Manual Restart Fixed End o Oscillate O Loose End O Pulse O No End 10 cm 1 2 3 4 5 6 7 8 9 10 LI ก Slow Motion Normal Amp
Posted: Mon May 16, 2022 3:24 pm
USE ABOVE SCREENSHOT:
frequency of 3.00 Hz:
Part 2 Instructions with tables:
Data for part 2:
1.00 Hz
WITH medium tension
NOW: 2.00 Hz
with medium tension:
NOW: 3.00 Hz
with medium frequency:
DATA for 1.00 Hz with LOW tension:
AND lastly, 3.00 Hz with LOW tension:
Manual Restart Fixed End o Oscillate O Loose End O Pulse O No End 10 cm 1 2 3 4 5 6 7 8 9 10 LI ก Slow Motion Normal Amplitude 0.75 cm Frequency 1.00 Hz Damping Tension Rulers None Lots Low High 500 Timer بيلا Reference Line
Stop/pause the simulation and with the help of the on screen engaged rulers- and measure the wavelength of the wave. Enter it by typing it here (in both cm and then in converted m SI units) as : Increase the amplitude (by working with the slider that changes the value of the wave amplitude) and measure the wavelength again. Enter it here (in both cm and then in converted m SI units) as :- Does changing the amplitude have an effect on the wavelength? Write your answers here; Record (by typing in the values of) the wavelength for whichever Tension you have selected in the Table for "Frequency=1.00 Hz". The Table is here, below several listed questions. Change the frequency to 2.00 Hz and measure the wavelength again. Finally, change the frequency to 3.00Hz. Does changing the frequency have an effect on the wavelength? What is it? 1 Write your answers below;
Manual Restart Fixed End Loose End o Oscillate Pulse No End - 10 cm 1 2 5 6 7 8 9 10 3 4 | டடடட . 1 00000000 Slow Motion II Normal Amplitude 0.75 cm Frequency 2.00 Hz Damping Tension Rulers None Lots Low High Timer Reference Line
Restart Fixed End Manual Oscillate O Pulse Loose End No End T 10 cm 1 2 3 5 6 7 8 9 10 . 1 m D Slow Motion Normal Amplitude 0.75 cm Frequency 3.00 Hz Damping Tension Rulers None Lots Low High Timer Reference Line Q
Write your answers below; Now, let's try changing the Tension in the string. Do the above experiment for the other two settings for Tension. Repeat the above steps for two different tension values Tension Frequency=1.00Hz Frequency=2.00Hz Frequency=3.00 Hz High Medium Low To see what the Tension does, let's calculate the speed of the wave. The speed of the wave is the distance divided by time. The distance that the wave travels is the wavelength. The time for the wave is the Period. To find the speed we can multiply the wavelength and the frequency or:V = af. Calculate the speed for the waves for the information in the Table above and provide your detailed calculations. Write down all detailed calculations for each speed and - in the table below- type in the final numerical values of your calculations. Be careful and remember that, for full credit you need to turn in all detailed work, and not just the final numerical values in the table of data. As always, full credit is assigned for full, correct work. Frequency=1.00Hz Frequency=2.00Hz Frequency=3.00 Hz Speed High Medium Low Looking at the tables above, what does changing the Tension (to the wave) do?
