cover
Contact Name
Ivandini Tribidasari A.
Contact Email
ivandini.tri@sci.ui.ac.id
Phone
+622129120943
Journal Mail Official
editor_mss@ui.ac.id
Editorial Address
Directorate of Research and Community Engagement UNIVERSITAS INDONESIA UI Campus, Depok 16424 Indonesia
Location
Kota depok,
Jawa barat
INDONESIA
Makara Journal of Science
Published by Universitas Indonesia
ISSN : 23391995     EISSN : 23560851     DOI : https://doi.org/10.7454/mss
Core Subject :
Makara Journal of Science publishes original research or theoretical papers, notes, and minireviews on new knowledge and research or research applications on current issues in basic sciences, namely: Material Sciences (including: physics, biology, and chemistry); Biochemistry, Genetics, and Molecular Biology (including: microbiology, physiology, ecology, taxonomy and evolution); and Biotechnology.
Arjuna Subject : -
Articles 18 Documents
Search results for , issue "Vol. 14, No. 2" : 18 Documents clear
KERAGAMAN GENETIK PANDAN ASAL JAWA BARAT BERDASARKAN PENANDA INTER SIMPLE SEQUENCE REPEAT Rahayu, Sri Endarti; Handayani, Sri
Makara Journal of Science Vol. 14, No. 2
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Genetic Diversity of Pandanus from West Java based on ISSR Markers. The genetic diversity of 10 species of Pandanus from West Java was examined using inter simple sequence repeat (ISSR) technique. Samples were collected from different localities in West Java. Two primers (ISSR2 and ISSR7) were selected as reliable amplifying ISSR markers. The two primers amplified 19 band position, with amplification size ranged from 200 to 1500 bp. Genetic distance for samples ranged from 0.267 to 0.957. Genetic distance was high (0.957) between P. pseudolais and P. spinistigmaticus, and between P. kurzii and P. pseudolais, where as genetic distance was low (0.267) between P. scabrifolius and P. bidur.
ISOLASI FRAGMEN cDNA DARI GEN PENYANDI AKTIN DARI Melastoma malabathricum Hannum, Saleha; Akashi, Kinya; Suharsono, Utut Widyastuti; Hartana, Alex
Makara Journal of Science Vol. 14, No. 2
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Isolation of cDNA Fragment of Gene Encoding for Actin from Melastoma malabthricum. M. malabathricum grows well in acidic soil with high Al solubility, thereby it can be used as a model plant for tolerance to aluminum and acid stresses. Actin is housekeeping gene used as an internal control for gene expression analysis. The objective of this research was to isolate and clone the cDNA fragments of MmACT encoding for actin of M. malabathricum. Total RNA was isolated and used as the template for cDNA synthesis by reverse transcription. Four cDNA fragments of MmACT, called MmACT1, MmACT2, MmACT3, and MmACT4, had been isolated and inserted into pGEM-T Easy plasmid. Nucleotide sequence analysis showed that the size of MmACT1 and MmACT2 is 617 bp, whereas MmACT3 and MmACT4 is 735 bp. The similarity among these four MmACT is about 78%-99% based on nucleotide sequence and about 98%-100% based on amino acid sequence. Phylogenetic analysis based on amino acid sequence showed that at 1% dissimilarity, the MmACT1, MmACT2, MmACT3 and the ACT5 Populus trichocarpha are clustered in one group, while the MmACT4 is grouped with ACT9 P. trichocarpa and ACT1 Gossypium hirsutum, and these two groups are separated from actin group of monocotyledonous plants. The sequence of MmACT fragments were registered in GenBank/EMBL/DDBJ database with accession numbers AB500686, AB500687, AB500688, and AB500689.
EVALUASI SKEMA WATERMARKING CITRA BERBASIS SINGULAR VALUE DECOMPOSITION, KUANTISASI DITHER, DAN DETEKSI SISI Mardiko, Rahmatri; Basaruddin, T.
