How Can a Single Screw Feed Mixer Maximize Farm Efficiency?

single screw mixer Feed Mixer

As farmers, efficiency is everything. But when it comes to feeding your livestock, consistency and speed are just as critical. That’s where a single screw feed mixer steps in, designed to handle a range of feed types—grain, hay, silage—while ensuring a balanced Total Mixed Ration (TMR). What Makes a Single Screw Mixer So Efficient? The … Read more

BAU STR Dryer

BAU str dryer

The BAU-STR dryer can easily be fabricated in local workshop with local raw material. It can easily be operated by simple trained male or female. The dryer has excellent drying ability of paddy in adverse conditions, especially in depressions, heavy rain and cloudy days with low ambient air temperature and very high relative humidity. Read … Read more

Top Trends in Agricultural Machinery for 2024: Shaping the Future of Farming

Top Trends in Agricultural Machinery for 2024: Shaping the Future of Farming The modern-day perspective for agricultural machinery is big and very bad. Technology keeps on improving and innovations help to improve the efficiency, sustainability, and profitability of farming. The year 2024 finds the focus on automation, precision farming, and practices that are sustainable which … Read more

Recloser & Auto Recloser

Recloser

Recloser and Auto recloser is an imporatant equipments in Power distribution system. Power system protection equipment and devices are critical to ensuring the reliability and safety of power distribution systems. Detect and isolate faults, prevent damage to equipment and personnel, and restore power as quickly as possible. One of the most common types of protection … Read more

Carpentry Surface finishing process

Surface finishing process

One of the most ways to give your apartment or house a fresh new look is, by applying a Surface finishing process . When you gently apply a cloth or brush to your furniture it comes to life. Showcases the natural wood grain. The purpose of finishing goes beyond aesthetics; it also provides protection. It … Read more

Woodworking Joint Types | Explore 12 Joints

Woodworking Joint Types

There are many different situations in woodworking where different connecting techniques are used. It’s critical to navigate the selection of joints, as each has specific advantages and disadvantages. Now let’s explore 12 frequently used woodworking joints to help you better grasp them. See the different Woodworking Joint Types Butt Joint: Creating a butt joint is … Read more

Hand tools used in carpentry shop

tools used in carpentry shop

There are lots of Hand tools used in carpentry shop . Carpentry involves a wide range of tools tailored for woodworking tasks. Here’s an overview of some common carpentry tools: Hammer Function: Hammers are fundamental tools used in carpentry shope and designed for striking objects. The head of a hammer is usually made of metal … Read more

Eggs of fall army worm in maize

eggs of fall army worm

Look eggs of fall army worm in maize The fall army worm (Spodoptera frugiperda) is a destructive pest that feeds on more than 80 plant species, including maize, rice, sorghum, and sugarcane. The female moth can lay up to 2000 eggs in her lifetime, which are usually deposited in clusters of 50 to 200 on … Read more

Top 5 biggest combine harvesters

Top 5 biggest combine harvesters

Let’s take a closer look at Top 5 biggest combine harvesters that exist thanks to past and present innovations. Below are the top 5 biggest combine harvesters The Claas Lexion 795 It is one of Top 5 biggest combine harvesters .This mighty giant of the Claas combine series is rare, but a winner for those … Read more

American iron auction shelocta pennsylvania | Revealing Shelokta, Pennsylvania’s rich heritage

American iron auction shelocta pennsylvania

American iron auction shelocta pennsylvania American iron auction shelocta pennsylvania is the popular company for many purpose .For buyers looking to sell new and used farm equipment, and for dealers looking to reach potential customers around the world, farm We rely on the industry’s go-to sources for buying and selling from.. TractorHouse.com is constantly updated … Read more

American Iron Auctions | Riding The Wave

American Iron Auctions

Overview of american iron auctions

American Iron Auctions, LLC is a company that deposits cash with sellers and provides on-site facilities for buyers. The company specializes in the sale of agricultural machinery, construction machinery, and vehicles. It sell real estate and real estate services in partnership with American Land Auctions. American Iron is owned and operated by his third generation auctioneer in the family who has been saying “sold” since 1962. They keep there equipment rules simple. There are no fees (0%) for sellers and buyers, and a flat buyer premium. Auctions involve transactions and sales, not listings.

PA Auction Business License – AY 002398They are also licensed to operate in West Virginia and Ohio.

American Iron Auctions


American Iron Auctions sells equipment and other valuable assets without fees to sellers. They charge a flat fee that buyers pay, but sellers like you never pay a fee to sell our products. They are a regional leader in conducting online auctions that reach local, national and international buyers.

Simple. All you have to do is hand over your assets to us, set a minimum price if you wish, and wait for your check. To save you time, They take care of human resources, salaries, questions, etc. External options are also available for larger devices.

Published. This is a completely online public auction. Assets can be bid on by anyone from anywhere in the world. This also maximizes your return on investment.

Have insurance. There is no one in your facility who could get hurt. We assume all risks. The company is fully insured and has liability insurance.

Fast Payment. Checks will be shipped within a few days of receiving the item. We do not release assets until funds are secured.

Anonymous. We do not reveal the identity of sellers (unless asked). This means you won’t be bothered with questions or buyers wasting your valuable time.

How to buy and sell in American Iron Auctions

Sales

They sell equipment, vehicles, real estate and other valuables to sellers for Є0.00. They charge buyers a buyer’s premium for products we hold as a commission for on-site sales. Example: someone bring in a tractor that brings her $10,000 in revenue, the buyer pays us her $11,250, and you receive her check for $10,000. people can set up reservations for devices costing more than $1,500. Reserve means that people will receive at least this amount, but also more.

Example: You set the reserve deposit at $4,000, the item is sold for $5,000, the buyer pays us $5,500, and you receive a check for $5,000.

Reserves cannot be placed on gas-powered tractors or lawn mowers (lawn or farm).Items with a minimum rate of $5,000 or less will not be subject to a sales fee of $30 per item if the item does not sell (if the minimum rate is greater than $5,000, there will be no sales fee).

Fees: Sales fees are 0%, but fees may apply for items sold for less than $2,000 or that can be stored indoors.

Payment will be made by check within two weeks of collection and/or payment by Buyer.

american iron auctions

Buy

All bids are made online. Visit www.AmericanIronAuctions.com and click on “Current Auctions.” You can place a bid or view the lot by clicking the red button (see above before the sale begins). Please note payment options and collection dates and times. People can place your bid in two ways:

Enter highest bid now and sit back.

Example: Let’s say you want to bid $500 on an item.

Current bid is $100.

If you enter $500, your bid will be up to that amount.

Assuming the other bidder stopped at $295, your bid would be $300.

Bid every time you bid.

People can increase your bid one amount at a time.

*Note – Many people bid in the last three minutes of the auction.

With option 1, you won’t lose your items in the last seconds if you’re not careful. Click here for more information

How the chicken became a broiler: The history of the broiler chicken [3]

broiler chicken

Part 3: The Chicken of Tomorrow and World War II

Details

Here the history of the broiler chicken starting now. As commercial broiler chickens grew in popularity, Republican presidential candidate Herbert Hoover used the slogan “a chicken in every pot” in his 1928 campaign. “This slogan is inspired by the French language.” “The slogan was inspired by French King Henry IV’s” “A chicken in every peasant’s pot every Sunday.” “” In 1598, King Henry declared that his kingdom would be so prosperous that farmers could afford to eat chicken every Sunday. This royal tradition is still celebrated by the people of France as’ Sunday Chicken ‘.

King Henry’s promise was not successful, but American Republican President Hoover’s promise was fulfilled by the broiler. As the popularity of commercial broilers increased, poultry science departments began to open at various American universities.
American women spend most of their time raising chickens. America’s Wall Street financiers started making high profits with “low-grade” chickens!

The Great Depression began in 1929 and lasted until 1939. In the southern states of the United States, husbands engage in the chicken business on the advice of their wives. Because the main occupation of the farmers of the southern states was the cultivation of ‘King Cotton’ or cotton which was being stopped due to the removal of synthetic fabrics. As a result, the chicken business became the only option for poor people.

“A 1933 issue of the American magazine” “Progressive Farmer” “wrote,” “The unimportant farm work of throwing away a few corns and collecting a few eggs is now becoming a scientific business and the farm’s main source of income.” “” Even in the midst of the global Great Depression, tens of thousands of trains filled with chickens went to the industrialized cities every day. On the eve of World War II in 1939, chicken became ready to enter the center of the American diet.

When World War II began in 1939, the American federal government began exporting beef and pork to the war front and decided to allocate the chicken to the American public. The government fixed a high price for chicken so that the people became interested in producing chicken commercially and the broiler industry developed. Due to the export of cow and pig meat in the war zone, chicken meat came into the black market due to the depletion of their stock. As a result, the industry is growing rapidly.

President Franklin D. Roosevelt created the War Food Administration to address the food shortages of American soldiers. This Food Administration seized all the broilers in Delaware, Virginia, and Maryland, known as the centers of American poultry production, and introduced many delicious broiler recipes into the diet of soldiers on the battlefield. By the end of World War II, Americans were eating three times more chicken than before the war. Millions of hatcheries and broiler farms have sprung up across the country.

