Solutions for Calculus of a Single Variable
Problem 6E:
Coterminal Angles in Degrees In Exercises 5 and 6, determine two coterminal angles in degree measure...Problem 14E:
Angular Speed A car is moving at the rate of 50 miles per hour, and the diameter of its wheels is...Problem 15E:
Evaluating Trigonometric Functions In Exercise 15 and 16, evaluate the six trigonometric functions...Problem 21E:
Evaluating Trigonometric Functions In Exercises 21-24, evaluate the sine, cosine, and tangent of...Problem 30E:
Determining a Quadrant In Exercises 29 and 30, determine the quadrant in which lies. (a)...Problem 34E:
Solving a Trigonometric Equation In Exercises 31-34, find two solutions of each equation. Give your...Problem 40E:
Solving a Trigonometric Equation In Exercises 35-42, solve the equation for , where 02. sin=cosProblem 43E:
Airplane Ascent An airplane leaves the runway climbing at an angle of 18 with a speed of 275 feet...Problem 44E:
Height of a Mountain While traveling across flat land, you notice a mountain directly in front of...Problem 55E:
Sketching the Graph of a Trigonometric Function In Exercises 55-66, sketch the graph of the...Problem 74E:
Ferris Wheel The model for the height h of a Ferris wheel car is h=51+50sin8t where t is measured in...Browse All Chapters of This Textbook
Chapter P - Preparation For CalculusChapter P.1 - Graphs And ModelsChapter P.2 - Linear Models And Rates Of ChangeChapter P.3 - Functions And Their GraphsChapter P.4 - Review Of Trigonometric FunctionsChapter 1 - Limits And Their PropertiesChapter 1.1 - A Preview Of CalculusChapter 1.2 - Finding Limits Graphically And NumericallyChapter 1.3 - Evaluating Limits AnalyticallyChapter 1.4 - Continuity And One-sided Limits
Chapter 1.5 - Infinite LimitsChapter 2 - DifferentiationChapter 2.1 - The Derivative And The Tangent Line ProblemChapter 2.2 - Basic Differentiation Rules And Rates Of ChangeChapter 2.3 - Product And Quotient Rules And Higher-order DerivativesChapter 2.4 - The Chain RuleChapter 2.5 - Implicit DifferentiationChapter 2.6 - Related RatesChapter 3 - Applications Of DifferentiationChapter 3.1 - Extrema On An IntervalChapter 3.2 - Rolle’s Theorem And The Mean Value TheoremChapter 3.3 - Increasing And Decreasing Functions And The First Derivative TestChapter 3.4 - Concavity And The Second Derivative TestChapter 3.5 - Limits At InfinityChapter 3.6 - A Summary Of Curve SketchingChapter 3.7 - Optimization ProblemsChapter 3.8 - Newton’s MethodChapter 3.9 - DifferentialsChapter 4 - IntegrationChapter 4.1 - Antiderivatives And Indefinite IntegrationChapter 4.2 - AreaChapter 4.3 - Riemann Sums And Definite IntegralsChapter 4.4 - The Fundamental Theorem Of CalculusChapter 4.5 - Integration By SubstitutionChapter 5 - Logarithmic, Exponential, And Other Transcendental FunctionsChapter 5.1 - The Natural Logarithmic Function: DifferentiationChapter 5.2 - The Natural Logarithmic Function: IntegrationChapter 5.3 - Inverse FunctionsChapter 5.4 - Exponential Functions: Differentiation And IntegrationChapter 5.5 - Bases Other Than E And ApplicationsChapter 5.6 - Indeterminate Forms And L’hôpital’s RuleChapter 5.7 - Inverse Trigonometric Functions: DifferentiationChapter 5.8 - Inverse Trigonometric Functions: IntegrationChapter 5.9 - Hyperbolic FunctionsChapter 6 - Differential EquationsChapter 6.1 - Slope Fields And Euler’s MethodChapter 6.2 - Growth And DecayChapter 6.3 - Separation Of Variables And The Logistic EquationChapter 6.4 - First-order Linear Differential EquationsChapter 7 - Applications Of IntegrationChapter 7.1 - Area Of A Region Between Two CurvesChapter 7.2 - Volume: The Disk MethodChapter 7.3 - Volume: The Shell MethodChapter 7.4 - Arc Length And Surfaces Of RevolutionChapter 7.5 - WorkChapter 7.6 - Moments, Centers Of Mass, And CentroidsChapter 7.7 - Fluid Pressure And Fluid ForceChapter 8 - Integration Techniques And Improper IntegralsChapter 8.1 - Basic Integration RulesChapter 8.2 - Integration By PartsChapter 8.3 - Trigonometric IntegralsChapter 8.4 - Trigonometric SubstitutionChapter 8.5 - Partial FractionsChapter 8.6 - Numerical IntegrationChapter 8.7 - Integration By Tables And Other Integration TechniquesChapter 8.8 - Improper IntegralsChapter 9 - Infinite SeriesChapter 9.1 - SequencesChapter 9.2 - Series And ConvergenceChapter 9.3 - The Integral Test And P-seriesChapter 9.4 - Comparisons Of SeriesChapter 9.5 - Alternating SeriesChapter 9.6 - The Ratio And Root TestsChapter 9.7 - Taylor Polynomials And ApproximationsChapter 9.8 - Power SeriesChapter 9.9 - Representation Of Functions By Power SeriesChapter 9.10 - Taylor And Maclaurin SeriesChapter 10 - Conics, Parametric Equations, And Polar CoordinatesChapter 10.1 - Conics And CalculusChapter 10.2 - Plane Curves And Parametric EquationsChapter 10.3 - Parametric Equations And CalculusChapter 10.4 - Polar Coordinates And Polar GraphsChapter 10.5 - Area And Arc Length In Polar CoordinatesChapter 10.6 - Polar Equations Of Conics And Kepler’s Laws
Book Details
With a long history of innovation in the market, Larson/Edwards' CALCULUS has been widely praised by a generation of students and professors for solid and effective pedagogy that addresses the needs of a broad range of teaching and learning styles and environments. Each title in the series is one component in a comprehensive calculus course program that carefully integrates and coordinates print, media, and technology products for successful teaching and learning. WebAssign is a flexible and fully customizable online instructional solution that puts powerful tools in your hands, enabling you to deploy assignments, add your own content, instantly assess individual student and class performance, and help your students master course concepts.
Sample Solutions for this Textbook
We offer sample solutions for Calculus of a Single Variable homework problems. See examples below:
Chapter P, Problem 1REChapter 1, Problem 1REChapter 2, Problem 1REChapter 3, Problem 1REChapter 4, Problem 1REGiven: The function to be plotted is f(x)=lnx−3. Graph: Use Ti-83 to plot the graph of the function:...Chapter 6, Problem 1REChapter 7, Problem 1REGiven: The integral ∫x2x3−27dx Formula used: If the function, u=g(x) has a continuous derivative on...
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EBK CALCULUS OF A SINGLE VARIABLE
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Calculus of a Single Variable
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Student Solutions Manual For Larson/edwards' Calculus Of A Single Variable: Early Transcendental Functions, 2nd
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11th Edition
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CALC.OF A SINGLE VARIABLE
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7th Edition
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Calculus of a Single Variable: Complete Solutions Guide - Volume 1
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9th Edition
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12th Edition
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