Balance The Equations :- NH4OH + H3PO4 Gives (NH4)3PO4 + H2O
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Dhruv101 Dhruv101 3NH4OH + H3PO4 gives (NH4)3PO4 + 3H2O isaphilip09 isaphilip09
- 03.01.2017
- Science
- Secondary School
Dhruv101 Dhruv101 3NH4OH + H3PO4 gives (NH4)3PO4 + 3H2O isaphilip09 isaphilip09 Answer: 3NH4OH+H3PO4 gives (NH4)3PO4+3H2O
Explanation: Since in the original question the number of nitrogen atoms were not equal in both sides therefore you add the coefficient 3 in front to NH4OH to balance the number of nitrogen atoms. But doing this will change the number of oxygen atoms on both sides, therefore we should add the coefficient 3 in front of H2O. This will balance the equation.
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state the archimedes principle and write its two applications Symbol of sodium chloride 1 State & explain the principle of conservati of angular momentum? on illastration. use a Suitable Do we use it in daily life? when ouro When a pendulum swings, potential energy (PE) at the peak converts to kinetic energy (KE) at the bottom, then back to PE as it rises, demonstrating en … ergy conversion, not loss, with total mechanical energy constant in an ideal system; however, in reality, air resistance and friction transform this mechanical energy into heat and sound, causing the bob to slow down and stop, which isn't a violation but a transformation of energy to the environment (surroundings), making the pendulum-plus-air system's total energy conserved. Energy Transformation During Oscillation (Ideal Case) At Highest Point (A): Pendulum is held aside. It has maximum Potential Energy (PE) and zero Kinetic Energy (KE). Swinging Down (A to B): PE decreases as height drops, converting into increasing KE. At the lowest point (B), PE is minimum (zero), and KE is maximum. Swinging Up (B to C): KE decreases as the bob rises, converting back into PE. At the opposite highest point (C), KE is zero, and PE is maximum again. Total Energy: In an ideal, frictionless scenario, the sum of PE + KE remains constant throughout the swing, illustrating the law. Why It Stops (Real-World Case) Energy Loss: Air resistance (drag) and friction at the pivot oppose the motion, doing work against the pendulum. Conversion to Heat: This work converts the pendulum's mechanical energy into thermal energy (heat) and sound, dissipating it into the air and pivot. < >Damping< >: This gradual energy loss causes the amplitude (height of swing) to decrease until the bob stops at its resting position. Is It a Violation? No, it's not a violation: The total energy of the entire system (pendulum + air + surroundings) remains constant. The energy isn't destroyed; it's just transformed from organized mechanical energy (swinging) to disorganized thermal energy (heat) in the environment, which is still conserved energy. explain the phenomenon of total internal refraction Previous NextTừ khóa » (nh4)3po4 + H2o
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