Misplaced Pages

Green Brothers Novelty Band

Article snapshot taken from Wikipedia with creative commons attribution-sharealike license. Give it a read and then ask your questions in the chat. We can research this topic together.

The Green Brothers Novelty Band was a recording ensemble active from 1918 to 1939. The group was led by brothers Joe Green (1892–1939) and George Hamilton Green (1893–1970), xylophone artists along with younger brother Lew Green (1909–1992), on banjo, from Omaha, Nebraska .

#380619

56-558: In the beginning of the Green Brothers Novelty Band's career, George and Joe Green played xylophones, accompanied by brass instruments including trumpet , trombone , and tuba . The music they recorded consisted primarily of dance music, such as the Foxtrot and One-Step , and to a lesser extent, Waltzes . Occasionally, a vocalist was used to sing for a single chorus. After about 10 years of this instrumentation,

112-430: A harmonic series . The fundamental frequency of the harmonic series can be varied by adjusting the length of the tubing using the instrument's valve, slide, key or crook system, while the player's embouchure, lip tension and air flow serve to select a specific harmonic from the available series for playing. The fundamental is essentially missing from the resonances and is impractical to play on most brass instruments, but

168-470: A brass instrument accurately. It also plays a major role in some performance situations, such as in marching bands. Traditionally the instruments are normally made of brass , polished and then lacquered to prevent corrosion . Some higher quality and higher cost instruments use gold or silver plating to prevent corrosion. Alternatives to brass include other alloys containing significant amounts of copper or silver. These alloys are biostatic due to

224-490: A cartoonist from his home. His cartoons were featured in The Saturday Evening Post and Colliers. He died in 1970. Brass instrument A brass instrument is a musical instrument that produces sound by sympathetic vibration of air in a tubular resonator in sympathy with the vibration of the player's lips. The term labrosone , from Latin elements meaning "lip" and "sound", is also used for

280-452: A conical mouthpiece. One interesting difference between a woodwind instrument and a brass instrument is that woodwind instruments are non-directional. This means that the sound produced propagates in all directions with approximately equal volume. Brass instruments, on the other hand, are highly directional, with most of the sound produced traveling straight outward from the bell. This difference makes it significantly more difficult to record

336-491: A fourth valve, such as tubas, euphoniums, piccolo trumpets , etc. that valve lowers the pitch by a perfect fourth; this is used to compensate for the sharpness of the valve combinations 1–3 and 1–2–3 (4 replaces 1–3, 2–4 replaces 1–2–3). All three normal valves may be used in addition to the fourth to increase the instrument's range downwards by a perfect fourth, although with increasingly severe intonation problems. When four-valved models without any kind of compensation play in

392-476: A gimmick, these plastic models have found increasing popularity during the last decade and are now viewed as practice tools that make for more convenient travel as well as a cheaper option for beginning players. Brass instruments are one of the major classical instrument families and are played across a range of musical ensembles . Orchestras include a varying number of brass instruments depending on music style and era, typically: Concert bands generally have

448-416: A good range of notes simply by varying the tension of their lips (see embouchure ). Most brass instruments are fitted with a removable mouthpiece . Different shapes, sizes and styles of mouthpiece may be used to suit different embouchures, or to more easily produce certain tonal characteristics. Trumpets, trombones, and tubas are characteristically fitted with a cupped mouthpiece, while horns are fitted with

504-426: A larger brass section than an orchestra, typically: British brass bands are made up entirely of brass, mostly conical bore instruments. Typical membership is: Quintets are common small brass ensembles; a quintet typically contains: Pitch of brass instruments The pitch of a brass instrument corresponds to the lowest playable resonance frequency of the open instrument. The combined resonances resemble

560-419: A trigger on valves other than 2 (especially 3), although many professional quality euphoniums, and indeed other brass band instruments, have a trigger for the main tuning slide. The two major types of valve mechanisms are rotary valves and piston valves . The first piston valve instruments were developed just after the start of the 19th century. The Stölzel valve (invented by Heinrich Stölzel in 1814)

