NATIONAL BUSINESS DEVELOPMENT GROUP, INC. International Business Division. Introduction

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1 Introduction About National Business Development Group, Inc. We, NBDG Inc is the behalf of Wah Seong Group. (Berhad, in Malaysia (Listed on the main board of Kuala Lumpur stock exchange center). NBDG Inc was established in 1984 as the Its founder, Mr. Bruce Park, has created several entities that have sky rocketed to success in the last two decades. NBDG strives on creating dependability and credibility with clients. NBDG has access to allocations of various energy products and commodities direct from yards and refineries as well as mandate authorization from several suppliers. Our goal is to bring our clients the best commodities at competitive pricing. We strive in creating long lasting business ventures with companies worldwide. Our current relations include government entities and manufacturing companies. The National Business Development Group, Inc. has been appointed mandate to the mine owners and companies in Mexico. They are responsible for marketing and selling the product offered by the mine owners and has strategic cooperation agreements with several companies around the world and with this network, NBDG, Inc. is well positioned to service the world markets. Mexico Mining Concessions NBDG, Inc, through its Mexican associate, has received mining concession rights from the Federal Government of Mexico for 42 sites for the next 50 years. The first mine site (Title Number ), will commence operation in the 1st half of This first site has been selected to market with regard to logistics, quality, infrastructure, and preliminary exploration and geological studies, among other factors. Quarries are strategically located with access to several ports facilities. These accesses will allow for a successful, efficient, immediate and expedited transportation to all parts of the world. This mine site Title Number is located in an area land over 42,000 hectares, 8 miles far only from Highway toll road, and 65 miles far from Manzanillo Port. Its magnetite deposits considered for exploitation and sale are one of the largest iron ore deposits ever discovered in Mexico. The area of the iron ore deposits is visible from the bottom of the hills to the highest part of the mountain range. Each quarry s deposit is in the millions of tons with consistent homogenous qualities. With these visible conditions, NBDG feels that it is

2 not necessary to obtain additional geological research at this time due to cost factors. The entire quarry is located in an open field, with the extraction and exploration of such that has been prepared for immediate shipment. The mine concession title number is located in the state of Jalisco, Mexico. This mine has iron ore deposits account for about one fifth of the total reserves in Mexico. This mine site is considered one of the purest sources of magnetite ever discovered in the whole country. The Mine Concession Title VISIBLE CONFIRMED RESERVES: 60,000,000 METRIC TONS RATIO OF MAGNETITE TO HEMATITE: 70 TO 30 DISTANCE TO NEAREST PORT: 110 KILOMETERS ESTIMATED RESERVE: 400,000,000 METRIC TONS OPERATIONS TO COMMENCE FEBRUARY 2006

3 Magnetite Analyses Quantitative Data by X Ray Fluorescence Concession Title SAMPLE 3A % 3A(R) % SAMPLE 3A % 3A(R) % Fe 2 O Na 2 O SiO K 2 0 <0.01 <0.01 P 2 O 2 <0.05 <0.05 CaO <0.01 <0.01 Al 2 O Ti0 2 <0.01 <0.01 MnO MgO Element (Fe Total 71) Fe 68.70% SiO % CaO 0.20% Al 2 O % MgO 0.15% Na 2 O 0.04% K 2 O 0.12% P 0.06% TiO % H 2 O 0.10%

4 Hematite The available mineralogical data indicates: fractured fill of tourmaline, hematite and fine grained quartz. The Hematite is found deposited at the end of the mineral sequence, which implies that it is found within interstices and fractures and is not included in other minerals. This provides a great strategic advantage, because, as the mineral is processed, the mechanical phase could release much of the hematite from the vein (quartz tourmaline). In regards to the purity of the hematite, we are providing the following lab analysis: Hematite: (94% 97%); with respect to the content of SiO 2 = (2.07%), ( 2.08%); and P 2 O 5 (<0.05%). These values are quite low, which is important inasmuch as they are two elements that negatively affect the quality of Iron Ore. Only traces are found of the other elements. A detailed report and analyses will be available upon buyer s request.

