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Rewriting quadratics in standard form

In [link] , the quadratic was easily solved by factoring. However, there are many quadratics that cannot be factored. We can solve these quadratics by first rewriting them in standard form.

Given a quadratic function, find the x - intercepts by rewriting in standard form .

  1. Substitute a and b into h = b 2 a .
  2. Substitute x = h into the general form of the quadratic function to find k .
  3. Rewrite the quadratic in standard form using h and k .
  4. Solve for when the output of the function will be zero to find the x - intercepts.

Finding the x -intercepts of a parabola

Find the x - intercepts of the quadratic function f ( x ) = 2 x 2 + 4 x 4.

We begin by solving for when the output will be zero.

0 = 2 x 2 + 4 x 4

Because the quadratic is not easily factorable in this case, we solve for the intercepts by first rewriting the quadratic in standard form.

f ( x ) = a ( x h ) 2 + k

We know that a = 2. Then we solve for h and k .

h = b 2 a k = f ( −1 ) = 4 2 ( 2 ) = 2 ( −1 ) 2 + 4 ( −1 ) 4 = −1 = −6

So now we can rewrite in standard form.

f ( x ) = 2 ( x + 1 ) 2 6

We can now solve for when the output will be zero.

0 = 2 ( x + 1 ) 2 6 6 = 2 ( x + 1 ) 2 3 = ( x + 1 ) 2 x + 1 = ± 3 x = 1 ± 3

The graph has x -intercepts at ( −1 3 , 0 ) and ( −1 + 3 , 0 ) .

We can check our work by graphing the given function on a graphing utility and observing the x - intercepts. See [link] .

Graph of a parabola which has the following x-intercepts (-2.732, 0) and (0.732, 0).
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In a Try It , we found the standard and general form for the function g ( x ) = 13 + x 2 6 x . Now find the y - and x -intercepts (if any).

y -intercept at (0, 13), No x - intercepts

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Applying the vertex and x -intercepts of a parabola

A ball is thrown upward from the top of a 40 foot high building at a speed of 80 feet per second. The ball’s height above ground can be modeled by the equation H ( t ) = 16 t 2 + 80 t + 40.

  1. When does the ball reach the maximum height?
  2. What is the maximum height of the ball?
  3. When does the ball hit the ground?
  1. The ball reaches the maximum height at the vertex of the parabola.
    h = 80 2 ( −16 ) = 80 32 = 5 2 = 2.5

    The ball reaches a maximum height after 2.5 seconds.

  2. To find the maximum height, find the y - coordinate of the vertex of the parabola.
    k = H ( b 2 a ) = H ( 2.5 ) = −16 ( 2.5 ) 2 + 80 ( 2.5 ) + 40 = 140

    The ball reaches a maximum height of 140 feet.

  3. To find when the ball hits the ground, we need to determine when the height is zero, H ( t ) = 0.

    We use the quadratic formula.

    t = −80 ± 80 2 4 ( −16 ) ( 40 ) 2 ( −16 ) = −80 ± 8960 −32

    Because the square root does not simplify nicely, we can use a calculator to approximate the values of the solutions.

    t = 80 8960 32 5.458 or t = 80 + 8960 32 0.458

    The second answer is outside the reasonable domain of our model, so we conclude the ball will hit the ground after about 5.458 seconds. See [link] .

    Graph of a negative parabola where x goes from -1 to 6.

    Note that the graph does not represent the physical path of the ball upward and downward. Keep the quantities on each axis in mind while interpreting the graph.

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A rock is thrown upward from the top of a 112-foot high cliff overlooking the ocean at a speed of 96 feet per second. The rock’s height above ocean can be modeled by the equation H ( t ) = −16 t 2 + 96 t + 112.

  1. When does the rock reach the maximum height?
  2. What is the maximum height of the rock?
  3. When does the rock hit the ocean?

  1. 3 seconds
  2. 256 feet
  3. 7 seconds

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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?
Kate Reply
what is the change in momentum of a body?
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what is a capacitor?
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Capacitor is a separation of opposite charges using an insulator of very small dimension between them. Capacitor is used for allowing an AC (alternating current) to pass while a DC (direct current) is blocked.
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A motor travelling at 72km/m on sighting a stop sign applying the breaks such that under constant deaccelerate in the meters of 50 metres what is the magnitude of the accelerate
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8m/s²
Aishat
What is Thermodynamics
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velocity can be 72 km/h in question. 72 km/h=20 m/s, v^2=2.a.x , 20^2=2.a.50, a=4 m/s^2.
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A boat travels due east at a speed of 40meter per seconds across a river flowing due south at 30meter per seconds. what is the resultant speed of the boat
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50 m/s due south east
Someone
which has a higher temperature, 1cup of boiling water or 1teapot of boiling water which can transfer more heat 1cup of boiling water or 1 teapot of boiling water explain your . answer
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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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Someone
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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about the amount of heat stored in the system then in that case since the mass of water in the kettle is greater so more energy is required to raise the temperature b/c more molecules of water are present in the kettle
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field is a region of space under the influence of some physical properties
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Another formula for Acceleration
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Two bodies attract each other electrically. Do they both have to be charged? Answer the same question if the bodies repel one another.
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What is specific heat capacity
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Specific heat capacity is a measure of the amount of energy required to raise the temperature of a substance by one degree Celsius (or Kelvin). It is measured in Joules per kilogram per degree Celsius (J/kg°C).
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specific heat capacity is the amount of energy needed to raise the temperature of a substance by one degree Celsius or kelvin
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Source:  OpenStax, Algebra and trigonometry. OpenStax CNX. Nov 14, 2016 Download for free at https://legacy.cnx.org/content/col11758/1.6
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