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[" In an energy recycling process,"x_(g)" of steam at "100^(@)C" becomes water at "100^(@)C" which converts Ygo "],[" into water at "100^(@)C" .The ratio "x" Y will be "m times U]

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In an energy recycling process, X g of steam at 100^(@) C becomes water at 100^(@) C which converts Y g of ice at 0^(@) C into water at 100^(@) C. The ratio of X/Y will be

In an energy recycling process, X g of steam at 100^(@)C becomes water at 100^(@)C which converts Y g of ice at 0^(@)C into water at 100^(@)C . The ratio of X/Y will be (specific heat of water ="4200" J kg"^(-1)K, specific latent heat of fusion =3.36xx10^(5)"J kg"^(-2) , specific latent heat of vaporization =22.68xx10^(5)" J kg"^(-1) )

In an energy recycling process, X g of steam at 100^(@)C becomes water at 100^(@)C which converts Y g of ice at 0^(@)C into water at 100^(@)C . The ratio of X/Y will be (specific heat of water ="4200" J kg"^(-1)K, specific latent heat of fusion =3.36xx10^(5)"J kg"^(-2) , specific latent heat of vaporization =22.68xx10^(6)" J kg"^(-1) )

Why does steam at 100^@C cause more harm to the skin than water at 100^@C ?

If there is no heat loss, the heat released by the condensation of x gram of steam at 100^@C into water at 100^@C can be used to convert y gram of ice at 0^@C into water at 100^@C . Then the ratio of y:x is nearly [Given L_l = 80 cal//gm and L_v= 540 cal//gm ]

If there is no heat loss, the heat released by the condensation of x gram of steam at 100^@C into water at 100^@C can be used to convert y gram of ice at 0^@C into water at 100^@C . Then the ratio of y:x is nearly [Given L_l = 80 cal//gm and L_v= 540 cal//gm ]

When x grams of steam at 100^(@)C is mixed with y grams of ice at 0^(@)C , we obtain (x + y) grams of water at 100^(@)C . What is the ratio y//x ?

Compared to a burn due to water at 100^(@)C , a burn due to steam at 100^(@)C is