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1.In a certain department of a factory there are two shops. Total departmental overheads for a year are `1,20,000 and the estimated number of direct

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1.In a certain department of a factory there are two shops. Total departmental overheads for a year are `1,20,000 and the estimated number of direct labour hour is 24,000 (10 men employed for 48 hours per week during 50 weeks in the year). From the particulars given below calculate the prime cost and works cost of a work order No. 54 which passes through both shops:

(1) Material consumed `1,000.

(2) Direct labor hours shop A -8hrs at '6.00 per hour

Shop B-5hrs 7.50 per hour

3) Works overheads are to be levied by means of a direct hour rate

2.How can consumer satisfaction be measured using perspectives of financial and non-financial measures.

3.What is just in time technique for managerial accounting.

4.How do you measure impact of managerial control on employees behavior

5.What are some alternative methods of measuring value of intangible assets

6.What impacts do managerial accounting for operation managers have in decision making and planning.

7.Discuss the need of database logical structures and their significance in effective management of database.

8.Why are retained earnings not distributed to shareholders in a public company.

9.State and explain when a company should report a balanced sheet

10.Why is volume a totally independent variable from price in the market

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2. -/1 points My Notes . Ask Your Teacher The figure below shows, in cross section, three solid cylinders, each of length L and uniform charge Q. Concentric with each cylinder is a cylindrical Gaussian surface, with all three surfaces having the same radius. Cylinder Gaussian surface (a) (6) (c) Rank the Gaussian surfaces according to the electric field at any point on the surface, greatest first. (Use only '>' or '=' symbols. If any elements are equal, show their equality in alphabetic order - for example: a>b=c.) Additional MaterialsPart I. Special Types of Parametrizations. (a) Suppose a surface is given as the graph of the bivariate function z = f (x, y). The simplest way to form a parametrization from this information is to set o(x, y) = (x, y, f(x, y)). Find of , , , and N = 0, x0. Next, consider the curve y(x) = (x, x, f(x, x)), and verify y = dy lies in dx the plane determined by o, and o,. (b) Another special case is when a curve z = f(r) is revolved about the z-axis, forming a surface of revolution. We use polar coordinates for x and y, and set o(r, 0) = (rcos0, rsin0, f(r)). Find o, , , and N =0, x0,, and then verify o, Lo, (use a dot product). This means a surface of revolution always gives what is called a triply orthogonal system. (c) What condition on f(x, y) will make the system in part (a) triply orthogonal

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