The history of the broiler chicken

In the meantime, another project became popular like the Manhattan Project of World War II, which is known as’ The Chicken of Tomorrow ‘or’ The Chicken of Tomorrow ‘. The Chicken of Tomorrow Project is the brain child of a poultry scientist in Iowa, USA.
As a result of the Manhattan Project, the world saw the horrors of the atomic bomb for the first time. In the world-famous Manhattan Project, university scientists, industrial engineers, and the government all worked together to unravel the mystery of the atom, as well as in the Chicken of Tomorrow Project, American poultry researchers, farmers, agricultural extension agents, and many others participated.

conclusion:

The history of the broiler chicken Will go on, Get in touch with agrotechzone

Next part : The Broiler and the Mysterious Growth Factor

Whether the Chicken of Tomorrow project will produce another broiler bomb will be discussed in later episodes, but before that, we should know what kind of growth promoter Thomas Jukes made history by feeding broiler chickens at the Lederle Laboratory in 1948.

A.F.M.Fayjul Islam

BCS (Livestock)
B.SC. In Animal Husbandry, BAU
MS. In Animal Breeding and Genetics, BAU
Poultry and Dairy Consultant

How the chicken became a broiler: The history of the broiler chicken[2]

broiler


Part 2: The Mistake of the Housewife and the World’s First Broiler Shed


The results of poultry nutritionist Thomas Jukes’ experiment with chicken on Christmas Day, 1948, were a blessing or a curse? for the poultry industry. ? It was! The chicks are fed mixed rations of various types and amounts, various vitamin supplements and a special “growth promoter” from the Lederol company for three days from birth, and the weight of the chicks is taken on Christmas Day.

First broiler shade


The results of the study showed that the children who were given vitamins and growth promoters gained 2.5 times more weight than the control group of chicken children (who were not given any vitamins, supplements and growth promoters in their diet). The average weight of one was 277 grams, which is the highest weight record for a 3-day-old chicken baby! We will learn more about the ingredients in Thomas Jukes’ Experimental Ration in later episodes, but before that, it is important to know about Jukes’ Experimental Chicken, or broiler. So let’s go back a bit.


It was the decade after 1900. The American people raised a small number of chickens in the backyard in addition to food crops. Chickens were kept for eggs, and after laying the eggs, the layers were sold for meat. Chickens were of different breeds and types. The pure varieties of chicken are divided into different varieties based on the color of the skin, the shape of the head.


In the January 1921 issue of the American Poultry Journal, a total of six pages of photographs of dozens of chicken varieties from more than a hundred American poultry breeders were published. These included Single Comb Anconas, Brown Leghorns, White Minorcus, etc.
Most farmers kept a small number to a maximum of two hundred chickens. When the laying of eggs decreased, he would sell the chickens for meat or boil the eggs and keep them for eating when he got the chickens.


The farmers used to keep the hens by seeing the advertisements of different breeders based on the weather of their state or state, in the journals, newspapers. Chickens who were champion in producing eggs in the ‘Chicken Fair’ at the state and national level used to produce chicks by keeping them in their farms.

The first innovation in chicken production began with the invention of the electric incubator machine in 1923. As a result, the problem of boiling the baby with chicken or broody hen was reduced to a great extent, the egg-laying chicken began to lay more eggs at that time. Electric hatcheries began springing up in various parts of the United States, delivering chickens across the country by courier. An incident has happened.

broiler


In 1923, Celia Stella, a housewife in the U.S. state of Delaware, ordered 50 one-day-old chicks from a commercial hatchery but mistakenly received 500. The courageous Stella decided to raise 500 children, which led to the creation of the first commercial broiler farm in the world. Stella and her husband built the world’s first wooden broiler shed next to the house, and began brooding the chicks with a coal stove.

They feed the children until they are fit for sale in the market, and finally sell and make a good profit. With the profit, Stella orders 1000 more babies, which we can call the successors of the present-day broilers. These broilers were sold at the Jewish Market in New York City, which was run by women.


The years 1925 to 1930 were the heydays of these broilers. A 1930 study by the U.S. Department of Agriculture found that for every 10 chickens sold in the Jewish market, 8 were bought by Jewish buyers. The beginnings of the commercial broiler in America began with the wrong order of the housewife Stella. Some forty years later, in 1969, the National Register of Historic Places in the United States designated the Steller broiler rearing wood shed as a historic site. In the picture, we can see the picture of the world’s first commercial broiler house!


The history of the broiler chicken Will go on . Next part is ”The Chicken of Tomorrow and World War II”. Get in touch with agrotechzone

A.F.M Fayjul Islam

BCS (Livestock)
B.SC. In Animal Husbandry, BAU
MS. In Animal Breeding and Genetics, BAU
Poultry and Dairy Consultant

Eggs of Rice stem Borer

egg of stem borer

Here Eggs of rice stem borer !! Rice stem borers are major pests in rice cultivation in many regions of the world. Female moths lay eggs on rice leaves and stems. Usually she groups 20 to 100 eggs. The eggs are covered with a white waxy substance that protects them from drying out and natural predators. The eggs will hatch in about a week, depending on the temperature and humidity. The newly hatched larvae burrow into rice stalks, where they feed and grow for several weeks. 

Eggs of Rice stem borer

The larvae cause damage by interfering with the flow of water and nutrients within the plant, creating an entry point for fungal and bacterial infections. The larvae also produce waste, which accumulates on the stalks and reduces rice grain quality and yield. In severe cases, rice stem borers can lead to yield losses of up to 80%.

Chilakamari Lokesh Mudhiraj

Chilakamari Lokesh Mudhiraj

Professor Jayashankar Telangana State Agricultural University

5 importance of agricultural mechanization

5 importance of agricultural mechanization

know the 5 importance of agricultural mechanization at glance .In the past, farming relied solely on people and animals to get the job done. It took many days of hard work to till the soil, plant seeds in the spring, care for crops and livestock throughout the summer, and harvest the crops in the fall. However, things have changed dramatically in the agricultural industry over the 20th century. Mechanization has become a central part of farming, not only in the United States but also worldwide. This shift to mechanization has brought numerous benefits that you might not be aware of since machines now handle a great portion of the work for you.

5 importance of agricultural mechanization

5 importance of agricultural mechanization

If you’re in Kansas and looking for agricultural equipment, PrairieLand Partners is the provider to turn to. We want to highlight some of the many advantages that agricultural mechanization has brought, and will continue to bring, as we move into the 21st century. Below 5 importance of agricultural mechanization-

1. IMPROVEMENT IN FARMING TECHNIQUES

Agricultural mechanization has led to improvements in various practices. Soil erosion has been reduced, and the process of land reclamation has become more effective. With the help of cultivators attached to tractors, the soil can be smoothed out, ditches can be filled, and weeds can be removed. All of these contribute to increasing the amount of usable land while preventing soil erosion. Furthermore, irrigation systems have become more precise, allowing water to be focused specifically on plant roots.

2. PROMOTION OF COMMERCIAL AGRICULTURE

Agricultural mechanization has significantly reduced subsistence farming and paved the way for commercial agriculture to thrive. This shift has led to increased productivity and higher crop yields. As a result, more food can be produced on a larger scale, and even exports have become possible.

3. MINIMIZATION OF LABOR SHORTAGES

In rural areas, where many people have migrated to cities due to better economic opportunities, labor shortages on farms have become less of a concern. This is largely because machines can now handle a greater number of agricultural tasks. Additionally, the mechanization process has made farming easier and less time-consuming for laborers.

4. MAXIMIZATION OF CROP PRODUCTION

Agricultural mechanization has greatly improved land usage. Machines have made it possible to cultivate more challenging land that may have been left unused in the past. Moreover, land can now be utilized more efficiently to grow a wider variety and larger quantity of crops.

5. INCREASED FARM REVENUE

Another notable advantage of agricultural mechanization is its positive impact on farm income. Firstly, the use of machines saves time, thus reducing the need to pay laborers for extended periods. Secondly, mechanization has led to higher crop yields, resulting in increased income. Lastly, it has allowed farms, regardless of size, to expand their operations and reach a more global market.