616-431: A trumpet, a person lays out a pattern and shapes sheet metal into a bell-shape using templates, machine tools, handtools, and blueprints. The maker cuts out the bell blank, using hand or power shears. He hammers the blank over a bell-shaped mandrel, and butts the seam, using a notching tool. The seam is brazed, using a torch and smoothed using a hammer or file. A draw bench or arbor press equipped with expandable lead plug

SECTION 10

#1732794617381

672-412: Is noted in the table, despite the exposition of four-valve and also five-valve systems (the latter used on the tuba) being incomplete in this article. Since valves lower the pitch, a valve that makes a pitch too low (flat) creates an interval wider than desired, while a valve that plays sharp creates an interval narrower than desired. Intonation deficiencies of brass instruments that are independent of

728-406: Is significantly lower than the fundamental frequency of the series that the other resonances are overtones of. Depending on the instrument and the skill of the player, the missing fundamental of the series can still be played as a pedal tone , which relies mainly on vibration at the overtone frequencies to produce the fundamental pitch. The bore diameter in relation to length determines whether

784-472: Is the norm, usually in a double, sometimes even triple configuration. Some valved brass instruments provide triggers or throws that manually lengthen (or, less commonly, shorten) the main tuning slide, a valve slide, or the main tubing. These mechanisms alter the pitch of notes that are naturally sharp in a specific register of the instrument, or shift the instrument to another playing range. Triggers and throws permit speedy adjustment while playing. Trigger

840-432: Is used in two senses: A throw is a simple metal grip for the player's finger or thumb, attached to a valve slide. The general term "throw" can describe a u-hook, a saddle (u-shaped grips), or a ring (ring-shape grip) in which a player's finger or thumb rests. A player extends a finger or thumb to lengthen a slide, and retracts the finger to return the slide to its original position. Triggers or throws are sometimes found on

896-421: Is used to shape and smooth the bell and bell neck over a mandrel. A lathe is used to spin the bell head and to form a bead at the edge of bell head. Previously shaped bell necks are annealed, using a hand torch to soften the metal for further bending. Scratches are removed from the bell using abrasive-coated cloth. A few specialty instruments are made from wood. Instruments made mostly from plastic emerged in

952-405: The acoustical method , resulting in greater volume, range, and fidelity from 78rpm records. By the 1930s, popular music for listening and dancing had changed dramatically from the 1920s. The Green brothers adapted to both the finer recorded tonal qualities, as well as newer musical tastes. Violins replaced the trumpets, Joe Green switched from the xylophone to the marimba , upright bass replaced

1008-628: The alphorn , the cornett , the serpent and the didgeridoo , while some woodwind instruments are made of brass, like the saxophone . Modern brass instruments generally come in one of two families: Plucked There are two other families that have, in general, become functionally obsolete for practical purposes. Instruments of both types, however, are sometimes used for period-instrument performances of Baroque or Classical pieces. In more modern compositions, they are occasionally used for their intonation or tone color. Brass instruments may also be characterised by two generalizations about geometry of

1064-410: The bore , that is, the tubing between the mouthpiece and the flaring of the tubing into the bell . Those two generalizations are with regard to While all modern valved and slide brass instruments consist in part of conical and in part of cylindrical tubing, they are divided as follows: The resonances of a brass instrument resemble a harmonic series , with the exception of the lowest resonance, which

1120-404: The oligodynamic effect , and thus suppress growth of molds , fungi or bacteria . Brass instruments constructed from stainless steel or aluminium have good sound quality but are rapidly colonized by microorganisms and become unpleasant to play. Most higher quality instruments are designed to prevent or reduce galvanic corrosion between any steel in the valves and springs, and the brass of

1176-468: The 1st note of the harmonic series ... A horn giving the C of an open 8 ft organ pipe had to be 16 ft (5 m). long. Half its length was practically useless ... it was found that if the calibre of tube was sufficiently enlarged in proportion to its length, the instrument could be relied upon to give its fundamental note in all normal circumstances. – Cecil Forsyth, Orchestration , p. 86 The instruments in this list fall for various reasons outside

SECTION 20

#1732794617381

1232-407: The 2010s as a cheaper and more robust alternative to brass. Plastic instruments could come in almost any colour. The sound plastic instruments produce is different from the one of brass, lacquer, gold or silver. This is because plastic is much less dense, or rather has less matter in a given space as compared to the aforementioned which causes vibrations to occur differently. While originally seen as