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7 Port & Loading Facilities LOAD CAPACITY: 2,000 (TWO THOUSAND) METRIC TONS PER HOUR HOPPER CAPACITY: 60 CUBIC METERS (ABOUT 100 METRIC TONS OF OR PER DELIVERY) UNLOADING UNIT DESIGNED FOR TRADITIONAL AS WELL AS BOTTOM DISCHARGE SCALE MODEL: 2 SCHENK SCALE BMPII (± 0.50 %) CASCADE TELESCOPIC CHUTE INSTALLED AT LOADER SHIPLOADER BEAM 25 METERS AIR DRAFT METERS ( METER DEPENDANT ON TIDE) SHIPLOADER LENGTH METER BERTH 14METERS (OFFICIAL DRAFT 13 METERS) DOCK LENGTH 300 METERS TYPICAL SHIPS: CAPESIZE AND PANAMAX Reference Iron Ore Export Australia 5% 3% 5% 6% 14% 33% 34% Brazil India Canada South Africa Sweden Others

8 Iron Ore Import Europe Japan China South Korea Taiwan USA Others 3% 2%10% 8% 22% 25% 30% Production Capacities

9 IRON ORE is removed from the earth and sized into pieces that range from 0.5 to 1.5 inches. This ore is either HEMATITE or MAGNETITE and the iron content ranges from 50 to 70%. This iron rich ore can be charged directly into a blast furnace without any further processing. Iron ore that contains lower iron content is processed further to obtain higher iron content. MAGNETITE is a magnetic mineral form of both iron (II) oxide and iron (III) oxide, with chemical formula Fe 3 O 4, one of several iron oxides and a member of the spinel group. Magnetite is the most magnetic of all the minerals on Earth, and these magnetic properties led to lodestone being used as an early form of magnetic compass. Small grains of magnetite occur in almost all igneous rocks and metamorphic rocks as well as many sedimentary rocks. Magnetite is a valuable source of iron ore. It dissolves slowly in hydrochloric acid. HEMATITE is the mineral form of Iron (III) oxide, (Fe 2 O 3 ), one of several iron oxides. The ore sometimes contains slight amounts of titanium. Rouge is a powderized form of hematite. A very common mineral, colored black to gray, brown to reddish brown, or red. It is mined as the main ore of iron. Deposits of grey hematite are typically found in places where there has been standing water or mineral hot springs, such as those in Yellowstone. The mineral can precipitate out of water and collect in layers at the bottom of a lake, spring, or other standing water. But hematite can also occur without water, as the result of volcanic activity. PELLETS are produced from lower content iron ore. The ore is crushed and ground into a powder so the waste material called GANGUE can be removed. The remaining iron rich powder is rolled into balls and fired in a furnace to produce strong marble sized pellets that contain 60 to 65% iron. Pellets are usually the most desirable form of iron ore because they contribute the most to productivity. SINTER is produced from raw iron ore, small coke, sand sized limestone and numerous other steel plant waste materials that contain some iron. These fine materials are proportioned to obtain desired chemistry, and then mixed together. This raw material mix is then placed on a sintering strand which is similar to a steel conveyor belt, where it is ignited by gas fired furnace and fused by the heat from the coke fines into larger size pieces that are from 0.5 to 2.0 inches.

10 FINES are defined as iron ore with the majority of individual particles measuring less than 4.75mm ( 3/16 inch) diameter.. Fines and lumps are produced from the same ore and are separated by screening and sorting. Fines fetch lower prices than lump because they must be sintered by the steel mill before they can be charged to the blast furnace. This is done to remove the permeability of the furnace burden and to prevent loss of fines up the stack. LUMPS are iron ore with the majority of individual particles measuring more than 4.75mm (3/16 inch) diameter. Lump ore can be directly charged into the blast furnace. STEEL MAKING PROCESS

11 Michael Hahn V.P TEL: