A certain RNA molecule replicates every 10 minutes. Find the differential equation for the number N(t) of molecules present at time t (in minutes). (Express numbers in exact form. Use symbolic notation and fractions where needed.) 1 N'(t) = Incorrect

Calculus: Early Transcendentals
8th Edition
ISBN:9781285741550
Author:James Stewart
Publisher:James Stewart
Chapter1: Functions And Models
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Problem 1RCC: (a) What is a function? What are its domain and range? (b) What is the graph of a function? (c) How...
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**Problem Statement:**

A certain RNA molecule replicates every 10 minutes. Find the differential equation for the number \( N(t) \) of molecules present at time \( t \) (in minutes).

*(Express numbers in exact form. Use symbolic notation and fractions where needed.)*

---

**Solution Attempt:**

\( N'(t) = \frac{1}{2} \)

*Feedback: Incorrect* 

---

**Explanation:**

The task requires finding the differential equation for the replicating RNA molecules. A common form for such a differential equation, assuming exponential growth due to constant replication rate, would be \( N'(t) = kN(t) \), where \( k \) is the growth rate. The incorrect answer provided suggests a misunderstanding in how to represent the replication rate.
Transcribed Image Text:**Problem Statement:** A certain RNA molecule replicates every 10 minutes. Find the differential equation for the number \( N(t) \) of molecules present at time \( t \) (in minutes). *(Express numbers in exact form. Use symbolic notation and fractions where needed.)* --- **Solution Attempt:** \( N'(t) = \frac{1}{2} \) *Feedback: Incorrect* --- **Explanation:** The task requires finding the differential equation for the replicating RNA molecules. A common form for such a differential equation, assuming exponential growth due to constant replication rate, would be \( N'(t) = kN(t) \), where \( k \) is the growth rate. The incorrect answer provided suggests a misunderstanding in how to represent the replication rate.
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