Makara Journal of Science Vol. 14, No. 2
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PROPERTIES OF HIGH-ORDER HARMONIC GENERATION SIGNALS FROM SWITCHED-OFF ALIGNED MOLECULES Abdurrouf, Abdurrouf
Makara Journal of Science Vol. 14, No. 2
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PENURUNAN NOISE FIGURE PERFORMANCE (FN) PADA HETEROJUNCTION BIPOLAR TRANSISTOR SI/SI 1-X GEX BERDASARKAN PENGATURAN STRIPE EMITTER AREA (AE) DAN FRACTION MOLE (X) Alamsyah, Tossin; Hartanto, Djoko; Puspawati, N. R
Makara Journal of Science Vol. 14, No. 2
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Reduction of Noise Figure (Fn) on Bipolar Heterojunction Si/Si1-x Gex based on Arrangements Stripe Emitter Area (Ae) and Mole Fraction (x). This paper investigates the influence of stripe emitter area (Ae) and fraction mole (x) concerning about noise figure performance (FN) at HBT SiGe. It takes the second generation of HBT SiGe IBM with Ae; 0.18 x 10 μm2 developed as its model. When the alterations of Ae are from 0.18 x 10 μm2 , 0.12 x 10 μm2 and 0.09 x 10 μm2 , at the same time the fraction mole (x) is raised twice, it makes positive relation to RB and β parameter, but negative relation to RC, fT, and fmax parameter. A model of HBT SiGe with x: 0.1 and Ae: 0.18 x 10 μm2 produces 0.57dB of Fn minimum, the value is less than the other of which has 0.64dB for Ae: 0.12 x 10 μm2 and 0.69 dB for Ae: 0.09 x 10. Then if fraction mole(x) is reduced for 50%, it causes nonlinear Fn raising which are 77%, 79% and 89% from the previous value. Noise figure (Fn) had a negative relationship with emitter stripe area (Ae), whereas the mole fraction (x) has a positive relationship; so the noise figure (Fn) can be made low by minimizing emitter stripe area (Ae) and raise the mole fraction (x).
IDEAL MAKSIMAL DAN PRIMA DARI GELANGGANG POLINOM MIRING ATAS DAERAH BILANGAN BULAT GAUSS Amir, Amir Kamal
Makara Journal of Science Vol. 14, No. 2
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Maximal and Prime Ideals of Skew Polynomial Ring Over the Gauss Integers Domain. Let R be any ring with identity 1, σ be an automorphism of R and δ be a left σ-derivation. The skew polynomial ring over R in an indeterminate x is the set of polynomials anx n + an-1x n-1 + . . . + a0 where ai∈ R with multiplication rule xa = σ (a) x + δ(a) for all ai∈ R. In this paper, R is Gauss integers, i.e Z + Zi, where i 2 = -1, σ is the automorphism of R with σ(a + bi) = a - bi where a,b∈ Z, the ring of integers, and δ is the zero σ-derivation. We will show maximal and prime ideals of this skew polynomial ring.
COMPUTATION OF NATURAL CONVECTION IN A POROUS PARALLELOGRAMMIC ENCLOSURE WITH A MAGNETIC FIELD Saleh, Habibis; Basriati, Sri; Hashim, Ishak
Makara Journal of Science Vol. 14, No. 2
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Detailed numerical calculations are presented in this paper for natural convection in a porous parallelogrammic enclosure with a magnetic field. The inclined walls are maintained isothermally at different temperatures. The top and bottom horizontal straight walls are kept adiabatic. To simplify the effort in matching the grid mesh with the inclined walls of the parallelogrammic region/geometry, the computational domain is mapped onto a rectangular shape using a non-linear axis transformation. Transport equations are modeled by a stream-vorticity formulation then expressed in the new coordinate system and solved numerically by a finite difference method. Based upon the numerical predictions, we found the convection modes within the enclosure depended upon the Rayleigh number and the inclination angle. As the value of magnetic field is made larger, the strength of the heat transfer is progressively suppressed. Tuning the inclination angle decreases the heat transfer performance.
PERSONALIZATION SISTEM E-LEARNING BERBASIS ONTOLOGY Suteja, Bernard Renaldy; Guritno, Suryo; Wardoyo, Retantyo; Ashari, Ahmad
Makara Journal of Science Vol. 14, No. 2
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