Work–Energy and Kinetic Energy Equation & Work Speed (WS = UV) Prepared, Verified, and Formatted by Mokhdum Azam Mashrafi (Mehadi Laja)

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Main Author: Mokhdum Azam Mashrafi, Mokhdum Azam Mashrafi
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author Mokhdum Azam Mashrafi, Mokhdum Azam Mashrafi
author_facet Mokhdum Azam Mashrafi, Mokhdum Azam Mashrafi
contents <p>Abstract<br>This paper revisits fundamental concepts of kinetic and work-energy relationships and introduces a new formulation, the Work-Speed Equation (WS = U × V), challenging the classical assumption of uniform acceleration in the universe.<br><br></p> <p> Introduction<br>Traditional physics defines kinetic energy as E = ½ m v² and work as W = ½ m v². These equations presuppose uniform acceleration and velocity, yet such uniformity does not exist in natural phenomena. The proposed model, “Work-Speed = Utter Energy × Velocity,” extends the relationship between energy and motion to account for real-world variability.<br><br>WORK–ENERGY AND KINETIC ENERGY EQUATION<br><br>Physics textbooks state that E = ½ m v² and Work = ½ m v². However, these equations assume uniform acceleration and velocity. In reality, nothing in the universe is uniform.<br><br>FIRST PROOF<br>The kinetic energy or work (energy) equation is: W = F × dx<br>Then, W = ma × dx, W = (m × v / t) × dx, W = m × v × (dx / t)<br>Since v = dx / t, W = m v²<br>Thus, Kinetic Energy or Work or Energy Equation = Force × Distance.<br><br>SECOND PROOF<br>We know that Force = Mass × Acceleration.<br>So, F = m × a, and since a = v / t, F = (m × v) / t or F = (m × d) / t².<br>Since W = F × d, W = (m × d²) / t², W = m × (d / t)² and as v = d / t, W = m v².</p> <p>Or</p> <p><sup>We Know</sup>    Force=Mass*Acceleration</p> <p>F=m*a</p> <p>F=(m*v)/t where a=v/t</p> <p>F=(m*v)/t</p> <p>F={(m*d)/t}/t</p> <p>****where F=w/d     Work=Force*Distance</p> <p>Force=Work/Distance</p> <p>w/d=(m*d/t)*1/t</p> <p>w/d=m*d/t<sup>2</sup></p> <p>w*t<sup>2</sup>=m*d<sup>2</sup></p> <p>w=(m*d<sup>2</sup>)/t<sup>2</sup></p> <p>w=m*(d<sup>2</sup>/t<sup>2</sup>)</p> <p>w=m*(d/t)<sup>2</sup></p> <p>w=m*(v)<sup>2        </sup>where v=d/t</p> <p>w=m*v<sup>2        </sup>(Prove)Here d=Distance,t=Time,V=Velocity,a=Acceleration</p> <p><br><br>THIRD PROOF<br>Again, W = F × dx, W = ma × dx = m (v / t) × dx = m v (dx / t).<br>Substituting Δm (delta mass) and Δt (delta time) terms, W = M × V × (Δm / Δt).<br>Since Δm = V × Δt, we get W = m v², confirming the same result.</p> <p>Or</p> <div> <p>W=F*Dx...Then..W=ma*dx...W=m*v/t*dx...Now....W=M*V*Dx/t..W=M* Δm (Delta Mass)/Δt (Delta Time)*dx/t...Now..W=M*V* Δm (Delta Mass)/Δt</p> <p> </p> <p>Now...W=M*V* Δm/Δt…….W=MVΔm/Δm/V……..W=mv<sup>2</sup>(SQUARE)……….(Prove)</p> <p> </p> </div> <p>HERE, Δm (Delta Mass)= V× Δt……And….Δt=Δm/V</p> <p> </p> <p>Δm = ρ × A × V × Δt</p> <p>This is valid for liquids, gases, and solid granular materials.</p> <p>·        V = Absorption velocity</p> <p>·        A = Cross-sectional area</p> <p>·        ρ = Density of absorbed medium</p> <p>·        Δt = Time interval</p> <p>·        Δm = Change in mass due to absorption</p> <p><br><br>Therefore, the corrected and universal equation is: W = m v² rather than ½ m v², because acceleration and velocity are not uniform anywhere in the universe.<br><br>WORK SPEED EQUATION (WS = UV)<br><br>The Work Speed equation is defined as: Work Speed = Utter Energy × Velocity (WS = UV)<br>Starting from: Work Speed = F × dx ⇒ Work Speed = ma × dx ⇒ Work Speed = (m × v / t) × dx ⇒ Work Speed = (m × dx / t) × v ⇒ Work Speed = Utter Energy × Velocity.<br>This is my most preferred and universal equation: WS = UV.<br>It applies across every scientific and natural system — humans, animals, birds, fish, planetary motion, and atomic motion in chemistry.<br><br>FOUR-FORCE ACCOMMODATION RULE<br><br>When gravitational force strengthens, other forces also strengthen: Weak Nuclear Force, Electromagnetic Force, and Strong Nuclear Force. When one weakens, all weaken.<br>If gravitational strength is Mgh / tan 90°, then increasing one angular degree increases the value by 1.135 cm. Thus, gravitational strength = 1.135 × 90.<br>Similarly, Weak Nuclear Force Strength = M × (−NB break nucleoli beta) × gh / tan 90 = 1.135 × 90<br>Electromagnetic Strength = M × EES × gh / tan 90 = 1.135 × 90<br>Strong Nuclear Force Strength = M × (+NB compact nucleoli beta) × gh / tan 90 = 1.135 × 90<br>Hence, all four forces rise or fall together..........Please check the attachment for details........<br><br><br></p>