মুরগি কিভাবে ব্রয়লার হলোঃ ব্রয়লার মুরগির ইতিহাস [১]

broiler
ব্রয়লার মুরগি

এনিম্যাল হাজবেন্ড্রিতে অনার্সের সময়ই পোল্ট্রি সায়েন্স ডিপার্টমেন্টে আমরা ব্রয়লার মুরগি তৈরির ব্রিডিং প্রিন্সিপাল পড়েছি। এনিম্যাল ব্রিডিং এন্ড জেনেটিক্সে মাস্টার্স করার সময়ও আমরা পোল্ট্রি ব্রিডিং পার্টে ব্রয়লার স্ট্রেইন তৈরির প্রিন্সিপল, স্টেপগুলো পড়েছি কিন্তু ইতিহাস কখনোই জানা হয়নি।

ব্রয়লার নিয়ে বিভিন্ন অপপ্রচারের পর থেকেই আমি ব্যাপারটা নিয়ে জানার জন্য বিভিন্ন বইপত্র ঘাটাঘাটি শুরু করি। তারই ধারাবাহিকতায় আজকের এই লেখা। লেখাটি অনেক বড় তাই অল্প অল্প করে দেয়ার চেষ্টা করবো যাতে সবার পড়ার ধৈর্য্য থাকে।

১ম পর্বঃ এন্টিবায়োটিক ও মুরগির ইতিহাস

আজকে ২৫ ডিসেম্বর, খ্রিস্টান ধর্মের ক্রিসমাস বা বড়দিন। ১৯৪৮ সালের এমনই এক ক্রিসমাসের দিনে নিউইয়র্ক স্টেটের ম্যানহাটনের অদুরে পার্ল রিভারে অবস্থিত ৫০০ একর জায়গা নিয়ে লেডেরল ল্যাবোরেটরিসের পোল্ট্রি বিল্ডিং এ গবেষক থমাস জুকস অবিশ্বাস্য একটা বিষয় পর্যবেক্ষন করলেন । জুকস তখনো ভাবেনি যে পুরো বিশ্বটাকে পরিবর্তন করে দিতে চলছেন উনি।

লেডেরল ল্যাবোরেটরিস কোন কৃষি বিষয়ক কোম্পানি ছিলো না, এটি ছিলো ফার্মাসিটিউক্যাল কোম্পানি যারা এন্টিবায়োটিক, ভিটামিন বানানোর প্রথম দিককার একটি কোম্পানি । অন্যদিকে থমাস জুকস কৃষি কলেজ থেকে ডিগ্রি নিয়ে বায়োকেমিস্ট্রিতে পিএইচডি করে পোল্ট্রি নিয়ে কাজের সুযোগ খুজছিলেন । ১৯৪২ সালে লেডেরল ল্যাবোরেটরিস তাকে পোল্টি নিউট্রিশন নিয়ে কাজের অফার দিলে তিনি তা গ্রহণ করেন ।

থমাস জুকস লেডেরলে জয়েনের ১৪ বছর আগে স্কটিশ গবেষক আলেক্সেন্ডার ফ্লেমিং ছত্রাক থেকে নিঃসৃত একটা কেমিক্যাল আবিষ্কার করেন যা ব্যাকটেরিয়া ধ্বংস করতে সক্ষম হয়। ১৯৩৯ সালে ফ্লেমিং এর আবিষ্কার থেকে ব্রিটিশ গবেষক হাওয়ার্ড ফ্লোরে এবং আর্নেস্ট চেইন সর্বপ্রথম পেনিসিলিন ড্রাগস আবিষ্কার করতে সক্ষম হন । এই পেনিসিলিন ছত্রাক, ইনফেকশনে আক্রান্ত ইঁদুরের উপর প্রয়োগ করে দেখা যায়, ইঁদুরের ক্ষতি না হলেও ব্যাকটেরিয়াগুলো মরে যাচ্ছে । ১৯৪১ সালে দ্বিতীয় বিশ্বযুদ্ধের শুরুতে নাৎসিদের ভয়ে ফ্লোরে এবং চেইন ইংল্যান্ড থেকে পেনিসিলিন নিয়ে আমেরিকায় চলে আসেন ।

ব্রয়লার মুরগি

আমেরিকায় পেনিসিলিনের সাফল্যের পর একে একে স্ট্রেপটোমাইসিন, ক্লোরামফেনিকল আবিষ্কৃত হলে ফাইজার সহ বিভিন্ন কোম্পানি সারা বিশ্বে তন্ন তন্ন করে নতুন নতুন ছত্রাক খুঁজা শুরু করে । কারণ যুদ্ধের আহতদের সেবার জন্য প্রচুর এন্টিবায়োটিক দরকার পড়ছিলো।

এই অবস্থায় ১৯৪৮ সালে লেডেরল কোম্পানি ‘স্ট্রেপটোমাইসিন অরিওফাসিয়েনস” নামে একটি এন্টিবায়োটিক প্যাটেন্ট করার আবেদন করে। যেহেতু এন্টিবায়োটিক সোনার মত দামি ছিলো তখন তাই এই এন্টিবায়োটিকের নাম করা হয় “Aureomycin” , Aureo অর্থ হচ্ছে সোনা। পরবর্তীতে এটি chlortetracycline নামে পরিচিত হয় যা ট্রেট্রাসাইক্লিন গ্রুপের প্রথম এন্টিবায়োটিক।

থমাস জুকাসের কাছে ফিরে আসি, এন্টিবায়োটিক উৎপাদনে তার সংশ্লিষ্টতা ছিলো না, বরং তাকে নিয়োগ দেয়া হয় নিউট্রিশন ডিপার্টমেন্টে। কৃত্রিম একটা ফলিক এসিড তৈরির জন্য দ্বায়িত্ব দেয়া হয় তাকে, যেটা জন্মগত ডিফেক্ট রোধ করতে ব্যবহৃত হবে। জিনিয়াস জুকাস Methotrexate নামে ক্যান্সার কেমোথেরাপি ড্রাগস আবিষ্কার করে যেটা ফ্যালোপিয়ান টিউবে বাচ্চার এবরশন করার জন্যও ব্যবহৃত হয় ।

ব্রয়লার মুরগির

জুকাস কাজ করছিলো আবদ্ধ জায়গায় মুরগিকে কি খাইয়ে বড় করা যায়। তখন পর্যন্ত আমেরিকার মানুষজন মুরগি ছেড়েই পালতো, আলাদাভাবে রেশনের কোন ব্যবস্থা ছিলোনা। জুকাসের ফোকাস ছিলো মুরগির ওজন নিয়ে।

ক্রিসমাসের দিনে তার সামনে ছিলো বেশ কতগুলো ৩ দিনের মুরগির বাচ্চা । এদেরকে ৩ প্রকার খাদ্য সরবরাহ করেছে সে। সবগুলোর ওজন মাপার পর ৩ প্রকার রেশনের মূল্যায়ন করবে সে পোল্ট্রি ইন্ডাস্ট্রির জন্য আসলেই সবচেয়ে খুশির ক্রিসমাস দিন ছিলো সেটি ।

এ.এফ.এম .ফয়জুল ইসলাম

বিসিএস ( লাইভস্টক)
বি.এসসি. ইন এনিম্যাল হাজবেন্ড্রি, বাকৃবি
এম.এস. ইন এনিম্যাল ব্রিডিং এন্ড জেনেটিক্স, বাকৃবি
পোল্ট্রি এন্ড ডেইরি কনসালটেন্ট

Botany vs. Horticulture | Exploring the Green World

Agricultural engineering

Introduction:

Botany vs. Horticulture ,yes now know all about this .The realm of plant science is vast and diverse, encompassing various branches that delve into the fascinating world of flora. Two prominent fields within this domain are botany and horticulture, each with its unique focus and contributions. In this exploration, we’ll uncover the distinctions and similarities between botany and horticulture, shedding light on the roles these disciplines play in understanding and cultivating plants.

Botany vs. Horticulture

Botany:

Botany is the scientific study of plants, encompassing their structure, physiology, classification, ecology, evolution, and more. Botanists, or plant scientists, investigate the fundamental aspects of plant life, ranging from microscopic cellular structures to large ecosystems. Their research helps unravel the mysteries of plant genetics, growth patterns, and interactions with the environment. Botany serves as the foundation for understanding the principles that govern plant life in its entirety.

Horticulture:

On the other hand, horticulture is a field that focuses on the art and science of growing fruits, vegetables, nuts, seeds, herbs, sprouts, mushrooms, algae, flowers, seaweeds, and non-food crops such as grass and ornamental trees and plants. Horticulturists apply scientific knowledge to cultivate and propagate plants for practical purposes, including food production, landscaping, and ornamental gardening. This field encompasses various specializations such as pomology (fruit cultivation), olericulture (vegetable cultivation), and floriculture (flower cultivation).

Key Differences: Botany vs. Horticulture

Scope:

Botany is a broad scientific discipline that investigates all aspects of plant life, from molecular structures to ecosystems.
Horticulture is a more applied field, focusing on the cultivation and management of plants for specific purposes.

Purpose:

Botany seeks to understand the fundamental principles governing plant life and ecosystems.
Horticulture aims to apply scientific knowledge to enhance the cultivation of plants for human use, whether for food, medicine, or aesthetic purposes.

Applications:

Botany’s applications are diverse, including ecological conservation, plant breeding, and genetic engineering.
Horticulture’s applications are practical, contributing to agriculture, landscaping, and beautifying spaces.

Botany vs. Horticulture

Approach:

Botanists often conduct research in laboratories, examining plant structures and processes at a molecular and ecological level.
Horticulturists work hands-on, applying scientific principles to grow and care for plants in a variety of settings.

Now that you’ve acquainted yourself with the essential details, you’re likely aware that botany and horticulture aren’t two sides of the same coin. The lingering question, however, is the precise nature of their differences. In essence, botany is a scientific exploration of plants, involving the study of their structure, physiology, and more. Conversely, horticulture is a blend of science and art, aiming to cultivate and manage gardens and plants.

