Two Guitars Dine Out – A Musical Degustation: No. II, March of the Peking Ducks
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Types Of Musical Instruments
When visitors enter a concert hall to hear a symphonic orchestra, they will see a orchestrated seating arrangement stretched out across the stage before them. Many might wonder about the musical instruments that will be used during the performance because there are no signs posted to identify the types of musical instruments and the specific placement of them. Some instruments will be on the stage, such as the piano, and kettle drums and others will be brought to the stage by the musician that is trained to play it.
The number of musical instruments that will make up a symphonic orchestra will total more than 100. The types of musical instrument are numerous and each instrument style will be placed in a specific category. A complete orchestra will contain stringed instruments, woodwinds, instruments made of brass, percussion instruments, and toward the front of the orchestra, a harp can be seen sitting in a stand waiting to be raised and played by a talented musician. Some musical instrument types will fit into odd musical instrument categories.
The musical instruments that will always be placed in the strings category are the violin, violas, cellos, and double basses. The violin and violas are held in the hand when played and the cellos and double basses must be played in a standing position and will be equipped with pins that extend from the bottom and give the musician traction with the flooring during the symphonic performance.
The cellos and double basses will be the musical instruments that the audience can view before the performance starts because these musical instruments are bulky and take time to set up before the performance starts. The musician will carry all other string musical instruments into the concert hall, and the musician will check the tuning of each stringed instrument briefly when they take their seat. All tuning will be done before the concert performance begins and at intervals throughout the night.
The musical instruments that comprise the woodwind instruments section are the clarinet, flute, piccolo, oboe, and bassoon. There are generally four musical instruments of each type in a symphonic orchestra with the exception of the piccolo, which remains the responsibility of one orchestra member. The types of clarinets will range from the deep notes emitted from the contra bass clarinet to the high notes which come from the E-flat clarinet. All of these musical instruments are tubular shaped and some will require placement on the floor when it is played.
The brass section of a symphonic orchestra is easy to see because this type of musical instrument is shiny and easily seen from great distances. The types of musical instruments in the brass section will be French horns, trumpets, trombones, and tuba. Some concert goers might think that the saxophone belongs to this category, but in fact, it is considered to be a woodwind instrument because the mouthpiece requires air to be blown into it to emit a musical sound.
The final types of musical instruments placed in the percussion instruments category of a symphonic orchestra are the timpani, snare drum, bass drum, triangle, cymbals, chimes, xylophone, celesta, tam-tam, and the triangle. These are the loudest instruments in an orchestra and are generally positioned behind all other orchestra members because of the noise levels that each instrument can produce.
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Physics and its Relation to Musical Instruments
Every sound produced by a musical instrument has a physical explication, the way instruments are created and the type of materials that are used define in a unique way the resulting sound. The sound wave is a transfer of energy that doesn’t imply matter. Within a more theoretical approach sounds are Mechanical Longitudinal Waves. So, musical instruments and Physics are intimately related. How can they coexist?
There is a mathematical formula that actually explains music, starting from the musical instruments and the Physics’ properties. The wavelength of the sound is defined as an interval between two points where the sound doesn’t have a repeated behavior. The period (T) represents the shortest interval where the wave behavior doesn’t repeat. Hence, the total number of vibrations the sound will realize in one second represent the “Frequency” (f).
Every sound travels at a specific speed depending on the wavelength and theĀ frequency, so the same instrument can produce quite an interesting process. Interference is another thing that must be discussed when analyzing musical instruments and in the Physics context. It is very probable for two sounds to be present simultaneous is the same place at the same time. The effects of combined waves are usually analyzed using the Superposition theory.
To put it in a simple way, imagine two identical musical instruments in a standard Physics experiment. Let’s say they are two trumpets. If they are blown at the same time, on a certain frequency, the result may give you a headache. When the crest of two waves meet the result is usually annoying for the human ear, the resulting phenomena is called destructive interference.
Furthermore, it is good to say that after passing the intersection between the waves they will return to the initial form. Most people have no clue about what it is going on behind the magic of music. The relationship between musical instruments and Physics comes more like a curiosity for most of us, who are ignorant of the rules of Physics phenomena. Yet, such information is crucial for those who make the instruments as such.
The most relevant to our knowledge is the intensity of the sound. This is also part of relationship between the musical instruments and Physics. Our hearing capacities are those that determine the intensity of the sound at a very subjective level. Otherwise, Physics uses a standard scale to measure the way sounds in the surrounding world touch upon our auditive system.
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A Musical Sound Generating Apparatus
EP1931039
An electronic apparatus (100), to which a portable electronic apparatus (10) is detachably provided, the electronic apparatus including: a sound outputting portion (155) for outputting an audio signal output from the portable electronic apparatus (10) with the portable electronic apparatus attached to the electronic apparatus; a detecting portion (210) for detecting a removal of the portable electronic apparatus (10) from the electronic apparatus (100); and a controller (140) for suppressing an output of the audio signal to the sound outputting portion (155), when it is detected that the portable electronic apparatus (10) is removed.
EP1930875
In order to provide a musical sound generating vehicular apparatus and a program of the same for playing musical sounds based on a status of a vehicle without depending on parameter changes such as volume of the musical sound, a vehicle status detection means (11) which detects a control status of the vehicle, a storage means (13) which stores musical sound data, a musical sound data playback means (3) which plays the musical sound based on the musical sound data stored in the storage means (13), and a control means (1) which determines a playback interval of the musical sound data stored in the storage means (13) based on the control status of the vehicle detected by the vehicle status detection means (11) and controls the musical sound playback means (3) to play the playback interval of the musical sound data are provided.
EP1931140
A television set (1) includes: an internal speaker (108) which outputs sound; a memory (101) which holds information; a remote controller receiver (102) which receives an instruction from the outside of the television set (1); a microcomputer (103) which causes, based on a mode specifying instruction for specifying a sound output mode received by the remote controller receiver (102), the memory (101) to hold any one of (a) information that indicates a first sound output mode in which sound is outputted from the internal speaker (108) and (b) information that indicates a second sound output mode in which sound is outputted from an external speaker that is a speaker outside the television set (1); and an HDMI/CEC communication unit (104) which outputs the information that indicates the sound output mode and that is held by the memory (101), to an amplifier which controls to operate or not operate the speaker outside the television set (1).
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