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Photosysthesis si a bio process by which...

Photosysthesis si a bio process by which plants make energy rich molecules from low energy molecules with the help of energy from sunlight . The photosysthesis of glucose can be represented as:
`6CO_(2(g))+ 6H_(2)O_(g) + hv rarr C_(5)H_(12)O_(6(s)) + 6O_(2)(g)..........(i)`
The energy of one mole of a photon of wave lenght is known as one Einstein.
Write balanced equations for the half cell reactions corresponding to oxidation of glucose.

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To write the balanced half-cell reactions corresponding to the oxidation of glucose (C6H12O6), we will follow these steps: ### Step 1: Identify the Oxidation Reaction The oxidation reaction involves glucose being converted into carbon dioxide (CO2). In this process, glucose loses electrons. **Oxidation Reaction:** \[ C_6H_{12}O_6 (s) \rightarrow 6 CO_2 (g) + 24 H^+ + 24 e^- \] ### Step 2: Identify the Reduction Reaction The reduction reaction involves oxygen (O2) being converted into water (H2O). In this process, oxygen gains electrons. **Reduction Reaction:** \[ 6 O_2 (g) + 24 e^- + 12 H_2O (l) \rightarrow 12 H_2O (l) \] ### Step 3: Combine the Half-Reactions Now, we will combine the oxidation and reduction half-reactions to get the overall balanced equation. 1. Write the oxidation half-reaction: \[ C_6H_{12}O_6 (s) \rightarrow 6 CO_2 (g) + 24 H^+ + 24 e^- \] 2. Write the reduction half-reaction: \[ 6 O_2 (g) + 24 e^- + 12 H_2O (l) \rightarrow 12 H_2O (l) \] 3. Add the two half-reactions together: \[ C_6H_{12}O_6 (s) + 6 O_2 (g) \rightarrow 6 CO_2 (g) + 6 H_2O (l) \] ### Final Balanced Equation The final balanced equation for the oxidation of glucose is: \[ C_6H_{12}O_6 (s) + 6 O_2 (g) \rightarrow 6 CO_2 (g) + 6 H_2O (l) \] ---
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Photosysthesis is a bio process by which plants make energy rich molecules from low energy molecules with the help of energy from sunlight . The photosysthesis of glucose can be represented as: 6CO_(2(g))+ 6H_(2)O_(g) + hv rarr C_(5)H_(12)O_(6(s)) + 6O_(2)(g)..........(i) The energy of one mole of a photon of wave lenght is known as one Einstein. Write balanced equation for the reaction of glucose with O_(2) in which O_(2) is converted to H_(2)O

Photosysthesis si a bio process by which plants make energy rich molecules from low energy molecules with the help of energy from sunlight . The photosysthesis of glucose can be represented as: 6CO_(2(g))+ 6H_(2)O_(g) + hv rarr C_(5)H_(12)O_(6(s)) + 6O_(2)(g)..........(i) The energy of one mole of a photon of wave lenght is known as one Einstein. 48 Einsteins of 650nm are absorbed by a plant for the production of 1 mole of glucose as given in equation (i). Calculate the % efficiency for the production of glucose by photosynthsis. The energy requried for the formation of 1 mole of glucose is 2870 KJ.

Photosysthesis si a bio process by which plants make energy rich molecules from low energy molecules with the help of energy from sunlight . The photosysthesis of glucose can be represented as: 6CO_(2(g))+ 6H_(2)O_(g) + hv rarr C_(5)H_(12)O_(6(s)) + 6O_(2)(g)..........(i) The energy of one mole of a photon of wave lenght is known as one Einstein. Variation of emf of an electrochemical cell with temprature is known as the temperature coefficient of the cell .If delta(DeltaG//deltaT)_(p)=-DeltaS , calcualte the temperature coefficient fo the glucose fuel cell at 25^(@) C from the data given in 3.7.

Photosysthesis si a bio process by which plants make energy rich molecules from low energy molecules with the help of energy from sunlight . The photosysthesis of glucose can be represented as: 6CO_(2(g))+ 6H_(2)O_(g) + hv rarr C_(5)H_(12)O_(6(s)) + 6O_(2)(g)..........(i) The energy of one mole of a photon of wave lenght is known as one Einstein. Calculate the emf of this fuel cell at 25^(@) C if DeltaH^(@) and DeltaS^(@) of photosynthesis are 2.82xx10^(6) "J mol"^(-1) and -182 J"mol"^(-1) respectively.