Botany, as a comprehensive science, examines living plant organisms spanning from the tiniest algae to the grandest trees. Horticulture, seen as an extension of botany, is an applied science concentrating on ornamental and edible plant life.

Choosing between these two college programs not only sets you on distinct career paths but also ensures exposure to both sciences due to their shared elements. For instance, students of horticultural science delve into plant physiology and taxonomy to gain a richer understanding of plant culture and diversity.

Conclusion:

In summary, while botany provides the foundational knowledge about plants, horticulture takes this knowledge and applies it to practical, real-world scenarios. Both fields play crucial roles in advancing our understanding of plant life and ensuring its sustainable and beneficial utilization. Whether you’re captivated by the complexities of plant biology or have a green thumb for cultivation, botany and horticulture offer exciting avenues for exploration in the green world.

Read more ..

Agricultural Engineering Job sector in Bangladesh

Job sector

কৃষিপ্রধান বাংলাদেশের সাধারণ মানুষের অর্থনৈতিক মুক্তি আনয়ন এবং খাদ্যে স্বয়ংসম্পূর্ণতা অর্জনের লক্ষ্যে কৃষি সম্পর্কিত যাবতীয় শাখাসমুহের পাশাপাশি কৃষিতে আধুনিক প্রকৌশল প্রযুক্তি একান্ত অপরিহার্য। এটি উপলব্ধি করে বাংলাদেশ কৃষি বিশ্ববিদ্যালয়ে১৯৬৪সালে Agricultural engineering এর যাত্রা শুরু হয়।

Job sector

বাংলাদেশে_কর্মক্ষেত্র :

১। বাকৃবি,হাবিপ্রবি, সিকৃবি,খুকৃবি এবং অনান্য কৃষি (শিক্ষকতা)

২।বাংলাদেশ কৃষি উন্নয়ন কর্পোরেশন (বিএডিসি)

৩।বরেন্দ্র বহুমূখী উন্নয়ন কতৃপক্ষ(বিএমএ)

৪।কৃষি সম্প্রসারণ অধিদপ্তর(ডিএই)

৫।বাংলাদেশ কৃষি গবেষণা ইনস্টিটিউট (বারি)

৬।বাংলাদেশ ধান গবেষণা ইনস্টিটিউট (বিরি)

৭।বাংলাদেশ গম গবেষণা ইনস্টিটিউট

৮।বাংলাদেশ ইনস্টিটিউট অফ নিউক্লিয়ার এগ্রিকালচার (বিনা)

৯। বাংলাদেশ কৃষি গবেষণা কাউন্সিল

১০।পল্লী বিদ্যুতায়ন বোর্ড

১১।বাংলাদেশ পানি উন্নয়ন বোর্ড

১২।বাংলাদেশ পল্লী উন্নয়ন একাডেমি (বার্ড)

১৩।বাংলাদেশ ইক্ষু গবেষণা ইনস্টিটিউট

১৪।বাংলাদেশ সুগার এন্ড ফুড ইনডাস্ট্রিস কর্পোরেশন

১৫।রুরাল ডেভেলপমেন্ট একাডেমি (আর.ডি.এ)

১৬।নদী গবেষণা ইনস্টিটিউট

১৭।ওয়াটার রিসোর্সেস প্লানিং অরগানাইজেশন

১৮।পল্লী বিদ্যুত সমিতি

১৯।টেকনিক্যাল স্কুল অ্যান্ড কলেজ

২০।টেকনিক্যাল এডুকেশন বোর্ড

২১।পলিটেকনিক ইনস্টিটিউট

২২।টেকনিক্যাল ইডুকেশন ডিরেক্টরেট

২৩।বিভিন্ন সরকারি ও বে-সরকারি ব্যাংক

২৪।বে-সরকারি প্রতিষ্ঠান (ব্রাক,প্রোশিকা ,আর.ডি.আর.এস)

২৫।প্রাইভেট এগ্রো-বিজনেস ইনস্টিটিউট

২৬।এগ্রো-ইনডাস্ট্রিস (এসিআই মটরস, প্রাণ ও অনান্য)

২৭।বিভিন্ন ইঞ্জিনিয়ারিং ওয়ার্কসপ

২৮।Food developing orrganizations

২৯।S.R.I_soil resourcing institutions

৩০।বাংলাদেশ বনবিভাগ

৩১।Structural designing authority

৩২।পরিবেশ উন্নয়ন অধিদফতর

৩৩।ইকো ফরেস্ট্রি কম্পানিস

৩৪।E.d.o

৩৫।Environmental resources & plant management orrganiztn

৩৬। diffrnt multinational comp.

৩৭। IRRi

৩৮। f.r.i

৩৯। surveying national employment

৪০। EPZ

৪১। রুরাই

৪২। railway corp.

৪৩। crop deductions institutions

৪৪। BAuneps

৪৫। R.D.O

৪৬। diplomatic polytecnic ins.

৪৭। agri enhencement group (a.e.g)

৪৮। kazi farms

৪৯। ban বিজ্ঞান ও শিল্প একাডেমি

৫০।পেট্রলিয়াম research institutions

৫১।পল্লী গবেষনা কেন্দ্র

৫২।Fertiliser enhancement organizations

৫৩। factory farm projects

৫৪।agri extention ministry

৫৫। ACI

৫৬।Sinzenta

৫৭। BSTTC

৫৮। BSTI

৫৯।B.P.E.P.c

৬০।আবেদিন ইকুইপমেন্ট লি.

৬১।মেটাল প্রাইভেট লি.

৬২।গেটকো

৬৩।ইফাদ গ্রুপ

৬৪। কর্নফুলি গ্রুপ

৬৫।RFL

.

শীঘ্রই বাংলাদেশ সরকারি কর্ম কমিশন (বিপিএসসি)তে টেকনিক্যাল ক্যাডার-এ কৃষি প্রকৌশল অর্ন্তভুক্ত হবে ও প্রতিটি জেলায় একজন করে কৃষি প্রকৌশলী নিয়োগ দেয়া হবে এবং ক্রমান্বেয়ে তা উপজেলায় প্রসারিত হবে। একজন প্রকৌশলী হিসেবে সরকারি চাকুরীজীবি হওয়ার সুযোগ এই বাংলাদেশে একজন কৃষি প্রকৌশলীই প্রথম পাবেন এই সম্মান ও কাজের মর্যাদা।

Subject review : Agricultural Engineering

কৃষি প্রকৌশল ও প্রযুক্তি অনুষদ

Subject review : Agricultural Engineering | বর্তমান যুগ বিজ্ঞান ও প্রযুক্তির যুগ । আর এই বিজ্ঞানের যুগে প্রযুক্তি ছাড়া কৃষিক্ষেত্র কল্পনা করাই যায় নাহ। একজন প্রকৌশলী হয়ে আপনি নিজেকে নিয়ে গর্ববোধ করতে বাধ্য কারণ দেশের উন্নতিই হবে আপনার হাতে উদ্ভাবিত নতুন কিছু কৃষি প্রযুক্তি দিয়ে যা এই কৃষিপ্রধান দেশের কৃষকদের উন্নতির পাশাপাশি দেশের অর্থনীতি সমৃদ্ধ করতে সাহায্য করবে।

কৃষি প্রকৌশল ও প্রযুক্তি অনুষদ

কৃষি_প্রকৌশল :

কৃষিপ্রধান বাংলাদেশের সাধারণ মানুষের অর্থনৈতিক মুক্তি আনয়ন এবং খাদ্যে স্বয়ংসম্পূর্ণতা অর্জনের লক্ষ্যে কৃষি সম্পর্কিত যাবতীয় শাখাসমুহের পাশাপাশি কৃষিতে আধুনিক প্রকৌশল প্রযুক্তি একান্ত অপরিহার্য। এটি উপলব্ধি করে বাংলাদেশ কৃষি বিশ্ববিদ্যালয়ে১৯৬৪সালে এগ্রিকালচারাল ইঞ্জিনিয়ারিং এর যাত্রা শুরু হয়।

সিলেবাস :

ফিজিক্যাল, বায়োলজীক্যাল ও সোস্যাল সাইন্স এর সমন্বয় যা সিভিল।ওয়াটার রিসোর্স, মেক্যানিক্যাল, ইলেকট্রিক্যাল এন্ডএনভাইরোনমেন্টাল ইঞ্জিনিয়ারিং কে একএে সংযুক্ত করে। মুল বিষয়গুলো হল

  • ফার্ম মেশিনারি।
  • ইরিগেশন এন্ড ওয়াটার ম্যানেজমেন্ট।
  • ল্যান্ড ড্রেনেজ এন্ড রিক্লেমেশান।
  • সারফেস এন্ড গ্রাউন্ড ওয়াটার রিসোর্স।
  • ইন্টিগ্রেটেড ওয়াটার রিসোর্স ম্যানেজমেন্ট,ক্লাইমেট এন্ড এগ্রিকালচার।
  • পোস্ট হারভেস্ট টেকনোলজি। ৭।রিনিউএবল এনার্জি এন্ড বায়োরিসোর্স,
  • লো -কস্ট হাউজিং, ফার্ম
  • এনভায়রোনমেন্ট এন্ড স্ট্রাকচার।
  • স্টোরেজ ফ্যাসিলিটিস এন্ড কম্পিউটার প্রোগ্রামিং।
কৃষি প্রকৌশল ও প্রযুক্তি অনুষদ