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spellingShingle Work–Energy and Kinetic Energy Equation & Work Speed (WS = UV) Prepared, Verified, and Formatted by Mokhdum Azam Mashrafi (Mehadi Laja)
Mokhdum Azam Mashrafi, Mokhdum Azam Mashrafi
<p>Abstract<br>This paper revisits fundamental concepts of kinetic and work-energy relationships and introduces a new formulation, the Work-Speed Equation (WS = U × V), challenging the classical assumption of uniform acceleration in the universe.<br><br></p> <p> Introduction<br>Traditional physics defines kinetic energy as E = ½ m v² and work as W = ½ m v². These equations presuppose uniform acceleration and velocity, yet such uniformity does not exist in natural phenomena. The proposed model, “Work-Speed = Utter Energy × Velocity,” extends the relationship between energy and motion to account for real-world variability.<br><br>WORK–ENERGY AND KINETIC ENERGY EQUATION<br><br>Physics textbooks state that E = ½ m v² and Work = ½ m v². However, these equations assume uniform acceleration and velocity. In reality, nothing in the universe is uniform.<br><br>FIRST PROOF<br>The kinetic energy or work (energy) equation is: W = F × dx<br>Then, W = ma × dx, W = (m × v / t) × dx, W = m × v × (dx / t)<br>Since v = dx / t, W = m v²<br>Thus, Kinetic Energy or Work or Energy Equation = Force × Distance.<br><br>SECOND PROOF<br>We know that Force = Mass × Acceleration.<br>So, F = m × a, and since a = v / t, F = (m × v) / t or F = (m × d) / t².<br>Since W = F × d, W = (m × d²) / t², W = m × (d / t)² and as v = d / t, W = m v².</p> <p>Or</p> <p><sup>We Know</sup>    Force=Mass*Acceleration</p> <p>F=m*a</p> <p>F=(m*v)/t where a=v/t</p> <p>F=(m*v)/t</p> <p>F={(m*d)/t}/t</p> <p>****where F=w/d     Work=Force*Distance</p> <p>Force=Work/Distance</p> <p>w/d=(m*d/t)*1/t</p> <p>w/d=m*d/t<sup>2</sup></p> <p>w*t<sup>2</sup>=m*d<sup>2</sup></p> <p>w=(m*d<sup>2</sup>)/t<sup>2</sup></p> <p>w=m*(d<sup>2</sup>/t<sup>2</sup>)</p> <p>w=m*(d/t)<sup>2</sup></p> <p>w=m*(v)<sup>2        </sup>where v=d/t</p> <p>w=m*v<sup>2        </sup>(Prove)Here d=Distance,t=Time,V=Velocity,a=Acceleration</p> <p><br><br>THIRD PROOF<br>Again, W = F × dx, W = ma × dx = m (v / t) × dx = m v (dx / t).<br>Substituting Δm (delta mass) and Δt (delta time) terms, W = M × V × (Δm / Δt).<br>Since Δm = V × Δt, we get W = m v², confirming the same result.</p> <p>Or</p> <div> <p>W=F*Dx...Then..W=ma*dx...W=m*v/t*dx...Now....W=M*V*Dx/t..W=M* Δm (Delta Mass)/Δt (Delta Time)*dx/t...Now..W=M*V* Δm (Delta Mass)/Δt</p> <p> </p> <p>Now...W=M*V* Δm/Δt…….W=MVΔm/Δm/V……..W=mv<sup>2</sup>(SQUARE)……….(Prove)</p> <p> </p> </div> <p>HERE, Δm (Delta Mass)= V× Δt……And….Δt=Δm/V</p> <p> </p> <p>Δm = ρ × A × V × Δt</p> <p>This is valid for liquids, gases, and solid granular materials.</p> <p>·        V = Absorption velocity</p> <p>·        A = Cross-sectional area</p> <p>·        ρ = Density of absorbed medium</p> <p>·        Δt = Time interval</p> <p>·        Δm = Change in mass due to absorption</p> <p><br><br>Therefore, the corrected and universal equation is: W = m v² rather than ½ m v², because acceleration and velocity are not uniform anywhere in the universe.<br><br>WORK SPEED EQUATION (WS = UV)<br><br>The Work Speed equation is defined as: Work Speed = Utter Energy × Velocity (WS = UV)<br>Starting from: Work Speed = F × dx ⇒ Work Speed = ma × dx ⇒ Work Speed = (m × v / t) × dx ⇒ Work Speed = (m × dx / t) × v ⇒ Work Speed = Utter Energy × Velocity.<br>This is my most preferred and universal equation: WS = UV.<br>It applies across every scientific and natural system — humans, animals, birds, fish, planetary motion, and atomic motion in chemistry.<br><br>FOUR-FORCE ACCOMMODATION RULE<br><br>When gravitational force strengthens, other forces also strengthen: Weak Nuclear Force, Electromagnetic Force, and Strong Nuclear Force. When one weakens, all weaken.<br>If gravitational strength is Mgh / tan 90°, then increasing one angular degree increases the value by 1.135 cm. Thus, gravitational strength = 1.135 × 90.<br>Similarly, Weak Nuclear Force Strength = M × (−NB break nucleoli beta) × gh / tan 90 = 1.135 × 90<br>Electromagnetic Strength = M × EES × gh / tan 90 = 1.135 × 90<br>Strong Nuclear Force Strength = M × (+NB compact nucleoli beta) × gh / tan 90 = 1.135 × 90<br>Hence, all four forces rise or fall together..........Please check the attachment for details........<br><br><br></p>
title Work–Energy and Kinetic Energy Equation & Work Speed (WS = UV) Prepared, Verified, and Formatted by Mokhdum Azam Mashrafi (Mehadi Laja)
url https://doi.org/10.5281/zenodo.17756434