Pregunta
upstudy study bank question image url

Tangent Lines to Polar Curves Question Write the equation of the line tangent to the graph of \( r=4 \sin ^{2} \theta \) when \( \theta=\frac{\pi}{2} \). Answer Attempt 1 out of 2 \( \sqrt{ } \)

Ask by Schofield George. in the United States
Mar 09,2025

Solución de inteligencia artificial de Upstudy

Respuesta verificada por el tutor

Responder

The tangent line at \(\theta = \frac{\pi}{2}\) for \( r = 4 \sin^{2} \theta \) is \( y = 4 \).

Solución

**Step 1. Convert the Polar Point to Cartesian Coordinates** The polar equation is given by \[ r = 4 \sin^{2} \theta. \] At \(\theta = \frac{\pi}{2}\), compute \(r\): \[ r = 4 \sin^{2}\left(\frac{\pi}{2}\right) = 4 \cdot 1^2 = 4. \] The Cartesian coordinates are given by: \[ x = r \cos \theta \quad \text{and} \quad y = r \sin \theta. \] For \(\theta = \frac{\pi}{2}\): \[ x = 4 \cos\left(\frac{\pi}{2}\right) = 4 \cdot 0 = 0, \quad y = 4 \sin\left(\frac{\pi}{2}\right) = 4 \cdot 1 = 4. \] Thus, the point of tangency is \((0, 4)\). --- **Step 2. Find the Slope of the Tangent Line** For a polar curve, the slope \(\frac{dy}{dx}\) is given by: \[ \frac{dy}{dx} = \frac{\frac{dr}{d\theta}\sin \theta + r \cos \theta}{\frac{dr}{d\theta}\cos \theta - r \sin \theta}. \] First, find \(\frac{dr}{d\theta}\) for \(r = 4 \sin^{2}\theta\): \[ \frac{dr}{d\theta} = 4 \cdot 2 \sin \theta \cos \theta = 8 \sin \theta \cos \theta. \] Now, evaluate the numerator and denominator at \(\theta = \frac{\pi}{2}\). - **Numerator:** \[ \frac{dr}{d\theta}\sin \theta + r \cos \theta = (8 \sin \theta \cos \theta) \sin \theta + 4 \sin^2 \theta \cos \theta. \] At \(\theta = \frac{\pi}{2}\): \[ \sin\left(\frac{\pi}{2}\right) = 1, \quad \cos\left(\frac{\pi}{2}\right) = 0. \] So, \[ \text{Numerator} = 8 \cdot 1 \cdot 0 + 4 \cdot 1 \cdot 0 = 0. \] - **Denominator:** \[ \frac{dr}{d\theta}\cos \theta - r \sin \theta = (8 \sin \theta \cos \theta) \cos \theta - 4 \sin^2 \theta. \] At \(\theta = \frac{\pi}{2}\): \[ \text{Denominator} = 8 \cdot 1 \cdot 0 - 4 \cdot 1 = -4. \] Thus, the slope is: \[ \frac{dy}{dx} = \frac{0}{-4} = 0. \] --- **Step 3. Write the Equation of the Tangent Line** The tangent line with slope \(0\) is horizontal. Since it passes through \((0, 4)\), the equation is: \[ y = 4. \] --- **Final Answer** \[ y = 4. \]

Respondido por UpStudy AI y revisado por un tutor profesional

error msg
Explicar
Simplifique esta solución

Bonus Knowledge

To find the tangent line to the polar curve \( r = 4 \sin^2 \theta \) at \( \theta = \frac{\pi}{2} \), we first calculate \( r \) at that angle: \( r = 4 \sin^2\left(\frac{\pi}{2}\right) = 4 \). The Cartesian coordinates are \( (4 \cos(\frac{\pi}{2}), 4 \sin(\frac{\pi}{2})) = (0, 4) \). Next, we find the slope of the tangent line by determining the derivative \(\frac{dr}{d\theta}\) and using the formula for the slope of a polar curve. The result gives us the slope, allowing us to write the equation of the tangent line in point-slope form. In this case, since the line goes through the point (0, 4) and has a slope that can be evaluated at \(\theta = \frac{\pi}{2}\), we get the tangent line's equation in Cartesian form as \( x = 0 \), which is a vertical line. However, confirming proper endpoints and checks along the polar transformation should reinforce confidence in the result.

¡Prueba Premium ahora!
¡Prueba Premium y hazle a Thoth AI preguntas de matemáticas ilimitadas ahora!
Quizas mas tarde Hazte Premium
Estudiar puede ser una verdadera lucha
¿Por qué no estudiarlo en UpStudy?
Seleccione su plan a continuación
Prima

Puedes disfrutar

Empieza ahora
  • Explicaciones paso a paso
  • Tutores expertos en vivo 24/7
  • Número ilimitado de preguntas
  • Sin interrupciones
  • Acceso completo a Respuesta y Solución
  • Acceso completo al chat de PDF, al chat de UpStudy y al chat de navegación
Básico

Totalmente gratis pero limitado

  • Solución limitada
Bienvenido a ¡Estudia ahora!
Inicie sesión para continuar con el recorrido de Thoth AI Chat
Continuar con correo electrónico
O continuar con
Al hacer clic en "Iniciar sesión", acepta nuestros términos y condiciones. Términos de Uso & Política de privacidad