Respuesta :
Answer:
[tex]Q = 375\,cal[/tex]
Explanation:
The quantity of heat transfered from the jellybean to the water is:
[tex]Q = \rho\cdot V \cdot c\cdot \Delta T[/tex]
[tex]Q = \left(1\,\frac{g}{cm^{3}}\right)\cdot (15\,cm^{3})\cdot \left(1\,\frac{cal}{g\cdot ^{\circ} C} \right)\cdot (25\,^{\circ}C )[/tex]
[tex]Q = 375\,cal[/tex]
Answer:
1.25 Kcal
Explanation:
The relationship between heat and temperature change is given by the equation:
[tex]H=mc_p\Delta T[/tex]
where H = heat energy (Joules, J) , m = mass of a substance (kg) , c = specific heat (units J/kg∙K) and ΔT is the change in temperature
Given that:
mass of water (m) = density of water × volume = 1g/ml × 50ml = 50 g, ΔT = 25° C and [tex]c_p[/tex] of water= 4.18J/g/°C
Therefore H = 50g × 4.18J/g/°C × 25°C = 5225 J
The heat transferred to the Jelly bean = 5225 J = 1.25 Kcal
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