4 10 cm 2 3 4 5 6 7 8 1 2 Slow Motion Normal Amplitude 0.75 cm Frequency 1.00 Hz Damping Tension Rulers None Lots Low High Timer 0 Oulu 00 Reference Line
10 cm 1 2 3 4 5 6 7 8 - 3 ปี O Slow Motion பட டடடடடப IL Normal Amplitude 0.75 cm Frequency 2.00 Hz Damping Tension > Rulers None Lots Low High Timer LO OO Reference Line
4 10 cm 1 2 3 4 5 6 7 8 Slow Motion Normal Amplitude 0.75 cm Frequency 3.00 Hz Damping Tension Rulers None Lots Low High Timer السلا OO Reference Line G
4. 10 cm 1 2 3 4 5 6 7 8 3 ງ O Slow Motion Normal Amplitude 0.75 cm Frequency 1.00 Hz Damping Tension Rulers V None Lots Low High Timer 0 LO OO Reference Line C
10 cm 2 3 4 5 6 7 8 2 Slow Motion Normal Amplitude 0.75 cm Frequency 2.00 Hz Damping Tension Rulers None Lots Low High Timer LouL OO Reference Line
4 10 cm 2 3 4 5 6 7 8 כ ก 2 Slow Motion Normal LUI Amplitude 0.75 cm Frequency 3.00 Hz Damping Tension Rulers None Lots Low High SOO | Timer o | للللليليا 0 Reference Line
frequency of 3.00 Hz:
Part 2 Instructions with tables:
Data for part 2:
1.00 Hz
WITH medium tension
NOW: 2.00 Hz
with medium tension:
NOW: 3.00 Hz
with medium frequency:
DATA for 1.00 Hz with LOW tension:
AND lastly, 3.00 Hz with LOW tension:
Manual Restart Fixed End o Oscillate O Loose End O Pulse O No End 10 cm 1 2 3 4 5 6 7 8 9 10 LI ก Slow Motion Normal Amplitude 0.75 cm Frequency 1.00 Hz Damping Tension Rulers None Lots Low High 500 Timer بيلا Reference Line
Stop/pause the simulation and with the help of the on screen engaged rulers- and measure the wavelength of the wave. Enter it by typing it here (in both cm and then in converted m SI units) as : Increase the amplitude (by working with the slider that changes the value of the wave amplitude) and measure the wavelength again. Enter it here (in both cm and then in converted m SI units) as :- Does changing the amplitude have an effect on the wavelength? Write your answers here; Record (by typing in the values of) the wavelength for whichever Tension you have selected in the Table for "Frequency=1.00 Hz". The Table is here, below several listed questions. Change the frequency to 2.00 Hz and measure the wavelength again. Finally, change the frequency to 3.00Hz. Does changing the frequency have an effect on the wavelength? What is it? 1 Write your answers below;
Manual Restart Fixed End Loose End o Oscillate Pulse No End - 10 cm 1 2 5 6 7 8 9 10 3 4 | டடடட . 1 00000000 Slow Motion II Normal Amplitude 0.75 cm Frequency 2.00 Hz Damping Tension Rulers None Lots Low High Timer Reference Line
Restart Fixed End Manual Oscillate O Pulse Loose End No End T 10 cm 1 2 3 5 6 7 8 9 10 . 1 m D Slow Motion Normal Amplitude 0.75 cm Frequency 3.00 Hz Damping Tension Rulers None Lots Low High Timer Reference Line Q
Write your answers below; Now, let's try changing the Tension in the string. Do the above experiment for the other two settings for Tension. Repeat the above steps for two different tension values Tension Frequency=1.00Hz Frequency=2.00Hz Frequency=3.00 Hz High Medium Low To see what the Tension does, let's calculate the speed of the wave. The speed of the wave is the distance divided by time. The distance that the wave travels is the wavelength. The time for the wave is the Period. To find the speed we can multiply the wavelength and the frequency or:V = af. Calculate the speed for the waves for the information in the Table above and provide your detailed calculations. Write down all detailed calculations for each speed and - in the table below- type in the final numerical values of your calculations. Be careful and remember that, for full credit you need to turn in all detailed work, and not just the final numerical values in the table of data. As always, full credit is assigned for full, correct work. Frequency=1.00Hz Frequency=2.00Hz Frequency=3.00 Hz Speed High Medium Low Looking at the tables above, what does changing the Tension (to the wave) do?
4 10 cm 2 3 4 5 6 7 8 1 2 Slow Motion Normal Amplitude 0.75 cm Frequency 1.00 Hz Damping Tension Rulers None Lots Low High Timer 0 Oulu 00 Reference Line
10 cm 1 2 3 4 5 6 7 8 - 3 ปี O Slow Motion பட டடடடடப IL Normal Amplitude 0.75 cm Frequency 2.00 Hz Damping Tension > Rulers None Lots Low High Timer LO OO Reference Line
4 10 cm 1 2 3 4 5 6 7 8 Slow Motion Normal Amplitude 0.75 cm Frequency 3.00 Hz Damping Tension Rulers None Lots Low High Timer السلا OO Reference Line G
4. 10 cm 1 2 3 4 5 6 7 8 3 ງ O Slow Motion Normal Amplitude 0.75 cm Frequency 1.00 Hz Damping Tension Rulers V None Lots Low High Timer 0 LO OO Reference Line C
10 cm 2 3 4 5 6 7 8 2 Slow Motion Normal Amplitude 0.75 cm Frequency 2.00 Hz Damping Tension Rulers None Lots Low High Timer LouL OO Reference Line
4 10 cm 2 3 4 5 6 7 8 כ ก 2 Slow Motion Normal LUI Amplitude 0.75 cm Frequency 3.00 Hz Damping Tension Rulers None Lots Low High SOO | Timer o | للللليليا 0 Reference Line