কোথায়_পড়বেন :

চারটি বিশ্ববিদ্যালয়ে এই বিষয়ে পড়ানো হয়:

১.বাংলাদেশ কৃষি বিশ্ববিদ্যালয়(বাকৃবি)১৯৬৪ সাল থেকে।(১০০ টি সিট)

২.হাজী মোহাম্মদ দানেশ বিজ্ঞান ও প্রযুক্তি বিশ্ববিদ্যালয়(হাবিপ্রবি)২০০৯সাল থেকে। (৬৪ টি সিট)

৩.সিলেট কৃষি বিশ্ববিদ্যালয় (সিকৃবি) তে ২০১২ সাল থেকে।(৬০ টি সিট)

৪.খুলনা কৃষি বিশ্ববিদ্যালয় (খুকৃবি)তে ২০২০ সাল থেকে।(৩০ টি সিট)

মোট ২৫৪ টি সিট আছে এই বিষয়ে

এছাড়া ও বাংলাদেশ প্রকৌশল ও প্রযুক্তি বিশ্ববিদ্যালয় (বুয়েট) এ এম.এস.সি করার যথেষ্ট সুযোগ রয়েছে। শেখ মুজিবুর রহমান কৃষি বিশ্ববিদ্যালয় এ এগ্রিকালচারাল ইঞ্জিনিয়ারিং ডিপার্টমেন্ট এর

আওতায় গবেষণা কর্ম চলছে এবং ভবিষ্যতে এখানে আরও প্রোগ্রাম চালু হবে।

ইঞ্জিনিয়ার_হিসেবে_আপনি :

সারাদেশের ইঞ্জিনিয়ারদের নিবন্ধন ও তাদের সব ধরণের কার্যক্রম পরিচালনা করে ইঞ্জিনিয়ার’স ইন্সটিটিউশন,বাংলাদেশ­ (আই.ই.বি)।এর অনুমোদিতরা শুধু নিজেকে একজন ইঞ্জিনিয়ার হিসেবে দাবি করতে পারে । নামের আগে Engr. লাগাতে পারে। আই.ই.বি এর মোট ৭ টি ডিভিশন বা বিভাগ রয়েছে। সেগুলো হল:

১।সিভিল ইঞ্জিনিয়ারিং

২।মেকানিক্যাল ইঞ্জিনিয়ারিং

৩।ইলেকট্রিক্যাল ইঞ্জিনিয়ারিং

৪।কেমিক্যাল ইঞ্জিনিয়ারিং

৫।এগ্রিকালচারাল ইঞ্জিনিয়ারিং

৬।কম্পিউটার ইঞ্জিনিয়ারিং

৭।টেক্সটাইল ইঞ্জিনিয়ারিং

এর মধ্যে একটি অন্যতম বিভাগ হল এগ্রিকালচারাল ইঞ্জিনিয়ারিং যা ১৯৯৪ সাল হতে আই.ই.বি তে একটি স্বতন্ত্র বিভাগ হিসেবে তার কর্মকান্ড পরিচালনা করে আসছে।

কৃষি প্রকৌশল ও প্রযুক্তি অনুষদ

বিদেশে_উচ্চশিক্ষা :

বিদেশে উচ্চশিক্ষার জন্য এগ্রিকালচারাল ইঞ্জিনিয়াররা অনেক সুযোগ পেয়ে থাকেন।এপ্লাইড

সায়েন্স সম্পর্কিত বিদেশে এমন কোনো বিশ্ববিদ্যালয় নেই এই বিষয়ে পড়ানো হয় না।বতর্মানে প্রচুর শিক্ষাথী

বেলজিয়াম,সুইডেন, ইংল্যান্ড, আমেরিকা, কানাডা,

অস্ট্রেলিয়া, চায়না, জাপান, দক্ষিণ

কোরিয়া,ইউকে,তুরস্ক,­মেক্সিকো,পেরু,দুবাই,­হংকং,কাতার,

মালেয়শিয়া, ইন্ডিয়া ও বিভিন্ন দেশে উচ্চশিক্ষা নিচ্ছে। তাছাড়া একজন ইঞ্জিনিয়ার হিসেবে সায়েন্স

এর অন্য বিষয়েও প্রচুর পড়াশোনার ও গবেষণার সুযোগ রয়েছে।

বাংলাদেশে_কর্মক্ষেত্র :

১। বাকৃবি,হাবিপ্রবি, সিকৃবি,খুকৃবি এবং অনান্য কৃষি (শিক্ষকতা)

২।বাংলাদেশ কৃষি উন্নয়ন কর্পোরেশন (বিএডিসি)

৩।বরেন্দ্র বহুমূখী উন্নয়ন কতৃপক্ষ(বিএমএ)

৪।কৃষি সম্প্রসারণ অধিদপ্তর(ডিএই)

৫।বাংলাদেশ কৃষি গবেষণা ইনস্টিটিউট (বারি)

৬।বাংলাদেশ ধান গবেষণা ইনস্টিটিউট (বিরি)

৭।বাংলাদেশ গম গবেষণা ইনস্টিটিউট

৮।বাংলাদেশ ইনস্টিটিউট অফ নিউক্লিয়ার এগ্রিকালচার (বিনা)

৯। বাংলাদেশ কৃষি গবেষণা কাউন্সিল

১০।পল্লী বিদ্যুতায়ন বোর্ড

১১।বাংলাদেশ পানি উন্নয়ন বোর্ড

১২।বাংলাদেশ পল্লী উন্নয়ন একাডেমি (বার্ড)

১৩।বাংলাদেশ ইক্ষু গবেষণা ইনস্টিটিউট

১৪।বাংলাদেশ সুগার এন্ড ফুড ইনডাস্ট্রিস কর্পোরেশন

১৫।রুরাল ডেভেলপমেন্ট একাডেমি (আর.ডি.এ)

১৬।নদী গবেষণা ইনস্টিটিউট

১৭।ওয়াটার রিসোর্সেস প্লানিং অরগানাইজেশন

১৮।পল্লী বিদ্যুত সমিতি

১৯।টেকনিক্যাল স্কুল অ্যান্ড কলেজ

২০।টেকনিক্যাল এডুকেশন বোর্ড

২১।পলিটেকনিক ইনস্টিটিউট

২২।টেকনিক্যাল ইডুকেশন ডিরেক্টরেট

২৩।বিভিন্ন সরকারি ও বে-সরকারি ব্যাংক

২৪।বে-সরকারি প্রতিষ্ঠান (ব্রাক,প্রোশিকা ,আর.ডি.আর.এস)

২৫।প্রাইভেট এগ্রো-বিজনেস ইনস্টিটিউট

২৬।এগ্রো-ইনডাস্ট্রিস (এসিআই মটরস, প্রাণ ও অনান্য)

২৭।বিভিন্ন ইঞ্জিনিয়ারিং ওয়ার্কসপ

২৮।Food developing orrganizations

২৯।S.R.I_soil resourcing institutions

৩০।বাংলাদেশ বনবিভাগ

৩১।Structural designing authority

৩২।পরিবেশ উন্নয়ন অধিদফতর

৩৩।ইকো ফরেস্ট্রি কম্পানিস

৩৪।E.d.o

৩৫।Environmental resources & plant management orrganiztn

৩৬। diffrnt multinational comp.

৩৭। IRRi

৩৮। f.r.i

৩৯। surveying national employment

৪০। EPZ

৪১। রুরাই

৪২। railway corp.

৪৩। crop deductions institutions

৪৪। BAuneps

৪৫। R.D.O

৪৬। diplomatic polytecnic ins.

৪৭। agri enhencement group (a.e.g)

৪৮। kazi farms

৪৯। ban বিজ্ঞান ও শিল্প একাডেমি

৫০।পেট্রলিয়াম research institutions

৫১।পল্লী গবেষনা কেন্দ্র

৫২।Fertiliser enhancement organizations

৫৩। factory farm projects

৫৪।agri extention ministry

৫৫। ACI

৫৬।Sinzenta

৫৭। BSTTC

৫৮। BSTI

৫৯।B.P.E.P.c

৬০।আবেদিন ইকুইপমেন্ট লি.

৬১।মেটাল প্রাইভেট লি.

৬২।গেটকো

৬৩।ইফাদ গ্রুপ

৬৪। কর্নফুলি গ্রুপ

৬৫।RFL

.

