Practice 1.3 Microscale of volumes of solutions with different densities. For this exercise we will simulate the preparation of a reaction in a 0.5ml tube, using a micropipette with a range 1-20 ul. The idea is to create a "microscale" of volumes of colored solutions with different densities. 1. Use the table below to add the volumes in the tubes. Calculate the volume you need where they appear the X. Solución 3 (5%) Solución 1 (50%) 10 μι X = Solución 2 Solución 4 Volumen (25%) 8 ul 10 ul (0%) Total Tubo A 20 μι 20 ul Tubo B 2 ul

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Practice 1.3 Microscale of volumes of solutions with different densities.
For this exercise we will simulate the preparation of a reaction in a 0.5ml tube, using a
micropipette with a range
1-20 ul. The idea is to create a "microscale" of volumes of colored solutions with
different densities.
1. Use the table below to add the volumes in the tubes. Calculate the volume you
need where they appear
the X.
Solución 3
(5%)
Solución 4
(0%)
Solución 1
Solución 2
Volumen
(50%)
10 μ
|(25%)
8 ul
10 μι
Total
20 μ
20 μί
20 µl
20 ul
Tubo A
X =
Tubo B
X =
2 µl
X =
X =
Tubo C
10μ
4 µl
Tubo D
4 ul
10 μΙ
Transcribed Image Text:Practice 1.3 Microscale of volumes of solutions with different densities. For this exercise we will simulate the preparation of a reaction in a 0.5ml tube, using a micropipette with a range 1-20 ul. The idea is to create a "microscale" of volumes of colored solutions with different densities. 1. Use the table below to add the volumes in the tubes. Calculate the volume you need where they appear the X. Solución 3 (5%) Solución 4 (0%) Solución 1 Solución 2 Volumen (50%) 10 μ |(25%) 8 ul 10 μι Total 20 μ 20 μί 20 µl 20 ul Tubo A X = Tubo B X = 2 µl X = X = Tubo C 10μ 4 µl Tubo D 4 ul 10 μΙ
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