# All Educational Materials for 01:640:135 at Rutgers University

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## 01:640:135- Final Exam Guide - Comprehensive Notes for the exam ( 92 pages long!)

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Objective: be able to solve problems on the chain rule. Review from previous lecture: find the derivative of = ((cid:1872))((cid:1855)) The chain rule:

View Document## 01:640:135- Final Exam Guide - Comprehensive Notes for the exam ( 86 pages long!)

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## 01:640:135 Study Guide - Riemann Sum, Mean Value Theorem, Intermediate Value Theorem

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## 01:640:135 Study Guide - Final Guide: Intermediate Value Theorem, Riemann Sum, Trae Tha Truth

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## 01:640:135 Study Guide - Final Guide: Riemann Sum, Minimax, Marginal Cost

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Final practice problems for calculus i fall 2007: suppose q and its rst derivative q(cid:48) and its second de- rivative q(cid:48)(cid:48) have the val

View Document## 01:640:135 Study Guide - Final Guide: Exponential Decay, Asymptote, Minimax

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Be sure to show all of your work. All solutions should use calculus techniques from this course. You may only use the formula sheet and scratch paper s

View Document## 01:640:135 Chapter multiple: Important problems: natural log and IVT theorem

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## 01:640:135 Chapter 2: Strategy

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Charting a company"s direction: its vision, mission, objectives, and strategy. Top management"s views and conclusions about the company"s long term dir

View Document## 01:640:135 Chapter Notes - Chapter 5: Revamp, Cost Leadership, Vertical Integration

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The five generic competitive strategies: low cost provider strategy. Striving to achieve overall lower costs than rivals on comparable products that at

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## 01:640:135- Final Exam Guide - Comprehensive Notes for the exam ( 92 pages long!)

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Objective: be able to solve problems on the chain rule. Review from previous lecture: find the derivative of = ((cid:1872))((cid:1855)) The chain rule:

View Document## 01:640:135 Study Guide - Midterm Guide: Implicit Function, Quotient Rule, Product Rule

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## 01:640:135 Quiz: 01:640:135 Quiz: Pre-Calculus Cheat Sheet.docx

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Slope intercept form: y = mx + b. Distance formula: d = ( 2 x1)2+( 2 y1)2 x y. Difference quotient: f ( x +h) f (x) f ( x)= Plug the function into the

View Document## 01:640:135 Study Guide - Final Guide: Market Price, Initial Condition, Logarithmic Differentiation

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