শীঘ্রই বাংলাদেশ সরকারি কর্ম কমিশন (বিপিএসসি)তে টেকনিক্যাল ক্যাডার-এ কৃষি প্রকৌশল অর্ন্তভুক্ত হবে ও প্রতিটি জেলায় একজন করে কৃষি প্রকৌশলী নিয়োগ দেয়া হবে এবং ক্রমান্বেয়ে তা উপজেলায় প্রসারিত হবে। একজন প্রকৌশলী হিসেবে সরকারি চাকুরীজীবি হওয়ার সুযোগ এই বাংলাদেশে একজন কৃষি প্রকৌশলীই প্রথম পাবেন এই সম্মান ও কাজের মর্যাদা।

B Tech agricultural engineering scope

b tech agricultural engineering scope

Upon obtaining a bachelor’s degree in agriculture, individuals have the option to either enter the workforce or pursue further education. Various specialized fields are accessible for advanced studies in this domain. Aspiring candidates can opt for master’s degrees in diverse areas, such as:

b tech agricultural engineering scope

Scope of BTech Agricultural Engineering

Here are the b tech agricultural engineering scope

  • Master’s Degree in Agricultural Engineering
  • Master’s in Hydrology
  • Master’s in Integrated Water Resources Management (ME)
  • Master of Science in Agriculture (MSc Agriculture)

Job Profiles

  • Agricultural Engineer
  • Microbiologist
    Project Manager Head
  • Green Keepers
    Agricultural Managers
  • Research Analysts,
  • Agronomists dairy boards
  • research departments
  • agriculture machinery manufacturing
  • firms , food products processing
  • fertilizer firms

B Tech Agricultural engineering subjects

b tech agricultural engineering subjects

Introduction

Bachelor of Technology (BTech) in Agricultural Engineering is a four-year undergraduate program that focuses on the application of engineering principles to the field of agriculture. This program combines aspects of agricultural science, technology, and engineering to equip students with the knowledge and skills needed to address challenges and enhance efficiency in the agricultural sector.

b tech agricultural engineering subjects

b tech agricultural engineering subjects

Below are the subject of B tech agricultural engineering

DrawingCrop Processing Engineering
Engineering Chemistry Mechanics
Agricultural Process in Industries Engineering Physics
MathematicsBiotechnology

B Tech agricultural engineering syllabus

B Tech agricultural engineering syllabus

Introduction

The BTech Agricultural Engineering is a four-year undergraduate course that focuses on the machinery, engineering principles, and scientific aspects of the agricultural sector. Upon completion of the BTech Agricultural Engineering course, graduates become eligible for employment in various sectors, including agri-business firms, food processing industries, and agricultural research and development organizations.

B Tech agricultural engineering syllabus

B Tech agricultural engineering syllabus

Below the syllabus of the B Tech agricultural engineering syllabus program

Open ElectiveBio-Agricultural
Physical ChemistryEngineering Mechanics
Engineering Mechanics Engineering Drawing
Mathematics 1Science of Soils
Unit Operations in Food Technology Engineering Physics 2
Engineering Physics 1Horticulture and Field Crops
Tools and Control of MachinesFarm Machinery
Surveying and Labelling MethodsSoil Mechanics
BiotechnologyRenewable Energy
Statistical MethodsBasic of Agricultural Engineering
Air Conditioning and RefrigeratingOperation Research
Environmental StudiesTractors and Power Units
Agricultural Process in Industries Mathematics 2
Soil PhysicsCrop Processing Engineering
Engineering Chemistry 1Agricultural processing Technology

Conclusion

Pursuing higher studies such as MTech agricultural engineering and MBA is a common pathway for BTech graduates looking to advance their education and career opportunities .Through out the program, students undergo preparation to identify and resolve real-world challenges in the field.

B Tech agricultural engineering

b tech agricultural engineering

Introduction

The BTech Agricultural Engineering is a four-year undergraduate course that focuses on the machinery, engineering principles, and scientific aspects of the agricultural sector. The syllabus covers topics such as farm machinery, soil science, and agricultural production. Admission to the BTech Agricultural Engineering program is based on common engineering entrance exams, with nationally recognized exams like JEE Main and JEE Advanced being widely accepted. The registration for these entrance examinations typically occurs in multiple phases from May to July 2024.

b tech agricultural engineering

Upon completion of the BTech Agricultural Engineering course, graduates become eligible for employment in various sectors, including agri-business firms, food processing industries, and agricultural research and development organizations. Entry-level graduates from this program can anticipate an annual salary ranging between INR 1.5 to 2.5 lakhs. Pursuing higher studies such as MTech and MBA is a common pathway for BTech graduates looking to advance their education and career opportunities.

b tech agricultural engineering at a glance

  • The BTech program in Agricultural Engineering is a four-year undergraduate course tailored for those pursuing studies in agriculture.
  • Throughout the program, students undergo preparation to identify and resolve real-world challenges in the field.
  • Admission to the BTech Agricultural Engineering program is based on both entrance exams and merit.
  • Common entrance exams for enrollment in this course include JEE Mains, KCET, ICAR AIEEA, among others.
  • To be eligible for the BE/BTech course, a minimum of 75% marks in the relevant stream is required during class 12th.
  • The average annual fee for the BE/BTech course typically ranges from INR 50,000 to 15,00,000, providing prospective students with a comprehensive overview of the financial considerations associated with this program.

Agricultural engineer education requirements

Agricultural engineer education requirements

Agricultural engineer education requirements for Becoming an agricultural engineer involves fulfilling specific educational requirements and acquiring a diverse skill set. Here’s an in-depth look at the educational journey and qualifications typically needed for a successful career in agricultural engineering:

Agricultural engineer education requirements

Requirements

1. Educational Foundation:

Bachelor’s Degree: The foundational step is earning a bachelor’s degree in Agricultural Engineering or a closely related field. Relevant majors include Agricultural and Biological Engineering, Agricultural Systems Management, or Biosystems Engineering. This comprehensive program covers a spectrum of subjects, including fluid mechanics, machine design, and agricultural structures.

2. Specialized Coursework:

Core Agricultural Courses: Programs incorporate essential agricultural science courses, providing a deep understanding of plant and animal sciences, as well as crop management principles.
Engineering Courses: The curriculum includes engineering-focused courses covering mechanics, thermodynamics, and design principles, ensuring a well-rounded education.

3. Practical Exposure:

Internships or Co-op Programs: Gaining practical experience through internships or cooperative education programs is highly valuable. These opportunities allow students to apply theoretical knowledge in real-world agricultural engineering scenarios, fostering hands-on skills.

4. Advanced Degrees (Optional):

Master’s Degree: While a bachelor’s degree suffices for entry-level roles, pursuing a master’s degree in Agricultural Engineering or a related field can enhance career prospects. Advanced degrees may be essential for specialized positions or those focused on research.

Ph.D. (Doctorate): Individuals interested in research, academia, or leadership roles may choose to pursue a Ph.D. in Agricultural Engineering, providing an in-depth understanding of the field.

5. Professional Certification (Optional):

Professional Engineer (PE) License: While not universally mandatory, obtaining a Professional Engineer (PE) license can be advantageous. This certification, requiring a combination of education, work experience, and exam completion (Fundamentals of Engineering and Professional Engineering), signifies a high level of expertise.

6. Skills Development:

Technical Proficiency: Agricultural engineers need strong technical skills, including proficiency in engineering software, modeling tools, and other specialized applications.

Problem-Solving Acumen: The ability to analyze and solve complex problems related to agricultural systems is crucial for success in this field.
Effective Communication: Given collaboration with diverse teams, presenting findings, and interacting with clients, effective communication skills are essential for agricultural engineers.


It’s important to note that specific educational requirements may vary by employer and region. Prospective agricultural engineers should research the expectations of their target organizations to tailor their educational and professional development accordingly.

where do agricultural engineers work

where do agricultural engineers work
where do agricultural engineers work

where do agricultural engineers work ? Agricultural engineers work in diverse settings, contributing their expertise to various aspects of the agricultural sector. Here are some common work environments where you can find agricultural engineers:

  • Farms and Agricultural Facilities: Many agricultural engineers work directly on farms, applying their knowledge to optimize farming practices, improve efficiency, and enhance sustainability.
  • Universities and Research Institutions: Agricultural engineers often engage in research and development activities. They may work in academic institutions, conducting studies to advance agricultural technologies and practices.
  • Agricultural Equipment Manufacturing Companies: Companies that design, manufacture, and sell agricultural machinery and equipment employ agricultural engineers. Here, they contribute to the development and improvement of farming tools.
  • Agribusiness Companies: Agricultural engineers may work for large agribusiness corporations involved in various aspects of the agricultural supply chain, from production to distribution.
  • Government Agencies: Government bodies related to agriculture may employ agricultural engineers to provide expertise in policy development, research, and the implementation of agricultural initiatives.
  • Environmental Consulting Firms: Given their focus on sustainability, some agricultural engineers work for environmental consulting firms. Here, they address environmental issues related to agriculture and develop solutions for eco-friendly farming practices.
  • Food Processing and Manufacturing Industries: Agricultural engineers play a role in the processing and manufacturing of agricultural products. This includes designing systems for food storage, preservation, and processing.
  • Fertilizer and Chemical Companies: Companies involved in the production and research of agricultural chemicals and fertilizers may hire agricultural engineers to contribute to the development of these products.
  • International Organizations: Agricultural engineers may work with international organizations that focus on global agricultural development, providing their expertise to address food security and sustainability challenges worldwide.
  • Research and Development Laboratories: Agricultural engineers may be employed in private or public research laboratories, where they work on innovative projects to improve agricultural techniques, develop new technologies, and address emerging challenges.
  • Consultancy Services: Some agricultural engineers choose to work independently or with consulting firms, offering their expertise to various clients in the agricultural industry.
  • Seed Manufacturing Companies: Agricultural engineers may be involved in the research and development of new crop varieties for seed manufacturing companies, contributing to advancements in plant genetics.

