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Sunday, February 28, 2010. Question for temperature and heat. 1 The equivalent of a glass of water (that is, 270 g of liquid) at 20.0 °C receives 1000 cal from a candle flame. Assuming that all the energy goes into the water without any losses, what is the final temperature of the liquid? Q = 1000 cal = cm( - ). Q = (1.00 cal/g∙C˚)(270 g)( - 20.0 ). 1000) /( 1.00 cal/g∙C˚)(270 g) 20.0˚C = 23.7. Given : cu, m = 0.50 kg,. 8710;T = -100 K. Q = m∆T. 390 J/kg∙K)(0.50 kg)(-100 K). Given : water, = 0.250 kg.

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beststudentUTHM | beststudentuthm.blogspot.com Reviews
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Sunday, February 28, 2010. Question for temperature and heat. 1 The equivalent of a glass of water (that is, 270 g of liquid) at 20.0 °C receives 1000 cal from a candle flame. Assuming that all the energy goes into the water without any losses, what is the final temperature of the liquid? Q = 1000 cal = cm( - ). Q = (1.00 cal/g∙C˚)(270 g)( - 20.0 ). 1000) /( 1.00 cal/g∙C˚)(270 g) 20.0˚C = 23.7. Given : cu, m = 0.50 kg,. 8710;T = -100 K. Q = m∆T. 390 J/kg∙K)(0.50 kg)(-100 K). Given : water, = 0.250 kg.
<META>
KEYWORDS
1 beststudentuthm
2 solution
3 posted by
4 group 3
5 no comments
6 data
7 q = vmδt
8 q= m dt cp
9 qmetal = qwater
10 m dt cp = m dt cp
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PAGE
beststudentuthm,solution,posted by,group 3,no comments,data,q = vmδt,q= m dt cp,qmetal = qwater,m dt cp = m dt cp,q = mcδt,q = mfusion,δt = q/mc,δl = αlδt,question 1,answer,solve for ms,question 2,by the reaction,find heat,find dt,dh = mcdt,question 3
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beststudentUTHM | beststudentuthm.blogspot.com Reviews

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Sunday, February 28, 2010. Question for temperature and heat. 1 The equivalent of a glass of water (that is, 270 g of liquid) at 20.0 °C receives 1000 cal from a candle flame. Assuming that all the energy goes into the water without any losses, what is the final temperature of the liquid? Q = 1000 cal = cm( - ). Q = (1.00 cal/g∙C˚)(270 g)( - 20.0 ). 1000) /( 1.00 cal/g∙C˚)(270 g) 20.0˚C = 23.7. Given : cu, m = 0.50 kg,. 8710;T = -100 K. Q = m∆T. 390 J/kg∙K)(0.50 kg)(-100 K). Given : water, = 0.250 kg.

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beststudentUTHM: January 2010

http://beststudentuthm.blogspot.com/2010_01_01_archive.html

Friday, January 22, 2010. The Eiffel Tower, constructed in 1889 by Alexandre Eiffel, is an impressive latticework structure made of iron. If the tower is 301m high on a 22⁰C day, how much does height decrease when the temperature cools to 0.0⁰C? 8710;L = αL. 12 × 10⁻⁶ k⁻¹)(301 m)(-22K). Heat capacity of 1.00kg of water is 4186J/K.what is the. Temperature change of the water if(a)505 J of heat is added to the system, or (b)1010 J of heat is removed? 8710;T = Q/C. 8710;T = Q/C. Calculate the radiated power.

2

beststudentUTHM: question for wave and sound

http://beststudentuthm.blogspot.com/2010/02/question-for-wave-and-sound_1849.html

Friday, February 5, 2010. Question for wave and sound. 1The processing “speed” of computer refers to the number of binary operations it can perform in one second, so it is really a frequency. If the processor of a one personal computer operates at 1.80 GHz, how much time is required for one processing cycle? 1/(180 X 109 ) cycles /s. 2humans cab hear range of frequencies from 20 to 20000Hz. To what range of wavelengths in air does this correspond (assume the sound velocity is 340 m/s)? Question for tempe...

3

beststudentUTHM: question and solution for test 1

http://beststudentuthm.blogspot.com/2010/02/question-and-solution-for-test-1.html

Tuesday, February 16, 2010. Question and solution for test 1. A pill consists of thicken oil layer 10 cm static on water at the height of 30 cm from the. Bottom part of pill. Density of oil is 600 kgm. Atm = 1.013 x 10. Pressure gauge at the interface of oil-water (point A). Absolute pressure at the bottom area of pill. A pressure rocket tank (figure 2) consists of 0.25 m. Kerosene weighted 200 kg. The pressure of upper part of kerosene is, Pa = 2.01 x 10. Density, ρ of kerosene. 200 / (0.8)(0.25). The h...

4

beststudentUTHM: area and volume question.

http://beststudentuthm.blogspot.com/2010/02/area-and-volume-question.html

Monday, February 1, 2010. Area and volume question. 1 If an anisotropic solid has coefficients of linear expansion αx, αy, and αz for three mutually perpendicular direction in the solid, what is the coefficient of volume expansion for the solid? Consider a cube, with edge parallel to X, Y, Z, of dimension L˳ at T = 0. After a change in temperature ∆T = (T-0), the dismension change to. Lx = L˳(1 αxT) Ly = L˳ (1 αyT) Lz = L˳ (1 αz T). And the volume of of the parallelopipied is. 8710;Vg = βg V ∆t. 8710;VT-...

5

beststudentUTHM

http://beststudentuthm.blogspot.com/2010/02/question-heat-and-temperature.html

Sunday, February 28, 2010. Question Heat and Temperature. 1 How many kilocalories of heat must be added to 10.0 kg of steel to raise its temperature 150°C? M = 10.0kg. ΔT = 150°C. C = 0115kcal/kg °C. Q = [(0.115)/(kcal/kg°C)](10.0kg)(150°C). 2 What is the specific heat of a substance that absorbs 2.5 x 103 joules of heat when a sample of 1.0 x 104 g of the substance increases in temperature from 10.0C to 70.0C? 25 x 103 J = (1.0 x 104 g)(70C-10C)(cp). 25 x 103 J] = cp. 10 x 104 g][70C-10C]. 00042 J = cp.

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beststudentUTHM

Sunday, February 28, 2010. Question for temperature and heat. 1 The equivalent of a glass of water (that is, 270 g of liquid) at 20.0 °C receives 1000 cal from a candle flame. Assuming that all the energy goes into the water without any losses, what is the final temperature of the liquid? Q = 1000 cal = cm( - ). Q = (1.00 cal/g∙C˚)(270 g)( - 20.0 ). 1000) /( 1.00 cal/g∙C˚)(270 g) 20.0˚C = 23.7. Given : cu, m = 0.50 kg,. 8710;T = -100 K. Q = m∆T. 390 J/kg∙K)(0.50 kg)(-100 K). Given : water, = 0.250 kg.

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