10x y 4 2 125x (Simplify your answe

Algebra and Trigonometry (6th Edition)
6th Edition
ISBN:9780134463216
Author:Robert F. Blitzer
Publisher:Robert F. Blitzer
ChapterP: Prerequisites: Fundamental Concepts Of Algebra
Section: Chapter Questions
Problem 1MCCP: In Exercises 1-25, simplify the given expression or perform the indicated operation (and simplify,...
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The mathematical expression to simplify is:

\[
\frac{10x^2 y}{\sqrt[5]{25x^4 y^2}} = \Box
\]

(Simplify your answer)

**Explanation for Simplification:**

1. **Numerator:** \(10x^2 y\)
2. **Denominator:** \(\sqrt[5]{25x^4 y^2}\)

To simplify:

- **Step 1:** Simplify the radicand in the fifth root:
  - \(25x^4 y^2\) can be separated to \(5^2 \cdot (x^4) \cdot (y^2)\).

- **Step 2:** Apply the fifth root:
  - \(\sqrt[5]{25x^4 y^2} = \left(\sqrt[5]{5^2}\right) \times \left(\sqrt[5]{x^4}\right) \times \left(\sqrt[5]{y^2}\right)\).

- **Step 3:** Simplify further, using properties of exponents and roots:
  - \(\sqrt[5]{5^2} = 5^{2/5}\)
  - \(\sqrt[5]{x^4} = x^{4/5}\)
  - \(\sqrt[5]{y^2} = y^{2/5}\)

- **Step 4:** Divide the numerator by the simplified denominator:
  - Simplify using the laws of exponents.

Note: To achieve the final simplified form, perform the necessary arithmetic operations on the exponents and constants.
Transcribed Image Text:The mathematical expression to simplify is: \[ \frac{10x^2 y}{\sqrt[5]{25x^4 y^2}} = \Box \] (Simplify your answer) **Explanation for Simplification:** 1. **Numerator:** \(10x^2 y\) 2. **Denominator:** \(\sqrt[5]{25x^4 y^2}\) To simplify: - **Step 1:** Simplify the radicand in the fifth root: - \(25x^4 y^2\) can be separated to \(5^2 \cdot (x^4) \cdot (y^2)\). - **Step 2:** Apply the fifth root: - \(\sqrt[5]{25x^4 y^2} = \left(\sqrt[5]{5^2}\right) \times \left(\sqrt[5]{x^4}\right) \times \left(\sqrt[5]{y^2}\right)\). - **Step 3:** Simplify further, using properties of exponents and roots: - \(\sqrt[5]{5^2} = 5^{2/5}\) - \(\sqrt[5]{x^4} = x^{4/5}\) - \(\sqrt[5]{y^2} = y^{2/5}\) - **Step 4:** Divide the numerator by the simplified denominator: - Simplify using the laws of exponents. Note: To achieve the final simplified form, perform the necessary arithmetic operations on the exponents and constants.
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