In summary, the versatility of agricultural engineering allows professionals in this field to work in a wide range of settings, contributing to the advancement and sustainability of agriculture in various capacities.

What do agricultural engineers do

What do agricultural engineers do
What do agricultural engineers do

What do agricultural engineers do | Introduction

Agricultural engineers are like the superheroes of farming, but what do agricultural engineers do ? They are doing a whole bunch of cool stuff to make agriculture better and more sustainable. Let’s dive into the awesome world of what they do

  • Tech Wiz-kids: These engineers are all about bringing the latest and greatest tech to the farm. They’re like the tech wizards, working on super-smart machinery, automation, and high-tech farming methods to make everything run smoother and produce more.
  • Gadget Gurus: Ever wondered about those cool farm gadgets? Yup, that’s the work of agricultural engineers. They design and come up with nifty tools that make planting, harvesting, and prepping the land way easier and eco-friendly.
  • Green Champions: Saving the planet is on their agenda too! Agricultural engineers are like environmental superheroes, tackling issues like soil erosion, water conservation, and waste management to keep the farm vibes green and sustainable.
  • Power Rangers: No, not the TV show! These engineers are all about sorting out the power situation on the farm. They’re into renewable energy, making sure farms use energy wisely, and generally being eco-friendly power rangers.
  • Architects of Agriculture: Farm layouts, storage spots, and processing plants – that’s the domain of agricultural engineers. They’re like the architects, making sure everything is organized, safe, and optimized for smooth farming operations.
  • Crop Whisperers: You know those people who seem to understand plants and animals? Yup, that’s them too. Agricultural engineers offer advice on how to take care of crops and livestock, making sure everything grows happy and healthy.
  • Innovators Extraordinaire: Always on the lookout for the next big thing, these engineers are constantly researching and developing cool solutions for farming. Whether it’s finding new ways to use leftover farm stuff or inventing tools to boost productivity, they’re on it.
  • Agri-Educators: Some of these engineers are like the cool teachers of the farming world. They run workshops, training sessions, and share resources with farmers, spreading the knowledge and skills needed to make farming even more awesome.
  • Quality Control Heroes: Ever wonder how your veggies end up so fresh? Agricultural engineers make sure of that too. They design systems for storing, ventilating, and transporting produce, ensuring it stays top-notch from the farm to your plate.

Conclusion

So, in a nutshell, agricultural engineers are the behind-the-scenes heroes making sure farming is not just a job but a high-tech, eco-friendly adventure. They’re the game-changers, making the world of agriculture better, one innovative idea at a time!

Agricultural Engineer job description

tech agricultural engineering

This article furnishes comprehensive details regarding the job responsibilities of agricultural engineers, encompassing their key duties, tasks, and commonly performed functions.

It also outlines the primary prerequisites that potential candidates are likely to encounter when seeking employment as agricultural engineers with most employers or recruiters.

Agricultural Engineer job description

What Does an Agricultural Engineer Do?

An agricultural engineer plays a pivotal role in ensuring that general farming practices are safe, sustainable, and environmentally friendly. The job description involves exploring new technologies to enhance agricultural production, land utilization, and resource management. Additionally, agricultural engineers analyze farming activities within specific areas, offering recommendations to maintain the safety and well-being of agricultural workers, animals, and produce.

Responsibilities extend to designing agricultural equipment, developing innovative methods for planting, harvesting, and land preparation. Agricultural engineers strive to minimize crop yield loss during handling and packaging, addressing aspects such as heating/cooling, preservation, ventilation, and logistics of farm produce. Automation and precision technology are integral to their work, and they actively contribute to researching new applications for agricultural byproducts.

Work schedules for agricultural engineers often depend on weather conditions and seasons, necessitating extended hours during peak seasons to maximize productivity. They collaborate with industries linked to agriculture, such as equipment manufacturing, food distribution, and seed production companies.

Agricultural Engineer Job Description Example/Sample/Template

Agricultural engineers undertake various functions to ensure the smooth execution of agricultural procedures and maximize product yield. The example below illustrates the typical tasks, duties, and responsibilities assigned to individuals working as agricultural engineers in farms or agricultural facilities:

  • Designing agricultural machinery and equipment
  • Testing machinery for smooth farm operations
  • Designing crop storage and processing facilities
  • Conducting educational programs for farmers
  • Supervising food processing within farms
  • Designing food processing plants and mechanical systems
  • Preparing sketches, proposals, and budgets for planned agricultural sites
Agricultural Engineer job description

Abilities and skills -For the role of an Agricultural Engineer

Employers typically seek candidates who meet specific requirements to be considered for the role of an agricultural engineer. These include:

  • Excellent communication and interpersonal skills
  • Proficiency in the installation, use, and repair of agricultural equipment
  • Ability to work collaboratively or lead a team
  • Strong attention to detail and organizational abilities
  • Problem-solving skills
  • Flexibility and good time management
  • In-depth knowledge of general agricultural procedures
  • A bachelor’s degree in Agricultural Engineering
  • Minimum of 3 years of experience in a similar position
  • A Master’s degree is advantageous

Why consider a career as an agricultural engineer?

The field of agricultural engineering is currently garnering significant attention for several compelling reasons:

1. High Demand for Recruitment:
In Vietnam, as a developing country heavily reliant on agriculture, there is a pronounced need for modernizing farming practices with new technology. The lack of specialized experience among agricultural workers, coupled with spontaneous crop cultivation and livestock raising, highlights the urgency for skilled professionals in this sector. The evolving landscape necessitates the recruitment of agricultural engineers to meet the industry’s demands.

2. Abundant Job Opportunities:
The heightened demand for agricultural engineers translates to a wealth of job opportunities. These positions are not only plentiful but also diverse and dynamic in terms of working locations. Depending on individual preferences and skills, one can choose to work in various settings, including universities, agricultural chemical companies, plant care businesses, fertilizer production enterprises, farms, and cooperatives.

3. Attractive Salary Packages:
Agricultural engineers often find themselves working in expansive rural areas and urban fringes, ideal for researching and developing crops and livestock. The scarcity of personnel in this industry contributes to relatively higher salaries. Presently, the average monthly salary for agricultural engineers ranges from VND 7 million to VND 15 million, with variations based on capacity, experience, business size, and specific roles such as animal husbandry engineer or plant protection engineer.

Furthermore, working in this field offers opportunities to engage with foreign partners, operate modern machinery, and enjoy additional appealing benefits and policies.

Meeting Requirements for the Role:

To increase your likelihood of securing a position as an agricultural engineer, it’s crucial to understand the essential requirements outlined by employers

Qualifications: Master farming knowledge, including weather characteristics, crops, and farming methods. Pursue majors in agriculture, forestry, landscape, or environment at universities.

Experience: Gain practical experience by actively working in livestock farms, crop farms, or small agricultural companies. Accumulate expertise to land desired positions, including those in large enterprises.

Skills and Qualities: Continuous improvement of skills such as teamwork, communication, computer proficiency, foreign language proficiency, time management, ability to work under pressure, honesty, enthusiasm, responsibility, dynamism, and passion for the profession are vital for efficient work.

Salary

The annual salary for Agricultural Engineers is $73,640, equivalent to $35.40 per hour.

These professionals focus on addressing agricultural challenges related to power supplies, machinery efficiency, utilization of structures and facilities, pollution and environmental concerns, as well as the storage and processing of agricultural products.

Interview Questions for Agricultural Engineers:

During the application process, preparing for interviews is key. Here are some smart interview questions and answers tailored for agricultural engineer positions

Tell me about yourself: Provide a brief overview of your full name, year of birth, and work experience.

Difficulties in agricultural projects: Discuss specific challenges you’ve encountered, detailing how you handled them and the lessons learned.

Used agricultural equipment: Showcase your experience with modern tools and equipment utilized in the agricultural industry, such as pumps, harvesting equipment, or planting tools.

Expectations in a new working environment: Express your preferences regarding remuneration policies and working environments, aligning them with the employer’s culture.

Conclusion.

This post serves as a valuable resource for hiring managers crafting detailed agricultural engineer job descriptions. It aids in attracting suitable applicants by highlighting key skills and qualifications. Candidates aspiring to pursue a career in agricultural engineering can use this information to enhance their resumes and gain insights into the expected duties in such roles. However, customization is advised based on specific organizational requirements and recruitment objectives

In summary, choosing a career as an agricultural engineer offers a blend of job satisfaction, diverse opportunities, and the chance to contribute to the modernization of agriculture in a developing economy. Read more

B.Tech in Agricultural Engineering

b tech agricultural engineering

B.Tech in Agricultural Engineering is the branch of engineering science . Hey there, fellow enthusiasts of all things green and growing! If you’re as intrigued by the marriage of tech and farming as we are, let’s dive into the fascinating world of B.Tech in Agricultural Engineering. It’s not just a degree; it’s like having a backstage pass to the coolest innovation party in agriculture. So, grab your gardening gloves, and let’s get friendly with the ins and outs of B.Tech Agricultural Engineering!

b tech agricultural engineering

Getting to the Root of it:

B.Tech in Agricultural Engineering is like the superhero of farming – blending the best of traditional farming vibes with the latest tech wizardry. Picture this: you get to understand the nitty-gritty of farming practices and then spice things up with cutting-edge tech solutions. It’s the kind of combo that makes you feel like a farming superhero!

