r 18 learning module 2-Attempt 1. Simulation-Salts and Solubility POILA In the simulation, select the Slightly Soluble Saits tab. Choose a salt from the dropdown menu to the right. Mouse over the salt shaker, and move your mouse up and down while clicking the left mouse button to add salt to the container of water. You can also add and remove water from the container by moving the sliders on the faucets back and forth. Adjust the water level to a default volume of 1.0 x 10-16 L. Select a salt from the dropdown list, and then add 6 cations to the water. You can input the number 6 in the box named "Total" in the table that describes the salt properties. Salt Mercury00 Bromide Mercury 10 0 100 lons Dissolved Bound Total Bromide 20 0 200 2 of 10 > When the total number of cations is set to 6, the anions will be added to maintain charge neutrality. You can read the total number of cations and anions from the table. Use the data displayed in the table for each given salt to arrange them in order of decreasing entropy when one formula unit of each type of saltis dissolved. Rank from high entropy to low entropy. To rank items as equivalent, overlap them. View Available Hint(s)

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r 18 learning module 2- Attempt 1
Simulation-Salts and Solubility
Pall A
AUT
Salt
In the simulation, select the Slightly Soluble Salts tab. Choose a salt from the dropdown menu to the right. Mouse over the salt shaker, and move your mouse up and down while
clicking the left mouse button to add salt to the container of water. You can also add and remove water from the container by moving the sliders on the faucets back and forth. Adjust the
water level to a default volume of 1.0 x 10-16 L. Select a salt from the dropdown list, and then add 6 cations to the water. You can input the number 6 in the box named "Total" in the
table that describes the salt properties.
Mercury Bromide
lons
Dissolved
Bound
Total
Mercury
10
10
Bromide
20
0
200
When the total number of cations is set to 6, the anions will be added to maintain charge neutrality. You can read the total number of cations and anions from the table.
Use the data displayed in the table for each given salt to arrange them in order of decreasing entropy when one formula unit of each type of satis dissolved.
Rank from high entropy to low entropy. To rank items as equivalent, overlap them.
View Available Hint(s)
Reset
2 of 10 >
Help
Transcribed Image Text:me r 18 learning module 2- Attempt 1 Simulation-Salts and Solubility Pall A AUT Salt In the simulation, select the Slightly Soluble Salts tab. Choose a salt from the dropdown menu to the right. Mouse over the salt shaker, and move your mouse up and down while clicking the left mouse button to add salt to the container of water. You can also add and remove water from the container by moving the sliders on the faucets back and forth. Adjust the water level to a default volume of 1.0 x 10-16 L. Select a salt from the dropdown list, and then add 6 cations to the water. You can input the number 6 in the box named "Total" in the table that describes the salt properties. Mercury Bromide lons Dissolved Bound Total Mercury 10 10 Bromide 20 0 200 When the total number of cations is set to 6, the anions will be added to maintain charge neutrality. You can read the total number of cations and anions from the table. Use the data displayed in the table for each given salt to arrange them in order of decreasing entropy when one formula unit of each type of satis dissolved. Rank from high entropy to low entropy. To rank items as equivalent, overlap them. View Available Hint(s) Reset 2 of 10 > Help
Chapter 18 learning module 2- Attempt 1
MET Simulation-Salts and Solubility
Rank from high entropy to low entropy. To rank items as equivalent, overlap them.
▸ View Available Hint(s)
High entropy
strontium phosphate
silver arsenate
thallum() sulfide
mercury() bromide
silver bromide
Reset Help
Low entropy
copper() iodide
Transcribed Image Text:Chapter 18 learning module 2- Attempt 1 MET Simulation-Salts and Solubility Rank from high entropy to low entropy. To rank items as equivalent, overlap them. ▸ View Available Hint(s) High entropy strontium phosphate silver arsenate thallum() sulfide mercury() bromide silver bromide Reset Help Low entropy copper() iodide
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