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معلم موثوق
يتميز هذا المعلم بمعدل استجابة سريع، مما يدل على خدمة عالية الجودة لطلابه.
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منذ أكتوبر 2021
أستاذ منذ أكتوبر 2021
Biology lessons and test preparation tutoring up to class 12th.
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من 21.63 AED
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I teach students biology up to 12th grade. I use very easy methods of teaching even for advanced level topics.
I specialize in teaching for school, board exams as well as for NEET and other medical entrances.
I assign homework after every session and take a doubt class before starting another topics.
I excel at human physiology and genetics, though I am really good at plant physiology as well.
معلومات إضافية
Bring your notepad
المكان
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عبر الانترنت من الهند
من أنا؟
I have always been very passionate about teaching yoga. I am highly obsessed to peace of mind that one can easily achieve by practicing yoga and of course physical appearance has also become a reason that I practice yoga.
I emphasize on mediation and for overall soothing of soul.
I have been a skilled student of biology who always excelled in her subject.
المستوى التعليمي
Pursuing my bachelor's degree in health and sciences.
I have completed my class 12th with 98% and 10th with 95% from Cbse.
I have been learning yoga practice since 2014.
الخبرة / المؤهلات
I have been teaching yoga for over 2 years at private institutes. I have an efficient knowledge of biology and I give tuitions for it as well.
I have taught more than 40 students who have always appreciated my methods of teaching.
السن
أطفال (4-6 سنوات)
الأطفال (7-12 سنة)
شباب (13-17 سنة)
الكبار (18-64 سنة)
الكبار (65 سنة فأكثر)
مستوى الطالب
مبتدئ
متوسط
متقدم
المدة
60 دقيقة
الدرس يدور باللغة
الإنجليزية
الهندية
الألمانية
المراجعات
الجاهزية في الأسبوع العادي
(GMT -05:00)
نيويورك
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على الانترنت عبر كاميرا ويب
Mon
Tue
Wed
Thu
Fri
Sat
Sun
00-04
04-08
08-12
12-16
16-20
20-24
Mathematics is a very beautiful subject but students often struggle understanding the concepts. In maths, every thing is about how we approach the problem and our perspective for solving it. Every teacher has their own qualities but mine is to make maths fun and easy to understand. I’m a very friendly and fun teacher.
إقرأ المزيد
English language is the need of today.
Being the most spoken language worldwide, it is to be learned in an impressive way to steal hearts of anyone you meet up.
Spoken language leaves the first impression on everyone.
I teach spoken English language in easiest way possible.
إقرأ المزيد
عرض المزيد
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فصول مماثلة
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Eliane
With the Genetics course, an undergraduate student will be exposed to a clear, comprehensive, and balanced introduction to genetics and genomics. The material deals with transmission genetics and molecular genetics, as fully integrated subjects, and provides an understanding of the basic processes of gene transmission, mutation, expression, and regulation.


Upon successful completion of the course, students must be able to:

Common outcomes:

a - Solve genetic problems of several types.

b - Write and State genetic principles in their own words and recognize the key terms of genetics in context.

c - Be able to think like a geneticist at the elementary level of being able to formulate genetic hypotheses, work out their consequences, and test the results against observed data.

d - Gain some sense of the social and historical context in which genetics and genomics has developed and is continuing to develop.

e - Develop critical thinking and analytical skills.


Specific Outcomes:
1.1 - Analyze a pedigree, determine the mode of inheritance and genotypes, and predict offspring ratios.
1.2 - Inspect data from 3-point mapping crosses.
1.3 - Test the goodness-of-fit of experimental data to theoretical predictions using the chi-squared test.
2.1 – Discover and discuss the basic processes of gene transmission, mutation and expression.

2.2 - Assess the principal experimental methods that geneticists use in their studies, and consider the advantages and limitations of these approaches.

2.3 - Investigate the modes of gene expression regulation.

3.1 – Examine the role of every component of eukaryotic and prokaryotic chromosomes.

3.2 – Predict and evaluate the consequences of genomic rearrangements.

3.3 – Analyze genome organization and the parameters affecting DNA renaturation.

4.1 – Consider the different mechanisms of genetic exchanges.

4.2 – Practice how transformation, transduction and conjugation can be used in gene

With the Molecular Biology course, the student will acquire knowledge in the field of modern molecular biology as it covers the molecular mechanisms of gene expression and regulation, the fundamental aspects of recombinant DNA technology, the protein structure and function, the signaling pathways that control gene activity, the regulation of the eukaryotic cell cycle, the Cell birth lineage and death, and Cancer.

