subject
Physics, 16.11.2020 22:10 tabathahasaunicorn1

Una cuerda horizontal puede transmitir una potencia máxima Una cuerda horizontal puede transmitir una potencia máxima, P (sin romperse) si por ella viaja una onda con amplitud A y frecuencia angular W. Para aumentar esta potencia máxima, un estudiante dobla la cuerda y usa esta “cuerda doble” como medio. Determine la potencia máxima que se puede transmitir a lo largo de la “cuerda doble”, si supone que la tensión en las dos hebras juntas es la misma que la tensión original en la cuerda individual.

ansver
Answers: 2

Another question on Physics

question
Physics, 22.06.2019 07:50
Calculate the ratio of h+ ions to oh– ions at a ph = 6. find the concentration of h+ ions to oh– ions listed in table b of your student guide. then divide the h+ concentration by the oh– concentration. record this calculated ratio in table a of your student guide. compare your approximated and calculated ratios of h+ ions to oh– ions at a ph = 6. are they the same? why or why not? record your explanation in table a. what is the concentration of h+ ions at a ph = 6? mol/l what is the concentration of oh– ions at a ph = 6? mol/l what is the ratio of h+ ions to oh– ions at a ph = 6? : 1
Answers: 1
question
Physics, 22.06.2019 14:00
An object resting on a table weighs 100 n. with what force is the object pushing on the table? with what force is the table pushing on the object? explain how you got your answer.
Answers: 1
question
Physics, 22.06.2019 19:00
Why do different substances have diffrent properties
Answers: 1
question
Physics, 22.06.2019 19:00
The friction of the water on a boat produces an acceleration of -10. m/s2. if the boat is traveling at 30. m/s and the motor is shut off, how long it take the boat to slow down to 5.0 m/s?
Answers: 1
You know the right answer?
Una cuerda horizontal puede transmitir una potencia máxima Una cuerda horizontal puede transmitir u...
Questions
question
Mathematics, 21.02.2020 04:08
question
English, 21.02.2020 04:08
question
Mathematics, 21.02.2020 04:10