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Stephen Ugochukwu

Stephen U.

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Using Figure $17.5,$ identify a $5^{\prime} \rightarrow 3^{\prime}$ sequence of nucleotides in the DNA template strand for an mRNA coding for the polypeptide sequence Phe-Pro-Lys.
a. $5^{\prime}$ -UUUGGGAAA-3'
b. 5'-GAACCCCTT-3'
c. 5'-CTTCGGGAA-3'
d. $5^{\prime}$ -AAACCCUUU-3'

Using Figure $17.5,$ identify a $5^{\prime} \rightarrow 3^{\prime}$ sequence of nucleotides in the DNA template strand for an mRNA coding for the polypeptide sequence Phe-Pro-Lys. a. $5^{\prime}$ -UUUGGGAAA-3' b. 5'-GAACCCCTT-3' c. 5'-CTTCGGGAA-3' d. $5^{\prime}$ -AAACCCUUU-3'

Campbell Biology

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INSTANT ANSWER

Please, explain this question to me, I do not understand it, and I already failed it twice.

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wild cype alleks. \[ \frac{a d f}{a g^{2} f^{\circ}} \frac{r^{2} c^{2}}{} \] \( \operatorname{seg}^{2} f n^{4} \) \( \operatorname{ard} \mathrm{s}^{+} \) \( \operatorname{ald}^{4} n \) \( n^{2} f n \)

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wild type alkics. and on on \( \operatorname{Ag}^{3} f \mathrm{~A}^{2} \) \( \operatorname{add} x^{+} \) and ar \( \operatorname{ang}^{+} f \)

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Vincenzo Zaccaro verified

Numerade educator

Find the volume of the solid generated by revolving the region bounded by the graphs of the equations about the line y = 4. y = x y = 2 x = 0

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Prabhat Tyagi verified

Numerade educator

An object standing in front of a flat mrror. The image is 3m from the mirror and is 3.3m tall. How far is the object from the mirror?

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Khoobchandra Agrawal verified

Numerade educator

Two converging lenses, each of focal length 13 cm, are placed 46 cm apart, and an object is placed 27 cm in front of the first lens. (a) Where is the final image formed with respect to the second lense?

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Sahil Kumar verified

Numerade educator

A 1.20 cm-high object is placed 4.00 cm to the left of a converging lens of focal length 14.00 cm. A diverging lens of focal length –10.00 cm is 8.00 cm to the right of the converging lens. (a) Find the position of the final image.

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Marybeth Senser verified

Numerade educator

Combination RA = 984 ? VA = 0.14 V RBC = 553 ? VBC = 1.57 V RABC = 1540 ? VABC = 1.5 V Figure 5.6 Discussion On the basis of the data you recorded on the table with Figure 5.1, what is the pattern for how voltage gets distributed in a series circuit with equal resistances? According to the data you recorded with Figure 5.4, what is the pattern for how voltage gets distributed in a series circuit with unequal resistances? Is there any relationship between the size of the resistance and the size of the resulting voltage? Utilizing the data from Figure 5.2, what is the pattern for how voltage distributes itself in a parallel circuit for equal resistances? Based on the data from Figure 5.5, what is the pattern for how voltage distributes itself in a parallel circuit for unequal resistances? Is there any relationship between the size of the resistance and the size of the resulting voltage? Do the voltages in your combination circuits (see Figures 5.3 and 5.6) follow the same rules as they did in your circuits which were purely series or parallel? If not, state the rules you see in operation.

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