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Alexandra [31]
3 years ago
8

What are radial wave function and angular wave function

Chemistry
1 answer:
spin [16.1K]3 years ago
7 0
The part of a wave function that depends on the angles theta and phi when the Schrodinger wave equation is expressed in spherical polar coordinates Radical wave function is the part of the wave function that depends only on the distance r when the Schrodinger wave equation is expressed in spherical polar coordinates
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A high concentration of water has ____________ dissolved particles than a low water concentration.
N76 [4]

A high concentration of water has <u>fewer</u> dissolved particles than a low water concentration.

Most cell membranes are not as easily permeable to many dissolved compounds as water is. There is a quick and constant flow of water. From one area with less dissolved matter to another with more, water transports NET. Or, if you want, from an area with a lot of water to one with little water. The terms isotonic, hypotonic, and hypertonic refer to the concentration of dissolved material. In a medium, such as the extracellular fluid, every distinct material has a concentration gradient that is unique from the gradients of other substances. Every substance will diffuse in line with that gradient as well.

Learn more about Concentration here-

brainly.com/question/10725862

#SPJ4

3 0
2 years ago
Help me!!!!!!!<br><br> A. 2<br> B. 3<br> C.4<br> D.6
riadik2000 [5.3K]

Answer:

A. 2

Explanation:

You need to balance the other side so the reactants and products are equal.

3 0
3 years ago
How many moles of k3po4 can be formed when 4.4 moles of h3po4 react with 3.8 moles of koh? h3po4 + koh yields h2o + k3po4 be sur
schepotkina [342]

the balanced chemical equation for the reaction is as follows

H₃PO₄ + 3KOH ---> K₃PO₄ + 3H₂O

stoichiometry of H₃PO₄ to KOH is 1:3

first we have to find which the limiiting reactant is

as the amount of product formed depends on the amount of limiting reactant present

number of H₃PO₄ moles reacted - 4.4 mol

if H₃PO₄ is the limiting reactant

1 mol of H₃PO₄ reacts with 3 mol of KOH

then 4.4 mol of H₃PO₄ reacts with - 3 x 4.4 mol = 13.2 mol of KOH

but only 3.8 mol of KOH is present

therefore KOH is the limiting reactant


stoichiometry of KOH to K₃PO₄ is 3:1

number of KOH moles reacted - 3.8 mol

therefore number of K₃PO₄ formed = number of KOH moles reacted / 3

= 3.8 mol / 3 = 1.3 mol


answer is 1.3 mol of K₃PO₄


3 0
4 years ago
How do you solve pH and pOH?
ehidna [41]

Picture credit - Google images

whenever you have problem for ph and poh just make this table and go from there .

Ph = 14 - Poh

Poh = 14- Ph

8 0
4 years ago
For real gases, how does a change in pressure affect the ratio of PV to nRT?
romanna [79]
A the ratio decreases as pressure increases
3 0
3 years ago
Read 2 more answers
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