Please help me with this
question. Thanks for your help.
Please help me with this question. Thanks for your help. Five identical weights (*) are attached...
Can
you help me to do the calculation and graph for two tables? thank
you
mass = 100g
ANALYSIS AND QUESTIONS: 1. Plot a graph of the wavelength versus the inverse of the frequency, 11f. Draw a "best-fit" straight line and determine the slope. 2. Determine the tension of the string from knowledge of the slope. 3. Compute the velocity v of the wave in the string using Eqn. (2). 4. As the frequency is increased, what happens to the...
I will appreciate your kind and best explanation for me. Thanks in advance. 18) Two identical piano wires have a fundamental frequency of 650 Hz when kept under the same tension. What fractional increase in the tension of one wire will lead to the occurrence of 8 beats/s when both wires vibrate simultaneously? 25) (a) A Carnot engine operates between a hot reservoir at 330 K and a cold reservoir at 270 K. If it absorbs 500 J of heat per...
help on #3 and #4 please
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3. A string with a mass per unit length of 3.4 x 10-**. is attached to a string vibrator (frequency = 120 Hz) with a string extended over a pulley with mass hanging on the string (like in our lab). The length of the vibrating portion the string (between the string vibrator and the pulley) is 75 cm. Calculate the mass that would need to be hong the string in order...
I need help with part A, string lengths/weights and frequency
is here
update on lab
.88089 3=82.1 inch, 44129 A-c L=600 = 1.524m String1- 86.53 inch, 1.839 String 2= 82.3 inch, String String 4 = 80.6 inch, 22199 Vibrating String Experiment Objective To study the factors affecting the velocity of waves in a stretched string, Apparatus Linear transducer, function generator, string, meter stick, mis set, table clamp with pulley. Optional: strobe light. Part A Attach one end of a string...
Please help me to answer the question with steps and correct
answer. Thanks
Q1. An anchored wall with two tie-back anchors is shown in the following figure. Determine the minimum free length of each anchor based on Rankine's theory assumption for the failure plane. (Assume X = 3 m) 1.5m Ola 25 2.5m T 7m B=15 Ta Sand 7 = 18 kN/m = 35° Sand Section Not to Scale
Please help with 3 problems thank you
A 6kg block is placed on a plane inclined at angle 37 degrees. If the coefficient of the static friction is His = 1.0 and the coefficient of the kinetic friction is Mx=0.12, evaluate is the net force on the block. (assume g=10m/s2) the masses, mi=9kg and m2=4*m7kg, are hanged across a massless, frictionless pulley. What is the tension in the rope? (assume g=10m/s^2) E m In the following diagram, two objects are...
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A string has linear density μ τ = 45 N We send a sinusoidal wave with frequency f= 120 Hz and amplitude vm8.5 mm along the string. At what average rate does the wave transport energy? 525 g/m and is under tension
can someone help me with this physics Lab Vibrating String
Experiment I'm confused please and thank you
I have This data for the five-time I did the Experience
Vibrating String Experiment Objective To study the factors affecting the velocity of waves in a stretched string. Apparatus Linear transducer, function generator, string, meter stick, mass set, table clamp with pulley. Optional: strobe light. Part A Attach one end of a string to the motor and pass the other end of the...
Example 18.7 The Mistuned Piano Strings Two identical piano strings of length 0.775 m are each tuned exactly to 400 Hz. The tension in one of the strings is then increased by 1.0%. If they are now struck, what is the beat frequency between the fundamentals of the two strings? SOLVE IT Conceptualize As the tension in one of the strings is changed, its fundamental frequency changes. Therefore, when both strings are played, they will have different frequencies and beats...
please help! not sure how to answer these questions! show
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3-A mass m = 2.0 kg is attached to a spring having a force constant k = 290 N/m as in the figure. The mass is displaced from its equilibrium position and released. Its period of oscillation is approximately what? 00000000 ME 4- In the figure below, the oscillator produces standing waves as shown. The frequency of the wave is 60 Hz What is the wave speed of the...