
rank these oligonucleotides according to distance traveled in an
electrophoretic separation
Using gel electrophoresis the DNA fragments will be separated.
The negatively charged DNA will try to move towards the positive
side of the electric field. Smaller molecule will try to migrate
more quickly and will travel more distance when compared to larger
ones.
The smaller fragment (AAACT) will travel more distance and the
larger one (GTATGTTCACCCGTC) will travel less distance because of
its big size.
AAACT
AGGGAAG
CTACGTGCG
TTTGCGTATTT
GTATGTTCACCCGTC

rank these oligonucleotides according to distance traveled in an electrophoretic separation SapingLearning separaton Farthest distance traveled...
In determining the conditions for the maximum electrophoretic separation of two proteins, explain the effect of each of the four parameters, (i) pH, (ii) ionic strength, (iii) temperature, and (iv) current. Which parameter is likely to have the greatest effect?
Drag and drop the markers to rank them from farthest to closest to the cathode when separated through electrophoresis at pH = 5. His pl = 7.64 Ser pl = 5.68 Arg pl = 10.76 Ala pl = 6.11 Farthest from cathode Closest to cathode Ala His | Ser Arg
ed ..50 Drag and drop the markers to rank them from farthest to closest to the cathode when separated through electrophoresis at pH = 5. His pl = 7.64 Ser pl = 5.68 Arg pl = 10.76 Ala pl = 6.11 lon Farthest from cathode Closest to cathode Arg Ala His Ser
Consider the following capacitors: C1 has an area of 2.0 cm2 and a separation distance of 4.0 mm; C2 has an area of 3.0 cm2 and a separation distance of 2.0 mm; C3 has an area of 4.0 cm2 and a separation distance of 1.0 mm; C4 has an area of 2.0 cm2 and a separation distance of 2.0 mm. Rank the capacitors based on their capacitance from highest to lowest. Show one sample calculation of how you determined the...
Once the desired separation of dyes has been achieved, turn off the power, disconnect the leads from the input, and resolve the top of the electrophoresis chamber. Carefully remove the easting tray and stride the gel into the plastic tray. Based on the direction of migration, migration distance, and the appearance of sour gel. what dye components were present in each of the unknown dye mixtures? which dye molecule traveled farthest through the gel? which traveled the shortest distance through...
Can you pleasee answer these questions: If we performed electrophoretic separation (AGE) of human genomic DNA (buccal swab extraction), and we didn’t perform any restriction digestion, answer the following: 1. How many bands do you expect to see in each lane where genomic DNA is loaded? 2. Why do you see bands above the molecular marker? 3. How many wells do you see on the gel? How many of them are used in the experiment (i.e. have loaded samples)? Thank...
Can you pleasee answer these questions: If we performed electrophoretic separation (AGE) of human genomic DNA (buccal swab extraction), and we didn’t perform any restriction digestion, answer the following: 1. How many bands do you expect to see in each lane where genomic DNA is loaded? 2. Why do you see bands above the molecular marker? 3. How many wells do you see on the gel? How many of them are used in the experiment (i.e. have loaded samples)? Thank...
Write a Python program: In main function the user is asked to enter distance traveled and time and then send this information to a Python function that calculates and returns the speed of a car. The function will need to have parameters for distance traveled and time taken for the travel. The speed is calculated as: Speed = distance traveled / time In the main function show how to call this function in a print statement.
What is the angle that allows you to throw the ball the farthest
distance given that you are standing a height h above the target?
Hints: 1. you can simplify the math recognizing that h =
xf tan ()
2. also you can simplify your answer using cot ()
= tan( (/2)
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)
84. The distance d to the horizon (the farthest point on the ocean that is visible) for a person whose eyes are at a height h above sea level is approximately d 2Rh, where R is the radius of the earth, and all three distances are in miles. If the earth's radius is 3963 miles, how high are your eyes if you can see 10 miles? (Round your answer to four decimal places)