a one-page essay about your play development. “The inherent purpose of any toy has always been to entertain or occupy a child. But toys are also frequently used in other ways‚ such as educating children or teaching them about important rituals. No matter their purpose‚ toys are an important influence on the emotional‚ mental‚ and physical development of children.”(Microsoft Encarta 2009) Toys may vary from dolls‚ cars‚ puzzles‚ construction toys‚ board games and play sets down to simple materials
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better 1.2 Asset Utilisation 1.2.1 TA TURN= x100 =18.27% x100 =19.45% Higher the better 1.2.2 Accounts recievable =8.52 times =8.51 times = 42.84 days =42.89 days Shorter the better 1.2.3 Inventory Turnover = 14.37 times = 15.38 times Higher the better =25.40 days =23.73 days 1.2.4 Accounts Payable Days = 1.16 times = 1.36 times Higher the better = 314.66 days = 268.38 days 1.2.5 Cash Conversion Cycle Collection days + inventory days – payment days 42
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Case Scenario: Big Time Toymaker Case Scenario: Big Time Toymaker 1. At what point‚ if ever‚ did the parties have a contract? While both parties did have an oral agreement they did not have a contract in place. In the case scenario they also agreed to have Chou memorialize their agreement. In the original negotiating contract it stated that a distribution agreement or contract must be in writing. Although Chou received an email from a BTT manager he assumed that BTT wanted to draft the agreement
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CULINARY CALCULATIONS The Standardized Recipe The standardized recipe is the hallmark of the foodservice industry today. The information contained in the standardized recipe ensures that a consistent product is always served to the guest. A consistent product means the look‚ taste‚ texture‚ and portion size of the menu item is the same each time the item is prepared and served‚ regardless of who is in the kitchen on a given day. Each standardized recipe has a specific yield‚ which can be increased
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Experiential Project Retailer: Toys Toys Toys Location: Scarborough Town Center Contact Person: Boots (Nickname) Phone Number: 416-290-1959 Samantha Lavigne 822631248 MKTG222-102 Instructor: Kathleen A. Leslie Due Date: February 1‚ 2012 Toys Toys Toys Toys Toys Toys is a retailer that that sells a wide assortment of toys which is amid to children as young as infants‚ to puzzles for adults. They have been around since 1990‚ and their retail strategy is to find toys that no other retailer
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Date and Observations: I’ll send you the picture by text message: (561-542-5608) Calculations: 1. Write the balanced equation for the reaction conducted in this lab‚ including appropriate phase symbols. Mg(s) + 2HCl(aq) --> H2(g) + MgCl2(aq) 2. Determine the partial pressure of the hydrogen gas collected in the gas collection tube. The partial pressure of the hydrogen gas is 1.07 atm 3. Calculate the moles of hydrogen gas collected. pv=mrt ; n= .0013mol of hydrogen gas 4. If magnesium was
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Many nurses are weak with drug calculations of all sorts. This article will help to review the major concepts related to drug calculations‚ help walk you through a few exercises‚ and provide a few exercises you can perform on your own to check your skills. There are many reference books available to review basic math skills‚ if you find that you have difficulty with even the basic conversion exercises. Common Conversions: 1 Liter = 1000 Milliliters 1 Gram = 1000 Milligrams 1 Milligram = 1000
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Sample Calculations I-Beam (S8x18.4) Dimensions: D= 8 in; h= 7.148 in; bf= 4.001 in; tw= 0.271in; tf= 0.426in; L (length of the beam) =18.4 in I= (bf*D3 – h3 (bf – tw))/12= 57.6 in4; E (Referenced value of Young’s modulus) = 29X106 psi Theoretical Strain: ε= σ/E= (M*y)/(E*I) P = load a = distance from support to the applied load (48 in) y = distance from neutral axis to the extreme element in y-direction The sing in the theoretical strain (±) determines if the strain is in compression
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CALCULATIONS Determining the amount Limiting Reagent used. nlimiting reagent = Molarity x Volume or Mass / Molar Mass Example: Limiting reagent is 5mL of 1.0 M HCl nlimiting reagent = Molarity x Volume nlimiting reagent = (1.0 [mol/L]) x 0.005 [L]) = 0.005 mol Determining the qrxn and qcal. qrxn + qcal = 0 -qrxn = qcal qrxn = ΔHrxn x nlimiting reagent qcal = Ccal ΔT qrxn = - Ccal ΔT + mcsolid ΔT (note: only if there is a precipitate formed in the reaction)
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POWER CALCULATION Power is the quantity work has to do with a force causing a displacement. It is the rate at which work is done. (http://www.physicsclassroom.com/class/energy/u5l1e.cfm) We can calculate power with using the following equation. In this experiment I calculated my power with Power (watt)=mass (kg) *gravitational acceleration (m/s2)*height(m)/time (s) I made the experiment with my controller for getting more reliable datas.I calculated my power with cliambing upstairs and
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