Photosysthesis si a bio process by which plants make energy rich molecules from low energy molecules with the help of energy from sunlight . The photosysthesis of glucose can be represented as: 6CO_(2(g))+ 6H_(2)O_(g) + hv rarr C_(5)H_(12)O_(6(s)) + 6O_(2)(g)..........(i) The energy of one mole of a photon of wave lenght is known as one Einstein. A glucose fuel cell was designed to generate 4000 Watts which was used to heat of 5mxx 5mxx 3m dimensions . The room is perfectly insulated and no heat flows out of the room Calculate the time needed to increase the temperature of the room by 20^(@)C , if the room was initially at 10^(@)C and 1 atm pressure . Assume that the air in the room behaves like an ideal gas and its molar heat capacity is 2.5R.

Photosysthesis si a bio process by which plants make energy rich molecules from low energy molecules with the help of energy from sunlight . The photosysthesis of glucose can be represented as: 6CO_(2(g))+ 6H_(2)O_(g) + hv rarr C_(5)H_(12)O_(6(s)) + 6O_(2)(g)..........(i) The energy of one mole of a photon of wave lenght is known as one Einstein. Heats of combustion of graphite and hydrogen at 298K are -393.5 KJ"mol"^(-1) and -285.8 KJ"mol"^(-1) respectively. If on combustion 1 g of glucose releases 15.58 KJ of energy , Calcualate the heat of formation of glucose at 298 K.

Photosysthesis is a bio process by which plants make energy rich molecules from low energy molecules with the help of energy from sunlight . The photosysthesis of glucose can be represented as: 6CO_(2(g))+ 6H_(2)O_(g) + hv rarr C_(5)H_(12)O_(6(s)) + 6O_(2)(g)..........(i) The energy of one mole of a photon of wave lenght is known as one Einstein. On an average , solar radiation 7 xx 10^(14) kg of glucose annually on earth . Calculate the annual decrease in the CO_(2) level in the troposphere in ppm , due to photosynthesis. (1 ppm=1 g of CO_(2) per 10^(3) kg of air in troposhere). Assume that the total mass of air envolope surrounding the earth is 5.0 xx 10^(15) kg and 80% of its is present in the tropsphere.

Photosynthesis is a bio process by which plants make energy rich molecules from low energy molecules with the help of energy from sunlight . The photosynthesis of glucose can be represented as: 6CO_(2(g))+ 6H_(2)O_(g) + hv rarr C_(5)H_(12)O_(6(s)) + 6O_(2)(g)..........(i) The energy of one mole of a photon of wave lenght is known as one Einstein. A weight lifter lifts a weight of 160Kg through of 2.4 m . Assuming all the energy required for this task is obtained by the combustion of glucose , calculate the change in the current produced by a sample of blood of the weight lifter . Same volume of blood (5mL) is tested both before and after lifting the weight and the total volume of blood in his body is 5L. (1 g of glucose releases 15.58 KJ of energy )

The inversion of cane sugar is represented by C_(12)H_(22)O_(11) + H_(2)O rarr C_(6)H_(12)O_(6) + C_(6)H_(12)O_(6) It is a reaction of

How many moles are represented by 100 g of glucose, C_6H_12O_6 ​ .

RESONANCE ENGLISH-THERMODYNAMICS-exercise-3 part-III Advanced level Solutions (STAGE-II)
  1. Photosysthesis is a bio process by which plants make energy rich molec...

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  2. Photosynthesis is a bio process by which plants make energy rich molec...

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  3. Photosysthesis si a bio process by which plants make energy rich molec...

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  4. Photosysthesis si a bio process by which plants make energy rich molec...

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  5. Photosysthesis si a bio process by which plants make energy rich molec...

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  6. Photosysthesis si a bio process by which plants make energy rich molec...

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  7. The rapid depletion of fossil fuels has inspired extensive research ...

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  8. The rapid depletion of fossil fuels has inspired extensive research ...

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  9. The rapid depletion of fossil fuels has inspired extensive research ...

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  10. The rapid depletion of fossil fuels has inspired extensive research ...

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  11. One method to produce hydrogen on an industrial on an industrial scale...

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  12. One method to produce hydrogen on an industrial on an industrial scale...

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  13. A heat engine is a system that converts heat into mechanical work. A h...

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  14. A heat engine is a system that converts heat into mechanical work. A h...

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  16. Oxygen is of vital importance for all of us . Oxygen enters the body v...

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