Traditional Charm Meets Tech Magic:

What makes this program so cool is the way it brings together the timeless charm of farming traditions with the magic of modern technology. From using smart data tricks for super-precise farming to flying drones for checking on your crops, you get to be part of the tech-savvy farming revolution. It’s like giving your grandpa’s old tractor a superhero upgrade!

Curriculum Vibes of B.Tech in Agricultural Engineering :

So, what’s on the menu in B.Tech Agricultural Engineering? You’ve got a mix of everything – soil science, irrigation tricks, how to handle farm machinery like a pro, and even the secrets of post-harvest technology. And the best part? You don’t just sit in a classroom. You roll up your sleeves, get your hands dirty, and dive into the real-world farming experience.

Endless Career Adventures:

Now, let’s talk about life after B.Tech in Agricultural Engineering. It’s not your average 9-to-5. Sure, you can dive into agribusiness or become the ultimate farm manager, but there’s more. You could be the brain behind groundbreaking agricultural research, a consultant with a green thumb, or even a superhero in the food processing industry. The possibilities are as diverse as the colors in a well-tended garden!

Feeding the World, One Engineer at a Time:

In a world that’s hungry for solutions to feed its growing population, enter the B.Tech Agricultural Engineering graduates – the unsung heroes of global food security. They’re the ones making sure we not only have enough food on our plates but also doing it in a way that’s smart, sustainable, and downright awesome.

The Friendly Face of the Future:

As we step into a future where robots might be tending to our crops, B.Tech Agricultural Engineering is the friendly face leading the way. It’s not just about boosting crop production; it’s about doing it in a way that’s kind to our planet. Imagine a future where farms are like high-tech playgrounds, and you’re the one designing the games!

Conclusion:

B.Tech in Agricultural Engineering is not just a degree; it’s an invitation to be a part of something big, something green, and something that’s shaping the future of farming. So, if you’re passionate about agriculture, tech, and a bit of friendly revolution, B.Tech Agricultural Engineering is the adventure you’ve been waiting for. Let’s grow tomorrow together – one friendly engineer at a time! know more 🌱

Ryobi lawn mower

Ryobi lawn mower

Introduction

Ryobi lawn mower , Hey there, lawn enthusiasts! If you’re on a quest for the ultimate green paradise, you know it’s all about having the right tools. Enter Ryobi, your go-to brand for reliable and super cool lawn mowers. This article is your backstage pass to the world of Ryobi mowers, breaking down all the awesome features that make them a top pick for savvy homeowners like yourself.

Cutting-edge Awesomeness:

Ryobi lawn mower aren’t just about cutting grass; they’re about doing it with style and smarts. Whether you’re into the power-packed vibes of gas, the eco-friendly dance of electric, or the wire-free freedom of batteries, Ryobi mowers bring the tech magic. Picture this: Smart Trek technology making your mower follow you around for a hassle-free, precision cut. How cool is that?

Options for Every Lawn Party:

Lawns, like people, come in all shapes and sizes. Ryobi gets that and offers a mower for every lawn personality. Need a cute electric buddy for your small garden? Check. Craving a robust gas-powered beast for your sprawling backyard? Double-check. Ryobi has the perfect match for every home, making them the life of the lawn party.

Maintenance Made Easy:

Who needs complicated when you can have easy? Ryobi mowers are all about keeping things simple. Changing blades, adjusting heights, or just giving your mower a little TLC—Ryobi makes it a breeze. Spend more time enjoying your perfectly manicured lawn and less time wrestling with your mower. Now, that’s a win!

Green and Clean Choices:

For the eco-conscious folks, Ryobi has got your back. They’ve got electric and battery-powered mowers that not only keep the planet happy but also operate with a hush-hush vibe. It’s like giving your lawn a spa day, minus the noise and emissions. Ryobi’s way of saying, “Let’s keep it green, folks!”

Ryobi lawn mower

User-Friendly Vibes Ryobi lawn mower:

Ryobi mowers are the cool kids in the neighborhood. Comfortable handles, easy-peasy controls, and designs that just make sense—these mowers are all about making your life easier. Mulching, bagging, whatever you fancy, Ryobi’s got the features to make your lawn care routine as smooth as a Sunday morning.

Conclusion:

Ready to level up your lawn game? Investing in a Ryobi mower is like giving your lawn a VIP pass to the good life. From tech awesomeness to options for every lawn size, maintenance made easy, eco-friendly choices, and user-friendly vibes—Ryobi’s got it all. So, why settle for an ordinary lawn when you can have a Ryobi-fied masterpiece? Say hello to precision, innovation, and lawn care made fun. Your dream lawn is just a Ryobi mower away!

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About agricultural engineering

agricultural engineering

agricultural engineering

 

Introduction

Agricultural engineering is a field that plays a pivotal role in revolutionizing farming practices by combining principles of engineering with agricultural sciences. In this article, we will delve into the historical perspective, key areas, modern innovations, and the future outlook of agricultural engineering.

Historical Perspective

Agricultural engineering has evolved significantly over the years. From simple tools and techniques used in ancient times to the sophisticated machinery of today, the field has witnessed remarkable milestones that have transformed the landscape of agriculture.

 

Key Areas of Agricultural Engineering

Farm Machinery and Equipment
Agricultural engineers design and develop advanced machinery to enhance efficiency in planting, harvesting, and other farming operations.

Irrigation Systems
Efficient irrigation is crucial for crop growth. Agricultural engineers design systems that ensure optimal water usage.

Soil and Water Conservation
Techniques for soil and water conservation are integral to sustainable farming. Agricultural engineers work on preventing erosion and promoting water efficiency.

Crop Processing Technologies
Agricultural engineers contribute to the development of technologies for processing and preserving crops, ensuring minimal wastage.

Modern Innovations in Agricultural Engineering

Precision Farming
Utilizing data and technology, precision farming optimizes crop yields, reduces waste, and minimizes environmental impact.

Robotics in Agriculture
Agricultural robots are becoming commonplace, performing tasks such as planting, weeding, and harvesting with precision.

IoT and Agricultural Engineering
The Internet of Things (IoT) is integrated into agriculture, providing real-time data for better decision-making in crop management.

Sustainability in Agricultural Engineering

Agricultural engineering is increasingly focused on sustainability, incorporating eco-friendly practices and efficient resource management to minimize the environmental footprint of farming.

Challenges in Agricultural Engineering

While advancements are exciting, agricultural engineering faces challenges, including technological gaps and concerns about the environmental impact of modern farming practices.

The Role of Agricultural Engineers

Agricultural engineers play a crucial role in bridging these challenges. Their skill set includes a deep understanding of agriculture and the ability to apply engineering principles to create innovative solutions. Career opportunities in this field continue to expand.

Case Studies

Exploring successful implementations of agricultural engineering highlights the impact on farming practices, showcasing real-world applications that have enhanced productivity and sustainability.

Emerging technologies such as artificial intelligence, drones, and genetic engineering are anticipated to shape the future of agricultural engineering, bringing about unprecedented developments in the field.

How can governments promote the adoption of agricultural engineering practices?
Governments can support the adoption of agricultural engineering through funding, subsidies, and policies that encourage the use of advanced technologies in farming

Benefits for Farmers

Farmers stand to gain significantly from agricultural engineering, experiencing increased efficiency in operations, reduced costs, and improved overall productivity.

Global Perspectives

Agricultural engineering practices vary globally, with different regions adopting cross-cultural approaches to farming. Understanding these perspectives is crucial for a comprehensive view of the field.

Government Initiatives and Policies

Government support, including funding and subsidies, plays a vital role in promoting the adoption of agricultural engineering practices, ensuring that farmers have access to the latest technologies.

The Connection Between Agricultural Engineering and Food Security

Ensuring sustainable food production is a shared goal. Agricultural engineering contributes significantly to global food security by implementing practices that enhance productivity and reduce waste.

Conclusion

In conclusion, agricultural engineering is at the forefront of transforming traditional farming into a technologically advanced and sustainable industry. The field continues to evolve, presenting new opportunities and challenges.

FAQs

How does precision farming contribute to sustainable agriculture?
Precision farming uses data and technology to optimize resource usage, reduce waste, and minimize environmental impact, contributing to sustainable agriculture.

What challenges do agricultural engineers face in implementing new technologies?
Agricultural engineers encounter challenges such as technological gaps and concerns about the environmental impact of modern farming practices when implementing new technologies.

Can small-scale farmers benefit from agricultural engineering?
Yes, agricultural engineering offers solutions scalable to different farm sizes, providing benefits such as increased efficiency and reduced costs for small-scale farmers.