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What amount of heat must be supplied to 35 Gg of oxygen at room temperature to raise its tempreature by `80^(@)C` at constant voume (moleucalr mass of oxygen is 32 and R= 8.3 j `mol^(-1) K^(-1))`

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What amount of heat must be supplied to 35 g of oxygen at room temperature to raise its temperature by 80^(@)C at constant volume (molecular mass of oxygen is 32 and R= 8.3 j mol^(-1) K^(-1)) a) 1.52 KJ b) 3.23 KJ c) 1.81 KJ d) 1.62 KJ

The amount of heat that must be supplied to 35 g of oxgen at room temperature to raise its temperature by 80^(@) C at constant volume is (Molecular mass of oxygen is 32 and R = 8.3 J mol^(-1) K^(-1) )

The amount of heat supplied to 4xx10^(-2) kg of nitrogen at room temperature to rise its temperature by 50^(@)C at constant pressure is (Molecualr mass of nitrogen is 28 and R= 8.3 J mol^(-1)K^(-1))

The amount of heat supplied to 4xx10^(-2) kg of nitrogen at room temperature to rise its temperature by 50^(@)C at constant pressure is (Molecualr mass of nitrogen is 28 and R= 8.3 J mol^(-1)K^(-1))

What amount of heat must be supplied to 2xx10^(-2)Kg of nitrogen at room temperature to rise its temperature by 45^(@)C at constant pressure? Given molecular mass of nitrogen is 28 and R=8.3J mol e^(-1)K^(-1)

What amount of heat must be supplied to 2xx10^(-2)Kg of nitrogen at room temperature to rise its temperature by 45^(@)C at constant pressure? Given molecular mass of nitrogen is 28 and R=8.3J mol e^(-1)K^(-1)

What amount of heat must be supplied to 2.0xx10^(-2) kg of nitrogen (at room temperature) to raise its temperature by 45^@ C at constant pressure ? (Molecular mass of N_2 =28 , R=8.3 J mol^(-1) K^(-1) ).

What amount of heat must be supplied to 2.0 xx 10^-2 kg of nitrogen (at room temperature) to raise its temperature by 45 ^@C at constant pressure ? (Molecular mass of N_2 = 28, R = 8.3 J mol^-1 K^-1. )

What amount of heat must be supplied to 2.0 × 10^-2 kg of nitrogen (at room temperature) to raise its temperature by 45°C at constant pressure? (molecular mass of N_2=28 , R=8.3Jmol^-1K^-1 )