Find the derivative of (x+cosx)/(tanx) 02:46 Find the derivative of (x)/(1+tanx) 01:36 Find the derivative of (x+cosx)/(tanx) 02:25 Find the derivative of (x+cosx)/(tanx) 02:30 Find the derivative of (x+cosx)/(tanx) 02:48Exams...
ShareSave Answer Step by step video, text & image solution for Find the derivative of the following functions: 2tanx-7secx by Maths experts to help you in doubts & scoring excellent marks in Class 11 exams. Updated on:21/07/2023
279K The well-known derivative ln(x) is one that students often find easy to memorize due to many real-life applications. Learn the step-by-step process used to solve the derivative and the application of the derivative of ln(x) using a real-world example. Related...
And how do we find the relative extrema of a surface? Let’s find out! As we know from single-variable calculus, extrema are the maximum or minimum values of a function. And we determine local extrema by employing the first derivative test and second derivative test, which helps us analyze...
The well-known derivative ln(x) is one that students often find easy to memorize due to many real-life applications. Learn the step-by-step process used to solve the derivative and the application of the derivative of ln(x) using a real-world example. ...
Find the Derivative - d/d@VAR f(x)=(e^x)/(2x^2+1) f(x)=ex2x2+1f(x)=ex2x2+1 Differentiate using theQuotient Rulewhich states thatddx[f(x)g(x)]ddx[f(x)g(x)]isg(x)ddx[f(x)]−f(x)ddx[g(x)]g(x)2g(x)ddx[f(x)]-f(x)ddx[g(x)]g(x)2wheref(x)=exf(x)=...
Step 1 Since is constant with respect to , the derivative of with respect to is .Step 2 Differentiate using the Quotient Rule which states that is where and .Step 3 Differentiate. Tap for more steps... Step 3.1 By the Sum Rule, the derivative of with respect to is . Step 3.2 ...
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Answer to: Find the derivative of f(x)=\log_2(4-2x). By signing up, you'll get thousands of step-by-step solutions to your homework questions. You...
A general solution can be obtained via a substitution for the first derivative, \begin{aligned} u=\frac{{\textrm{d}} p}{{\textrm{d}} x}\implies \frac{{\textrm{d}}^2 p}{{{\textrm{d}}{x}}^2}=\frac{{\textrm{d}} u}{{\textrm{d}} x}=\frac{{\textrm{d}} u}{{\textrm{...