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The Quantum of Mass, The Quantum of Time and The Quantum of Length
THE FUNDAMENTAL QUANTUM-COSMOLOGICAL QUANTITIES. By Louis Nielsen Treatise: http://www.rostra.dk/louis THE QUANTUM OF ENERGY. THE QUANTUM OF MASS. The actual smallest unit of energy, the 'quantum of energy', E(min) is given by: (1) E(min) = h* f(min) = (h/T) In equation (1) h = 6.63*10^(-34) J*s is Planck's constant. The minimum frequency f(min) is determined by the actual age T of the Universe: (2) f(min) = (1/T) With the value of the actual age T of the Universe of about T = 4.4*10^17 sec the magnitude of the actual 'quantum of energy' is: (3) E(min) = 1.5*10^(-51) joule The 'quantum of energy' corresponds to a 'quantum of mass' m given by: (4) m = E(min)/(c^2) = 1.7*10^(-68) kg In equation (4) c = 3*10^8 m/s is the velocity of light. The 'quantum of mass' is the mass of the 'quantum of matter' a matter- particle I have given the name Uniton, the actual unit-particle in the Universe, the true atom. (You can read more in my treatise). THE QUANTUM OF TIME AND THE QUANTUM OF LENGTH. The smallest time-interval, the 'quantum of time' t is given by the relation: (5) h*f(max) = (h/t) = M*c^2 In equation (5) M is the total mass of the Universe with a magnitude of about M = 1.6*10^60 kg (please see my articles). The greatest frequency f(max) corresponds to the smallest period of time t which define the 'quantum of time' t. M*c^2 is equal to the total energy in the Universe. An interpretation of the relation (5): The maximum frequency f(max) could be the frequency of the cosmic embryonic matter-quantum (The Cosmic Embryoton) from which the Universe came into existence? From (5) wee get for the 'quantum of time' t: (6) t = h/(M*c^2) = 4.6*10^(-111) sec The 'quantum of length' d is defined by: (7) d = c*t = 1.4*10^(-102) meter All quantum-physical quantities can be defined and derived from the most basic and fundamental quantum-quantities: The 'quantum of mass' m, the 'quantum of time' t and the 'quantum of length' d. Fundamentally the processes in the Universe are quantum-mechanical and all physical quantities must be quantized. You can read more in my treatise. Best regards Louis Nielsen Denmark http://www.rostra.dk/louis |
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The Quantum of Mass, The Quantum of Time and The Quantum of Length
wrote in message ups.com... THE FUNDAMENTAL QUANTUM-COSMOLOGICAL QUANTITIES. By Louis Nielsen Treatise: http://www.rostra.dk/louis THE QUANTUM OF ENERGY. THE QUANTUM OF MASS. The actual smallest unit of energy, the 'quantum of energy', E(min) is given by: (1) E(min) = h* f(min) = (h/T) I again ask you why you keep saying your conjectures are facts? No known physical laws put a lower limit an amounts of energy. Such is purely a conjecture on your part. Bill In equation (1) h = 6.63*10^(-34) J*s is Planck's constant. The minimum frequency f(min) is determined by the actual age T of the Universe: (2) f(min) = (1/T) With the value of the actual age T of the Universe of about T = 4.4*10^17 sec the magnitude of the actual 'quantum of energy' is: (3) E(min) = 1.5*10^(-51) joule The 'quantum of energy' corresponds to a 'quantum of mass' m given by: (4) m = E(min)/(c^2) = 1.7*10^(-68) kg In equation (4) c = 3*10^8 m/s is the velocity of light. The 'quantum of mass' is the mass of the 'quantum of matter' a matter- particle I have given the name Uniton, the actual unit-particle in the Universe, the true atom. (You can read more in my treatise). THE QUANTUM OF TIME AND THE QUANTUM OF LENGTH. The smallest time-interval, the 'quantum of time' t is given by the relation: (5) h*f(max) = (h/t) = M*c^2 In equation (5) M is the total mass of the Universe with a magnitude of about M = 1.6*10^60 kg (please see my articles). The greatest frequency f(max) corresponds to the smallest period of time t which define the 'quantum of time' t. M*c^2 is equal to the total energy in the Universe. An interpretation of the relation (5): The maximum frequency f(max) could be the frequency of the cosmic embryonic matter-quantum (The Cosmic Embryoton) from which the Universe came into existence? From (5) wee get for the 'quantum of time' t: (6) t = h/(M*c^2) = 4.6*10^(-111) sec The 'quantum of length' d is defined by: (7) d = c*t = 1.4*10^(-102) meter All quantum-physical quantities can be defined and derived from the most basic and fundamental quantum-quantities: The 'quantum of mass' m, the 'quantum of time' t and the 'quantum of length' d. Fundamentally the processes in the Universe are quantum-mechanical and all physical quantities must be quantized. You can read more in my treatise. Best regards Louis Nielsen Denmark http://www.rostra.dk/louis |
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The Quantum of Mass, The Quantum of Time and The Quantum of Length
On 18 Okt., 01:58, "Bill Hobba" wrote:
