Use the PhET Reactions & Rates interactive simulation ( http://openstaxcollege.org/I/ 16PHETreaction) to simulate a system. On the “Single collision" tab of the simulation applet, enable the “Energy view” by clicking the “+” icon. Select the first A + B C → A B + C reaction] (A is yellow, B is purple, and C is navy blue). Using the “straight shot” default option, try launching the A atom with varying amounts of energy. What changes when the Total Energy line at launch is below the transition state of the Potential Energy line? Why? What happens when it is above the transition state? Why?
Use the PhET Reactions & Rates interactive simulation ( http://openstaxcollege.org/I/ 16PHETreaction) to simulate a system. On the “Single collision" tab of the simulation applet, enable the “Energy view” by clicking the “+” icon. Select the first A + B C → A B + C reaction] (A is yellow, B is purple, and C is navy blue). Using the “straight shot” default option, try launching the A atom with varying amounts of energy. What changes when the Total Energy line at launch is below the transition state of the Potential Energy line? Why? What happens when it is above the transition state? Why?
Use the PhET Reactions & Rates interactive simulation (http://openstaxcollege.org/I/16PHETreaction) to simulate a system. On the “Single collision" tab of the simulation applet, enable the “Energy view” by clicking the “+” icon. Select the first
A
+
B
C
→
A
B
+
C
reaction] (A is yellow, B is purple, and C is navy blue). Using the “straight shot” default option, try launching the A atom with varying amounts of energy. What changes when the Total Energy line at launch is below the transition state of the Potential Energy line? Why? What happens when it is above the transition state? Why?
Please help me calculate the undiluted samples ppm concentration.
My calculations were 280.11 ppm. Please see if I did my math correctly using the following standard curve.
Link: https://mnscu-my.sharepoint.com/:x:/g/personal/vi2163ss_go_minnstate_edu/EVSJL_W0qrxMkUjK2J3xMUEBHDu0UM1vPKQ-bc9HTcYXDQ?e=hVuPC4
Provide an IUPAC name for each of the compounds shown.
(Specify (E)/(Z) stereochemistry, if relevant, for straight chain alkenes only. Pay attention to
commas, dashes, etc.)
H₁₂C
C(CH3)3
C=C
H3C
CH3
CH3CH2CH
CI
CH3
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Arrange the following compounds / ions in increasing nucleophilicity (least to
most nucleophilic)
CH3NH2
CH3C=C:
CH3COO
1
2
3
5
Multiple Choice 1 point
1, 2, 3
2, 1, 3
3, 1, 2
2, 3, 1
The other answers are not correct
0000
Fundamentals of Anatomy & Physiology (11th Edition)
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