Derivative – Solved Problems Database
All the problems and solutions shown below were generated using the Derivative Calculator.
ID |
Problem |
Count |
251 | $ {x}^{2}+9x+1000 $ | 4 |
252 | $ \dfrac{{x}^{2}+1}{{x}^{2}-9} $ | 4 |
253 | $ {1.05}^{x} $ | 4 |
254 | $ \dfrac{900}{x}+x+4 $ | 4 |
255 | $ {\mathrm{e}}^{6x}{\cdot}\left({x}^{2}+{8}^{x}\right) $ | 4 |
256 | $ \dfrac{{x}^{2}}{2}-\dfrac{10x{\cdot}\sqrt{x}}{3}+6x+1 $ | 4 |
257 | $ \left(x-1\right){\cdot}{\left(\sqrt{x}\right)}^{2}-2x+2 $ | 4 |
258 | $ \mathrm{arccot}\left(\sqrt{4}\right){\cdot}t $ | 4 |
259 | $ \dfrac{{x}^{2}+22x}{{\left(11+x\right)}^{2}} $ | 4 |
260 | $ \dfrac{5x+2}{5x-2} $ | 4 |
261 | $ \left(10-0.4x\right){\cdot}\ln\left(x+1\right) $ | 4 |
262 | $ \dfrac{{x}^{3}+9}{x} $ | 4 |
263 | $ \sec\left({\pi}{\cdot}\left(-6x+2\right)\right) $ | 4 |
264 | $ \dfrac{1}{x+\sqrt{x}} $ | 4 |
265 | $ \, x \, $ | 4 |
266 | $ \dfrac{2{x}^{2}-\sqrt{x}+5}{\sqrt{x}} $ | 4 |
267 | $ 400{\cdot}\sqrt{x} $ | 4 |
268 | $ \, x \, $ | 4 |
269 | $ \, x \, $ | 4 |
270 | $ 2x+1 $ | 4 |
271 | $ 5{x}^{\frac{1}{2}}-3{x}^{3} $ | 4 |
272 | $ 5{x}^{\frac{1}{2}}-3{x}^{3} $ | 4 |
273 | $ {\left({x}^{3}+2x+1\right)}^{\frac{1}{2}} $ | 4 |
274 | $ \dfrac{800}{x} $ | 4 |
275 | $ \dfrac{3}{r}{\cdot}ootx $ | 4 |
276 | $ \cos\left(x\right){\cdot}4{\cdot}\sin\left(x\right) $ | 4 |
277 | $ \dfrac{2}{3{t}^{4}} $ | 4 |
278 | $ \cos\left(x\right) $ | 4 |
279 | $ {\left({q}^{3}+q\right)}^{2} $ | 4 |
280 | $ {\left(4{x}^{2}-1\right)}^{\frac{1}{2}} $ | 4 |
281 | $ {x}^{2}{\cdot}{\left(\tan\left(5x\right)\right)}^{3} $ | 4 |
282 | $ {x}^{3}y+{y}^{3}x $ | 4 |
283 | $ \left(p+4\right){\cdot}\left(x+3\right) $ | 4 |
284 | $ \ln\left(3{x}^{2}+1\right) $ | 4 |
285 | $ {\mathrm{e}}^{x}{\cdot}\sin\left(x\right){\cdot}\cos\left(x\right) $ | 4 |
286 | $ {\left(\tan\left(x\right)\right)}^{-1}{\cdot}\left(1+{x}^{2}\right) $ | 4 |
287 | $ \dfrac{{\mathrm{e}}^{x}}{x} $ | 4 |
288 | $ \, x \, $ | 4 |
289 | $ \dfrac{\tan\left(x\right)}{1+{x}^{2}} $ | 4 |
290 | $ \, x \, $ | 4 |
291 | $ \dfrac{{\mathrm{e}}^{2x}{\cdot}\tan\left(x\right)}{7{x}^{4}} $ | 4 |
292 | $ \, x \, $ | 4 |
293 | $ \tan\left(\cos\left(\color{orangered}{\square}\right)\right) $ | 4 |
294 | $ {2}^{x}+\cos\left(3x\right) $ | 4 |
295 | $ \ln\left(5{\mathrm{e}}^{4{x}^{2}-2{x}^{3}}\right)+4.391 $ | 4 |
296 | $ \, x \, $ | 4 |
297 | $ {x}^{2} $ | 4 |
298 | $ \dfrac{1}{{x}^{2}}+5x+10 $ | 4 |
299 | $ \left(6{x}^{3}+4x\right){\cdot}\left(6{x}^{2}+3x\right) $ | 4 |
300 | $ 7{\cdot}\sin\left(\color{orangered}{\square}\right) $ | 4 |