Mixture or Solution Activity
Room #4 Mark each image as M-Mixture, S-Solution, or C.
Compound...
![subject](/tpl/images/cats/himiya.png)
Mixture or Solution Activity
Room #4 Mark each image as M-Mixture, S-Solution, or C.
Compound to find the code in ALL CAPS.
MATTER IS BROKEN DOWN INTO 2 CATEGORIES 1.
turerbulancetterent and
compoundki
SULAR
Mixtuss physical combined
substances that con be separated
back into their orginal components
Combination of two or more
substances Joids. iquid 2-
7.
gosesi
Aer coming two ingredients
they be the origina
properties
Sok dons+ Mictures that do not op
their physical properties
3-
• mature to wosong dised
ery in another
Does not keep its physical properties
Heat is necessary to pro
Bouton ou con ovoporate the
doudond collect the concer 4.
wen કે કરાઈ
Salve what gets hoved
Seler woler henvenior
QUESTIONS TO DETERMINE MEKTURE A
SOLUTION
Contbeesly
• Does is preparaty
Do you have to wore 10
10-
CODE
Put in numerical order, first
letter of each answer (ALL
CAPS, 10 LETTERS)
Da me pacal propertien change
who do
![ansver](/tpl/images/cats/User.png)
Answers: 3
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The atomic radius of sodium is 186 pm and of chlorine is 100 pm. the ionic radius for na+ is 102 pm and for cl– is 181 pm. in going from na to cl in period 3, why does the atomic radius decrease while the ionic radius increases? a. the inner electrons in the sodium cation shield its valence electrons more effectively than the inner electrons in the chloride anion do. b. the inner electrons shield the valence electrons more effectively in the chlorine atom than in the chloride anion. c. the outermost electrons in chloride experience a smaller effective nuclear charge than those in the sodium cation do. d. the outermost electrons in chloride experience a larger effective nuclear charge than those in the sodium cation do. e. monatomic ions are bigger than the atoms from which they are formed.
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Which of the following statements is true about energy quantization at the atomic level? electrons in the outermost orbits are the most stable. electrons in all the orbits around the nucleus have the same amount of energy. electrons in the orbit closest to the nucleus have the least amount of energy. electrons absorb or release the same amount of energy independent of the energy levels.
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