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Q:
\( \int e ^ { x ^ { 2 } } = \)
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Find \( \int\left(\frac{4}{x^{2}}+7 x+5\right) d x \) \( \square+C \)
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a. \( \frac{\left(2 x^{2} y\right)^{3}}{4 x^{0} y^{2}} \)
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is it at 1530 hours? Jack drives north at \( 80 \mathrm{~km} / \mathrm{h} \) for 2 hours. He then turns and drives east at the same speed for 3 hours. (a) To the nearest degree, what is Jack's true bearing from his original position? (b) If Jack could drive from his current position straight back to his starting position: (i) how far would he travel, to the nearest kilometre (ii) what true bearing should he follow?
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2.3 Differentiate \( \frac{5}{2} \operatorname{cosec}^{-1}\left(\frac{\theta}{2}\right) \) with respect to \( \theta \)
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\( \int e ^ { x ^ { z 2 } } = \)
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Jenelle bought a home for \( \$ 180,000 \), paying \( 22 \% \) as a down payment, and financing the rest at \( 5.8 \% \) intere for 30 years. Round your answers to the nearest cent. How much money did Jenelle pay as a down payment? \$ 39,600 What was the original amount financed? \( \$ 140,400 \) What is her monthly payment? \$ If Jenelle makes these payments every month for thirty years, determine the total amount of money she will spend on this home. Include the down payment in your answer. \$
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Find \( \int\left(3 x^{7}+5 x^{5}\right) d x \) \( \square+C \)
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Find \( \int\left(3 x^{7}+5 x^{5}\right) d x \)
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QUESTION 7 (Start on a new page.) 7.1 Reflection of light (and other forms of electromagnetic radiation) occurs when the waves meet a surface or other boundary that does not absorb the energy of the radiation and reflects the waves off the surface. Draw a fully labelled ray diagram to illustrate reflection.
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