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aaron gallegos

aaron g.

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\( \frac{\sec \theta(1+\tan \theta)}{\sec \theta+\csc \theta} \)

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This theory is a kind of consequentialism. ? utilitarianism ? deontology ? virtue theory

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Interest rates will decline when the demand for loanable funds stays the same. none of the listed shifts to the right. shifts to the left.

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A movement from Point C to D represents a: trough, the economy is experiencing a recessionary gap. contraction, the economy is experiencing a recessionary gap. peak, the economy is experiencing an inflationary gap. expansion, the economy is experiencing an inflationary gap.

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A bar is composed of two segments as shown in figure. Find the stress developed in each material when the temperature is raised by 60°C when the supports are perfectly rigid. Take $E_s = 200 \text{ GPa}$, $E_{cu} = 100 \text{ GPa}$, $\alpha_s = 12 \times 10^{-6}/^\circ \text{C}$, $\alpha_{cu} = 18 \times 10^{-6}/^\circ \text{C}$. $A_{cu} = 500 \text{ mm}^2$ $A_s = 250 \text{ mm}^2$ Steel Copper 200 mm 250 mm

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About % of the area under the curve of the standard normal distribution is outside the interval=-1.88,1.88]or beyond1.88standard deviations of the mean

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9.A biological process has an enthalpy change of 300 kJ/mol and an entropy change of 1 kJ/mol \cdot K. Assume that the reaction occurs at 37 $^\circ$C and determine the following: a. Free energy change b.Whether the process is endergonic or exergonic c.Whether the process is endothermic or exothermic

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You are evaluating the performance of a large electromagnet. The magnetic field of the electromagnet is zero at $t = 0$ and increases as the current through the windings of the electromagnet is increased. You determine the magnetic field as a function of time by measuring the time dependence of the current induced in a small coil that you insert between the poles of the electromagnet, with the plane of the coil parallel to the pole faces as for the loop in (Figure 1). The coil has 4 turns, a radius of 0.800 cm, and a resistance of 0.280 $\Omega$. You measure the current $i$ in the coil as a function of time $t$. Your results are shown in (Figure 2). Throughout your measurements, the current induced in the coil remains in the same direction.

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Problem 2: RLC Circuit (10 pts.) In a damped RLC Oscillator R = 5.0?, L= 10 mH and C = 10µF. (a) What is the angular frequency of this oscillator? (5 Points) (b) How much time it will take RLC oscillating circuit to decay to 50% of its initial value of charge? (5 points)

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What are the fundamentals to John Stuart Mills beliefs? What "school" of thought is he from?

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