Course Learning Outcomes:

Upon successful completion of the course, students must be able to:

Common outcomes:

a - Identify and discuss several molecular mechanisms underlying cellular functions.

b – Solve molecular problems of several types.

c - Develop critical thinking and analytical skills in molecular biology research.

d – Develop scientific communication.


Specific Outcomes:

1.1- Inspect and contrast the genetic engineering methods that molecular biologists use in their studies in order to determine gene function, and discriminate the advantages and limitations of these approaches.

1.2- Analyze and evaluate the applications of recombinant DNA technology.

2.1- Practice a genome-wide analysis of gene structure and expression.

2.2- Identify the transcriptional and post transcriptional gene expression regulation.

2.3- Acquire knowledge about the histone code and dissect how chromatin remodeling plays an important role in the determination of gene expression pattern.

2.4- Investigate how the post translational modifications participate in regulating gene function.

3.1- Consider biology at new levels of complexity, such as large multiprotein signaling complexes in cells.

3.2- Interpret how signaling pathways control gene activity.

4.1- Examine the molecular aspects underlying the activation of the origins of replication and the occurrence of the early and late mitotic events.
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اتصل بPrachi
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الدرس الأول مضمون
بواسطة
ضمان المدرس المناسب
فصول مماثلة
arrow icon previousarrow icon next
verified badge
Eliane
With the Genetics course, an undergraduate student will be exposed to a clear, comprehensive, and balanced introduction to genetics and genomics. The material deals with transmission genetics and molecular genetics, as fully integrated subjects, and provides an understanding of the basic processes of gene transmission, mutation, expression, and regulation.


Upon successful completion of the course, students must be able to:

Common outcomes:

a - Solve genetic problems of several types.

b - Write and State genetic principles in their own words and recognize the key terms of genetics in context.

c - Be able to think like a geneticist at the elementary level of being able to formulate genetic hypotheses, work out their consequences, and test the results against observed data.

d - Gain some sense of the social and historical context in which genetics and genomics has developed and is continuing to develop.

e - Develop critical thinking and analytical skills.


Specific Outcomes:
1.1 - Analyze a pedigree, determine the mode of inheritance and genotypes, and predict offspring ratios.
1.2 - Inspect data from 3-point mapping crosses.
1.3 - Test the goodness-of-fit of experimental data to theoretical predictions using the chi-squared test.
2.1 – Discover and discuss the basic processes of gene transmission, mutation and expression.

2.2 - Assess the principal experimental methods that geneticists use in their studies, and consider the advantages and limitations of these approaches.

2.3 - Investigate the modes of gene expression regulation.

3.1 – Examine the role of every component of eukaryotic and prokaryotic chromosomes.

3.2 – Predict and evaluate the consequences of genomic rearrangements.

3.3 – Analyze genome organization and the parameters affecting DNA renaturation.

4.1 – Consider the different mechanisms of genetic exchanges.

4.2 – Practice how transformation, transduction and conjugation can be used in gene

With the Molecular Biology course, the student will acquire knowledge in the field of modern molecular biology as it covers the molecular mechanisms of gene expression and regulation, the fundamental aspects of recombinant DNA technology, the protein structure and function, the signaling pathways that control gene activity, the regulation of the eukaryotic cell cycle, the Cell birth lineage and death, and Cancer.

Course Learning Outcomes:

Upon successful completion of the course, students must be able to:

Common outcomes:

a - Identify and discuss several molecular mechanisms underlying cellular functions.

b – Solve molecular problems of several types.

c - Develop critical thinking and analytical skills in molecular biology research.

d – Develop scientific communication.


Specific Outcomes:

1.1- Inspect and contrast the genetic engineering methods that molecular biologists use in their studies in order to determine gene function, and discriminate the advantages and limitations of these approaches.

1.2- Analyze and evaluate the applications of recombinant DNA technology.

2.1- Practice a genome-wide analysis of gene structure and expression.

2.2- Identify the transcriptional and post transcriptional gene expression regulation.

2.3- Acquire knowledge about the histone code and dissect how chromatin remodeling plays an important role in the determination of gene expression pattern.

2.4- Investigate how the post translational modifications participate in regulating gene function.

3.1- Consider biology at new levels of complexity, such as large multiprotein signaling complexes in cells.

3.2- Interpret how signaling pathways control gene activity.

4.1- Examine the molecular aspects underlying the activation of the origins of replication and the occurrence of the early and late mitotic events.
ضمان المدرس المناسب
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