 = -3.13 atm
H2 = 1 + 3(-0.013)
H2 = 0.96 atm
Thus, the equilibrium pressure of H2 is 0.96 atm and the impossible solution of the quadratic equation is -1.379.
Learn more about equilibrium pressure here: brainly.com/question/25651917
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