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jordan norman

jordan n.

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an oil refinery has decided to purchase some new drilling equipment for $490,000. The equipment will be kept for 12 years before being sold. The estimated SV for depreciation purposes is to be $23,000. If SL depreciation is used and the equipment is sold for $40,000 at the end of 12 years, what is the taxable gain on the disposal of the equipment?

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Item4 2points eBook Print References Check my workCheck My Work button is now enabled1 Item 4 The stockholders’ equity section of the balance sheet for Mann Equipment Company at December 31, Year 2, is as follows. Stockholders’ Equity Paid-in capital Preferred stock, ? par value, 6% cumulative, 100,000 shares authorized, 10,000 shares issued and outstanding$200,000 Common stock, $10 stated value, 200,000 shares authorized, 100,000 shares issued and ?? shares outstanding1,000,000 Paid-in capital in excess of par—Preferred25,000 Paid-in capital in excess of stated value—Common500,000 Total paid-in capital $1,725,000Retained earnings 420,000Treasury stock, 1,000 shares (13,000)Total stockholders’ equity $2,132,000 Note: The market value per share of the common stock is $42, and the market value per share of the preferred stock is $26. Required a. What is the par value per share of the preferred stock? b. What is the dividend per share on the preferred stock? c. What is the number of common stock shares outstanding? d. What was the average issue price per share (price for which the stock was issued) of the common stock? f. If Mann Equipment Company declared a 2-for-1 stock split on the common stock, how many shares would be outstanding after the split? What amount would be transferred from the Retained Earnings account because of the stock split? Theoretically, what would be the market price of the common stock immediately after the stock split?

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Let $$ A = \begin{bmatrix} 0 & 0 & 1 & 0 \\ 1 & 0 & 0 & 0 \\ 0 & 1 & 0 & 0 \\ 0 & 0 & 0 & 1 \end{bmatrix} \begin{bmatrix} 4 & 0 & 0 & 0 \\ 0 & 2 & 0 & 0 \\ 0 & 0 & 1 & 0 \\ 0 & 0 & 0 & 0 \end{bmatrix} \begin{bmatrix} \sqrt{3}/2 & 1/2 & 0 & 0 \\ -1/2 & \sqrt{3}/2 & 0 & 0 \\ 0 & 0 & 1 & 0 \\ 0 & 0 & 0 & 1 \end{bmatrix} $$ Use what you know about SVD's to answer the following with as little calculation as possible. If you calculate this product and then answer the questions without using the provided factorization and demonstrating your understanding of the SVD you're wasting your time (and won't get many points); you'd be better off reviewing the materials on SVD's. 1. What is the rank of A? 2. Find a basis for Null A. 3. Find a basis for Col A. 4. Find all the solutions x of $$ Ax = \begin{bmatrix} 1 \\ 2 \\ 3 \\ 0 \end{bmatrix} $$ 5. Find the biggest eigenvalue of $A^TA$ and an eigenvector that corresponds to it.

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Question 19 Extreme poverty is commonly measured as those living on less than $1.90 per day. Globally, in the last few decades, the number of people in "extreme poverty" has been fairly constant as a share of global population and also in absolute number the number of people in "extreme poverty" has been falling rapidly as a share of global population but has increased in absolute number the number of people in "extreme poverty" has been fairly constant as a share of global population but has risen in absolute numbers the number of people in "extreme poverty" has been falling rapidly as a share of global population but has remained fairly constant in absolute number the number of people in "extreme poverty" has been rising rapidly as a share of global population and also in absolute number the number of people in "extreme poverty" has been falling rapidly as a share of global population and also in absolute numbers

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Is there an issue with multicollinearity in this analysis? What steps (specifically) should be taken next to get the best regression model?

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(1 point) Independent random samples, each containing 700 observations, were selected from two binomial populations. The samples from populations 1 and 2 produced 589 and 353 successes, respectively. (a) Test $H_0 : (p_1 - p_2) = 0$ against $H_a : (p_1 - p_2) \neq 0$. Use $\alpha = 0.05$ test statistic = rejection region $|z| > $ The final conclusion is A. There is not sufficient evidence to reject the null hypothesis that $(p_1 - p_2) = 0$. B. We can reject the null hypothesis that $(p_1 - p_2) = 0$ and accept that $(p_1 - p_2) \neq 0$. (b) Test $H_0 : (p_1 - p_2) = 0$ against $H_a : (p_1 - p_2) > 0$. Use $\alpha = 0.05$ test statistic = rejection region $z > $ The final conclusion is A. We can reject the null hypothesis that $(p_1 - p_2) = 0$ and accept that $(p_1 - p_2) > 0$. B. There is not sufficient evidence to reject the null hypothesis that $(p_1 - p_2) = 0$.

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7. Two moving rods of equal lengths (1.50 m) are moving as shown in the figure. The speed $v_1 = 1.20$ m/s and the speed $v_2 = 1.00$ m/s. If the magnetic field is uniform with a magnitude of 0.55 T, what is the magnitude of the average emf in the loop? 8. What is the direction of the induced current in the circuit? Counterclockwise None of these Clockwise Your previous selection is incorrect.

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(1) Please write KCL equations. If you assign m variables, you need to find additional m equations in order to solve them. (2) Please write KVL equations. If you assign n variables, you need to find additional n equations in order to solve them. (3) Pick up one method from (1) and (2) to solve Va and ib 5Ua 10 ? + 3ib 20 ? ib + 25 V Va 30 ? 2 A

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YSIS B 6 wered of Attempt all parts of the question (a) Distinguish between Quality Assurance (QA) and Quality Control (QC) and explain how they are used in the analytical laboratory. Give appropriate examples to aid in your explanation. (4 marks) (b) A laboratory routinely measures total phosphorus in soil samples. The laboratory determined the concentration of phosphorus in an inhouse reference material (IHRM) to be 33 ± 5 ppm. To assess the performance of the analytical process, the laboratory then analysed this IHRM, in duplicate, over six analytical runs. The results obtained are given in the table below: Run # 1 2 3 4 5 6 Average P 36 51 47 21 49 28 concentration (ppm) i. Determine the action and warning limits for this chart. Show your calculations. (4 marks) ii. Set up a Shewhart Chart and plot the analytical results on this chart. Upload an image of this chart with your answer. (4 marks) iii. What action(s), if any, should be taken by the laboratory manager as a result of the data? Give reasons for your recommendation(s). (3 marks) BEE ? USX x² AV 0:00 AM

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A 1:25 scale model of a yacht is to be tested in a towing tank of sea water. Equating for model and prototype, the test velocity for the model is found to be 5 times the velocity of the prototype.

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