Question: I need help please and thank you 5. [-/1 Points] OSCOLPHYS2 14.2.P.003. ASK YOUR TEACHER PRACTICE ANOTHER To sterilize a 47.0 g glass baby bottle,
I need help please and thank you
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5. [-/1 Points] OSCOLPHYS2 14.2.P.003. ASK YOUR TEACHER PRACTICE ANOTHER To sterilize a 47.0 g glass baby bottle, we must raise its temperature from 16.0C to 94.0C. How much heat transfer (in 1) is required? Additional Materials [ eBaok 6. [-/2 Points] OSCOLPHYS2 14.2.P.006. ASK YOUR TEACHER PRACTICE ANOTHER A 0.220 kg block of a pure material is heated from 20.0C to 50.4C by the addition of 5.35 k] of energy. Calculate its specific heat (in J/(kg * C)). ( Jartkg - 0) Identify the substance of which it is most likely composed. O silver () asbestos O glass O gold O iron Additional Materials L eBook 7. [-/1 Points] OSCOLPHYS2 14.2.WA.012. ASK YOUR TEACHER PRACTICE ANOTHER You have two containers of the same liquid. The first container has 132.0 g at T1C and the second has 25 g at 21C. In order to consolidate and save space, you mix the two liquids into one container and find that the two portions have now reached an equilibrium temperature of 42.6C. What was the initial temperature of the liquid in the first container? . Yoc Additional Materials K eBook 8. [-/2 Points] OSCOLPHYSZ 14.3.P.013. ASK YOUR TEACHER PRACTICE ANOTHER (a) How much heat transfer (in keal) is required to raise the temperature of a 0.650 kg aluminum pot containing 3.00 kg of water from 40.0C to the boiling point and then boil away 0.700 kg of water? keal (b) How long (in s) does this take if the rate of heat transfer is 600 W (1 watt = 1 joule/second (1 W = 1 J/s))? s + Additional Materials L eBook __Submit Answer 9. [-/1 Points] OSCOLPHYS2 14.3.WA.024. ASK YOUR TEACHER PRACTICE ANOTHER A 0.0575 kg ice cube at 30.0C is placed in 0.497 kg of 35.0C water in a very well insulated container. What is the final temperature? The latent heat of fusion of water is 79.8 kcal/kg, the specific heat of ice is 0.50 kcal/(kg - C), and the specific heat of water is 1.00 kcal/(kg - C).
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