speed = f * lamda (wavelength) 35 * 60 2100 cm/s or 21 m/s
The fundamental resonant frequency of a closed tube is given by the formula f = v/2L, where v is the speed of sound. Assuming v is approximately 343 m/s in air, the wavelength can be calculated as λ = v/f. Substituting the values, the wavelength of the fundamental frequency for a closed tube 35 cm (0.35 m) long would be around 0.686 m.
The pressure at the bottom of the pitcher of water 35cm deep is higher than at the bottom of the bathtub of water 30cm deep. Pressure in a fluid increases with depth, so the deeper the water column, the greater the pressure at the bottom. This is due to the weight of the water above exerting a force on the bottom.
The fundamental resonant frequency of a closed tube is given by the formula f = v/2L, where v is the speed of sound. Assuming v is approximately 343 m/s in air, the wavelength can be calculated as λ = v/f. Substituting the values, the wavelength of the fundamental frequency for a closed tube 35 cm (0.35 m) long would be around 0.686 m.
There are 20 lengths of 35cm in 7 meters. To find this, you can divide the total length (700cm) by the length of one section (35cm) to get the number of sections.
The cubic capacity of the pot is 42,875 cubic centimeters (cm³). This is calculated by multiplying the length, width, and height: 35cm x 35cm x 35cm = 42,875cm³.
0.35
1.377952756 in, algebraic steps are below: 3.5 cm*1 in 2.54 cm=1.377952756 in
35cm
200cm = 2m
What is 7m to 35cm
about 35cm
0.35 metres.
350mm = 35cm
35cm