wrote in message ups.com... THE FUNDAMENTAL QUANTUM-COSMOLOGICAL QUANTITIES. By Louis Nielsen Treatise: http://www.rostra.dk/louis THE QUANTUM OF ENERGY. THE QUANTUM OF MASS. The actual smallest unit of energy, the 'quantum of energy', E(min) is given by: (1) E(min) = h* f(min) = (h/T) I again ask you why you keep saying your conjectures are facts? No known physical laws put a lower limit an amounts of energy. Such is purely a conjecture on your part. Bill Bill, In my opinion, in principle, there exists a smallest quantum of energy given by E(min) = (h/T) where h is Planck's constant and T is the actual greatest interval of time equal to the time interval measured from the Universe came into existence and to now. T is so equal to the actual age of the Universe. Best regards Louis Nielsen Denmark In equation (1) h = 6.63*10^(-34) J*s is Planck's constant. The minimum frequency f(min) is determined by the actual age T of the Universe: (2) f(min) = (1/T) With the value of the actual age T of the Universe of about T = 4.4*10^17 sec the magnitude of the actual 'quantum of energy' is: (3) E(min) = 1.5*10^(-51) joule The 'quantum of energy' corresponds to a 'quantum of mass' m given by: (4) m = E(min)/(c^2) = 1.7*10^(-68) kg In equation (4) c = 3*10^8 m/s is the velocity of light. The 'quantum of mass' is the mass of the 'quantum of matter' a matter- particle I have given the name Uniton, the actual unit-particle in the Universe, the true atom. (You can read more in my treatise). THE QUANTUM OF TIME AND THE QUANTUM OF LENGTH. The smallest time-interval, the 'quantum of time' t is given by the relation: (5) h*f(max) = (h/t) = M*c^2 In equation (5) M is the total mass of the Universe with a magnitude of about M = 1.6*10^60 kg (please see my articles). The greatest frequency f(max) corresponds to the smallest period of time t which define the 'quantum of time' t. M*c^2 is equal to the total energy in the Universe. An interpretation of the relation (5): The maximum frequency f(max) could be the frequency of the cosmic embryonic matter-quantum (The Cosmic Embryoton) from which the Universe came into existence? From (5) wee get for the 'quantum of time' t: (6) t = h/(M*c^2) = 4.6*10^(-111) sec The 'quantum of length' d is defined by: (7) d = c*t = 1.4*10^(-102) meter All quantum-physical quantities can be defined and derived from the most basic and fundamental quantum-quantities: The 'quantum of mass' m, the 'quantum of time' t and the 'quantum of length' d. Fundamentally the processes in the Universe are quantum-mechanical and all physical quantities must be quantized. You can read more in my treatise. Best regards Louis Nielsen Denmark http://www.rostra.dk/louis- Skjul tekst i anførselstegn - - Vis tekst i anførselstegn - |
#4
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The Quantum of Mass, The Quantum of Time and The Quantum of Length
On Oct 18, 2:42 pm, wrote:
On 18 Okt., 01:58, "Bill Hobba" wrote: wrote in message oups.com... THE FUNDAMENTAL QUANTUM-COSMOLOGICAL QUANTITIES. By Louis Nielsen Treatise: http://www.rostra.dk/louis THE QUANTUM OF ENERGY. THE QUANTUM OF MASS. The actual smallest unit of energy, the 'quantum of energy', E(min) is given by: (1) E(min) = h* f(min) = (h/T) I again ask you why you keep saying your conjectures are facts? No known physical laws put a lower limit an amounts of energy. Such is purely a conjecture on your part. Bill Bill, In my opinion, in principle, there exists a smallest quantum of energy given by E(min) = (h/T) where h is Planck's constant and T is the actual greatest interval of time equal to the time interval measured from the Universe came into existence and to now. T is so equal to the actual age of the Universe. Best regards Louis Nielsen Denmark In equation (1) h = 6.63*10^(-34) J*s is Planck's constant. The minimum frequency f(min) is determined by the actual age T of the Universe: (2) f(min) = (1/T) With the value of the actual age T of the Universe of about T = 4.4*10^17 sec the magnitude of the actual 'quantum of energy' is: (3) E(min) = 1.5*10^(-51) joule The 'quantum of energy' corresponds to a 'quantum of mass' m given by: (4) m = E(min)/(c^2) = 1.7*10^(-68) kg In equation (4) c = 3*10^8 m/s is the velocity of light. The 'quantum of mass' is the mass of the 'quantum of matter' a matter- particle I have given the name Uniton, the actual unit-particle in the Universe, the true atom. (You can read more in my treatise). THE QUANTUM OF TIME AND THE QUANTUM OF LENGTH. The smallest time-interval, the 'quantum of time' t is given by the relation: (5) h*f(max) = (h/t) = M*c^2 In equation (5) M is the total mass of the Universe with a magnitude of about M = 1.6*10^60 kg (please see my articles). The greatest frequency f(max) corresponds to the smallest period of time t which define the 'quantum of time' t. M*c^2 is equal to the total energy in the Universe. An interpretation of the relation (5): The maximum frequency f(max) could be the frequency of the cosmic embryonic matter-quantum (The Cosmic Embryoton) from which the Universe came into existence? From (5) wee get for the 'quantum of time' t: (6) t = h/(M*c^2) = 4.6*10^(-111) sec The 'quantum of length' d is defined by: (7) d = c*t = 1.4*10^(-102) meter All quantum-physical quantities can be defined and derived from the most basic and fundamental quantum-quantities: The 'quantum of mass' m, the 'quantum of time' t and the 'quantum of length' d. Fundamentally the processes in the Universe are quantum-mechanical and all physical quantities must be quantized. You can read more in my treatise. Best regards Louis Nielsen Denmark http://www.rostra.dk/louis-Skjul tekst i anførselstegn - - Vis tekst i anførselstegn - what about the quantum of the quantum? |
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