1288-406: The 2nd harmonic of the instrument to the 10th harmonic. Skilled players can produce tones outside this range. For many transposing brass instruments, this range is written as extending from F♯ below middle C to E two octaves and a third above middle C. The orchestral horn is an exception as it was classically assigned a range beginning at its fourth harmonic. The ease with which a player produces

1344-477: The Compensation system, each of the first two (or three) valves has an additional set of tubing extending from the back of the valve. When the third (or fourth) valve is depressed in combination with another one, the air is routed through both the usual set of tubing plus the extra one, so that the pitch is lowered by an appropriate amount. This allows compensating instruments to play with accurate intonation in

1400-468: The Green brothers added saxophone and banjo to the group. The banjo was played by Lew Green, the younger brother of George Hamilton Green and Joe Green. This ensemble recorded hundreds of sides for virtually all the 78rpm record companies during the acoustic recording period, including Victor , Columbia , Edison , Okeh , Emerson , Vocalion , Pathe, and others. In 1925, electrical recording replaced

1456-473: The Green brothers began performing live radio programs. Such radio shows typically were sponsored by a commercial company, and named for that company or its products. The Shinola shoe polish company sponsored many Green brothers 1920's broadcasts, leading to the use of the group name Shinola Merrymakers. When Walt Disney needed a soundtrack for the Mickey Mouse short " Steamboat Willie " in 1928, he sold

1512-557: The Moon roadster he had owned since 1926 and paid the Green brothers to play the music. In order to keep the music in sync with the pictures, a bouncing-ball method was used. In the 1930s, in addition to making phonograph records, the Green brothers began recording pre-recorded programs for use by radio stations. These discs, referred to as Electrical Transcriptions , were pressed on 12-inch or 16-inch vinyl discs played at 33rpm, and containing two to four tracks per side. The early death of

1568-407: The action of three valves had become almost universal by (at latest) 1864 as witnessed by Arban's method published in that year. The effect of a particular combination of valves may be seen in the table below. This table is correct for the core three-valve layout on almost any modern valved brass instrument. The most common four-valve layout is a superset of the well-established three-valve layout and

1624-636: The air being doubled back through the main valves. In early designs, this led to sharp bends in the tubing and other obstructions of the air-flow. Some manufacturers therefore preferred adding more 'straight' valves instead, which for example could be pitched a little lower than the 2nd and 1st valves and were intended to be used instead of these in the respective valve combinations. While no longer featured in euphoniums for decades, many professional tubas are still built like this, with five valves being common on CC- and BB ♭ -tubas and five or six valves on F-tubas. Compensating double horns can also suffer from

1680-420: The available harmonic series , while the player's embouchure , lip tension and air flow serve to select the specific harmonic produced from the available series. The view of most scholars (see organology ) is that the term "brass instrument" should be defined by the way the sound is made, as above, and not by whether the instrument is actually made of brass . Thus one finds brass instruments made of wood, like

1736-404: The corresponding register, the sharpness becomes so severe that players must finger the note a half-step below the one they are trying to play. This eliminates the note a half-step above their open fundamental. Manufacturers of low brass instruments may choose one or a combination of four basic approaches to compensate for the tuning difficulties, whose respective merits are subject to debate: In

Green Brothers Novelty Band - Misplaced Pages Continue

1792-530: The deficiencies in the valve system. In most trumpets and cornets, the compensation must be provided by extending the third valve slide with the third or fourth finger, and the first valve slide with the left hand thumb (see Trigger or throw below). This is used to lower the pitch of the 1–3 and 1–2–3 valve combinations. On the trumpet and cornet, these valve combinations correspond to low D, low C ♯ , low G, and low F ♯ , so chromatically, to stay in tune, one must use this method. In instruments with

1848-464: The first valve slide. They are operated by the player's thumb and are used to adjust a large range of notes using the first valve, most notably the player's written top line F, the A above directly above that, and the B ♭ above that. Other notes that require the first valve slide, but are not as problematic without it include the first line E, the F above that, the A above that, and the third line B ♭ . Triggers or throws are often found on

