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  2. Price optimization - Wikipedia

    en.wikipedia.org/wiki/Price_optimization

    Price optimization utilizes data analysis to predict the behavior of potential buyers to different prices of a product or service. Depending on the type of methodology being implemented, the analysis may leverage survey data (e.g. such as in a conjoint pricing analysis [7]) or raw data (e.g. such as in a behavioral analysis leveraging 'big data' [8] [9]).

  3. Markup rule - Wikipedia

    en.wikipedia.org/wiki/Markup_rule

    Since for a price-setting firm < this means that a firm with market power will charge a price above marginal cost and thus earn a monopoly rent. On the other hand, a competitive firm by definition faces a perfectly elastic demand; hence it has η = 0 {\displaystyle \eta =0} which means that it sets the quantity such that marginal cost equals ...

  4. Profit maximization - Wikipedia

    en.wikipedia.org/wiki/Profit_maximization

    If, contrary to what is assumed in the graph, the firm is not a perfect competitor in the output market, the price to sell the product at can be read off the demand curve at the firm's optimal quantity of output. This optimal quantity of output is the quantity at which marginal revenue equals marginal cost.

  5. Economic batch quantity - Wikipedia

    en.wikipedia.org/wiki/Economic_batch_quantity

    This graph should give a better understanding of the derivation of the optimal ordering quantity equation, i.e., the EBQ equation. Thus, variables Q, R, S, C, I can be defined, which stand for economic batch quantity, annual requirements, preparation and set-up cost each time a new batch is started, constant cost per piece (material, direct ...

  6. Socially optimal firm size - Wikipedia

    en.wikipedia.org/wiki/Socially_optimal_firm_size

    The firm produces at the quantity of output where marginal cost equals marginal revenue (labeled Q in the upper graph), and its per-unit economic profit is the difference between average revenue AR and average total cost ATC at that point, the difference being P minus C in the graph's notation. With firms making economic profit and with free ...

  7. Cutting stock problem - Wikipedia

    en.wikipedia.org/wiki/Cutting_stock_problem

    The optimal answer requires 73 master rolls and has 0.401% waste; it can be shown computationally that in this case the minimum number of patterns with this level of waste is 10. It can also be computed that 19 different such solutions exist, each with 10 patterns and a waste of 0.401%, of which one such solution is shown below and in the picture:

  8. Economic graph - Wikipedia

    en.wikipedia.org/wiki/Economic_graph

    A common and specific example is the supply-and-demand graph shown at right. This graph shows supply and demand as opposing curves, and the intersection between those curves determines the equilibrium price. An alteration of either supply or demand is shown by displacing the curve to either the left (a decrease in quantity demanded or supplied ...

  9. Utility maximization problem - Wikipedia

    en.wikipedia.org/wiki/Utility_maximization_problem

    If Walras's law has been satisfied, the optimal solution of the consumer lies at the point where the budget line and optimal indifference curve intersect, this is called the tangency condition. [3] To find this point, differentiate the utility function with respect to x and y to find the marginal utilities, then divide by the respective prices ...