Complete the unit convertiunt 17.6 nm/s² to m/hr² 6) 123 °C to °R

Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Chapter1: Introduction
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**Mathematics and Physics Tutorial**

### Unit Conversion and Density Calculation

1. **Complete the unit conversion:**
   a) \( 7.6 \, \text{cm}^4 \, \text{s}^{-2} \) to \( \text{m}^4 / \text{hr}^2 \)

   b) \( 123^\circ \text{C} \) to \( ^\circ \text{R} \)

2. **The density of a certain liquid is given by the equation:**

   \[
   \rho = A P + B T^2 + C
   \]

   Where:
   \(\rho\) = density (in kg/m³)
   \(P\) = pressure (in atm)
   \(T\) = temperature (in K)
   \(A, B, C\) = constants

   In order for this equation to be dimensionally consistent, what are the units of \(A\), \(B\), and \(C\)?

---
Transcribed Image Text:Here is the transcribed content from the provided image, formatted as if it will appear on an educational website: --- **Mathematics and Physics Tutorial** ### Unit Conversion and Density Calculation 1. **Complete the unit conversion:** a) \( 7.6 \, \text{cm}^4 \, \text{s}^{-2} \) to \( \text{m}^4 / \text{hr}^2 \) b) \( 123^\circ \text{C} \) to \( ^\circ \text{R} \) 2. **The density of a certain liquid is given by the equation:** \[ \rho = A P + B T^2 + C \] Where: \(\rho\) = density (in kg/m³) \(P\) = pressure (in atm) \(T\) = temperature (in K) \(A, B, C\) = constants In order for this equation to be dimensionally consistent, what are the units of \(A\), \(B\), and \(C\)? ---
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