1904-438: The first, second or third valves are pressed; pressing the thumb valve takes these secondary valve slides and the extra length of main tubing out of play to produce a shorter B ♭ horn. A later "full double" design has completely separate valve section tubing for the two sides, and is considered superior, although rather heavier in weight. Initially, compensated instruments tended to sound stuffy and blow less freely due to

1960-453: The following ratios and comparisons to 12-tone equal tuning and to a common five-limit tuning in C: The additional tubing for each valve usually features a short tuning slide of its own for fine adjustment of the valve's tuning, except when it is too short to make this practicable. For the first and third valves this is often designed to be adjusted as the instrument is played, to account for

2016-492: The fundamental note of each harmonic series for each tubing length of a modern brass instrument varies with the instrument's design. As bore width increases relative to length, it becomes easier for the player to resist the instrument's tendency to jump to the second harmonic instead of producing the fundamental frequency. Brass instruments with sufficient bore to play fundamentals with relative ease and accuracy are called "whole-tube" instruments, while instruments that are limited to

2072-414: The fundamental tone or the first overtone is the lowest partial practically available to the player in terms of playability and musicality, dividing brass instruments into whole-tube and half-tube instruments. These terms stem from a comparison to organ pipes , which produce the same pitch as the fundamental pedal tone of a brass instrument of equal length. Neither the horns nor the trumpet could produce

2128-408: The fundamental. The modern standard orchestral horn is a double B ♭ /F horn. The player can switch between the two modes using a thumb-operated fourth valve. The fundamental pitch of the F horn is near that of the tuba . Horn notation is a complex subject beyond the scope of this article, but what is written as middle C for the horn is the fourth harmonic of the unlengthened instrument, not

2184-437: The group's co-leader Joe Green in 1939 affected the viability of this musical organization. Not only was Joe a lead musician in the group, but he also served as the organization's business manager and booking agent . Subsequently, in 1940 George Hamilton Green retired from music, and the group's 22-year tenure came to an end. Following George's retirement from the music business, he relocated to Woodstock, New York , and worked as

2240-463: The group, since instruments employing this "lip reed" method of sound production can be made from other materials like wood or animal horn, particularly early or traditional instruments such as the cornett , alphorn or shofar . There are several factors involved in producing different pitches on a brass instrument . Slides , valves , crooks (though they are rarely used today), or keys are used to change vibratory length of tubing, thus changing

2296-552: The instrument. Designs exist, although rare, in which this behaviour is reversed, i.e., pressing a valve removes a length of tubing rather than adding one. One modern example of such an ascending valve is the Yamaha YSL-350C trombone, in which the extra valve tubing is normally engaged to pitch the instrument in B ♭ , and pressing the thumb lever removes a whole step to pitch the instrument in C. Valves require regular lubrication . A core standard valve layout based on

Green Brothers Novelty Band - Misplaced Pages Continue

2352-400: The low brass often use extra valves to extend their range uniformly, since the fundamental is chromatically discontinuous with the lowest 2nd harmonic reachable on a three-valve instrument or via the seven-position slide on a trombone. Trombone and tuba in particular are often called upon to play pedal tones and "false tones" or "privileged tones" which have a pitch between the normal range and

2408-466: The octave below their open second partial, which is critical for tubas and euphoniums in much of their repertoire. The compensating system was applied to horns to serve a different purpose. It was used to allow a double horn in F and B ♭ to ease playing difficulties in the high register. In contrast to the system in use in tubas and euphoniums, the default 'side' of the horn is the longer F horn, with secondary lengths of tubing coming into play when

2464-482: The overtones account for most pitches. The following table provides the pitch of the second harmonic (the lowest playable resonance on most brass instruments, an octave above the fundamental frequency) and length for some common brass instruments in descending order of pitch. This pitch is notated transpositionally as middle C for many of these brass instruments. The normal playing range of most three-valved brass instruments extends from three whole tones below

2520-457: The scope of much of the discussion above regarding families of brass instruments. Valves are used to change the length of tubing of a brass instrument allowing the player to reach the notes of various harmonic series. Each valve pressed diverts the air stream through additional tubing, individually or in conjunction with other valves. This lengthens the vibrating air column thus lowering the fundamental tone and associated harmonic series produced by

