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Graph ( x + 2 ) 2 = −20 ( y 3 ) . Identify and label the vertex, axis of symmetry, focus, directrix, and endpoints of the latus rectum.

Vertex: ( 2 , 3 ) ; Axis of symmetry: x = −2 ; Focus: ( 2 , 2 ) ; Directrix: y = 8 ; Endpoints of the latus rectum: ( 12 , 2 ) and ( 8 , 2 ) .

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Solving applied problems involving parabolas

As we mentioned at the beginning of the section, parabolas are used to design many objects we use every day, such as telescopes, suspension bridges, microphones, and radar equipment. Parabolic mirrors, such as the one used to light the Olympic torch, have a very unique reflecting property. When rays of light parallel to the parabola’s axis of symmetry    are directed toward any surface of the mirror, the light is reflected directly to the focus. See [link] . This is why the Olympic torch is ignited when it is held at the focus of the parabolic mirror.

Reflecting property of parabolas

Parabolic mirrors have the ability to focus the sun’s energy to a single point, raising the temperature hundreds of degrees in a matter of seconds. Thus, parabolic mirrors are featured in many low-cost, energy efficient solar products, such as solar cookers, solar heaters, and even travel-sized fire starters.

Solving applied problems involving parabolas

A cross-section of a design for a travel-sized solar fire starter is shown in [link] . The sun’s rays reflect off the parabolic mirror toward an object attached to the igniter. Because the igniter is located at the focus of the parabola, the reflected rays cause the object to burn in just seconds.

  1. Find the equation of the parabola that models the fire starter. Assume that the vertex of the parabolic mirror is the origin of the coordinate plane.
  2. Use the equation found in part (a) to find the depth of the fire starter.
Cross-section of a travel-sized solar fire starter
  1. The vertex of the dish is the origin of the coordinate plane, so the parabola will take the standard form x 2 = 4 p y , where p > 0. The igniter, which is the focus, is 1.7 inches above the vertex of the dish. Thus we have p = 1.7.
    x 2 = 4 p y Standard form of upward-facing parabola with vertex (0,0) x 2 = 4 ( 1.7 ) y Substitute 1 .7 for  p . x 2 = 6.8 y Multiply .
  2. The dish extends 4.5 2 = 2.25 inches on either side of the origin. We can substitute 2.25 for x in the equation from part (a) to find the depth of the dish.
             x 2 = 6.8 y Equation found in part (a) . ( 2.25 ) 2 = 6.8 y Substitute 2 .25 for  x .            y 0.74   Solve for  y .

    The dish is about 0.74 inches deep.

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Balcony-sized solar cookers have been designed for families living in India. The top of a dish has a diameter of 1600 mm. The sun’s rays reflect off the parabolic mirror toward the “cooker,” which is placed 320 mm from the base.

  1. Find an equation that models a cross-section of the solar cooker. Assume that the vertex of the parabolic mirror is the origin of the coordinate plane, and that the parabola opens to the right (i.e., has the x -axis as its axis of symmetry).
  2. Use the equation found in part (a) to find the depth of the cooker.
  1. y 2 = 1280 x
  2. The depth of the cooker is 500 mm
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Access these online resources for additional instruction and practice with parabolas.

Questions & Answers

Three charges q_{1}=+3\mu C, q_{2}=+6\mu C and q_{3}=+8\mu C are located at (2,0)m (0,0)m and (0,3) coordinates respectively. Find the magnitude and direction acted upon q_{2} by the two other charges.Draw the correct graphical illustration of the problem above showing the direction of all forces.
Kate Reply
To solve this problem, we need to first find the net force acting on charge q_{2}. The magnitude of the force exerted by q_{1} on q_{2} is given by F=\frac{kq_{1}q_{2}}{r^{2}} where k is the Coulomb constant, q_{1} and q_{2} are the charges of the particles, and r is the distance between them.
Muhammed
What is the direction and net electric force on q_{1}= 5µC located at (0,4)r due to charges q_{2}=7mu located at (0,0)m and q_{3}=3\mu C located at (4,0)m?
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I believe temperature being an intensive property does not change for any amount of boiling water whereas heat being an extensive property changes with amount/size of the system.
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Scratch that
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temperature for any amount of water to boil at ntp is 100⁰C (it is a state function and and intensive property) and it depends both will give same amount of heat because the surface available for heat transfer is greater in case of the kettle as well as the heat stored in it but if you talk.....
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definitely of physics
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physics, biology and chemistry this is my Field
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No. According to Isac Newtons law. this two bodies maybe you and the wall beside you. Attracting depends on the mass och each body and distance between them.
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What is specific heat capacity
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AI-Robot
specific heat capacity is the amount of energy needed to raise the temperature of a substance by one degree Celsius or kelvin
ROKEEB
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Source:  OpenStax, College algebra. OpenStax CNX. Feb 06, 2015 Download for free at https://legacy.cnx.org/content/col11759/1.3
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