Essentials of Chemical Reaction Engineering (IE-Paperback)
暫譯: 化學反應工程要素 (IE-平裝本)

H. Scott Fogler

買這商品的人也買了...

相關主題

商品描述

This is the complete, modern introduction to chemical reaction engineering for today's readers: students who demand instantaneous access to information, have no time to waste, and want to enjoy the learning process while building their skills with both critical thinking and creative problem solving. H. Scott Fogler and M. Nihat Gürmen build on the strengths of their classic Elements of Chemical Reaction Engineering, Fourth Edition, enabling students to learn chemical reaction engineering through logic rather than memorization. They also provide extensive new resources to help students gain a deep intuitive understanding of how reactors behave in diverse situations. For example, they provide more than 60 realistic interactive simulations on CD-ROM - just one of many tools, videos, and games designed to support students with many different learning styles. Much of this book's content has been revised based on feedback from 200+ University of Michigan students who classroom-tested this book. Coverage includes: mole balances; conversion and reactor sizing; rate laws; stoichiometry; isothermal reactor design; conversion; molar flow rates; collection and analysis of rate data; multiple reactions; reaction mechanisms, pathways, bioreactions, and bioreactors; catalysis and catalytic reactors; nonisothermal reactor design; steady state energy balance and adiabatic PFR applications; and both steady-state and unsteady-state nonisothermal reactor design. 

商品描述(中文翻譯)

這是一本針對當今讀者的完整、現代化的化學反應工程入門書籍:面對要求即時獲取資訊的學生,他們沒有時間浪費,並希望在提升批判性思維和創造性問題解決能力的同時享受學習過程。H. Scott Fogler 和 M. Nihat Gürmen 在其經典著作《化學反應工程要素》第四版的基礎上,讓學生能夠通過邏輯而非死記硬背來學習化學反應工程。他們還提供了大量新的資源,幫助學生深入直觀地理解反應器在不同情況下的行為。例如,他們在 CD-ROM 上提供了超過 60 個現實互動模擬,這只是眾多工具、視頻和遊戲中的一部分,旨在支持不同學習風格的學生。本書的內容大部分基於 200 多名密西根大學學生的反饋進行了修訂,這些學生在課堂上測試了本書。內容涵蓋:物質平衡;轉化率和反應器尺寸;反應速率定律;化學計量;等溫反應器設計;轉化;摩爾流量;速率數據的收集與分析;多重反應;反應機制、途徑、生物反應和生物反應器;催化和催化反應器;非等溫反應器設計;穩態能量平衡和絕熱 PFR 應用;以及穩態和非穩態非等溫反應器設計。