2576-446: The second harmonic as a lowest note in practical use are called "half-tube" instruments. These terms stem from a comparison to organ pipes , which produce the same pitch as the pedal tone (fundamental) of a brass instrument of equal length. Certain low brass instruments such as trombone , tuba , euphonium , and alto horn are whole-tube and can play the fundamental tone of each harmonic series with relative ease. Furthermore,

2632-518: The second. Horn music makes greater use of the higher range of the harmonic series than do most other modern brass instruments. The modern bass trombone is the same length as a tenor trombone, but typically has two valves, pitched in F and G♭. When combined, these valves put the instrument into D. The modern contrabass trombone is usually constructed in F and fitted with two valves in either D and B♭ combining to give A♭, or in C and D♭ combining to give A. The less common double slide contrabass in low B♭

2688-464: The stuffiness resulting from the air being passed through the valve section twice, but as this really only affects the longer F side, a compensating double can be very useful for a 1st or 3rd horn player, who uses the F side less. Another approach was the addition of two sets of slides for different parts of the range. Some euphoniums and tubas were built like this, but today, this approach has become highly exotic for all instruments except horns, where it

2744-489: The third valve slide. They are operated by the player's fourth finger, and are used to adjust the lower D and C ♯ . Trumpets typically use throws, whilst cornets may have a throw or trigger. Trombone triggers are primarily but not exclusively installed on the F-trigger, bass, and contrabass trombones to alter the length of tubing, thus making certain ranges and pitches more accessible. A euphonium occasionally has

2800-424: The tuba, and saxophones were featured more prominently. These instrumentation changes created a mellower sound to the group, whose name was changed to Green Brothers Novelty Orchestra, or Green Brothers Marimba Orchestra. The Green Brothers Orchestra's music at that time featured more waltzes and popular songs, replacing the old Foxtrots and One-Steps. During the late 1920s, in addition to making phonograph records ,

2856-414: The tuba. See also the article Brass Instrument Valves . Because the player of a brass instrument has direct control of the prime vibrator (the lips), brass instruments exploit the player's ability to select the harmonic at which the instrument's column of air vibrates. By making the instrument about twice as long as the equivalent woodwind instrument and starting with the second harmonic, players can get

SECTION 50

#1732794617381

2912-532: The tubing has an inversely proportional effect on pitch ( Pitch of brass instruments ), while pitch perception is logarithmic, there is no way for a simple, uncompensated addition of length to be correct in every combination when compared with the pitches of the open tubing and the other valves. For example, given a length of tubing equaling 100 units of length when open, one may obtain the following tuning discrepancies: Playing notes using valves (notably 1st + 3rd and 1st + 2nd + 3rd) requires compensation to adjust

2968-414: The tubing. This may take the form of desiccant design, to keep the valves dry, sacrificial zincs , replaceable valve cores and springs, plastic insulating washers, or nonconductive or noble materials for the valve cores and springs. Some instruments use several such features. The process of making the large open end (bell) of a brass instrument is called metal beating . In making the bell of, for example,

3024-416: The tuning appropriately, either by the player's lip-and-breath control, via mechanical assistance of some sort, or, in the case of horns, by the position of the stopping hand in the bell. 'T' stands for trigger on a trombone. Traditionally the valves lower the pitch of the instrument by adding extra lengths of tubing based on a just tuning : Combining the valves and the harmonics of the instrument leads to

3080-415: The tuning or temperament system are inherent in the physics of the most popular valve design, which uses a small number of valves in combination to avoid redundant and heavy lengths of tubing (this is entirely separate from the slight deficiencies between Western music's dominant equal (even) temperament system and the just (not equal) temperament of the harmonic series itself). Since each lengthening of

3136-474: Was an early variety. In the mid 19th century the Vienna valve was an improved design. However many professional musicians preferred rotary valves for quicker, more reliable action, until better designs of piston valves were mass manufactured towards the end of the 19th century. Since the early decades of the 20th century, piston valves have been the most common on brass instruments except for the orchestral horn and

#380619